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中国科学院化学研究所导师教师师资介绍简介-王健君

本站小编 Free考研考试/2020-05-17


课题组负责人
?

王健君研究员






联系我们
地址:北京市海淀区中关村北一街2号
中国科学院化学研究所
邮编:100190
Tel:
Fax:
Email: wangj220@iccas.ac.cn








课题组简介
欢迎访问防冰材料课题组!

课题组现招收硕博生(含推荐免试生)、博士生、博士后若干名,欢迎加入!






近期动态
王健君研究员在2014年APS March年会的报告受到该年会的亮点报导,并在该年会的安排下召开了网络新闻发布会。
2014年3月13日BBC报道了课题组在防冰涂层方面的成果。
王健君课题组有关防冰材料的研究成果被中国科学报所报道,刊登在2014年4月17日第四版












课题组负责人
?

王健君研究员






联系我们
地址:北京市海淀区中关村北一街2号
中国科学院化学研究所
邮编:100190
Tel:
Fax:
Email: wangj220@iccas.ac.cn








课题组简介
欢迎访问防冰材料课题组!

课题组现招收硕博生(含推荐免试生)、博士生、博士后若干名,欢迎加入!






近期动态
王健君研究员在2014年APS March年会的报告受到该年会的亮点报导,并在该年会的安排下召开了网络新闻发布会。
2014年3月13日BBC报道了课题组在防冰涂层方面的成果。
王健君课题组有关防冰材料的研究成果被中国科学报所报道,刊登在2014年4月17日第四版












网站地图
APS会议
BBC报道
中国科学报报道







近期动态
王健君研究员在2014年APS March年会的报告受到该年会的亮点报导,并在该年会的安排下召开了网络新闻发布会。
2014年3月13日BBC报道了课题组在防冰涂层方面的成
王健君课题组有关防冰材料的研究成果被中国科学报所报道,刊登在2014年4月17日第四版

王健君课题组开发的受滑冰运动启发的自润滑水层防覆冰涂层材料被MaterialsViewsChina报道。 Gerhard Wegner教授参加我组会,讨论最新实验进展,给出宝贵建议。












网站地图
APS会议
BBC报道
中国科学报报道







APS March Meeting 网络新闻发布会



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王健君研究员在2014年APS March年会的报告受到该年会的亮点报导,并在该年会的安排下召开了网络新闻发布会(详见视频)。












网站地图
APS会议
BBC报道
中国科学报报道







2014年3月13日BBC报道了课题组在防冰涂层方面的成果

The Chinese Academy of Sciences has developed an anti-icing coating that uses a self-lubricating layer of water between the ice and the sample surface. The coating is made of special polymers able to attract and hold water.
As the temperature decreases, these polymers – known as hygroscopic – start to swell as they suck in water. This way, a lubricating layer of water forms naturally during icing. "Thus the ice adhesion is reduced greatly and the ice formed atop could be shed off by an action of wind," says the project's lead author Jianjun Wang, who presented the results at a recent American Physical Society meeting in Denver, Colorado. The approach is very different from conventional anti-icing methods that are often "energy-consuming, high-cost, and environmentally harmful," he adds.
2014年3月13日BBC报道了课题组在防冰涂层方面的成果(详见网页)。












网站地图
APS会议
BBC报道
中国科学报报道







中国科学报报道
王健君课题组有关防冰材料的研究成果已经被中国科学报所报道,刊登在该报2014年4月17日的第四版。
以下是报道的详细内容:













网站地图
课题组组长 王健君 研究员
在职职工 副研究员 孔滨
贺志远
助理研究员 吕健勇
金晟琳

博士后 崔大鹏
赵立山
刘樟
已毕业学生 张巧兰
窦仁美
张依帆
邵明哲
杨会歌
王亚玲
刘凯
刘杰
刘振绮
耿洪亚
白国英
吴书旺
靳袁凯
郭倩
在读学生 范庆瑞
李林海
薛涵
张世忠
毛俊强
闫泽泉
程琪
王圆广
王占辉
吴辰阳
霍炳臣
李淑君
赵冠雷
留学生 小布
Thomas Odey Magu







课题组组长
王健君 研究员
教育经历:
1995~1999,华东理工大学应用化学学士学位
1999~2002,华东理工大学应用化学硕士学位
2002~2006,德国马普高分子研究所博士学位
2006~2007,德国马普高分子研究所博士后
工作经历:
2007~2010,德国马普高分子研究所,课题组长
2010~至今,中国科学院绿色印刷重点实验室,研究员
研究领域:
1. 低温下水与材料表面黏附力研究
2. 低温下冰与材料表面黏附力研究
3. 界面水相变与宏观浸润性研究
4. 黏附可调防结冰材料的构筑












网站地图
课题组组长 王健君 研究员
在职职工 副研究员 孔滨
贺志远
助理研究员 吕健勇
金晟琳

博士后 崔大鹏
赵立山
刘樟
已毕业学生 张巧兰
窦仁美
张依帆
邵明哲
杨会歌
王亚玲
刘凯
刘杰
刘振绮
耿洪亚
白国英
吴书旺
靳袁凯
郭倩
在读学生 范庆瑞
李林海
薛涵
张世忠
毛俊强
闫泽泉
程琪
王圆广
王占辉
吴辰阳
霍炳臣
李淑君
赵冠雷
留学生 小布
Thomas Odey Magu







王健君研究员
王健君 研究员
教育经历:
1995~1999,华东理工大学应用化学学士学位
1999~2002,华东理工大学应用化学硕士学位
2002~2006,德国马普高分子研究所博士学位
2006~2007,德国马普高分子研究所博士后
工作经历:
2007~2010,德国马普高分子研究所,课题组长
2010~至今,中国科学院绿色印刷重点实验室,研究员
研究领域:
1. 低温下水与材料表面黏附力研究
2. 低温下冰与材料表面黏附力研究
3. 界面水相变与宏观浸润性研究
4. 黏附可调防结冰材料的构筑












