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中山大学珠海校区化学工程与技术学院导师教师师资介绍简介-邓海强

本站小编 Free考研考试/2021-05-15



邓海强

化学工程与技术学院 副教授



电子邮件
denghq9@mail.sysu.edu.cn



邓海强?[副教授]?
基本情况姓名:邓海强?
性别:男?
出生年月:1984-10
籍贯:河南洛阳?
职位:副教授,硕士生导师
教育经历2010.09—2014.09 ? ?瑞士洛桑联邦理工学院(EPFL, Swiss Federal Institute of Technology in Lausanne)获得化学与化学工程博士学位(导师:Prof. Hubert H. Girault)
2007.09—2010.06 ? ?华南理工大学获得环境科学硕士学位
2003.09—2007.07 ? ?西北农林科技大学获得环境科学学士学位?
工作经历2018.05-至今 ? 中山大学化学工程与技术学院,副教授?
2016.02-2018.05 ? 以色列耶路撒冷希伯来大学,魏兹曼科学研究所,博士后(PBC Fellowship),合作导师:Prof. Daniel Mandler; Prof. Jacob Sagiv?
2014.11-2015.12 ? 美国德州大学奥斯汀分校电化学中心(Center for Electrochemistry),博士后,合作导师:Prof. Allen J. Bard
学术任职暂无内容。
讲授课程暂无内容。
科研项目暂无内容。
获奖情况暂无内容。
论著一览Deng, H. et al. “Electrochemical in-situ generation and detection of single ionic water clusters”, in preparation.
Wang, H.; Deng, H.;?Sun, H.; Bai, W.; Li, Y., “A convenient electrogenerated chemiluminescence biosensing method for selective detection of 5-hydroxymethylcytosine in genomic DNA”, submitted to Sens. Actuators, B: Chem., under review.
Xiang, Z.; Deng, H. (co-first author); Peljo, P.; Fu, Z.; Wang, S.; Mandler, D.; Sun, G.; Liang, Z., “Electrochemical dynamics of a single platinum nanoparticle collision event for the hydrogen evolution reaction”, Angew. Chem. Int. Ed., 2018, 57, 3464-3468.
Liu, C.; Peljo, P.; Huang, X.; Cheng, W.; Wang, L.; Deng, H. (Corresponding author), “Single Organic Droplet Collision Voltammogram via Electron Transfer Coupled Ion Transfer” Anal. Chem., 2017, 89, 9284-9291.
Liu, M.; Xiang, Z.; Deng, H.; Wan, K.; Liu, Q.; Piao, J.; Zheng, Y.; Liang, Z., “Electrochemical Behavior of Vanadium Redox Couples on Carbon Electrode” J. Electrochem. Soc., 2016, 163, H937-H942.
Huang, X.; Deng, H.; Liu, C.; Jiang, J.; Zeng, Q.; Wang, L., “A Snapshot of the Properties of Single Nanoparticles at the Moment of a Collision” Chem. Eur. J., 2016, 22, 9523-9527.
Deng, H.; Dick, J. E.; Kummer, S.; Kragl, U.; Strauss, S. H.; Bard, A. J., “Probing Ion Transfer across Liquid–Liquid Interfaces by Monitoring Collisions of Single Femtoliter Oil Droplets on Ultramicroelectrodes” Anal. Chem., 2016, 88, 7754-7761.
Li, Y.; Deng, H.; Dick, J. E.; Bard, A. J., “Analyzing Benzene and Cyclohexane Emulsion Droplet Collisions on Ultramicroelectrodes” Anal. Chem., 2015, 87, 11013-11021.
Huang, X.; Deng, H.; Fang, Y.; Wang, L., “Role of Introduction of a Resistor in Series with the Working Electrode in Impedance Related Electrochemical Measurements” Electroanalysis, 2015, 27, 2574-2580.
Deng, H.; Peljo, P.; Stockmann, T. J.; Qiao, L.; Vainikka, T.; Kontturi, K.; Opallo, M.; Girault, H. H., “Surprising acidity of hydrated lithium cations in organic solvents” Chem. Commun., 2014, 50, 5554-5557.
Rastgar, S.; Deng, H.; Cortés-Salazar, F.; Scanlon, M. D.; Pribil, M.; Amstutz, V.; Karyakin, A. A.; Shahrokhian, S.; Girault, H. H., “Oxygen Reduction at Soft Interfaces Catalyzed by In Situ‐Generated Reduced Graphene Oxide” ChemElectroChem, 2014, 1, 59-63.
Stockmann, T. J.; Deng, H.; Peljo, P.; Kontturi, K.; Opallo, M.; Girault, H. H., “Mechanism of oxygen reduction by metallocenes near liquid| liquid interfaces” ?J. Electroanal. Chem., 2014, 729, 43-52.
