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华南理工大学研究生导师简介-方志强

本站小编 Free考研网/2019-05-05

更新日期:2018年8月31日
姓 名 方志强 性 别 男
出生年月 1984年12月 籍贯 浙江义乌市
民 族 汉族 政治面貌 党员
最后学历 博士研究生 最后学位 工学博士
技术职称 副研究员 导师类别 硕导
行政职务Email mszhqfang@scut.edu.cn
工作单位 轻工科学与工程学院 邮政编码 510640
通讯地址 381 No, Wushan RD, Tianhe district
单位电话 **


个人简介
工学博士,副研究员,硕士生导师,入选广州市珠江科技新星。2014年12月博士毕业于华南理工大学制浆造纸工程专业。2012年9月进入美国马里兰大学材料科学与工程系做访问交流。2015年4月以II类博士后身份进入华南理工大学光电所从事纸基薄膜晶体管的研究;2017年5月进入轻工科学与工程学院从事纤维素基材料的基础理论和应用研究。
主持国家级项目1项,省部级项目3项,作为骨干成员参加国家重点研发计划2项,广东省科技计划项目1项。在Chemical Reviews, Nano Letters, Energy and Environmental Science, ACS Nano等高水平国际期刊发表学术论文74篇,其中SCI收录论文59篇,3篇ESI高被引论文,总引用次数1800(Google citation)。申请发明专利20件,其中美国专利2件,获授权专利3件。参编英文专著2部。曾获2016年华南理工大学优秀博士学位论文,“人保杯”第五届中国大学生高分子材料创新创业大赛优秀指导老师,广东第六届大学生材料创新大赛优秀指导老师,2014中国电声行业科技进步一等奖(排名第3),《中国造纸》2016年度“金泉磨片杯”优秀论文优秀奖。2017年广东省造纸学会科技奖论文一、二等奖。
工作经历
2018/03-至今,华南理工大学,轻工科学与工程学院,副研究员,硕士生导师
2017/04-2018/02,华南理工大学,轻工科学与工程学院,助理研究员,硕士生导师
2015/04-2017/03,华南理工大学,材料科学与工程学院,博士后,导师:宁洪龙
2012/09-2013/12,美国马里兰大学,材料科学与工程系,联合培养博士生,导师:胡良兵
教育经历
2010/09-2014/12, 华南理工大学,轻工与食品学院,工学博士,导师:柴欣生
2006/09-2009/06,华南理工大学,轻工与食品学院,工学硕士,导师:陈港
2002/09-2006/06,陕西科技大学,造纸工程学院,工学学士,导师:王建
获奖、荣誉称号
(6)2017年广东省造纸学会科技奖论文一、二等奖。2017.12
(5)“人保杯”第五届中国大学生高分子材料创新创业大赛优秀指导老师。2017.10
(4)2016年华南理工大学优秀博士学位论文。2017. 9
(3)《中国造纸》2016年度“金泉磨片杯”优秀论文优秀奖。2017.1
(2)广东第六届大学生材料创新大赛,优秀指导老师。2016.11
(1)2014中国电声行业科技进步一等奖,排名第三。2015.12
研究领域
纤维素基材料的基础理论和应用研究。纳米纤维素的制备、纸基透明薄膜材料的设计、制备、性能调控与优化及其器件应用。
科研项目
主持科研项目8项,其中国家级1项,省部级2项,实验室开放基金3项,其他2项。
(1)国家自然科学基金青年基金(**),
(2)广东省自然科学基金-博士启动(2017A**),
(3)中国博士后基金面上项目一等((2015M570716),
(4)制浆造纸工程国家重点实验室基金(201709),
(5)金属材料高效近净成形技术与装备教育部重点实验室开放基金(**),
(6)制浆造纸科学与技术教育部/山东省重点实验室开放基金资助(KF201619),
(7)中央高校基本科研业务费(2015ZM156),
(8)华南理工大学制浆造纸工程国家重点实验室自主创新研究基金青年项目(2015QN01)。
参与项目2项,其中国家级1项,省部级1项
(1)2016年国家重点研发计划(2016YFB**),
(2)2018年国家重点研发计划;
(3)2016广东省科技计划项目(2016B**),排名第六。
人才计划项目
2018年珠江科技新星
发表论文
1.第一或通讯作者论文(#为共同第一作者,﹡通讯作者)
[29] 方志强,刘映尧,邝其通,胡稳,李博,陈港、况宇迪. 基于铸涂法的高透明纳米纸的高效制备工艺. 造纸科学与技术[J]. 2018, 37(2): 1-5.