网站地图
副研究员 孔滨
贺志远
助理研究员 吕健勇
金晟琳













网站地图
崔大鹏
赵立山
刘樟













网站地图
张巧兰
窦仁美
张依帆
邵明哲
杨会歌
王亚玲
刘凯
刘杰
刘振绮
耿洪亚
白国英
吴书旺
靳袁凯
郭倩













网站地图
范庆瑞
李林海
薛涵
张世忠
毛俊强
闫泽泉
程琪
王圆广
王占辉
吴辰阳
霍炳臣
李淑君
赵冠雷













网站地图
小布
Thomas Odey Magu







单篇全文显示

姓名:小布
国籍:孟加拉国
电子信箱:ahsanhabib@iccas.ac.cn
联系电话:


研究方向:
防覆冰界面材料












冷凝微米水滴黏附可控表面
冷凝微米水滴黏附可控表面

冷凝水滴在一些表面上合并后能跳离表面,从而使冷凝水在结冰之前移离表面,实现表面无冰可结。冷凝水跳离材料表面的阻力主要来源于固体表面对水的黏附力,我们通过研究冷凝微米水滴与材料表面的黏附力的作用机理,构筑冷凝水合并后自发弹离表面,使落到或冷凝在该表面上过冷水能在成核变冰之前低能耗或自动移走。






冰黏附可控表面
冰黏附可控表面

当过冷度较大时,如零下40 度或更低的温度,冷表面上结冰不可避免。我们研究冰与基底黏附作用机理,构筑冰黏附可控表面,实现表面上的冰在自重或风力等自然因素的作用下滑落。






仿生防覆冰表面
仿生防覆冰表面

在极地地区和沙漠地区,温度可低达零下50 度甚至更低。但是即使在这种酷寒地区仍然有生命的存在,如极地鱼和生活于我国东北地区的冬尺蛾。我们研究这些生物耐寒机制,并用于防覆冰涂层中。












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2018年论文
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2015年论文
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2010年论文
2010年以前论文













网站地图
主页
近期动态 APS会议
BBC报道
中国科学报报道
课题组成员 课题组组长 王健君 研究员
在职职工 副研究员 孔滨
贺志远
助理研究员 吕健勇
金晟琳

博士后 崔大鹏
赵立山
刘樟
已毕业学生 张巧兰
窦仁美
张依帆
邵明哲
杨会歌
王亚玲
刘凯
刘杰
刘振绮
耿洪亚
白国英
吴书旺
靳袁凯
郭倩
在读学生 范庆瑞
李林海
薛涵
张世忠
毛俊强
闫泽泉
程琪
王圆广
王占辉
吴辰阳
霍炳臣
李淑君
赵冠雷
留学生 小布
Thomas Odey Magu

研究领域
发表论文 2018年论文
2017年论文
2016年论文
2015年论文
2014年论文
2013年论文
2012年论文
2011年论文
2010年论文
2010年以前论文
学科资源
学科动态
ENGLISH
组内活动







单篇全文显示
[1] Yifan Zhang,Kai Liu,Kaiyong Li,Voytek Gutowski,Yuan Yinand Jianjun Wang, Fabrication of Anti-Icing Surfaces by Short α?Helical Peptides. ACS Applied Material Interfaces 2018, 10, 1957-1962, DOI: 10.1021/acsami.7b13130
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[2] Shenglin Jin, Jie Liu, Jianyong Lv, Shuwang Wu and Jianjun Wang, Interfacial Materials for Anti-Icing: Beyond Superhydrophobic Surfaces, Surface Chemistry, Chemistry-An Asian Journal, Focus Review. 2018, 13, 1406 – 1414, DOI:10.1002/asia.
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[3] Zhiyuan He,Kai Liu and Jianjun Wang,Bioinspired Materials for Controlling Ice Nucleation, Growth and Recrystallization, Accounts of Chemical Research. 2018, 51, 1082?1091, DOI: 10.1021/acs.accounts.7b00528












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单篇全文显示
[1] Zhenqi Liu, Zhiyuan He, Jianyong Lv, Yuankai Jin, Shuwang Wu, Guangming Liu, Feng Zhou and Jianjun Wang, "Ion-specific ice propagation behavior on polyelectrolyte brush surfaces" RCS Adv. 2017, 7, 840-844.
[2] Hongya Geng, Xing Liu,Guosheng Shi, Guoying Bai, Ji Ma, Jingbo Chen, Zhuangyuan Wu, Yanlin Song, Haiping Fang, Jianjun Wang, "Graphene oxide restricts growth and recrystallization of ice crystals" Angew Chem Int Ed Engl. 2017, 56, 997 –1001
[3] Zhichao Zhu, Junfeng Xiang, Jianjun Wang, and Dong Qiu, "Effect of Polyvinyl Alcohol on Ice Formation in the Presence of a Liquid/Solid Interface" langmuir 2017, 33, 191?196
[4] Yaling Wang, Yi Yao, Shuwang Wu, Qunyang Li, Jianyong Lv, Juanjun Wang, and Lei Jiang, " Bioinspired Solid Organogel Materials with a Regeneralbe Sacrificial Alkane Surface Layer"Advanced Materials, 2017, 29, **.
[5] Shuwang Wu, Chongqin Zhu, Zhiyuan He, Han Xue, Qingrui Fan, Yanlin Song, Joseph S. Francisc, Xiao Cheng Zeng, and Jianjun Wang, "Ion-speci?c ice recrystallization provides a facile approach for the fabrication of porous materials", Nature communication, 2017, 8, 15154.
[6] Guoying Bai, Zhiping Song, Hongya Geng, Dong Gao, Kai Liu, Shuwang Wu, Wei Rao, Liangqia Guo, and Jianjun Wang, "Oxidized Quasi-Carbon Nitride Quantum Dots Inhibit Ice Growth", Adv. Mater. 2017, **
[7] Yuankai Jin, Zhiyuan He, Qian Guo, Jianjun Wang, "Control of Ice Propagation via Polyelcetrolyte Multilayer Coating", Angew Chem Int Ed Engl. 2017. DOI: 10.1002/anie.R1.
[8] Hongya geng, Bowen Yao, Jiajia Zhou, Kai Liu, Guoying Bai, Wenbo Li, Yanlin Song, Gaoquan Shi, Masao Doi, and Jianjun Wang . "Size Fractionation of Graphene Oxide Nanosheets via Controlled Directional Freezing. J. Am. Chem. Soc., 2017, 139,12517–12523.
[9] Zhiyuan He, Liuchun Zheng, Zhenqi Liu, Shenglin Jin, Chuncheng Li,and Jianjun Wang. "Inhibition of Heterogeneous Ice Nucleation by Bioinspired Coatings of Polyampholytes"ACS Appl. Mater. Interfaces, 2017, 9, 30092–30099
[10] Shuwang Wu, Linhai Li, Han Xue, Kai Liu, Qingrui Fan, Guoying Bai, and Jianjun Wang. Size Controllable, Transparent and Flexible 2D Silver Meshes Using Recrystallized Ice Crystals as Templates. ACS nano. 2017, DOI: 10.1021/acsnano.7b03821.
[11] Guoying Bai, Dong Gao, and Jianjun Wang. "Control of ice growth and recrystallization by sulphur-doped oxidized quasi-carbon nitride quantum dots." carbon 2017.
[12] Jie Liu, Chongqin Zhu, Kai Liu, Ying Jiang, Yanlin Song, Joseph S. Francisco, Xiao Cheng Zeng, and Jianjun Wang. "Distinct ice patterns on solid surfaces with various wettabilities" PNAS, doi/10.1073/pnas.. Highlighted by Nature.
[13] Jianyong Lv, Xi Yao, Yongmei Zheng, Jianjun Wang, Lei Jiang. "Antiadhesion Organogel Materials: From Liquid to Solid" Adv. Mater. 2017, **
[14] Yifan Zhang, Kai Liu, Kaiyong Li, Voytek Gutowski, Yuan Yin, and Jianjun Wang, "Fabrication of Anti-Icing Surfaces by Short α-Helical Peptides", ACS Appl. Mater. Interfaces, Article ASAP













