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刘绍琴
2023-05-10 19:56
  • 刘绍琴
  • 刘绍琴 - 教授 博导-哈尔滨工业大学-基础与交叉科学研究院-个人资料

近期热点

资料介绍

个人简历


主要任职\r
2011-2016 哈工大微纳米技术研究中心 副主任\r
2016至今 哈工大微纳米技术研究中心 主任\r
2017至今 微系统与微结构制造教育部重点实验室 副主任\r
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工作经历\r
2000-2004 德国马普胶体与界面研究所,洪堡学者\r
2004-2006 加拿大国家研究委员会化学过程与环境技术研究所,NSERC Fellow\r
2007-至今 哈尔滨工业大学 教授/博士生导师\r
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教育经历\r
1990年-1994年 武汉水利电力大学 (现武汉大学) 应用化学系 本科\r
1994年-1999年 中国科学院长春应用化学研究所 电分析国家重点实验室 硕博连读\r
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荣誉、奖项、人才项目\r
2018年 获国家自然科学奖二等奖\r
2018年 获国家杰出青年科学基金\r
2016年 获黑龙江省高校科学技术一等奖\r
2011年 获黑龙江省杰出青年基金\r
2009年 获教育部新世纪优秀人才\r
2008年 获黑龙江省政府特殊津贴\r
2004年 获吉林省科学技术进步奖一等奖(第二完成人)\r
2004-2006年度获加拿大国家科学技术研究委员会奖学金\r
2000-2002年度获德国洪堡奖学金\r
2000年 获日本JSPS奖学金(未成行)

研究领域


"""""具有光电活性的纳米结构材料:根据生化检测及能源转化的需求,设计和制备具有光电活性的金属、半导体和金属氧化物纳米粒子、纳米线及相应的复合纳米材料,并对这些无机纳米结构材料可能产生的独特的集合光、电、磁学性质展开研究。 \r
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纳米结构材料在环境污染物检测及医学检测方面的应用:利用纳米材料和纳米结构,重点发展痕量、实时、便捷、廉价、高精密、高灵敏、抗干扰能力强的农药残留、生物毒素、重金属纳米检测技术;针对重大疾病如肿瘤、糖尿病、心血管疾病等,重点发展高灵敏、高选择性、高通量的微纳米检测技术和生物芯片。 \r
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纳米材料在能源转化方面的应用:利用纳米材料的高效催化和导电特性,发展高性能的甲醇燃料电池和微生物燃料电池。"

