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华东师范大学化学与分子工程学院导师教师师资介绍简介-余承忠

本站小编 Free考研考试/2021-01-16

余承忠 ****
化学与分子工程学院??????


导航
个人资料
研究方向
开授课程
科研项目
学术成果
荣誉及奖励







个人资料
部门: 化学与分子工程学院
毕业院校:
学位:
学历:
邮编:
联系电话:
传真:
电子邮箱: czyu@chem.ecnu.edu.cn
办公地址: 华东师范大学化学楼541室
通讯地址: 上海市东川路500号华东师范大学化学楼541室

教育经历

工作经历

个人简介
余承忠,教授,博士生导师

多年从事纳米功能材料的制备与性能研究,2002年获复旦大学博士学位,师从赵东元院士,论文被评为“全国优秀博士学位论文”;2005年复旦大学化学系教授,2010年澳大利亚昆士兰大学教授,任澳大利亚生物工程与纳米技术研究所课题组长;2018年并任华东师范大学化学系教授;目前已发表科研论文超过300篇,被引用次数超过21000次(Google Scholar),H-index 为73;在化学、材料学科顶级期刊(J. Am. Chem. Soc.; Angew. Chem.; Adv. Mater.; ACS Nano, Adv. Funct. Mater.)发表论文超过40篇;申请国际专利8项,国内专利15项,先后获得中国自然科学基金、科技部、教育部和上海市资助科研项目16项。先后获得澳大利亚研究基金会(ARC)基金资助11项,澳大利亚糖尿病协会基金一项,昆士兰癌症协会基金一项,宝钢-澳大利亚联合研发中心资助项目一项,昆士兰创新项目二项(Advance Queensland Innovation Partnership grant),以及澳大利亚羊毛与创新协会研究项目一项。


社会兼职
国际介观材料协会副主席(IMMA vice president)