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单篇全文显示
[1]Huige Yang,Chao Ma,Kaiyong Li,Kai Liu,Mark Loznik,Rosalie Teeuwen,Jan C. M. van Hest,Xin Zhou,Andreas Herrmann,Jianjun Wang,Tuning Ice Nucleation with Supercharged Polypeptides,Advanced Materials,DOI: 10.1002/adma..
[2]Liu J, Guo H, Zhang B, Qiao S, Shao M, Zhang X, Feng XQ, Li Q, Song Y, Jiang L, Wang J,Guided Self-Propelled Leaping of Droplets on a Micro-Anisotropic Superhydrophobic Surface,Angew Chem Int Ed Engl., DOI: 10.1002/anie..
[3]Zhiyuan He, Wen Jun Xie, Zhenqi Liu, Guangming Liu, Zuowei Wang, Yi Qin Gao, Jianjun Wang,Tuning ice nucleation with counterions on polyelectrolyte brush surfaces,Sci Adv.,DOI: 10.1126/sciadv.**
[4]Liu K, Wang C, Ma J, et al. Janus effect of antifreeze proteins on ice nucleation. Proceedings of the National Academy of Sciences, 2016: .
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[5]Geng H, Liu X, Shi G, et al. Graphene Oxide Restricts Growth and Recrystallization of Ice Crystals. Angewandte Chemie International Edition, 2016.












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2014年论文
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2010年以前论文







2015年论文
[1]Yaling Wang, Xi Yao, Jing Chen, Zhiyuan He, Jie Liu, Qunyang Li, Jianjun Wang, Lei Jiang,Organogel as durable anti-icing coatings,Sci. China Mater., DOI:10.1007/s40843-015-0069-7.
[2]Xi Yao,Shuwang Wu,Lie Chen,Jie Ju,Zhandong Gu,Mingjie Liu,Jianjun Wang, Lei Jiang,Self-Replenishable Anti-Waxing Organogel Materials,Angew. Chem.,DOI: 10.1002/ange..
[3] Mingzhe Shao, Jianjun Wang, Xin Zhou, Anisotropy of Local Stress Tensor Leads to Line Tension,Scientific Reports,DOI:10.1038/srep09491












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2014年论文
[1] J. Lv, Y. Song, L. Jiang, J. Wang, Bio-inspired strategies for anti-icing, ACS NANO, DOI: 10.1021/nn406522n (2014).
[2] Y. Liu, J. Wang, X. Zhang, W. Wang, Contact line pinning and the relationship between nanobubbles and substrates, J. Chem. Phys., DOI: 10.1063/1.** (2013).
[3] X. Yao, J. Ju, S. Yang, J. Wang, L. Jiang, Temperature-driven switching of water adhesion on organogel surface, Advanced Materials, DOI: 10.1002/adma. (2013).
[4] Y. Zhang,R. Dou, H. Yang,J. Wang,Y. Song, Water adhesion-tunable films prepared with morphology-controllable core/shell particles, Colloids and Surfaces A: Physicochemical and Engineering Aspects, 446 (2014), 92-96.
[5] K. Li, S. Xu, J. Chen, Q. Zhang, Y. Zhang, D. Cui, X. Zhou, J. Wang, Y. Song, Viscosity of interfacial water regulates ice nucleation, App. Phys. Lett., 104 (2014), 101605.
[6] Renmei Dou, Jing Chen, Yifan Zhang, Xupeng Wang, Dapeng Cui, Yanlin Song, Lei Jiang, Jianjun Wang*: Anti-icing Coating with an Aqueous Lubricating Layer. ACS Appl. Mater. Inter. 2014, 6, 6998-7003.
[7] Yang Huige, Su Meng, Li Kaiyong, Jiang Lei, Song Yanlin, Doi Masao, Wang Jianjun*: Preparation of Patterned Ultrathin Polymer Films, Langmuir 2014, 30, 9436-9441.
[8]Jing Chen, Zhiqiang Luo, Qinrui Fan, Jianyong Lv, Jianjun Wang*: Anti-icing Coating Inspired by Ice Skating. Small 2014, doi: 10.1002/smll.(invited paper)













