钱东 教授 博士 湖南省 研究领域: 储能 研究方向: [1] 先进储能电极材料(锂电、锂硫、钠电、超级电容器等)的制备技术及性能研究。 [2] 新型催化(主要包括燃料电池电催化和析氢电催化)及其他功能材料的制备及催化工艺的开发。 [3] 环境保护以及化工分离技术的开发。 所在单位: 中南大学

基本信息

所在单位:
中南大学
机构细分:
化学化工学院
单位类型:
高等院校
职务:
教授
职称:
教授
最高学历:
博士
出生年份:
1967-01-01
专家介绍:
钱东,男,湖南泸溪人,1967年出生,中南大学化学化工学院教授,博士生导师。1999年获中南大学应用化学专业博士学位,2002~2003年在丹麦科技大学物理系做访问研究,还先后五次到德国汉堡DESY同步辐射实验室、三次到德国Bayreuth高压实验室、一次到瑞典Lund同步辐射实验室进行合作研究。近年来主持开发的蒽醌法生产过氧化氢用新型加氢催化剂和参与主持开发的分子筛原位晶化催化剂已实现了工业化生产。先后主持30余项科研项目。已在Adv Funct Mater、J Phys Chem Lett、Inorg Chem、J Phys Chem B、J Phys Chem C、Chem Mater、ACS Appl Mater Interfaces、Ind Eng Chem Res、Chem Commun、J Mater Chem、J Mater Chem A、J Mater Chem C、Small、Appl Catal B: Environ、Biosen Bioelectron、Chem Eng J、Chem Eng Sci、J Power Sources、Sens Actuator B: Chem、J Energy Chem、J Colloid Interf Sci、J. Energy Storage、Electrochim Acta、Appl Surf Sci、Anal Chim Acta、Microchim Acta、Talanta、J Electroanal Chem、Nanotechnology、RSC Adv、Dyes Pigments、Int J Hydrogen Energy、J Crystal Growth、Mater Chem Phys、J Alloy Compd、J Mater Sci、J Phys Chem Solids、Mater Res Bull、Mater Lett、Ionics、Clay Minerals等国内外刊物上发表SCI收录论文120余篇,作为第一和通讯作者在影响因子6以上的SCI刊物上发表了60余篇研究论文,其中影响因子10以上的国际刊物15篇。作为第一发明人获国家授权发明专利22件。2019和2022年担任国家重大科技专项能源和材料相关项目的会评专家及2020-2022年的函评专家。