[28] 明思逸, 陈港, 严俊芳, 何嘉皓, 朱家添, 刘映尧, 方志强* . 透明阻燃纳米纤维素/黏土复合薄膜的研究. 材料科学与工程. 2018, 接受.
[27] Hu W, Chen G, Liu Y, Liu Y, Li B, Fang Z*. Transparent and hazy all-cellulose composite films with superior mechanical properties. ACS Sustainable Chemistry & Engineering. 2018, 6 (5):6974–6980. (IF:6.140, JCR:2区 Top期刊)
[26] Yao R, Zheng Z, Xiong M, Zhang X, Li X, Ning H*, Fang Z*, Xie W, Lu X, Peng J. Low-temperature fabrication of sputtered high-k HfO2 gate dielectric for flexible a-IGZO thin film transistors. Applied Physics Letters. 2018, 112, 103503. (IF:3.495, JCR:2区 Top期刊)
[25] Yao R, Zheng Z, Fang Z*, Zhang H, Zhang X, Ning H, Wang L, Peng J, Xie W, Lu X. High-Performance Flexible Oxide TFTs: Optimization of a-IGZO Film by Modulating Voltage Waveform of Pulse DC Magnetron Sputtering without Post Treatments. Journal of Materials Chemistry C, 2018, 2018,6, 2522-2532(IF:5.256, JCR:1区 Top期刊)
[24] Zhou P, Zhu P, Chen G, Liu Y, Kuang Y, Liu Y, Fang Z*. A study on the transmission haze and mechanical properties of highly transparent paper with different fiber species. Cellulose, 2018 , 25 (3) :2051-2061 (IF:3.195, JCR:2区 Top期刊)
[23] 明思逸,陈港,严俊芳,何嘉皓,方志强 *,胡稳。纳米纤维素分散的高稳定性单片层黏土分散液的制备及其在透明柔性薄膜的应用. 复合材料学报. 2018. DOI:10.13801/j.cnki.fhclxb.**.007.
[22] Zhu P, Kuang Y, Chen G, Liu Y, Peng C, Hu W, Zhou P, Fang Z*. Starch/polyvinyl alcohol (PVA) coated painting paper with exceptional organic solvent barrier properties for art preservation purposes. Journal of Materials Science, 2018 , 53 (7) :5450-5457 (IF: 2.599, JCR 2区 Top期刊)
[21] 陈港、胡稳、朱朋辉、刘宇、彭超、方志强*.高透明羧甲基纤维素/纤维素纤维复合薄膜的制备及其力学性能研究. 复合材料学报. 2018. DOI:10.13801/j.cnki.fhclxb.**.002.