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2013年论文
[1] Y. Zhang, T. Lu, X. Zeng, H. Zhou, H. Guo, E. Bonaccurso, H. Butt, J. Wang, Y. Song, L. Jiang, Surface-mediated buckling of core/shell spheres for the formation of oriented anisotropic particles with tunable morphologies, Soft Matter, 9 (2013), 2589-2592.
[2] Z. Xin, B. Su, J. Wang, X. Zhang, Z. Zhang, M. Deng, Y. Song, L. Jiang, Continuous microwire patterns dominated by controllable rupture of liquid films, Small, 9 (2013), 722-726.
[3] Q. Zhang, M. He, J. Chen, J. Wang, Y. Song, L. Jiang, Anti-icing surfaces based on enhanced self-propelled jumping of condensed water microdroplets, Chem. Comm., 49 (2013), 4516-4518.
[4] M. He, Q. Zhang, X. Zeng, D. Cui, J. Chen, H. Li, J. Wang, Y. Song, Hierarchical porous surface for efficiently controlling microdroplets’ self-removal, Adv. Mater.,25 (2013), 2291-2295.
[5] Y. Feng, G. Chen, J. Wang, A quantitative study of isothermally annealing-induced mesophase of syndiotactic polystyrene, RSC Adv., 3 (2013), 12631-12634.
[6] J. Chen, R. Dou, D. Cui, Q. Zhang, Y. Zhang, F. Xu, X. Zhou, J. Wang, Y. Song, L. Jiang, Robust prototypical anti-icing coatings with a self-lubricating liquid water layer between ice and substrate, ACS Applied Materials & Interfaces, 5 (2013), 4026-4030.
[7] Y. Liu, J. Wang, X. Zhang, Accurate determination of the vapor-liquid-solid contact line tension and the viability of Young equation, Scientific Reports, DOI: 10.1038/srep02008 (2013).
[8] L. Sun, J. Wang, E. Bonaccurso, Conductivity of individual particles measured by a microscopic four-point-probe method, Scientific Reports, DOI: 10.1038/srep01991 (2013).
[9] B. Zhang, J. Wang, X. Zhang, Effects of the hierarchical structure of rough solid surfaces on the wetting of microdroplets, Langmuir, 29 (2013), 6652-6658.












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2012年论文
[1] M. He, X. Zhou, X. Zeng, D. Cui, Q. Zhang, J. Chen, H. Li, J. Wang, Z. Cao, Y. Song, L. Jiang, Hierarchically structured porous aluminum surfaces for high-efficient removal of condensed water, Soft Matter, 8 (2012), 6680-6683.
[2] Q. Zhang, M. He, X. Zeng, K. Li, D. Cui, J. Chen, J. Wang, Y. Song, L. Jiang, Condensation mode determines the freezing of condensed water on solid surfaces, Soft Matter, 8(2012),8285-8288.
[3] K. Li, S. Xu, W. Shi, M. He, H. Li, S. Li, X. Zhou, J. Wang, Y. Song, Investigating the effects of solid surfaces on ice nucleation, Langmuir, 28 (2012), 10749-10754.
[4] J. Chen, J. Liu, M. He, K. Li, D. Cui, Q. Zhang, X. Zeng, Y. Zhang, J. Wang, Y. Song, Superhydrophobic surfaces cannot reduce ice adhesion, Applied Physics Letters, 101 (2012), 111603.
[5] J. Zhang, J. Wang, G. Chen, C. Yuan, J. Yang, Observation of flower-like patterns in syndiotactic polystyrene/carbon nanotube nanocomposite films, RSC Adv, 2 (2012), 7964-7967.












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2011年论文
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2010年以前论文







2011年论文
[1] X. Zeng, M. He, H. Li, J. Wang, Y. Song, L. Jiang, Investigating the adhesion of water droplets at low temperatures, Langmuir, 24 (2011), 14995-14998.
[2] Y. Huang, J. Wang, J. Zhou, L. Xu, Z. Li, Y. Zhang, J. Wang, Y. Song, L. Jiang, Controllable synthesis of latex particles with multicavity structures, Macromoles, 44 (2011), 2404-2409.
[3] L. Sun, J. Wang, H. Butt, E. Bonaccurso, Influence of relative humidity on the nanoscopic topography and the dielectric constant of thin films of PPy:PSS, Small, 7 (2011), 950-956.
[4] M. He, H. Li, J. Wang, Y. Song, Superhydrophobic surface at low surface temperature, Applied Physics Letters, 98 (2011), 093118.
[5] M. He, J. Wang, H. Li, Y. Song, Superhydrophobic surface at low temperature to condensed micro-droplets retards ice formation, Soft Matter, 7 (2011), 3993-4000.
[6] C. Yuan, J. Wang, G. Chen, J. Zhang, J. Yang, Orientation studies of uniaxial drawn syndiotactic polystyrene/carbon nanotube nanocomposite films, Soft Matter, 7 (2011), 4039-4044.












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2018年论文
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2015年论文
2014年论文
2013年论文
2012年论文
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2010年论文
[1] A. Muehlebach, A. Hafner, F. Rime, K. Mpoukouvalas, L. Sun, J. Wang, G. Wegner, T. Beierlein, Synthesis of polypyrrole-coated core/shell nanoparticles, Chimia, 64 (2010), 49.
[2] L. Sun, J. Wang, E. Bonaccurso, Nanoelectronic properties of a model system and of a conjugated polymer: a study by Kelvin probe force microscopy and scanning conductive torsion mode microscopy, J. Phys. Chem. C, 114 (2010), 7161.
[3] K. Mpoukouvalas, J. Wang, G. Wegner, Conductivity of poly(pyrrole)-poly(styrene sulfonate) core-shell nanoparticles as analyzed by impedance spectroscopy: effect of alkali counterions, Chem. Phys. Chem.,11 (2010), 139.
[4] J. Fu, J. Wang, Q. Li, D. Kim, W. Knoll, A colloidal templating method towards 3D hierachically ordered composite block copolymer hollow spheres, Langmuir, 26 (2010), 12336.
[5] M. He, J. Wang, H. Li, X. Jin, J. Wang, B. Liu, Y. Song, Super-hydrophobic film retards frost formation, Soft Matter, 6 (2010), 2396.
[6] Z. Li, J. Wang, Y. Zhang, J. Wang, Y. Song, L. Jiang, Closed-air induced composite wetting on hydrophilic ordered nano-porous anodic alumina, Appl. Phys. Lett., 97 (2010), 233107.












