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个人简介

刘湘江,博士,求是青年学者,毕业于德国慕尼黑工业大学(Technische Universität München)。近三年,就以第一作者或通讯作者发表高影响因子论文5篇(IF>10论文1篇,5 作为信息感知的工具,传感技术至关重要。常规传感器件大都采用无机刚性材料制造,难以贴合生物体柔软、弯曲、时变的表面,干扰生物正常生理过程,不能实现连续的在体监测。柔性传感技术利用构筑在较低弹性模量的材料上的柔性传感器,消除了械诱导下的刺激,减小了传感器件对生物体的物理损伤,不干扰正常生理过程,可实现在生物体表面持续不断地收集生理信息。而且,柔性传感器可采用印刷等低成本、对环境友好的加工方式,相对于常规传感器件具有较大优势。除用于生物体信息感知,目前的应用广泛范围还包括电子传感皮肤、可穿戴设备、航空航天、医疗健康等。 教学与课程 试验设计与数据分析 工作研究项目 1.SERS光流控芯片用于病原菌分类计数的研究(国家自然科学基金青年基金) 2.超薄柔性超材料于快速拉曼成像原理的研究(浙江省自然科学基金) 3.基于柔性石墨烯/金属纳米阵列薄膜的通用型高效SERS活性基底的关键技术研究(浙江省公益技术应用研究计划) 招生信息 招收化学、材料、食品、生物、电子、机械等相关背景的研究生。

研究领域

柔性传感技术与生物体信息感知

柔性传感技术与生物体信息感知

近期论文

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(1) Xiangjiang Liu, Jiajun Wang, Longhua Tang, Lijuan Xie, Yibin Ying, Flexible Plasmonic Metasurfaces with User-Designed Patterns for Molecular Sensing and Cryptography. Advanced Functional Materials, 2016, 26(30), 5515–5523. (2) Xiangjiang Liu, Jingjing Wang, Jiajun Wang, Longhua Tang, Yibin Ying. Flexible and Transparent Surface-Enhanced Raman Scattering (SERS)-Active Metafilm for Visualizing Trace Molecules via Raman Spectral Mapping.Analytical Chemistry, 2016, 88 (12), 6166–6173. (3) Dongyang Li, Longhua Tang, Jingjing Wang, Xiangjiang Liu,* Yibin Ying. Multidimensional SERS Barcodes on Flexible Patterned Plasmonic Metafilm for Anticounterfeiting Applications. Advanced Optical Materials. 2016, 4(10), 1475–1480. (4) Xiangjiang Liu, Longhua Tang, Reinhard Niessner, Yibin Ying, Christoph Haisch. Nitrite-Triggered Surface Plasmon-Assisted Catalytic Conversion of p-Aminothiophenol to p,p'-Dimercaptozaobenzene on Gold Nanoparticle: SERS Investigation and Potential for NO2- Detection. Anal. Chem. 2015, 87, 499−506 (5) Xiangjiang Liu, Jiajun Wang, Yichen Wu, Tianren Fan, Yang Xu, Longhua Tang, Yibin Ying. Compact Shielding of Graphene Monolayer Leads to Extraordinary SERS-Active Substrate with Large-Area Uniformity and Long-Term Stability. Scientific Reports, 2015, 5, 17167. (6) Chang Lu, Xiangjiang Liu, Yunfeng Li, Fang Yu, Longhua Tang, Yanjie Hu, Yibin Ying. Multifunctional Janus Hematite–Silica Nanoparticles: Mimicking Peroxidase-Like Activity and Sensitive Colorimetric Detection of Glucose. ACS Applied Materials & Interfaces, 2015, 7, 15395–15402. (7) Wendao Xu, Xiangjiang Liu, Lijuan Xie, Yibin Ying. Comparison of Fourier Transform Near-Infrared, Visible Near-Infrared, Mid-Infrared, and Raman Spectroscopy as Non-Invasive Tools for Transgenic Rice Discrimination. Transactions of the ASABE, 2014, 57, 141-150. (8) Xia Xu · Xiangjiang Liu · Yanbin Li · Yibin Ying. A simple and rapid optical biosensor for detection of aflatoxin B1 based on competitive dispersion of gold nanorods. Biosensors & Bioelectronics, 2013, 47, 361–367. (10) Xiangjiang Liu, Martín G. González, Reinhard Niessner, Christoph Haisch. Strong size-dependent photoacoustic effect of gold nanoparticles: a sensitive tool for protein detection. Anal. Methods, 2012, 4, 309. (11) Xiangjiang Liu, Maria Knauer, Natalia P. Ivleva, Reinhard Niessner and Christoph Haisch. Synthesis of Core−Shell Surface-Enhanced Raman Tags for Bioimaging.Anal. Chem., 2010, 82 (1), 441-446. (12) Xiangjiang Liu, Shuangyan Huan, Yali Bu, Guoli Shen, Ruqin Yu.. Liposome-mediated enhancement of the sensitivity in immunoassay based on surface-enhanced Raman scattering at gold nanosphere array substrate. Talanta, 2008, 75, 797-803. (13) Maria Knauer, Natalia P. Ivleva, Xiangjiang Liu, Reinhard Niessner and Christoph Haisch. Surface-Enhanced Raman Scattering-Based Label-Free Microarray Readout for the Detection of Microorganisms.Anal. Chem., 2010, 82 (7), 2766-2772. (14) Martín G. González, Xiangjiang Liu, Reinhard Niessner, and Christoph Haisch. Strong size-dependent photoacoustic effect on gold nanoparticles by laser-induced nanobubbles. Appl. Phys. Lett. 2010, 96, 174104. (15) Martín G. González, Xiangjiang Liu, Reinhard Niessner and Christoph Haisch. Lead ion detection in turbid media by pulsed photoacoustic spectrometry based on dissolution of gold nanoparticles. Sensors and Actuators B: Chemical, 2010, 150(2), 770-773. (16) Yali Bu, Shuangyan Huan, Xiangjiang Liu, Guoli Shen, Ruqin Yu. Multiple-Angle-of-incidence Polarization Infrared Reflection-Absorption Spectroscopy (MAI-PIRRAS) for investigation of 6-Mercaptopurine SAMs On smooth silver surface. Vibrational Spectroscopy, 2009, 49(1), 38-42. (17) Jiwei Chen, Yong Lei, Xiangjiang Liu, Jianhui Jiang, Guoli Shen, Ruqin Yu.. Immunoassay using surface-enhanced Raman scattering based on aggregation of reporter-labeled immunogold nanoparticles. Anal. Bio. Chem., 2008, 399, 187-193. (18) Yali Bu, Shuangyan Huan, Xiangjiang Liu, Jinfang Nie, Weimin He,Guoli Shen, Ruqin Yu.. Analysis of malachite green absorbed on a uniform SERS-active substrate. Journal of Shanghai Normal University (Natural Sciences), 2008, 100025137. Copyright © 2007-2019浙江大学信息化建设领导小组办公室 咨询电话:0571-879

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