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个人简介

杨蓉,研究员, 博士生导师。 2006年于美国俄亥俄大学获得理学博士学位。2006年至2007年在美国明尼苏达大学化工材料系做博士后,2008年起在国家纳米科学中心工作,从事材料、生物、化学和物理之间交叉的新兴科学的研究。研究工作涉及纳米功能材料的可控制备及组装,功能材料的表/界面结构、理化性质,及纳米功能材料的生物医学应用。在纳米模拟酶领域也开展了一系列研究工作。作为项目负责人/项目骨干,主持/参与了多项国家级、中科院系统科研项目。在国际重要学术刊物上发表论文50余篇, 获得多项发明专利授权。 承担科研项目情况 作为项目负责人/项目骨干, 主持/参与了多项国家自然科学基金委面上基金项目、 国家科技重点专项、国家自然科学基金委国际合作与交流项目、中科院战略性先导科技专项、中科院知识创新工程项目。

研究领域

(1)纳米功能材料及其应用研究;(2)纳米/生物界面构筑及性质研究;(3)纳米材料在生物医学中的应用。

纳米功能材料及其在生物医学中的应用

近期论文

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Q Han, X Wang, S Cai, X Liu, Y Zhang, L Yang, C Wang, R Yang*, Quercetin nanoparticles with enhanced bioavailability as multifunctional agents toward amyloid induced neurotoxicity, J.Mater. Chem. B, 2018, 6 (9), 1387-1393 S. Cai, X. Liu, Q. Han, C. Qi, R. Yang*, C. Wang*, A novel strategy to construct supported Pd nanocomposites with synergistically enhanced catalytic performances, Nano Research, 2018,11(6), 3272-3281. X. Wang, Q. Han, N. Yu, T. Wang, C. Wang, R. Yang*, GO-AgCl/Ag nanocomposites with enhanced visible light-driven catalytic properties for antibacterial and biofilm-disrupting applications, Colloids Surf. B: Biointerfaces, 2018,162, 296-305 (IF=3.887) Q. Han, X. Wang, X. Jia, S. Cai, R. Yang*, C. Wang, CpG loaded MoS2 nanosheets as multifunctional agents for photothermal enhanced cancer immunotherapy,Nanoscale, 2017, 9 (18),5927-5934 (IF=7.367) Q. Han, S. Cai, L. Yang, X. Wang, R. Yang*, C. Wang, Molybdenum Disulfide Nanoparticles as Multifunctional Inhibitors against Alzheimer’s Disease ,ACS Appl Mater. Interface, 2017, 9 (25) ,21116-21123. (IF 7.50) S. Cai, X. Jia , Q. Han, X. Yan, R. Yang* , C. Wang*, “Porous PtAg nanoparticles with excellent multifunctional enzyme mimic activities and antibacterial effects”, Nano Research, 2017, 10 (6) :2056-2069. (IF=7.35) S. Cai, Q. Han, C. Qi, X. Wang, T. Wang, X. Jia, R. Yang*, C. Wang*, MoS2-Pt3Au Hybrids with Enhanced Peroxidase-Like Activities for Selective Colorimetric Detection of Phenol, Chin. J. Chem., 2017, 35(5) 605-612 (invited paper) X. Wang, Q. Han, S. Cai, T. Wang, R. Yang*, C. Wang* , Excellent Peroxidase Mimic Property of CuO/Pt Nanocomposites and Its Application as a Ascorbic Acid Sensor, Analyst, 2017, 142, 2500-2506 X. Jia, I. Ahmad, R. Yang*, C. Wang*, Versatile graphene-based photothermal nanocomposites for effectively capturing and killing bacteria, and for destroying bacterial biofilms, J. Mater. Chem. B, 2017,5, 2459-2467 I. Ahmad, A. Mozhi, L. Yang, Q. Han, X. Liang, C. Li, R. Yang*, C. Wang, Graphene oxide-iron oxide nanocomposite as an inhibitor of Aβ 42 amyloid peptide aggregation,Colloids Surf. B: Biointerfaces , 2017 , 159,540-545, (IF=3.887) J. Li, Cui Qi, Z. Lian, Q. Han, X. Wang, S. Cai, R. Yang* and