科研能力

研究领域:
储能
研究方向:
[1] 先进储能电极材料(锂电、锂硫、钠电、超级电容器等)的制备技术及性能研究。
[2] 新型催化(主要包括燃料电池电催化和析氢电催化)及其他功能材料的制备及催化工艺的开发。
[3] 环境保护以及化工分离技术的开发。
英文标签:
Carbon Nanotubes;Laser Shock Peening;Residual Stress;Molecular Dynamics;Oxygen Evolution Reaction;Residual Stresses;Density Functional Theory;Chemical Synthesis;Mechanical Properties;Meshfree Method
论文著作:
[1]Huiyang Liao, Junhua Li, Fan Wang, Yang Chen, Wei Deng, Bin Li, Jinlong Liu, Dong Qian (通讯作者), Geoffrey I. N. Waterhouse. Ion-imprinting strategy towards a novel two-in-one copper-based nanozyme for sensitive electrochemical-colorimetric dual-mode detection of paracetamol. Biosen. Bioelectron., 2025, 280, 117454. (第一作者为2023级硕士生)
[2]Jun Ren, Qian Xiang, Chunming Yang, Sufang Yang, Yun Liang, Jinlong Liu, Junhua Li, Dong Qian (通讯作者), and Geoffrey I. N. Waterhouse. Two birds with one stone: Self-supporting anodes and cathodes for quasi-solid-state asymmetric supercapacitors via reactions of 2-thiobarbituric acid with Fe and Co foams, Adv. Funct. Mater., 2024, 2416506.
[3]Haixia Tong, Ruidong He, Gao Chen, Zhuo Tong, Mingming Dang, Junhua Li, Daoxin Wu, Dong Qian (通讯作者). Synthesis of a novel cost-effective double-ligand Zr-based MOF via an inverted modulator strategy towards enhanced adsorption and photodegradation of tetracycline. J. Colloid Interface Sci., 2024, 671, 732–741.
[4]Bowen Wang, Xiangxiong Chen, Yingjian He, Qin Liu, Xinxin Zhang, Ziyu Luo, John V. Kennedy, Junhua Li, Dong Qian (通讯作者), Jinlong Liu, Geoffrey I. N. Waterhouse. Fe2O3/P-doped CoMoO4 electrocatalyst delivers efficient overall water splitting in alkaline media, Appl. Catal. B: Environ., 2024, 346 123741. (第一作者为2020级硕士生)
[5]Fan Wang, Junhua Li, Xiangxiong Chen, Hao Feng, Huiyang Liao, Jinlong Liu, Dong Qian (通讯作者), and Geoffrey I. N. Waterhouse. Atomically-dispersed manganese anchored on B,N co-doped carbon for the sensitive electrochemical detection of levodopa, Chem. Eng. J., 2024, 481, 148607. (第一作者为2022级硕士生)
[6]Kanda Su, Jie Li, Xinxin Zhang, Xiangxiong Chen, Ziyu Luo, Junhua Li, Dong Qian (通讯作者), Jinlong Liu, and Geoffrey I. N. Waterhouse. L-Alanine-Assisted Synthesis of a Hierarchically Porous Co@N-C/N-Ketjenblack Carbon Catalyst with Outstanding Performance for Oxygen Reduction in Zn-Air Batteries, Ind. Eng. Chem. Res. 2023, 62, 11562–11572. (第一作者为2018级硕士生)
[7]Jun Ren, Qing Wang, Qian Xiang, Chunming Yang, Yun Liang, Junhua Li, Jinlong Liu, and Dong Qian (通讯作者). O-vacancy-rich and heterostructured Cu/Cu2O/NiO@NiCu foam self-supported advanced electrocatalyst towards hydrogen evolution: An experimental and DFT study, Chem. Eng. Sci., 2023, 280, 119026.
[8]Canhui Liu, Xiangxiong Chen, Xinxin Zhang, Jie Li, Bowen Wang, Ziyu Luo, Junhua Li, Dong Qian (通讯作者), Jinlong Liu, and Geoffrey I. N. Waterhouse. Sodium Tartrate-Assisted Synthesis of High-Purity NiFe2O4 Nano-Microrods Supported by Porous Ketjenblack Carbon for Efficient Alkaline Oxygen Evolution, J. Phys. Chem. Lett., 2023, 14, 6099–6109. (第一作者为2019级硕士生)