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2018年论文
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2015年论文
2014年论文
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2011年论文
2010年论文
2010年以前论文







2010年以前论文
[1] K. Mpoukouvalas, J. Wang, G. Wegner, Charge transport of polypyrrole core-shell nanoparticle films probed with dielectric spectroscopy, J. Appl. Phys., 106 (2009), 063706.
[2] J. Wang, L. Sun, K. Mpoukouvalas, B. Fassbender, E. Bonaccurso, G. Brunklaus, A. Muehlebach, T. Beierlein, R. Tilch, H.Butt, G. Wegner, Facile synthesis of spherical polyelectrolyte brushes as carriers for conducting polymers to be used in plastic electronics, Macromol. Chem. Phys., 201 (2009), 1504.
[3] J. Wang, L. Sun, K. Mpoukouvalas, K. Lienkamp, I. Lieberwirth, B. Fassbender, E. Bonaccurso, G. Brunklaus, A. Muehlebach, T. Beierlein, R. Tilch, H. Butt, G. Wegner,Construction of redispersible polypyrrole core-shell nanoparticles for application in polymer electronics, Advanced materials, 21 (2009), 1137.
[4] Q. Li, M. Retsch, J. Wang, W. Knoll, U. Jonas, Porous networks through colloidal templates, Topics in Current Chemistry - Templates in Chemistry III, 287 (2009), 135.
[5] T. Still, W. Cheng, M. Retsch, R. Sainidou, J. Wang, U. Jonas, N. Stefanou, and G. Fytas, Simultaneous occurrence of structure-directed and particle resonance-induced phononic gaps in colloidal films, Phys. Rev. Lett., 100 (2008), 194301.
[6] J.Wang, S.Ahl, Q.Li, M.Kreiter, T.Neumann, K.Burkert, W.Knoll,U.Jonas, Structural and optical characterization of 3D binary colloidal crystal and inverse opal films prepared by direct co-deposition, J. Mater.Chem., 18(2008), 981.
[7] L. Zhi, J. Wang, G. Cui, M. Kastler, B. Schmaltz, U. Kolb, U. Jonas, K. Müllen, From well-defined carbon-rich precursors to monodisperse carbon particles with hierarchic structures, Adv. Mater., 19 (2007),1849.
[8] K. Burkert, T. Neumann, J. Wang, U. Jonas, W. Knoll, H. Ottleben, Automated preparation method for colloidal crystal arrays of monodisperse and binary colloid mixtures by contact printing with a pintool plotter, Langmuir, 23 (2007), 3478.
[9] W. Cheng, J. Wang, U. Jonas, G. Fytas, N. Stefanou, Observation and tuning of hypersonic bandgaps in colloidal crystals, Nature Materials, 5 (2006), 830. ——Highlighted in Nature materials colloidal crystals go hypersonic, 5 (2006), 773.
[10] J. Wang, Q. Li, W. Knoll, U. Jonas, Preparation of multilayered trimodal colloid crystals and binary inverse opals, J. Am. Chem. Soc., 128 (2006), 15606.
[11] S. Tian, J. Wang, U. Jonas, W. Knoll (J. Wang as the co-first author), Inverse opals of polyaniline and its copolymers prepared by electrochemical techniques, Chem. Mater., 17 (2005), 5726.
[12] W. Cheng, J. Wang, U. Jonas, G. Fytas, R. Penciu, E. Economou, The spectrum of vibration modes in soft opals, J. Chem. Phys., 123 (2005), 121104.












学科资源






Nature
Science
J. Am. Chem. Soc.

Physical Review Letters
Angew. Chem. Int. Ed.














ACS Nano
Nano Letters
Advanced Materials
Chem.Commun.
Applied Physics Letters








Langmuir

Soft Matter

Chemistry of Materials

PNAS
Small























Team Leader

">Prof. Dr. Jianjun Wang






Lastest News

Prof. Jianjun Wang'stalkon anti-icing strategies was highlighted and webcasted by 2014 APS March Meeting.

On March 13th2014, BBC reported the group's new progress on anti-icing.








Brief

Welcome to thegroup of anti-icing materials!
Ice formation on exposed surfaces affects adversely the appropriate operation of infrastructures including aircrafts, ships, wind turbines and power lines. In extreme cases, icing on surfaces causes disastrous events such as crash of aircrafts and collapse of power networks, which result in severe economic impact and large loss of life.
Our group is committed to the development of anti-icingmaterials based on the investigation on the fundamentals of ice formation and ice adhesion. Currently, the group consists of 1 professor, 4 assistant professor, 2 post-doc, and 10 Ph.D candidates. We warmly welcome and will provide a decent platform to those who have interests in the anti-icing research.






Contact us
Address: Institute of Chemistry,Chinese Academy of Sciences, Zhongguancun North First Street 2,100190 Beijing, PR China.
Tel:
Fax:
E-mail:wangj220@iccas.ac.cn












组内活动
2014.11.18


2011年仙螺岛 2011年老龙头

2011年红螺寺

2012年承德避暑山庄

2012年承德棒槌山 2012年水长城

2013年毕业生照片












Team Leader

">Prof. Dr. Jianjun Wang






Lastest News

Prof. Jianjun Wang'stalkon anti-icing strategies was highlighted and webcasted by 2014 APS March Meeting.

On March 13th2014, BBC reported the group's new progress on anti-icing.








Brief

Welcome to thegroup of anti-icing materials!
Ice formation on exposed surfaces affects adversely the appropriate operation of infrastructures including aircrafts, ships, wind turbines and power lines. In extreme cases, icing on surfaces causes disastrous events such as crash of aircrafts and collapse of power networks, which result in severe economic impact and large loss of life.
Our group is committed to the development of anti-icingmaterials based on the investigation on the fundamentals of ice formation and ice adhesion. Currently, the group consists of 1 professor, 4 assistant professor, 2 post-doc, and 10 Ph.D candidates. We warmly welcome and will provide a decent platform to those who have interests in the anti-icing research.