研究方向
功能材料的设计制备及其应用于:
1、药物输送,免疫佐剂
2、绿色杀虫剂,绿色饲料
3、生物检测技术
4、水处理和能源


开授课程


科研项目
1、国家自然科学基金面上项目
2、上海市科委科技项目
3、校企合作项目



学术成果
代表性论文:
1.Liu, C; Huang, X. D.; Liu, J. Z.; Wang, J.; Chen, Z. B.; Luo, R.; Wang, C. H.; Li, J. S.; Wang, L. J.; Wan, J. J.; Yu, C. Z.A General Approach to Direct Growth of Oriented Metal-Organic Framework Nanosheets on Reduced Graphene Oxides. Adv. Sci.2020, 7, **.
2.Liu, C.; Wang, J.; Wan, J. J.; Cheng, Y.; Huang, R.; Zhang, C. Q.; Hu, W. L.; Wei, G. F.; Yu, C. Z.Amorphous Metal Organic Framework Dominated Nanocomposites with Both Compositional and Structural Heterogeneity for Oxygen Evolution. Angew. Chem. Int. Ed.2020, 59,3630–3637.
3.Wang, Y.; Tang, J.; Yang, Y. N.; Song, H.; Fu, J. Y.; Gu, Z. Y.; Yu, C. Z.Functional Nanoparticles with A Reducible Tetrasulfide Motif Upregulate mRNA Translation and Enhance Transfection in Hard-to-Transfect cells. Angew. Chem. Int. Ed.2020, 59,2695–2699.
4.Yu, R. T.; Huang, X. D.; Liu, Y.; Kong, Y. Q.; Gu, Z. Y.; Yang, Y.; Wang, Y.; Ban, W. H.; Song, H.; Yu, C. Z.Shaping Nanoparticles for Interface Catalysis: Concave Hollow Spheres via Deflation-Inflation Asymmetric Growth. Adv. Sci.2020, **.
5.Wang, Y.; Yu, C. Z.Emerging Concepts of Nanobiotechnology in mRNA Delivery. Angew. Chem. Int. Ed.2020, R1.
6.Fu, J. Y.; Jiao, J. Q.; Song, H.; Gu, Z. Y.; Liu, Y.; Geng, J.; Jack, K.; Du, A.; T, J.; Yu, C. Z.Fractal-in-A-Sphere: Confined Self-Assembly of Fractal Silica Nanoparticles. Chem. Mater.2020, 32, 1, 341–347.
7.Gu, Z. Y.; Liu, T. Q.; Tang, J.; Yang, Y. N.; Song, H.; Tuong, Z. K.; Fu, J. Y.; Yu, C. Z.Mechanism of Iron Oxide-Induced Macrophage Activation: the Impact of Composition and The Underlying Signaling Pathway. J. Am. Chem. Soc.2019, 141(15): 6122-6126.
8.Wang, Y.; Yang, Y. N.; Shi, Y. R.; Song, H.; Yu, C. Z.Antibiotic-Free Antibacterial Strategies Enabled by Nanomaterials: Progress and Perspectives. Adv. Mater.2019, **.
9.Li, H. M.; Guo, H. L.; Lei, C.; Liu, L.; Xu, L. Q.; Feng, Y. P.; Ke, J.; Fang, W.; Song, H.; Xu, C.; Yu, C. Z.; Long, X. Nanotherapy in Joints: Increasing Endogenous Hyaluronan Production by Delivering Hyaluronan Synthase 2. Adv. Mater.2019, 31, **.
10.Fu, J. Y.; Gu, Z. Y.; Liu, Y.; Zhang, J.; Song, H.; Yang, Y. N.; Yang, Y.; Noonan, O.; Tang, J.; Yu, C. Z.Bottom-Up Self-Assembly of Heterotrimeric Nanoparticles and Their Secondary Janus Generations. Chem. Sci.2019, 10, 10388-10394.
11.Zhang, W. X.; Song, H.; Cheng, Y.; Liu, C.; Wang, C. H.; Khan, M. A. N.; Zhang, H.; Liu, J. Z.; Yu, C. Z.; Wang, L. J.; Li, J. S. Core-Shell Prussian Blue Analogs with Compositional Heterogeneity and Open Cages for Oxygen Evolution Reaction. Adv. Sci.2019, 6 (7), **.
12.Theivendran, S.; Zhang, J.; Tang, C.; Kalantari, M.; Gu, Z. Y.; Yang, Y. N.; Yang, Y.; Strounina, E.; Du, A. J.; Yu, C. Z.Synthesis of Biphenyl Bridged Dendritic Mesoporous Organosilica with Extremely High Adsorption of Pyrene. J. Mater. Chem. A.2019, 7, 12029-12037.
13.Song, H, Yang, Y, Geng, J, Zou, J, Yu, C. Z.Electron Tomography: A Unique Tool Solving Intricate Hollow Nanostructures. Adv. Mater.2018, **.
14.Yang, Y. N.; Tang, J.; Abbaraju, L. P.; Jambhrunkar, M.; Song, H.; Zhang, M.; Lei, C.; Fu, J. Y.; Gu, Z. Y.; Liu, Y.; Yu, C. Z.Hybrid Nanoreactors Enable an Off-the-Shelf Strategy for Concurrently Enhanced Chemo-immunotherapy. Angew. Chem. Int. Ed.2018, 57(36), 11764-11769.
15.Zhang, M.; Song, H.; Yang, Y. N.; Huang, X. D.; Liu, Y.; Liu, C.; Yu, C. Z. Oxidative Dissolution of Resoles: A Versatile Approach to Intricate Nanostructures. Angew. Chem. Int. Ed.2018,57 (3), 654-658.
