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个人简介

2010.7-2014.7 MONASH UNIVERSITY,PhD 2007.9-2010.3 上海交通大学,化学化工学院高分子化学与物理专业,理学硕士 2003.9-2007.6 华东理工大学,材料科学与工程学院高分子科学与工程专业,工学学士

研究领域

功能性微纳组装柔性超材料的可控构筑:新型纳米粒子可控合成与修饰,1D-3D金属纳米粒子超晶格自组装材料,纳米粒子/聚合物复合组装材料,2D纳米金属组装柔性光电材料 多尺度构效分析与可控性能:基于微观组装结构的构效分析,可控的光电性质(如表面增强拉曼散射、等离激元共振耦合与杂化等),等离激元/磁性材料协同增敏 新型柔性材料器件与生物医学应用:化学/生物标志物高效捕获检测、特异性识别、分子感应、高灵敏检测器件,柔性智能光电器件,基于电子皮肤的可穿戴交互器件

近期论文

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(1).Si, K. J.; Chen, Y.; Shi, Q.; Cheng, W. L.*, Nanoparticle Superlattices: The Roles of Soft Ligands. Advanced Science 2018, 5 (1), 1700179. (2).Si, K. J.; Chen, Y.; Cheng, W. L.* Plasmene Origami. Materials Today. 2016, 19 (6), 363-364. (3).Chen, Y.; Si, K. J.; Sikdar, D.; Tang, Y.; Premaratne, M.; Cheng, W. L.*, Ultrathin Plasmene Nanosheets as Soft and Surface-Attachable SERS Substrates with High Signal Uniformity. Advanced Optical Materials 2015, 3, 919-924. (4).Chen, Y.; Ouyang, Z.; Gu, M.; Cheng, W. L.*, Mechanically Strong, Optically Transparent, Giant Metal Superlattice Nanomembranes From Ultrathin Gold Nanowires. Advanced Materials 2013, 25, 80-85. (5).Chen, Y.; Cheng, W. L.*, DNA-based plasmonic nanoarchitectures: from structural design to emerging applications. Wiley Interdisciplinary Reviews - Nanomedicine and Nanobiotechnology 2012, 4, 587-604. (6).Chen, Y.; Fu, J.; Ng, K. C.; Tang, Y.; Cheng, W. L.*, Free-Standing Polymer-Nanoparticle Superlattice Sheets Self-Assembled at the Air Liquid Interface. Crystal Growth & Design 2011, 11, 4742-4746. (7).Chen, Y.; Ng, K. C.; Yan, W.; Tang, Y.; Cheng, W. L.*, Ultraflexible plasmonic nanocomposite aerogel. RSC Advances 2011, 1, 1265-1270. (8).Chen, Y.; Pang, X.-H.; Dong, C.-M.*, Dual Stimuli-Responsive Supramolecular Polypeptide-Based Hydrogel and Reverse Micellar Hydrogel Mediated by HostGuest Chemistry. Advanced Functional Materials 2010, 20, 579-586. (9).Chen, Y.; Dong, C.-M.*, pH-Sensitive Supramolecular Polypeptide -Based Micelles and Reverse Micelles Mediated by Hydrogen-Bonding Interactions or Host−Guest Chemistry: Characterization and In Vitro Controlled Drug Release. Journal of Physical Chemistry B 2010, 114, 7461-7468. (10).Si, K. J.#; Sikdar, D.#; Chen, Y.; Xu, Z.; Tang, Y.; Xiong, W.; Guo, P.; Zhang, S.; Lu, Y.; Bao, Q.; Zhu, W.; Premaratne, M.; Cheng, W. L.*, Giant Plasmene Nanosheets, Nanoribbons, and Origami. ACS Nano 2014, 8, 11086-11093. (11).Su, B.; Wu, Y.; Tang, Y.; Chen, Y.; Cheng, W. L.*; Jiang, L., Free-Standing 1D Assemblies of Plasmonic Nanoparticles. Advanced Materials 2013, 25, 3968-3972. (12).Tang, Y.; Gong, S.; Chen, Y.; Yap, L. W.; Cheng, W. L.*, Manufacturable Conducting Rubber Ambers and Stretchable Conductors from Copper Nanowire Aerogel Monoliths. ACS Nano 2014, 8, 5707-5714. (13).Gong, S.; Schwalb, W; Wang, Y. W.; Chen, Y.; Tang, Y.; Si, J.; Shirinzadeh, B.; Cheng, W. L.*, A wearable and highly sensitive pressure sensor with ultrathin gold nanowires. Nature Communications 2014, 5:3132. (14).Xie, S. Y., Chen, Y., Ouyang, Z., Jia, B. H., Cheng, W. L.*, Gu, M., Transparent gold nano-membranes for the enhanced light trapping of the indium tin oxide films. Optical Materials Express 2014, 4, 321-328. (15).Ng, K. C.; Udagedara, I. B.; Rukhlenko, I. D.; Chen, Y.; Tang, Y.; Premaratne, M.; Cheng, W. L.*, Free-Standing Plasmonic-Nanorod Superlattice Sheets. ACS Nano 2011, 6, 925-934. (16).Campolongo, M. J.; Tan, S. J.; Smilgies, D.-M.; Zhao, M.; Chen, Y.; Xhangolli, I.; Cheng, W. L.*; Luo, D., Crystalline Gibbs Monolayers of DNA-Capped Nanoparticles at the Air-Liquid Interface. ACS Nano 2011, 5, 7978-7985. (17).You, Y.; Chen, Y.; Hua, C.; Dong, C.-M.*, Synthesis and thermoreversible gelation of dendron-like polypeptide/linear poly(ε-caprolactone)/dendron-like polypeptide triblock copolymers. Journal of Polymer Science Part A-Polymer Chemistry. 2010, 48, 709-718. (18).Peng, S.-M.; Chen, Y.; Hua, C.; Dong, C.-M.*, Dendron-like Polypeptide/Linear Poly(ethylene oxide) Biohybrids with Both Asymmetrical and Symmetrical Topologies Synthesized via the Combination of Click Chemistry and Ring-Opening Polymerization. Macromolecules 2008, 42, 104-113. (19).Yang, W. J.; Chen, Y.; Cheng, W. L., Book chapter in Handbook of Nanomaterials Properties, Springer, 3879 words, ISBN 978-3-642-31107-9, 2014.

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