[20] Ming S, Chen G, He J, Kuang Y, Liu Y, Tao R, Ning H, Zhu P, Liu Y, Fang Z*. Highly transparent and self-extinguishing nanofibrillated cellulose-monolayer clay nanoplatelet hybrid films. Langmuir, 2017 33 (34): 8455–8462 (IF: 3.833, JCR 2区 Top期刊)
[19] Ning H, Zeng Y, Kuang Y, Zheng Z, Zhou P, Yao R, Zhang H, Bao W, Chen G, Fang Z*., Peng J. Room-Temperature Fabrication of High-Performance Amorphous In–Ga–Zn–O/Al2O3 Thin-Film Transistors on Ultrasmooth and Clear Nanopaper. ACS Applied Materials and Interfaces, 2017, 9 (33): 27792–27800 (IF: 7.145, JCR 1区 Top期刊)
[18] Fang Z, Kuang Y, Zhou P, Ming S, Zhu P, Liu Y, Ning H, Chen G. Programmable Shape Recovery Process of Water-Responsive Shape-Memory Poly(vinyl alcohol) by Wettability Contrast Strategy. ACS Applied Materials & Interfaces. 2017. 9 (6): 5495–5502. (IF:7.145, JCR:1区Top)
[17] Lin D, Kuang Y, Chen G, Kuang Q, Wang C, Zhu P, Peng C, Fang Z*. Enhancing moisture resistance of starch-coated paper by improving the film forming capability of starch film. Industrial Crops & Products. 2017, 100: 12-18 (IF:3.449, JCR:1区Top)
[16] Chen G, Zhu P, Kuang Y, Liu Y, Lin D, Peng C, Wen Z, Fang Z*. Durable superhydrophobic paper enabled by surface sizing of starch-based composite films. Applied Surface Science, 2017, 409: 45-51. (IF: 3.15, JCR 2区 Top期刊)
[15] Ming S, Chen G, Wu Z, Su L, He J, Kuang Y, Fang Z*. Effective dispersion of aqueous clay suspension using carboxylated nanofibrillated cellulose as dispersant. RSC Advances. 2016. 6(44), 37330-37336. (IF:3.289, JCR:2区)
[14] Kuang Y, Chen G, Ming S, Wu Z, Fang Z*. Solvent resistance of 2,2,6,6-tetramethylpiperidine-1-oxyl (TEMPO) treated cellulose nanofiber film for flexible electronics. Cellulose 2016, 23 (3), 1979-1987. (IF:3.195, JCR:2区 Top期刊)
[13] Zhu H#, Fang Z#, Wang Z, Dai J, Yao Y, Shen F, Preston C, Wu W, Peng P, Jang N, Yu Q, Yu Z, Hu L. Extreme Light Management in Mesoporous Wood Cellulose Paper for Optoelectronics. ACS Nano. 2016, 10 (1): 1369-1377. (IF:13.334, JCR:1区Top)
[12] Chen J#, Han X#, Fang Z#, Cheng F, Zhao B, Lu P, Li J, Dai J, Lacey S, Elspas, R, Jiang Yu, Liu D, Hu L. Rapid Dissolving-Debonding Strategy for Optically Transparent Paper Production. Scientific Reports. 2015; 5. (IF:5.228, JCR:3区)
[11] Kuang Y, Chen G, Fang Z*. A Facile Approach to Evaluate Thermal Insulation Performance of Paper Cups. International Journal of Polymer Science. 2015, online. (IF:1.0, JCR:4区)
[10] Fang Z, Zhu, H,Bao, W,Preston, C,Liu, Z,Dai, J,Li, Y,Hu, L et al. Highly transparent paper with tunable haze for green electronics. Energy & Environmental Science. 2014; 7(10):3313-3319. (IF:25.427, JCR:1区Top)
[9] Bao, W#,Fang, Z#,Wan, Jiayu,Dai, Jiaqi,Zhu, Hongli,Han, Xiaogang,Yang, Xiaofeng,Preston, Colin,Hu, Liangbing. Aqueous Gating of van der Waals Materials on Bilayer Nanopaper,ACS Nano,2014,8(10):10606-10612. (IF:13.334, JCR:1区Top)
[8] Fang Z, Zhu H, Preston C,Hu L. Development, application and commercialization of transparent paper. Translational Materials Research. 2014; 1(1):015004-015018.