Deng, H.; Peljo, P.; Momotenko, D.; Cortés-Salazar, F.; Stockmann, T. J.; Kontturi, K.; Opallo, M.; Girault, H. H., “Kinetic differentiation of bulk/interfacial oxygen reduction mechanisms at/near liquid/liquid interfaces using scanning electrochemical microscopy” J. Electroanal. Chem., 2014, 732, 101-109.
Deng, H.; Stockmann, T. J.; Peljo, P.; Opallo, M.; Girault, H. H., “Electrochemical oxygen reduction at soft interfaces catalyzed by the transfer of hydrated lithium cations” J. Electroanal. Chem., 2014, 731, 28-35.
Fang, P.-P.; Chen, S.; Deng, H.; Scanlon, M. D.; Gumy, F.; Lee, H. J.; Momotenko, D.; Amstutz, V.; Cortés-Salazar, F.; Pereira, C. M.; Yang, Z.; Girault, H. H., “Conductive gold nanoparticle mirrors at liquid/liquid interfaces” ACS Nano, 2013, 7, 9241-9248.
Cortés-Salazar, F.; Deng, H.; Peljo, P.; Pereira, C. M.; Kontturi, K.; Girault, H. H., “Parylene C coated microelectrodes for scanning electrochemical microscopy” Electrochim. Acta, 2013, 110, 22-29.
Deng, H.; Peljo, P.; Cortés-Salazar, F.; Ge, P.; Kontturi, K.; Girault, H. H., “Oxygen and hydrogen peroxide reduction by 1, 2-diferrocenylethane at a liquid/liquid interface” J. Electroanal. Chem., 2012, 681, 16-23.
Schaming, D.; Hatay, I.; Cortez, F.; Olaya, A.; Méndez, M. A.; Ge, P. Y.; Deng, H.; Voyame, P.; Nazemi, Z.; Girault, H. H., “Artificial photosynthesis at soft interfaces” CHIMIA International Journal for Chemistry, 2011, 65, 356-359.
Huang, X.; Chen, H.; Deng, H.; Wang, L.; Liao, S.; Tang, A., “A fast and simple electrochemical impedance spectroscopy measurement technique and its application in portable, low-cost instrument for impedimetric biosensing” J. Electroanal. Chem., 2011, 657, 158-163.
Li, W.; Huang, X.; Deng, H.; Wang, L., “A Novel Electrochemiluminescence Sensor Based on Titanate Nanotubes with Excellent Adsorption Capability Towards Ru (bpy) 3 2+” Anal. Lett., 2011, 44, 1217-1225.
Deng, H.; Huang, X.; Wang, L., “A simultaneous study of kinetics and thermodynamics of anion transfer across the liquid/liquid interface by means of Fourier transformed large-amplitude square-wave voltammetry at three-phase electrode” Langmuir, 2010, 26, 19209-19216.
Deng, H.; Huang, X.; Chen, H.; Wang, L.; Luo, H., “Three-phase electrode and its application in studies of chromium ( VI ) ion transfer across the liquid/liquid interface” Chemistry (in Chinese) 2010, 73, 724-730.
Li, W.; Huang, X.; Deng, H.; Wang, L., “Preparation of TNTs based ECL sensor and its application in the studies of determination of Pb (Ⅱ)” Journal of Shanghai Normal University (Natural Sciences, in Chinese) 2010, 39, 284-289.
Deng, H.; Huang, X.; Wang, L.; Tang, A., “Estimation of the kinetics of anion transfer across the liquid/liquid interface, by means of Fourier transformed square-wave voltammetry” Electrochem. Commun., 2009, 11, 1333-1336.
Deng, H.; Mao, H.; Wang, L., “Study on deacidification process of the waste water hydrolyzed by acidated oil” Environ. Eng. (in Chinese) 2009, 27, 51-53.
相关成果邓海强博士的主要研究领域是物理与分析电化学,擅长液/液(包括固/液和固/固)界面电荷转移研究,包括其热力学,动力学,机理等方面。发展了研究液/液界面离子转移热力学和动力学的快速方法;阐明了酸性和碱性条件下液/液(水/1,2-二氯乙烷)界面氧还原反应的机理和动力学,该问题曾困扰业界20年;提出了使用扫描电化学显微镜在其反馈模式下研究液/液界面自组装金纳米镜子的导电性,此外,发展了一种结合催化EC’机理和扫描电化学显微镜反馈模式来研究界面和体相氧还原反应动力学的新方法,该方法可用于研究相转移催化的机理和定量关系;开发了新的单颗粒(单乳液油滴和单纳米粒子)伏安法,并研究了单个铂纳米粒子上的电化学析氢反应dynamics和机理等。
邓海强博士获得授权中国发明专利一件:“任意函数波形伏安仪”,发明人:王立世、黄新建、邓海强。







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