[9]Xiangxiong Chen, Jiangnan Guo, Jinlong Liu, Ziyu Luo, Xinxin Zhang, Dong Qian (通讯作者), Dongxiao Sun-Waterhouse, and Geoffrey I. N. Waterhouse. Nanostructure engineering and electronic modulation of a PtNi alloy catalyst for enhanced oxygen reduction electrocatalysis in zinc-air batteries, J. Phys. Chem. Lett., 2023, 14, 1740–1747.
[10]Jun Ren, Qing Wang, Qian Xiang, Chunming Yang, Yun Liang, Jinlong Liu, Junhua Li, Dong Qian (通讯作者). Towards ultra-wide voltage window (3.2 V) aqueous symmetric supercapacitors triggered by hybridizing FeNiCo oxides with Ni(pyrithione)2 on FeNi foam, J. Energy Storage, 2023, 58, 106338
[11]Hao Feng, Fan Wang, Junhua Li, Qian Wu, Ying Cui, Lingzhi He, Xing Liu, Zeng Liu, Dong Qian (通讯作者), and Haixia Tong. Tuning the Fe/Co ratio towards a bimetallic Prussian blue analogue for the ultrasensitive electrochemical sensing of 5-hydroxytryptamine, Talanta, 2023, 254, 124138. (第一作者为2020级硕士生)
[12]Xuanda Long, Bowen Wang, Xinxin Zhang, Xichen Mao, Jie Li, Ziyu Luo, Dong Qian (通讯作者), Junhua Li, and Jinlong Liu. Disruptive Strategy to Fabricate Three-Dimensional Ultrawide Interlayer Porous Carbon Framework-Supported Prussian Blue Nanocubes: A Carrier for NiFe-Layered Double-Hydroxide toward Oxygen Evolution, Inorg. Chem., 2022, 61, 19624–19632 (第一作者为2018级硕士生)
[13]Xinxin Zhang, Kanda Su, Xiangxiong chen, Jie Li, Bowen Wang, Ziyu Luo, Dong Qian (通讯作者), Junhua Li, and Jinlong Liu. A Hybrid of Fe4N?Fe Heterojunction Supported on N-Doped Carbon Nanobelts and Ketjen Black Carbon as a Robust High-Performance Electrocatalyst, J. Phys. Chem. Lett., 2022, 13, 11118?11127. (第一作者为2021级硕士生)
[14]Hao Feng, Junhua Li, Yuqing Liu, Zhifeng Xu, Ying Cui, Mengqin Liu, Xing Liu, Lingzhi He, Jianbo Jiang, and Dong Qian (通讯作者). Cubic MnSe2 nanoparticles dispersed on multi-walled carbon nanotubes: A robust electrochemical sensing platform for chloramphenicol, J. Electroanal. Chem., 2022, 922, 116755. (第一作者为2020级硕士生)
[15]Jiangnan Guo, Jinlong Liu, Xichen Mao, Shengqi Chu, Xinxin Zhang, Ziyu Luo, Jie Li, Bowen Wang, Chuankun Jia, and Dong Qian (通讯作者). Experimental and theoretical insights into enhanced hydrogen evolution over PtCo nanoalloys anchored on a nitrogen-doped carbon matrix, J. Phys. Chem. Lett., 2022, 2022, 13, 5195–5203. (第一作者为2019级硕士生)
[16]Jiangnan Guo, Jinlong Liu, Xinxin Zhang, Xiyuan Guan, Muhong Zeng, Jiarong Shen, Jianing Zou, Qiuzhu Chen, Tian Wang and Dong Qian (通讯作者). Synergistically coupling Pt with Ni toward accelerated water dissociation for enhanced alkaline hydrogen evolution, J. Mater. Chem. A, 2022, 10, 13727. (第一作者为2019级硕士生)
[17]Zhiliang Zhang, Deyao Xu, Junhua Li, Jinlong Liu, Xuanda Long, Kanda Su, Jiangnan Guo, Haixia Tong, Zeng Liu, Dong Qian (通讯作者). Highly electrocatalytic performance of bimetallic Co–Fe sulfide nanoparticles encapsulated in N-doped carbon nanotubes on reduced graphene oxide for oxygen evolution, J. Alloy Compd., 2021, 881, 160667. (第一作者为2018级硕士生)
[18]Zhouli Li, Jun Ren, Chunming Yang, Yaxin He, Yun Liang, Jinlong Liu, Junhua Li, Dong Qian (通讯作者). Sodium 5-sulfosalicylate-assisted hydrothermal synthesis of a self-supported Co3S4?Ni3S2@nickel foam electrode for all-solid-state asymmetric supercapacitors, J. Alloy Compd., 2021, 889, 161661. (第一作者为2018级硕士生)