[7] Fang Z, Zhu H,Yuan Y,Ha D,Zhu, S,Preston, C,Chen, Q,Li, Y,Han, X,Lee, S,Chen, G,Li, T,Munday, J,Huang, J,Hu, L. Novel nanostructured paper with ultrahigh transparency and ultrahigh haze for solar cells. Nano letters. 2014; 14(2): 765-773. (ESI高频引用论文) (IF:13.779, JCR:1区Top)
[6] Fang Z, Zhu H, Li Y,Liu Z,Dai J,Preston C,Garner S,Cimo P,Chai, X,Chen, G,Hu, L. Light Management in Flexible Glass by Wood Cellulose Coating,Scientific Reports,2014,4. (IF:5.228, JCR:3区)
[5] Wang J#, Fang Z#, Zhu Hongli, Gao Binyu, Garner Sean, Cimo Pat, Barcikowski Zachary, Mignerey A, Hu L. Flexible, Transparent, and Conductive Defrosting Glass. Thin Solid Films 2014, 556, 13-17. (IF:1.761, JCR:3区)
[4] Preston C#, Fang Z#, Murray, J,Zhu, H,Dai, J,Munday, J N.,Hu, L. Silver nanowire transparent conducting paper-based electrode with high optical haze. Journal of Materials Chemistry C. 2014; 2(7): 1248-1254. (IF:5.061, JCR:1区Top)
[3] Zhu H#, Fang Z# Preston C,Li Y,Hu, L. Transparent paper: fabrications, properties, and device applications. Energy & Environmental Science. 2014; 7(1): 269-287. (IF:25.427, JCR:1区Top)
[2] Fang Z, Zhu H, Preston C, Han X, Li Y, Lee S, Chai X, Chen G, Hu L. Highly transparent and writable wood all-cellulose hybrid nanostructured paper. Journal of Materials Chemistry C. 2013; 1(39): 6191-6197. (IF:5.061, JCR:1区Top)
[1] Fang Z, Chen G, Liu Y, Chai X. Application of chitosan as a barrier coating on coated ivory board. Applied Mechanics and Materials. 2012, 200, 180-185.

2 会议论文
[1] 方志强、陈港、明思逸、何嘉皓、严俊芳、朱家添、张佳明. 具有自熄灭功能的柔性透明纳米纤维素/黏土纳米复合薄膜沉底的研究. 2017第一届天然材料研究与应用研讨会论文集,2017.11.10,中国,海口

3 既非第一作者又非通讯作者论文
[44] Tao R, Fang Z, Zhang J, Ning H, Chen J, Yang C, Zhou Y, Yao R, Lin W, Peng J. Critical Impact of Solvent Evaporation on the Resolution of Inkjet Printed Nanoparticles Film. ACS applied materials & interfaces. 2018, accepted.
[43] 陈港、彭从星、况宇迪、曾勇、朱朋辉、姚日晖、宁洪龙*、方志强. 纳米纸衬底的制备、性能及其在柔性电子器件中的应用. 材料工程. 2018, 46 (6): 1-10.
[42] Yao R, Zhang H, Fang Z, Ning H, Zheng Z, Li X, Zhang X, Cai W, Lu X, Peng J. High conductivity and transparent aluminum-based multi-layer source/drain electrodes for thin film transistors. Journal of Physics D: Applied Physics. 2018, 6(51): 065103.
[41] Hu S, Lu K, Ning H, Fang Z, Liu X, Xie W, Yao R, Zou J, Xu M, Peng J. Effect of ITO serving as a barrier layer for Cu electrodes on Performance of a-IGZO TFT. IEEE Electron Device Letters. 2018, DOI: 10.1109/LED.2018.**
[40] Ha D, Fang Z, Zhitenev N. Paper in Electronic and Optoelectronic Devices [J]. Advanced Electronic Materials, 2018 4(5): **. https://doi.org/10.1002/aelm.**.
[39] Guo Y, Fang Z, Du M, Yang L, Shao L, Zhang X, Li L, Shi J, Tao J, Wang J, Li H, Fang Y. Flexible and Biocompatible Nanopaper-based Electrode Arrays for Neural Activity Recording [J]. Nano Research, 2018. DOI: https://doi.org/10.1007/s12274-018-2005-0.
[38] Ning H, Zeng Y, Zheng Z, Zhang H, Fang Z, Yao R, Hu S, Li X, Peng J, Xie W, Lu X. Facile Room Temperature Routes to Improve Performance of IGZO Thin-Film Transistors by an Ultrathin Al2O3 Passivation Layer[J]. IEEE Transactions on Electron Devices, 2018, 65(2): 537-541.