C. Wang* , A Cell-Capture and Release Platform Based on Peptide-Aptamer-modified Nanowires , ACS Appl. Mater. Inter., 2016, 8, 2511-2516. (IF 7.50) S. Cai, C. Qi, Q. Han, Y. Li, R. Yang*, C. Wang. “PtCo Bimetallic Nanoparticles with High oxidase-like catalytic activity and their applications for magnetic-enhanced colorimetric biosensing”, J. Mater. Chem. B, 2016, 4, 1869-1877. (IF=4.7) S. Cai, Q. Han, C. Qi, Z. Lian, X. Jia, R. Yang* and C. Wang*. “Pt74Ag26 nanoparticle-decorated monolayer MoS2 nanosheets as novel peroxidase mimics for highly selective colorimetric detection of H2O2 and glucose”, Nanoscale, 2016,8, 3685-3693 . C. Qi, S. Cai, X. Wang, J. Li, Z. Lian, S. Sun, R. Yang*, C. Wang*. Enhanced Oxidase/peroxidase-like Activities of Aptamer Conjugated MoS2/PtCu Nanocomposites and Their Biosensing Application , RSC Advances , 2016,6, 54949-54955 X. Wang, Q. Han, N. Yu, J. Li, L. Yang, R. Yang*, C. Wang* Aptamer-conjugated graphene oxide/gold nanocomposites for targeted chemo-photothermal therapy of cancer cells, J. Mater. Chem. B, 2015, 3(19), 4036-4042 (IF=4.7) Z. Han, X Wang, C. Heng,* Q. Han, S. Cai, J Li, C. Qi, W. Liang, R. Yang* , C. Wang, “Synergistic enhanced photocatalytic and chemotherapeutic effects of aptamer- functionlized ZnO nanoparticles towards cancer cells”, Phys. Chem. Chem. Phys, 2015, 17(33), 21576 – 21582 (IF=4.5) J. Li, Q. Han, X. Wang, N. Yu, L. Yang, R. Yang*, C. Wang*, "Reduced aggregation and cytotoxicity of amyloid peptides by graphene oxide/gold nanocomposites prepared by pulsed laser ablation in water”, Small, 2014,10,4386-4394.(IF 8.6) J. Li, Q. Han, X. Wang, R. Yang*, C. Wang*, “Enhanced cell growth on nanotextured GaN surface treated by UV illumination and fibronectin Adsorption”, Colloids and Surfaces B, 2014, 123, 293-301 ( IF 4.2) R. Yang*, Y. Zhang, J. Li, Q. Han, W. Zhang, C. Lu, Y. Yang, H. Dong, C. Wang*, “Graphene Oxide Assisted Synthesis of GaN Nanostructures for Reducing Tumor Cell Adhesion”, Nanoscale, 2013, 5, 11019–11027. (IF 7.3) J. Li, Q. Han, Y. Zhang, W. Zhang, M. Dong, F. Besenbacher, R. Yang*, C. Wang*, “Optical Regulation of Protein Adsorption and Cell Adhesion by Photoresponsive GaN Nanowires”, ACS Appl. Mater. Inter. 2013, 5, 9816?9822. (IF 7.50) Q. Han, R. Yang*, J. Li, W. Liang, Y. Zhang, M. Dong, F. Besenbacher, C. Wang*, “Enhancement of Biological Activities of Nanostructured Hydrophobic Drug Species”, Nanoscale 2012, 4,2078-2084. (IF 7.3) H. Wu, R. Yang*, B. Song, Q. Han, J. Li, Y. Zhang, Y. Fang, R. Tenne, C. Wang*, “Biocompatible Inorganic Fullerene-Like Molybdenum Disulfide Nanoparticles Produced by Pulsed Laser Ablation in Water”, ACS Nano 2011, 5, 1276.(IF 13.94)

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