Contact us
Address: Institute of Chemistry,Chinese Academy of Sciences, Zhongguancun North First Street 2,100190 Beijing, PR China.
Tel:
Fax:
E-mail:wangj220@iccas.ac.cn












网站地图
APS March Meeting
BBC Report







Lastest News
APS March Meeting
BBC Report
Prof. Gerhard Wegner from MPIP Germany attended our groupseminar and discussed with group members.
Recent paper 'Anti-ice coating inspired by ice skating'has been selected as a cover article by Small













网站地图
APS March Meeting
BBC Report







APS March Meeting
Prof. Jianjun Wang'stalkon anti-icing strategies was highlighted and webcasted by 2014 APS March Meeting.



?
(Click Here to acquire more information)












网站地图
APS March Meeting
BBC Report







BBC Report
On March 13th2014, BBC reported the group's new progress on anti-icing.

The Chinese Academy of Sciences has developed an anti-icing coating that uses a self-lubricating layer of water between the ice and the sample surface. The coating is made of special polymers able to attract and hold water.
As the temperature decreases, these polymers – known as hygroscopic – start to swell as they suck in water. This way, a lubricating layer of water forms naturally during icing. "Thus the ice adhesion is reduced greatly and the ice formed atop could be shed off by an action of wind," says the project's lead author Jianjun Wang, who presented the results at a recent American Physical Society meeting in Denver, Colorado. The approach is very different from conventional anti-icing methods that are often "energy-consuming, high-cost, and environmentally harmful," he adds.
(Click Here to acquire more information)












Surfaces with low adhesion to condensed water microdroplets
Surfaces with low adhesion to condensed water microdroplets

Condensed water droplets could coalesce and jump off the solid surfaces before icing occurs if solid surfaces are appropriately designed. Thus there is no freezable water on solid surfaces. The primarily energy barrier for the coalescence and jumping to happen is the adhesion of solid surfaces to condensed water microdrops. By investigating the mechanism of adhesion between condensed water microdroplets and solid surfaces, we realize that condensed water microdroplets jump away from the solid surfaces under low external energy before nucleating occurs.






Surfaces with controllable ice adhesion
Surfaces with controllable ice adhesion

At high supercooling (e.g. -40 ℃or even lower), icing on the cold surface is unavoidable. By investigating the mechanism of adhesion between ice and solid substrates, we can achieve that the ice formed atop of a solid surface slides away under its gravity or an action of natural wind.






Bioinspired anti-icing surfaces
Bioinspired anti-icing surfaces

In polar region and desert, the temperature drops down as low as -50 ℃. Creatures such as polar fish and winter geometridae can survive in these severe cold areas. We constructed bioinspired anti-icing surfaces by investigating the mechanisms of these creatures in resisting the harsh cold.












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2019 papers
2018 papers
2017 papers
2016 papers
2015 papers
2014 papers
2013 papers
2012 papers
2011 papers
2010 papers
Before 2010 papers







2019 papers
[1] Han Xue, Youhua Lu, Hongya Geng, Bin Dong, Shuwang Wu, Qingrui Fan, Zhen Zhang, Xiaojun Li, Xin Zhou* and Jianjun Wang*, "Hydroxyl Groups on the Graphene Surfaces Facilitate Ice Nucleation" JOURNAL OF PHYSICAL CHEMISTRY LETTERS, 2019, 2458-2462
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[2] Shenglin Jin, Lingkang Yin, Bin Kong, Shuwang Wu, Zhiyuan He, Han Xue, Zhang Liu, Qi Cheng, Xin Zhou* and Jianjun Wang*, "Spreading fully at the ice-water interface is required for high ice recrystallization inhibition activity" SCIENCE CHINA CHEMISTRY, 2019, 909-915.
?
[3] Zhiyuan He, Pai Liu, Shizhong Zhang, Jie Yan, Mengni Wang, Zhengxu Cai* and Jianjun Wang*, "A Freezing-Induced Turn-On Imaging Modality for Real-Time Monitoring of Cancer Cells in Cryosurgery" ANGEWANDTE CHEMIE INTERNATIONAL EDITION, 2019, 3834-3837
?
[4] Shuwang Wu, Jinger Zang, Shenglin Jin, Zuowei Wang, Jianping Wang,Yefeng Yao, Zhiyuan He* and Jianjun Wang*, "Heterogeneous ice nucleation correlates with bulk-like interfacial water" SCIENCE ADVANCES, 2019, 9825
?
[5] Qi Cheng, Kai Liu, Han Xue, Bingchen Huo, Shenglin Jin* ,Xin Zhou* and Jianjun Wang*, "Modifying Surfaces with the Primary and Secondary Faces of Cyclodextrins To Achieve a Distinct Anti-icing Capability" LANGMUIR, 2019, 5176-5182
?
[6] Bin Xue, Lishan Zhao, Xuehua Qin, Meng Qin, Jiancheng Lai, Wenmao Huang, Hai Lei, Jianjun Wang, Wei Wang, Ying Li and Yi Cao, "Bioinspired Ice Growth Inhibitors Based on Self-Assembling Peptides" ACS MACRO LETTERS, 2019, 1383-1390
?
[7] Muhammad Sohail, Binish Ashfap, Iqra Azeem, Amir Faisal, Sema Yiyit Dogan, Jianjun Wang, Hatice Duran, Basit Yameen, "A facile and versatile route to functional poly surfaces via UV-curable coatings" REACTIVE AND FUNCTIONAL POLYMERS, 2019, 104366
?
[8] Xin Xu, Luofu Liu, Hongya Geng, Jianjun Wang, Jiajia Zhou, Ying Jiang and Masao Doi, "Directional freezing of binary colloidal suspensions:a model for size fractionation of graphene oxide" SOFT MATTER, 2019, 243-251
?
[9] Chongqin Zhua, Yurui Gaoc, Weiduo Zhu, Jian Jiang, Jie Liuf, Jianjun Wang, Joseph S.Franciscoa, and Xiao Cheng Zeng, "Direct observation of 2-dimensional ices on different surfaces near room temperature without confinement", PNAS, 2019, 16723-16728
?
[10] Huige Yang, Yunhe Diao, Beili Huang, Kaiyong Li and Jianjun Wang, "Metal–catechol complexes mediate ice Nucleation", CHEM COMM, 2019, 6413-6416
?
[11] Guoying Bai, Dong Gaoxin, Zhang Liu, Zhou* and Jianjun Wang*, "Probing the critical nucleus size for ice formation with graphene oxide nanosheets", NATURE, 2019, 437-441
?
[12] Nana Han, Kai Liu , Xinping Zhang, Meng Wang, Pan Du, Zhaohui Huang, Daojin Zhou, Qian Zhang , Tengfei Gao, Yin Jia, Liang Luo, Jianjun Wang, Xiaoming Sun, "Highly ef?cient and stable solar-powered desalination by tungsten carbide nanoarray ?lm with sandwich wettability" SCIENCE BULLETIN, 2019, 391-399.