[37] Peng J, Lu K, Hu S, Fang Z, Ning H, Wei J, Zhu Z, Zhou Y, Wang L, Yao R, Lu X. High Conductivity and Adhesion of Cu-Cr-Zr Alloy for TFT Gate Electrode[J]. Applied Sciences, 2017, 7(8): 820.
[36] Hu S, Lu K, Ning H, Zheng Z, Zhang H, Fang Z, Yao R, Xu M, Wang L, Lan L, Peng J, Lu X. High Mobility Amorphous Indium-Gallium-Zinc-Oxide Thin-Film Transistor by Aluminum Oxide Passivation Layer[J]. IEEE Electron Device Letters, 2017, 38(7): 879-882.
[35] Tao J, Fang Z, Zhang Q, Bao W, Zhu M, Yao Y, Wang Y, Dai J, Zhang A, Leng C, Henderson D, Wang Z, Hu L. Super‐Clear Nanopaper from Agro‐Industrial Waste for Green Electronics[J]. Advanced Electronic Materials, 2017, 3(5), **.
[34] Ning H, Zhou Y, Fang Z, Yao R, Tao R, Chen J, Cai W, Zhu Z, Yang C, Wei J, Wang L, Peng J. UV-Cured Inkjet-Printed Silver Gate Electrode with Low Electrical Resistivity. Nanoscale Research Letters, 2017, 12(1): 546
[33] Cai W, Zhu Z, Wei J, Fang Z, Ning H, Zheng Z, Zhou S, Yao R, Peng J, Lu X. A Simple Method for High-Performance, Solution-Processed, Amorphous ZrO2 Gate Insulator TFT with a High Concentration Precursor[J]. Materials, 2017, 10(8): 972.
[32] Yang C, Fang Z, Ning H, Tao R, Chen J, Chen J, Zhou Y, Zheng Z, Yao R, Wang L, Peng J, Song Y. Amorphous InGaZnO Thin Film Transistor Fabricated with Printed Silver Salt Ink Source/Drain Electrodes[J]. Applied Sciences, 2017, 7(8): 844.
[31] Zheng Z, Zeng Y, Yao R, Fang Z, Zhang H, Hu S, Li X, Ning L, Peng J, Xie W, Lu X. All-sputtered, flexible, bottom-gate IGZO/Al2O3 bi-layer thin film transistors on PEN fabricated by fully room temperature process[J]. Journal of Materials Chemistry C, 2017, 5, 7043-7050.
[30] Zeng Y, Fang Z, Ning H, Zhu F, Liu X, Tao R, Hu S, Yao R, Li Z, Xu M, Wang L, Lan L, Peng. Highly conductive AZO thin films obtained by rationally optimizing substrate temperature and oxygen partial pressure. Molecular Crystals and Liquid Crystals, 2017, 644(1), 190-196.
[29] Zeng Y, Ning H, Zheng Z, Zhang H, Fang Z, Yao R, Xu M, Wang L, Lan L, Peng J, Lu X. A room temperature strategy towards enhanced performance and bias stability of oxide thin film transistor with a sandwich structure channel layer[J]. Applied Physics Letters, 2017, 110(15): 153503.
[28] Tao R, Ning H, Fang Z, Chen J, Cai W, Zhou Y, Zhu Z, Yao R, Peng J. Homogeneous Surface Profiles of Inkjet-Printed Silver Nanoparticle Films by Regulating Their Drying Microenvironment[J]. The Journal of Physical Chemistry C, 2017, 121(16): 8992-8998.
[27] Ning H, Liu X, Zhang H, Fang Z, Cai W, Chen J, Yao R, Xu M, Wang L, Lan L, Peng J, Wang X, Zhang Z. Effect of Intrinsic Stress on Structural and Optical Properties of Amorphous Si-Doped SnO2 Thin-Film. Materials, 2017, 10(1): 24. (IF:2.728, JCR:2区)
[26] 陈港,林东瀚,方志强. 纳米纤维素复合纸基超级电容器的制备与性能[J]. 华南理工大学学报(自然科学版), 2017, ,(45)09, 118-127.