16.Liu, C.; Huang, X. D.; Wang, J.; Song, H.; Yang, Y. N.; Liu, Y.; Li, J. S.; Wang, L. J.; Yu, C. Z.Hollow Mesoporous Carbon Nanocubes: Rigid-Interface-Induced Outward Contraction of Metal-Organic Frameworks. Adv. Funct. Mater.2018, 28, 170253.
17.Yang, Y. N.; Lu, Y.; Abbaraju, L. P.; Azimi, I.; Lei, C.; Tang, J.; Jambhrunkar, M.; Fu, J. Y.; Zhang, M.; Liu, Y.; Liu, C.; Yu, C. Z.Stepwise Degradable Nanocarriers Enabled Cascade Delivery for Synergistic Cancer Therapy. Adv. Funct. Mater.2018, 28(28), **.
18.Huang, X. D.; Liu, Y.; Liu, C.; J.; Noonan, O.; Yu, C. Z.Rechargeable Aluminum-Selenium Batteries with High Capacity. Chem. Sci.2018, 9, 5178-5182.
19.Lu, Y.; Yang, Y.; Gu, Z.; Zhang, J.; Song, H.; Xiang, G. Y.; Yu, C. Z.Glutathione-Depletion Mesoporous Organosilica Nanoparticles as A Self-Adjuvant and Co-Delivery Platform for Enhanced Cancer Immunotherapy. Biomaterials.2018, 175, 82-92.
20.Wang, Y.; Song, H.; Yang, Y. N.; Liu, Y.; Tang, J.; Yu, C. Z.Kinetically Controlled Dendritic Mesoporous Silica Nanoparticles: From Dahlia- to Pomegranate-like Structures by Micelle Filling. Chem.Mater.2018, 30 (16), 5770-5776.
21.Noonan, O.; Liu, Y.; Huang, X. D.; Yu, C. Z.Layered Graphene/Mesoporous Carbon Heterostructures with Improved Mesopore Accessibility for High Performance Capacitive Deionization. J. Mater. Chem. A.2018, 6, 14272-14280.
22.Liu, C.; Huang, X. D.; Wang, J.; Song, H.; Yang, Y. N.; Liu, Y.; Li, J. S.; Wang, L. J.; Yu, C. Z.Hollow Mesoporous Carbon Nanocubes: Rigid-Interface Induced Outward Contraction of Metal-Organic Frameworks. Adv. Funct. Mater.2017, 28, **.
23.Song, H.; Yu, M. H.; Lu, Y.; Gu, Z. Y.; Yang, Y. N.; Zhang, M.; Fu, J. Y.; Yu, C. Z.Plasmid DNA Delivery: Nanotopography Matters. J. Am. Chem. Soc.2017, 139(50), 18247-18254.
24.Zhang, M.; Song, H.; Yang, Y. N.; Huang, X. D.; Liu, Y.; Liu, C.; Yu, C. Z.Oxidative Dissolution of Resoles: A Versatile Approach to Intricate Nanostructures. Angew. Chem. Int. Ed.2017, 57 (3), 654-658.
25.Abbaraju, P.; Meka, A.; Song, H.; Yang, Y. N.; Jambhrunkar, M.; Zhang, J.; Xu, C.; Yu, M. H.; Yu, C. Z.Asymmetric Silica Nanoparticles with Tunable Head-Tail Structures Enhance Hemocompatibility and Maturation of Immune Cells. J. Am. Chem. Soc.2017, 139(18), 6321-6328.
26.Yang, Y. N.; Lu, Y.; Abbaraju, P. L.; Zhang, J.; Zhang, M.; Xiang, G. Y.; Yu, C. Z.Multi-Shelled Dendritic Mesoporous Organosilica Hollow Spheres: Roles of Composition and Architecture in Cancer Immunotherapy. Angew. Chem. Int. Ed.2017, 56, 8446-8450.
27.Song, H.; Ahmad Nor, Y.; Yu, M. H.; Yang, Y. N.; Zhang, J.; Zhang, H. W.; Xu, C.; Mitter, N.; Yu, C. Z.Silica Nano-Pollens Enhance Adhesion for Long-Term Bacterial Inhibition. J. Am. Chem. Soc.2016, 138, 6455-6462.
28.Zhang, H. W.; Noonan, O.; Huang, X. D.; Yang, Y. N.; Xu, C.; Zhou, L., Yu, C. Z.Surfactant-Free Assembly of Mesoporous Carbon Hollow Spheres with Large Tunable Pore Sizes. ACS Nano.2016, 10 (4), 4579-4586.
29.Jambhrunkara, S.; Yu, M. H.; Yang, J.; Zhang, J.; Shrotria, A.; Endo-Munozb, L.; Moreau, J.; Lu, G. Q.; Yu, C. Z.Stepwise Pore Size Reduction of Ordered Nanoporous Silica Materials at Angstrom Precision. J. Am. Chem. Soc.2013, 135 (23), 8444-8447.
30.Niu, Y. T.; Yu, M. H.; Hartono, S. B.; Yang, J.; Xu, H. Y.; Zhang, H. W.; Zhang, J.; Zou, J.; Dexter, A.; Gu, W. Y.; Yu, C. Z.Nanoparticles Mimicking Viral Surface Topography for Enhanced Cellular Delivery. Adv. Mater.2013, 25(43), 6233–6237.




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