[19]Deyao Xu, Xuanda Long, Juanxiu Xiao, Zhiliang Zhang, Guiyu Liu, Haixia Tong, Zeng Liu, Neng Li, Dong Qian (通讯作者), Junhua Li, and Jinlong Liu. Rationally constructing CoO and CoSe2 hybrid with CNTs-graphene for impressively enhanced oxygen evolution and DFT calculations, Chem. Eng. J., 2021, 422, 129982. (第一作者为2017级硕士生)
[20]Jun Ren, Miao Shen, Zhouli Li, Chunming Yang, Yun Liang, Hong-En Wang, Junhua Li, Neng Li, Dong Qian (通讯作者). Towards high-performance all-solid-state asymmetric supercapacitors: A hierarchical doughnut-like Ni3S2@PPy core?shell heterostructure on nickel foam electrode and density functional theory calculations, J. Power Sources, 2021, 501, 230003.
发明专利:
[1]钱东, 苏侃达, 张志良, 龙炫达, 刘灿辉, 郭江南, 李俊华. 一种氧还原钴@氮掺杂石墨晶纳米带-科琴炭黑复合催化剂及其制备. ZL 202110008483.X
[2]钱东, 徐德垚, 苏侃达, 龙炫达, 张志良, 李俊华. 一种高性能析氧二硒化钴/二氧化锡@氮掺杂科琴炭黑复合催化剂及其制备方法和应用. ZL 202010471400.6
[3]钱东, 徐德垚, 苏侃达, 龙炫达, 张志良, 李俊华. 一种析氧/析氢二维一氧化钴@二硒化钴@氮掺杂碳纳米管/石墨烯双功能复合催化剂. ZL 201911320076.1
[4]钱东, 刘桂雨,张志良, 龙炫达, 李俊华,徐德垚, 苏侃达. 一种高性能析氧二硒化钴/四硒化三镍@NC/C复合催化剂及其制备方法和应用. ZL 201910424750.4 (2020年授权)
[5]钱东, 刘桂雨, 刘金龙, 李俊华,徐德垚, 苏侃达. 一种高性能析氧CoO@Co-NC/C复合催化剂及其制备方法和应用. ZL 201810613879.5 (2020年授权)
[6]钱东, 刘贝贝, 刘桂雨, 李俊华, 苏侃达, 徐德垚, 张志良. 一种析氧铁钴合金-铁酸钴/氮掺杂纳米碳管复合催化剂及其制备方法和应用. ZL 201910063039.0 (2020年授权)
[7]钱东, 范凯丽, 刘贝贝, 李俊华, 赵丹, 刘桂雨. 一种锰酸钴/NC/S复合材料及其制备方法和作为锂硫二次电池正极材料的应用. ZL 201810303742.X (2020年授权)
[8]钱东, 李军, 闵紫嫣, 刘贝贝, 刘桂雨. 一种析氧Fe掺杂二硒化钴@N-CT复合催化剂及其制备方法和应用. ZL 201710317777.4 (2019年授权)
[9]钱东, 李军, 闵紫嫣, 刘桂雨, 刘贝贝. 一种氧还原和析氧磷化钴@NPC双功能复合催化剂及其制备方法和应用. ZL 201710318217.0 (2019年授权)
[10]钱东, 刘 昆, 闵紫嫣, 王喜鹏, 李军. 一种氧还原La(OH)3/还原氧化石墨烯复合催化剂及其制备方法和应用. ZL 201610327533.X (2019年授权)
[11]钱东, 刘 昆, 王喜鹏, 闵紫嫣, 李军. 一种高性能氧还原MnO2-Mn3O4/碳纳米管复合催化剂及其制备方法和应用. ZL 201610332586.0 (2018年授权)
[12]钱东, 刘 昆, 王群峰, 王喜鹏, 陈泽华, 李 军, 冯海波. 一种LaCoO3/N-rGO复合物及其制备和应用方法. ZL 201510760611.0 (2018年授权)
[13]钱东, 蒋剑波, 李俊华, 李 军, 刘 昆, 闵紫嫣. 一种K1.33Mn8O16的制备方法及应用. ZL 201610828381.1 (2018年授权)
[14]钱东, 刘 昆, 王喜鹏, 李 军, 闵紫嫣. 一种高性能氧还原MnOx/Mn2N-N-C复合催化剂及其制备方法和应用. ZL 201610323925.9 (2018年授权)
[15]钱东, 王喜鹏, 李亚萍, 闵紫嫣, 邓 渺. 一种Cu2O-TiO2/g-C3N4三元复合物及其制备和应用方法. ZL 201510467563.6 (2018年授权)
[16]钱东, 李亚萍, 闵紫嫣, 冯海波, 路威. 一种In2O3·InVO4异质结构复合物及其制备和应用方法. ZL 201410138056.3 (2015年授权)
[17]钱东, 谭功荣, 罗冬明, 彭三军, 冯海波, 刘金龙. 一种InVO4·Cu2O·TiO2三元复合物及其制备方法和应用. ZL 201310291375.3 (2015年授权)
[18]钱东, 彭三军, 谭功荣, 冯海波,罗冬明, 刘金龙. 一种Cu2O-TiO2/还原石墨烯三元复合物及其制备方法和应用. ZL 201310288949.1 (2015年授权)
[19]钱东, 于向真, 胡学武, 刘志坚. 加氢催化剂载体、蒽醌法生产过氧化氢催化剂及制备方法. ZL 200610057362.X (2008年授权)
科研项目:
1. 新型可见光响应的二氧化钛-原钒酸铟-氧化亚铜三元异质结构复合材料的制备、应用及光催化作用机理的研究
立项时间: 2012-2015 项目经费:550000

2. MCA: Multiresolution Clustering Analysis Software Toolkit for Evaluation of Effective Mechanical Properties of As-Built Composite Structures
立项时间: 2022-2023 项目经费:139980

3. Collaborative Research: An Integrated Multiscale Modeling and Experimental Approach to High Cycle Fatigue Life Prediction
立项时间: 2013-2017 项目经费:249089

4. NER: Interplay Between Mechanical Deformation and Electronic Properties in Carbon Nanotube Structures
立项时间: 2004-2005 项目经费:105500

项目合作

合作意向:
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