[25]陈港,张宝军,方志强,林东瀚.TEMPO氧化浆的返黄特性[J].大连工业大学学报,2017,36(03):175-179.
[24]林东瀚,陈港,方志强.纳米纤维素复合气凝胶超级电容器的制备与性能[J].造纸科学与技术,2017,36(01):28-35.
[23]陈港,王晨晨,严致远,方志强,朱朋辉.聚酰亚胺纤维纸基复合材料的制备及性能[J].华南理工大学学报(自然科学版),2017,45(02):108-115.
[22]宁洪龙,曾勇,姚日晖,刘贤哲,陶瑞强,郑泽科,方志强,胡诗犇,陈建秋,蔡炜,徐苗,兰林锋,王磊,彭俊彪,李正操.室温生长AZO/Al2O3叠层薄膜晶体管性能研究[J].发光学报,2016,37(11):1372-1377.
[21] Ning H, Chen J, Fang Z, Tao R, Cai W, Yao R, Hu S, Zhu Z, Zhou Y, Yang C, Peng J. Direct Inkjet Printing of Silver Source/Drain Electrodes on an Amorphous InGaZnO Layer for Thin-Film Transistors. Materials. 2017, 10(1): 51. (IF:2.728, JCR:2区)
[20] Ning H, Tao R, Fang Z, Cai W, Chen J, Zhou Y, Zhu Z, Zheng Z, Yao R, Xu M, Wang L, Lan L, Peng J, Direct patterning of silver electrodes with 2.4mum channel length by piezoelectric inkjet printing. Journal of Colloid and Interface Science. 2017, 487: 68~72. (IF:3.782, JCR:2区)
[19] Liu X, Cai W, Chen J, Fang Z, Ning H, Hu S, Tao R, Zeng Y, Zheng Z, Yao R, Xu M, Wang L, Lan L, Peng J. A novel nondestructive testing method for amorphous Si–Sn–O films. Journal of Physics D: Applied Physics. 2016 49(50): 505102. (IF:2.722, JCR:2区)
[18] Wang Q, Tang A, Liu Y, Fang Z, Fu S. A Tunable Photoluminescent Composite of Cellulose Nanofibrils and CdS Quantum Dots. Nanomaterials. 2016, 6(9): 164. (IF:2.690, JCR:2区)
[17] Tang A, Liu Y, Wang Q, Chen R, Liu W, Fang Z, Wang L. A new photoelectric ink based on nanocellulose/CdS quantum dots for screen-printing. Carbohydrate Polymers. 2016, 148: 29~35. (IF:4.219, JCR:2区Top)
[16] Zhu H, Luo W, Ciesielski PN, Fang Z, Zhu J, Henriksson G, Himmel ME, Hu L. Wood-derived materials for green electronics, biological devices, and energy applications. Chemical Reviews. 2016, 116(16): 9305-9374. (IF:37.369, JCR:1区Top)
[15] Hu S, Fang Z, Ning H, Tao R, Liu X, Zeng Y, Yao R, Huang F, Li Z, Xu M, Effect of Post Treatment for Cu-Cr Source/Drain Electrodes on a-IGZO TFTs. Materials 2016, 9 (8), 623. (JCR: 2 区, IF:2.728)
[14] 姚志明,陈港,方志强,况宇迪,邝其通,许雅希,张宝军. 均质与超声法制备NFC及其纳米纸性能研究. 中国造纸,2016,35(7):19-24。
[13] 林东瀚,陈港,方志强。环境相对湿度与瓦楞原纸和静电复印纸机械性能相关性的研究. 造纸科学与技术,2015,0(6):73-78
[12] Wu W, Tassi N, Zhu H, Fang Z, Hu L. Nanocellulose-based Translucent Diffuser for Optoelectronic Device Applications with Dramatic Improvement of Light Coupling. ACS applied materials & interfaces 2015, 7(8): 26860-26864. (IF:7.145, JCR:1区Top)
[11] Li Y, Zhu H, Shen F, Wan J, Lacey S, Fang Z, Dai H, Hu L. Nanocellulose as green dispersant for two-dimensional energy materials. Nano Energy 2015, 13: 346-354. (IF:11.553, JCR:1区Top)