近期论文


R. W. Wang#, M. Yan#, H. D. Li, L. Zhang, B. Q. Peng, J. Z. Sun, D. Liu, S. Q. Liu*, FeS2 Nanoparticles Decorated Graphene as Microbial-Fuel-Cell Anode Achieving High Power Density, Advanced Materials 2018, 30, 1800618. (IF=21.950) link\r
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H. X. Gu, C. S. Guo, S. H. Zhang, L. H. Bi, T. C. Li, T. D. Sun, S. Q. Liu*, Highly Efficient, Near-Infrared and Visible Light Modulated Electrochromic Devices Based on Polyoxometalates and W18O49 Nanowires, ACS Nano 2018, 12, 559–567. (IF=13.709) link\r
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L. An, G. T. Wang*, Y. Han, T. C. Li, P. Jin*, S. Q. Liu*, Electrochemical Biosensor for Cancer Cell Detection Based on a Surface 3D Micro-Array, Lab on a Chip 2018, 18, 335-342. (IF=5.995) link\r
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C. Y. Yang#, C. S. Guo#, W. Guo, X. L. Zhao, S. Q. Liu *, X. J. Han*, Multifunctional Bismuth Nanoparticles as Theranostic Agent for PA/CT Imaging and NIR Laser Driven Photothermal Therapy, ACS Applied Nano Materials 2018, 1, 820–830. link\r
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G. T. Wang#*, J. Z. Sun#, L. An, S. Q. Liu*, Fuel-Driven Dissipative Self-Assembly of a Supra-Amphiphile in Batch Reactor, Biomacromolecules 2018, 19, 2542-2548. (IF=5.782) link\r
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L. Shi, L. Y. Zhu, J. Guo, L. J. Zhang, Y. N. Shi, Y. Zhang, K. Hou, Y. L. Zheng, Y. F. Zhu, J. W. Lv, S. Q. Liu*, Z. Y. Tang*, Self-Assembly of Chiral Gold Clusters into Crystalline Nanocubes of Exceptional Optical Activity, Angewandte Chemie-International Edition 2017, 56, 15397-15401. (IF=11.994) link\r
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W. Guo, C. S. Guo*, N. N. Zheng, T. D. Sun, S. Q. Liu*, CsxWO3 Nanorods Coated with Polyelectrolyte Multilayers as a Multifunctional Nanomaterial for Bimodal Imaging-Guided Photothermal/Photodynamic Cancer Treatment, Advanced Materials 2017. 29, 1604157. (IF= 19.791) link\r
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C. Q. Song, C. Y. Yang, F. Wang, D. D. Ding, Y. Gao, W. Guo, M. Yan, S. Q. Liu*, C. S. Guo*,MoS2-Based Multipurpose Theranostic Nanoplatform: Realizing Dual-Imaging-Guided Combination Phototherapy to Eliminate Solid Tumor via a Liquefaction Necrosis Process, Journal of Materials Chemistry B 2017, 5, 9015-9024. (IF=4.543) link\r
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T. C. Li, F. J. Zhu, W. Guo, H. X. Gu, J. Zhao, M. Yan *, S. Q. Liu*, Selective Capture and Rapid Identification of E. coli O157: H7 by Carbon Nanotube Multilayer Biosensors and Microfluidic Chip-Based LAMP, RSC Advances 2017, 7, 30446-30452. (IF=3.108) link\r
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G. T. Wang*, Y. Liu, Y. Liu, N. Xia, W. X. Zhou, Q. Y. Gao, S. Q. Liu*, The Non-Equilibrium Self-Assembly of Amphiphilic Block Copolymers Driven by a pH Oscillator, Colloids and Surfaces A Physicochemical and Engineering Aspects 2017, 529, 808-814. (IF=2.714) link\r
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N. X. Wang, W. F. Zheng, S. Y. Cheng, W. Zhang*, S. Q. Liu*, X. Y. Jiang*, In Vitro Evaluation of Essential Mechanical Properties and Cell Behaviors of a Novel Polylactic-co-Glycolic Acid (PLGA)-Based Tubular Scaffold for Small-Diameter Vascular Tissue Engineering, Polymers 2017. 9, 318. (IF=3.364) link\r
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W. Guo, F. Wang, D. D. Ding, C. Q. Song, C. S. Guo*, S. Q. Liu*, TiO2-x Based Nano-platform for Bimodal Cancer Imaging and NIR-Triggered Chem/Photodynamic/Photothermal Combination Therapy, Chemistry of Materials 2017, 29, 9262-9274. (IF=9.466) link\r
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W. Guo, Z. Y. Qiu, C. S. Guo*, D. D. Ding, T. C. Li, F. Wang, J. Z. Sun, N. N. Zheng, S. Q. Liu*, Multifunctional Theranostic Agent of Cu2(OH)PO4 Quantum Dots for Photoacoustic Image-Guided Photothermal/Photodynamic Combination Cancer Therapy, ACS Applied Materials & Interfaces 2017, 9, 9348-9358. (IF=7.504) link\r
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D. D. Ding, W. Guo, C. S. Guo, J. Z. Sun, N. N. Zheng, F. Wang, M. Yan*, S. Q. Liu*, MoO3-x Quantum Dot for Photoacoustic imaging Guided Photothermal/Photodynamic Cancer Treatment, Nanoscale 2017. 9, 2020-2029. (lF=7.233) link\r
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T. D. Sun, W. Cui, M. Yan, G. Qin, W. Guo, H. X. Gu, S. Q. Liu*, Q. Wu*, Target Delivery of a Novel Antitumor Organoplatinum(IV)-Substituted Polyoxometalate Complex for Safer and More Effective Colorectal Cancer Therapy In Vivo. Advanced Materials 2016, 28, 7397–7404. (IF=18.96) link\r
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W. Guo, C. S. Guo*, N. N. Zheng, T. D. Sun, S. Q. Liu*. CsxWO3 Nanorods Coated with Polyelectrolyte Multilayers as a Multifunctional Nanomaterials for Bimodal Imaging-Guided Photothermal/Photodynamic Cancer Treatment. Advanced Materials 2016, 29, 1604157.(IF = 18.96, High Cited Paper)link\r
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S. L. Zhao, Y. Wang, J. C. Dong, C.-T. He, H. J. Yin, P. F. An, K. Zhao, X. F. Zhang, C. Gao, L. J. Zhang, J. W. Lv, J. X. Wang, J. Q. Zhang, A. M. Khattak, N. A. Khan, Z. X. Wei, J. Zhang, S. Q. Liu*, H. J. Zhao* Z. Y. Tang*, Ultrathin Metal-Organic Framework Nanosheers for Electrocatalytic Oxygen Evolution, Nature Energy 2016, 1, 16184. (IF= 46.895) link 1547450000682012995.jpg\r
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G. L. Li, S. H. Zhang, C. S. Guo*, S. Q. Liu*, Absorption and Electrochromic Modulation on Near Infrared Light: Realized by Tungsten Suboxide, Nanoscale 2016, 8, 9861-9868. (IF=7.76) link\r
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E. X. Luan, Z. Z. Zheng, X. Y. Li, H. X. Gu, S. Q. Liu*, Inkjet-assisted Layer-by-Layer Printing of Quantum Dot/Enzyme Microarrays for Highly Sensitive Detection of Organophosphorous Pesticides. Analytica Chimica Acta 2016, 916, 77-83. (IF=4.712) link\r
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G. L. Li, C. S. Guo*, M. Yan, S. Q. Liu*, CsxWO3 Nanorods: Realization of Full-Spectrum-Responsive Photocatalytic Activities from UV, Visible to Near-infrared Region. Applied Catalysis B: Environmental 2016, 183, 142-148. (IF=8.328) link\r
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N. X. Wang, L. X. Tang, W. F. Zheng, Y. H. Peng, S. Y. Cheng, Y. F. Lei, L. M. Zhang, B. F. Hu, S. Q. Liu*, W. Zhang*, X. Y. Jiang*. A Strategy for Rapid and Facile Fabrication of Controlled, Layered Blood Vessel-like Structures. RSC Advances 2016, 6, 55054-55063. (IF=3.289). link\r
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M. Yan, G. L. Li, C. S. Guo*, W. Guo, D. D. Ding, S. H. Zhang, S. Q. Liu*, WO3-x Sensitized TiO2 Sphere with Full-spectrum-driven Photocatalytic Activities from UV to Near Infrared, Nanoscale 2016, 8, 7397-7404 (IF=7.76) link\r
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D. Q. Liu, C. S. Guo, S. Q. Liu, B. Yang, Z. H. Jiang, Fabrication of CdS-Coated ZnO Nanorods Arrays for Visible-light Driven Photoelectrocatalytic Degradation of Phenol, Journal of Nanoscience and Nanotechnology 2016, 16, 8308-8314.

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