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Home
Latest News APS March Meeting
BBC Report
Research Interests
Selected Publications 2019 papers
2018 papers
2017 papers
2016 papers
2015 papers
2014 papers
2013 papers
2012 papers
2011 papers
2010 papers
Before 2010 papers
Group Members Professor Prof. Dr. Jianjun Wang
Associate professor Zhiyuan He
Assistant professor Jianyong Lv
Shenglin Jin
Post-docs Lishan Zhao
Zhang Liu
Ph.D candidates Qingrui Fan
Han Xue
Habib Md Ahsan
Linhai Li
Shizhong Zhang
Junqiang Mao
Thomas Odey Magu
Alumni Kaiyong Li
Jing Chen
Qiaolan Zhang
Dapeng Cui
Renmei Dou
Yifanzhang
Mingzhe Shao
Huige Yang
Zhenqi Liu
Declan Morris
Kai Liu
Yaling Wang
Jie Liu
Hongya Geng
Lingkang Yin
Guoying Bai
Shuwang Wu
Qian Guo
Yuankai Jin

Group Activities
中文







单篇全文显示
[1] Han Xue, Youhua Lu, Hongya Geng, Bin Dong, Shuwang Wu, Qingrui Fan, Zhen Zhang, Xiaojun Li, Xin Zhou* and Jianjun Wang*, "Hydroxyl Groups on the Graphene Surfaces Facilitate Ice Nucleation" JOURNAL OF PHYSICAL CHEMISTRY LETTERS, 2019, 2458-2462
?
[2] Shenglin Jin, Lingkang Yin, Bin Kong, Shuwang Wu, Zhiyuan He, Han Xue, Zhang Liu, Qi Cheng, Xin Zhou* and Jianjun Wang*, "Spreading fully at the ice-water interface is required for high ice recrystallization inhibition activity" SCIENCE CHINA CHEMISTRY, 2019, 909-915.
?
[3] Zhiyuan He, Pai Liu, Shizhong Zhang, Jie Yan, Mengni Wang, Zhengxu Cai* and Jianjun Wang*, "A Freezing-Induced Turn-On Imaging Modality for Real-Time Monitoring of Cancer Cells in Cryosurgery" ANGEWANDTE CHEMIE INTERNATIONAL EDITION, 2019, 3834-3837
?
[4] Shuwang Wu, Jinger Zang, Shenglin Jin, Zuowei Wang, Jianping Wang,Yefeng Yao, Zhiyuan He* and Jianjun Wang*, "Heterogeneous ice nucleation correlates with bulk-like interfacial water" SCIENCE ADVANCES, 2019, 9825
?
[5] Qi Cheng, Kai Liu, Han Xue, Bingchen Huo, Shenglin Jin* ,Xin Zhou* and Jianjun Wang*, "Modifying Surfaces with the Primary and Secondary Faces of Cyclodextrins To Achieve a Distinct Anti-icing Capability" LANGMUIR, 2019, 5176-5182
?
[6] Bin Xue, Lishan Zhao, Xuehua Qin, Meng Qin, Jiancheng Lai, Wenmao Huang, Hai Lei, Jianjun Wang, Wei Wang, Ying Li and Yi Cao, "Bioinspired Ice Growth Inhibitors Based on Self-Assembling Peptides" ACS MACRO LETTERS, 2019, 1383-1390
?
[7] Muhammad Sohail, Binish Ashfap, Iqra Azeem, Amir Faisal, Sema Yiyit Dogan, Jianjun Wang, Hatice Duran, Basit Yameen, "A facile and versatile route to functional poly surfaces via UV-curable coatings" REACTIVE AND FUNCTIONAL POLYMERS, 2019, 104366
?
[8] Xin Xu, Luofu Liu, Hongya Geng, Jianjun Wang, Jiajia Zhou, Ying Jiang and Masao Doi, "Directional freezing of binary colloidal suspensions:a model for size fractionation of graphene oxide" SOFT MATTER, 2019, 243-251
?
[9] Chongqin Zhua, Yurui Gaoc, Weiduo Zhu, Jian Jiang, Jie Liuf, Jianjun Wang, Joseph S.Franciscoa, and Xiao Cheng Zeng, "Direct observation of 2-dimensional ices on different surfaces near room temperature without confinement", PNAS, 2019, 16723-16728
?
[10] Huige Yang, Yunhe Diao, Beili Huang, Kaiyong Li and Jianjun Wang, "Metal–catechol complexes mediate ice Nucleation", CHEM COMM, 2019, 6413-6416
?
[11] Guoying Bai, Dong Gaoxin, Zhang Liu, Zhou* and Jianjun Wang*, "Probing the critical nucleus size for ice formation with graphene oxide nanosheets", NATURE, 2019, 437-441
?
[12] Nana Han, Kai Liu , Xinping Zhang, Meng Wang, Pan Du, Zhaohui Huang, Daojin Zhou, Qian Zhang , Tengfei Gao, Yin Jia, Liang Luo, Jianjun Wang, Xiaoming Sun, "Highly ef?cient and stable solar-powered desalination by tungsten carbide nanoarray ?lm with sandwich wettability" SCIENCE BULLETIN, 2019, 391-399.