[10] Li Y, Zhu H, Zhu S, Wan J, Liu Z, Vaaland O, Lacey S, Fang Z, Dai H, Li T, Hu L. Hybridizing Wood Cellulose and Graphene Oxide Toward High-Performance Fibers. NPG Asia Materials, 2015, 7, e150. (IF:8.772, JCR:1区Top)
[9] Ha D, Murray J, Fang Z, Hu L, Munday J. Advanced Broadband Antireflection Coatings Based on Cellulose Microfiber Paper. Photovoltaics, IEEE Journal of. 2015; 5(2):577-583. (JCR: 2 区,IF:3)
[8] Zhu H, Narakathu B, Fang Z, Aijazi, T, Joyce, M, Atashbar M, Hu L. A gravure printed antenna on shape-stable transparent nanopaper. Nanoscale. 2014; 6(15):9110-9115. (JCR: 1 区,IF:7.394)
[7] Zhu H, Wang H, Li Y, Bao W, Fang Z, Preston C, Barcikowski Z, Vaaland O, Ren Z, Hu L. Lightweight, conductive hollow Fibers from nature as sustainable electrode Materials for microbial energy Harvesting. Nano Energy 2014, 10:268-276 (JCR: 1 区,IF:10.325)
[6] Ha D, Fang Z, Hu L, Murray J. Paper-based Anti-reflection Coatings for Photovoltaics. Advanced Energy Materials. 2014, 4(9):**.(JCR: 1 区,IF:16.146)
[5] Zhu H, Li Y, Fang Z, Xu J, Wan J, Dai J, Yang B, Hu L. Highly Thermally Conductive Papers with Percolative Layered Boron Nitride Nanosheets. ACS Nano. 2014; 8(4):3606-3613.(JCR: 1 区,IF:12.881)
[4] Li Y, Zhu H, Gu H, Dai H, Fang Z, Weadock J, Guo Z, Hu L. Strong transparent magnetic nanopaper prepared by immobilization of Fe3O4 nanoparticles in a nanofibrillated cellulose network. Journal of Materials Chemistry A 2013, 1, 15278-15283. (JCR: 1区,IF:7.441)
[3] Han X, Chen Y, Zhu H, Preston C, Wan J, Fang Z, Hu L. Scalable, printable, surfactant-free graphene ink directly from graphite. Nanotechnology 2013, 24(20), 205304. (JCR: 1区,IF:3.821)
[2] Jiang X, Chen G, Fang Z. The Application of Starch-Sodium Alginate Composite Coating on Transparent Paper for Food Packaging. Advanced Materials Research 2014, 893, 472-477.
[1] Zhu H, Xiao Z, Liu D, Li Y, Weadock J, Fang Z, Huang J, Hu L. Biodegradable transparent substrates for flexible organic-light-emitting diodes. Energy & Environmental Science 2013, 6(7), 2105-2111. (JCR: 1 区,IF:20.523)
其他论文情况详见:https://scholar.google.com/citations?hl=en&user=WPIPkmMAAAAJ&view_op=list_works&sortby=pubdate
出版专著和教材
1. Zhiqiang Fang, Amy Gong, Liangbing Hu. Chapter: Wood Cellulose paper for solar cells, Lignocellulosics: Valuable renewables for tailored functional materials and modern nanotechnology. Elsevier出版中
2. Gang Chen, Zhiqiang Fang*. Chapter: Application of Nanocellulose in Energy Materials and Devices, Nanocelluose: From Fundamentals to Advanced Materials. Wiley.
科研创新
1.陈港,蒋轩,方志强. 一种防油纸及其生产方法. 授权号:ZL**0.5.
2.陈港,张俊奇,方志强. 发光植物纤维及其制备方法(发明专利). 授权号:ZL**9.2.
3.方志强,陈港. 一种高光泽纸张的制备方法(发明专利). CN **0.
4.喻建军,方志强,陈港. 一种高光泽热敏纸及其生产方法(发明专利). 授权号:ZL**2.8.
5.方志强,明思逸,陈港. 一种黏土薄膜及其制备方法(发明专利). 申请号:CN**6.9.
6.方志强,陈港,刘宇,况宇迪,张俊奇. 一种具有钢筋混凝土结构的高强纤维素/木素复合材料及其制备方法(发明专利). 申请号:CN**9.6.
7.陈港,刘宇,方志强,况宇迪. 一种超强、超对齐的透明纸及其制备方法(发明专利). 申请号:CN**8.1.
8.方志强,陈港,况宇迪,张俊奇,邝其通. 一种高透明超平滑纳米纸及其快速制备方法(发明专利). 申请号:CN**1.
9.明思逸,陈港,方志强,况宇迪. 一种纳米纤维素/二维材料复合阻燃材料及其制备方法. 申请号:CN**3.9.
10.陈港,方志强,张俊奇. 一种平滑纸张的制备方法及其应用(发明专利). 申请号:CN**7.0.
11.陈港,明思逸,方志强,张俊奇. 一种纳米纤维素/黏土透明纳米复合材料及其制备方法. 申请号:CN**8.0
12.宁洪龙,曾勇,姚日晖,郑泽科,章红科,方志强,陈港,彭俊彪. 一种纳米纸衬底薄膜晶体管及其制备方法. 申请号:CN**9.2
13.Hu Liangbing, Fang Zhiqiang, Zhu Hongli. Scalable, highly transparent paper with microsized fiber (发明专利). 申请号:US 14/563,387, 2016.
14.Hu Liangbing, Fang Zhiqiang, Zhu Hongli. Super clear cellulose paper (发明专利)。申请号:US 15/225,178, 2018.
15.方志强,胡稳,刘宇,毛万博. 一种超耐折、高雾度、高透明纸及其制备方法(发明专利)。申请号:**4.9.
16.方志强,刘宇,胡稳,李博. 一种超耐折纳米纤维素薄膜及其制备方法(发明专利)。申请号:**9.7.
17.方志强,胡稳,陈港,刘宇,宁洪龙. 一种高耐折、超平滑、高雾度的透明全纤维素复合薄膜及其制备方法(发明专利)。申请号:**5.1.
18.方志强,胡稳,刘宇,陈港,宁洪龙. 一种耐水、透明纤维素基薄膜及其制备方法(发明专利)。申请号:**6.3.
19.方志强,刘宇,胡稳,陈港,宁洪龙. 一种耐水纳米纤维素薄膜及其方法(发明专利)。申请号:**8.2.
20.方志强,胡稳,刘宇,陈港,宁洪龙. 一种雾度可控的高透明纸及其制备方法(发明专利)。申请号:**1.2.
指导学生情况
(10)指导本科生获“广东大学生科技创新培育专项资金立项面上项目”。2018. 4
(9)指导本科毕业论文“纤维素/瓷土仿生纳米复合薄膜的研究”获轻工科学与工程学院本科优秀毕业论文。
(8)指导本科生毕业论文“木质纤维透明薄膜的构筑及其器件应用”获轻工科学与工程学院本科优秀毕业论文,华南理工大学本科优秀毕业论文。
(7)指导本科生获第十五届“挑战杯”中国银行全国大学生课外学术科技作品竞赛二等奖。2017.11
(6)指导本科生获“人保杯”第五届中国大学生高分子材料创新创业大赛一等奖。 2017.10
(5)指导本科生获2017年“光威杯”中国大学生高性能复合材料科技创新竞赛三等奖。2017.8
(4)指导本科生获第十四届“挑战杯”广东大学生课外学术科技作品竞赛一等奖。2017.6
(3)指导本科生获广东第六届大学生材料创新大赛二等奖。2016. 11
(2)2016百步梯攀登计划,优秀论文。2016.10
(1)指导本科生获“广东大学生科技创新培育专项资金立项重点项目”。2016. 4
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