网站地图
Home
Latest News APS March Meeting
BBC Report
Research Interests
Selected Publications 2019 papers
2018 papers
2017 papers
2016 papers
2015 papers
2014 papers
2013 papers
2012 papers
2011 papers
2010 papers
Before 2010 papers
Group Members Professor Prof. Dr. Jianjun Wang
Associate professor Zhiyuan He
Assistant professor Jianyong Lv
Shenglin Jin
Post-docs Lishan Zhao
Zhang Liu
Ph.D candidates Qingrui Fan
Han Xue
Habib Md Ahsan
Linhai Li
Shizhong Zhang
Junqiang Mao
Thomas Odey Magu
Alumni Kaiyong Li
Jing Chen
Qiaolan Zhang
Dapeng Cui
Renmei Dou
Yifanzhang
Mingzhe Shao
Huige Yang
Zhenqi Liu
Declan Morris
Kai Liu
Yaling Wang
Jie Liu
Hongya Geng
Lingkang Yin
Guoying Bai
Shuwang Wu
Qian Guo
Yuankai Jin

Group Activities
中文







2018 papers
[1] Yifan Zhang,Kai Liu,Kaiyong Li,Voytek Gutowski,Yuan Yinand Jianjun Wang, Fabrication of Anti-Icing Surfaces by Short α?Helical Peptides. ACS Applied Material Interfaces 2018, 10, 1957-1962, DOI: 10.1021/acsami.7b13130
?
[2] Shenglin Jin, Jie Liu, Jianyong Lv, Shuwang Wu and Jianjun Wang, Interfacial Materials for Anti-Icing: Beyond Superhydrophobic Surfaces, Surface Chemistry, Chemistry-An Asian Journal, Focus Review. 2018, 13, 1406 – 1414, DOI:10.1002/asia.
?
[3] Zhiyuan He,Kai Liu and Jianjun Wang,Bioinspired Materials for Controlling Ice Nucleation, Growth and Recrystallization, Accounts of Chemical Research. 2018, 51, 1082?1091, DOI: 10.1021/acs.accounts.7b00528












网站地图
2019 papers
2018 papers
2017 papers
2016 papers
2015 papers
2014 papers
2013 papers
2012 papers
2011 papers
2010 papers
Before 2010 papers







2017 papers
[1]Zhenqi Liu,Zhiyuan He,Jianyong Lv,Yuankai Jin,Shuwang Wu,Guangming Liu,Feng ZhouandJianjun Wang, "Ion-specific ice propagation behavior on polyelectrolyte brush surfaces"RCS Adv.2017, 7, 840-844.

[2]Hongya Geng, Xing Liu,Guosheng Shi, Guoying Bai, Ji Ma, Jingbo Chen, Zhuangyuan Wu, Yanlin Song, Haiping Fang,Jianjun Wang, "Graphene oxide restricts growth and recrystallization of ice crystals"Angew Chem Int Ed Engl.2017, 56, 997 –1001

[3]Zhichao Zhu, Junfeng Xiang,Jianjun Wang, and Dong Qiu, "Effect of Polyvinyl Alcohol on Ice Formation in the Presence of a Liquid/Solid Interface"langmuir2017, 33, 191−196

[4] Yaling Wang, Yi Yao, Shuwang Wu, Qunyang Li, Jianyong Lv,Juanjun Wang, and Lei Jiang, " Bioinspired Solid Organogel Materials with a Regeneralbe Sacrificial Alkane Surface Layer"Advanced Materials,2017, 29, **.

[5]Shuwang Wu, Chongqin Zhu, Zhiyuan He, Han Xue, Qingrui Fan, Yanlin Song, Joseph S. Francisc, Xiao Cheng Zeng, andJianjun Wang,"Ion-speci?c ice recrystallization provides a facileapproach for the fabrication of porous materials",Nature communication, 2017,8, 15154.

[6]Guoying Bai, Zhiping Song, Hongya Geng, Dong Gao, Kai Liu, Shuwang Wu, Wei Rao, Liangqia Guo, andJianjun Wang,"Oxidized Quasi-Carbon Nitride Quantum Dots Inhibit Ice Growth",Adv. Mater. 2017, **

[7] Yuankai Jin, Zhiyuan He, Qian Guo, Jianjun Wang, "Control of Ice Propagation via Polyelcetrolyte Multilayer Coating",Angew Chem Int Ed Engl.2017. DOI:10.1002/anie.R1.

[8]Hongya geng, Bowen Yao, Jiajia Zhou, Kai Liu, Guoying Bai, Wenbo Li, Yanlin Song, Gaoquan Shi, Masao Doi, andJianjun Wang. "Size Fractionation of Graphene Oxide Nanosheets via Controlled Directional Freezing.J. Am. Chem. Soc.,2017,139,12517–12523.

[9]Zhiyuan He, Liuchun Zheng, Zhenqi Liu, Shenglin Jin, Chuncheng Li,and Jianjun Wang."Inhibition of Heterogeneous Ice Nucleation by Bioinspired Coatings of Polyampholytes"ACS Appl. Mater. Interfaces,2017,9, 30092–30099


[10]Shuwang Wu, Linhai Li, Han Xue, Kai Liu, Qingrui Fan, Guoying Bai, and Jianjun Wang.Size Controllable, Transparent and Flexible 2D Silver Meshes Using Recrystallized Ice Crystals as Templates. ACS nano. 2017, DOI: 10.1021/acsnano.7b03821.

[11]GuoyingBai, Dong Gao, and Jianjun Wang. "Control of ice growth and recrystallization by sulphur-doped oxidized quasi-carbon nitride quantum dots."carbon2017.

[12] Jie Liu, Chongqin Zhu, Kai Liu, Ying Jiang, Yanlin Song, Joseph S. Francisco, Xiao Cheng Zeng, and Jianjun Wang. "Distinct ice patterns on solid surfaces with various wettabilities" PNAS, doi/10.1073/pnas..Highlighted by Nature.


[13] Jianyong Lv, Xi Yao, Yongmei Zheng, Jianjun Wang, Lei Jiang. "Antiadhesion Organogel Materials: From Liquid to Solid"Adv. Mater. 2017, **

[14]Yifan Zhang, Kai Liu, Kaiyong Li, Voytek Gutowski, Yuan Yin, and Jianjun Wang, "Fabrication of Anti-Icing Surfaces by Short α-Helical Peptides",ACS Appl. Mater. Interfaces, Article ASAP











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