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陈金喜

领域:新材料产业 学校:东南大学职称:教授

新型金属有机框架(MOFs)的研制及其应用
       本实验室致力于新型微纳金属有机框架材料、多级孔金属有机框架和金属有机框架超结构的研制;以及其在能源和环境领域的应用。


一、新型金属有机框架的研制



二、金属有机框架的应用
(一)、气体吸附与分离




(二)、金属-空气电池


 
     


(三)、光催化




陈金喜教授简历
教育经历
(1) 1996.9–2001.6, 南京大学, 无机化学, 博士(硕博连读), 导师: 忻新泉教授
(2) 1989.9–1993.6, 华中科技大学, 应用化学 , 学士, 导师: 李如松
工作经历
(1) 2007.4-至今, 东南大学, 化学化工学院, 教授
(2) 2005.12-2007.3, 名古屋工业大学, 博士后, 合作导师: Prof. Hideki Masuda
(3) 2003.10-2005.10, 日本京都大学, 博士后, 合作导师: Prof. Susumu Kitagawa
(4) 2001.8-2003.10, 复旦大学, 博士后, 合作导师: 赵东元院士
(5) 1993.8–1996.8, 南京有线电厂表面处理事业部
主讲课程
本科生 《无机化学》、《结构化学》
研究生 《量子化学》

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教育背景

工作经历

项目课题经历

论文、成果、著作等

[73] Fufang Chao, Baoxing Wang, Jiaojiao Ren, Yingwei Lu, Wenrui Zhang, Xizhang Wang, Lin Cheng, Yongbing Lou*, Jinxi Chen*, Micro-meso-macroporous FeCo-N-C derived from hierarchical bimetallic FeCo-ZIFs as cathode catalysts for enhanced Li-O2 batteries performance, Journal of Energy Chemistry, 2019, 35, 212-219.


[72] Jinxi Chen*, Fufang Chao, Xixi Mu, JifeiJiang, Qiong Zhu, Jiaojiao Ren, Yu Guo, Yongbing Lou, ZnIn2S4/UiO-66-(SH)2composites as efficient visible-light photocatalyst for RhB degradation, Inorg. Chem. Commun., 2019, 102, 25-29.


[71] Zhimin Liu, ShaopengQi, Guoning Liu, Lin Cheng*, Jinxi Chen*, Yongbing Lou*, 3D Metal-Rich Cu7.2S4/Carbon-Supported MoS2 Nanosheets for Enhanced Lithium-Storage Performance, ChemElectroChem, 2019, doi.org/10.1002/celc.201801561.


[70] Lin Cheng,*  Min Xu, Qingsong Zhang, Guochang Li, Jinxi Chen, Yongbing Lou, NH4F assisted andmorphology-controlledfabrication of ZnCo2O4nanostructures on Ni-foam forenhanced energy storage devices, Journalof Alloysand Compounds, 2019, 781,245-254.


2018


[69] Ling Li,Guoning Liu, Shaopeng Qi, Xindi Liu, Liuyu Gu, Yongbing Lou*, Jinxi Chen*, Yixin Zhao*,Highly efficientcolloidal MnxCd1-xS nanorod solid solution for photocatalytic hydrogengeneration, J. Mater. Chem. A, 2018,6, 23683-23689.


[68] Pan Yang, Guoning Liu, Badi Liu, Xindi Liu, Yongbing Lou*, Jinxi Chen*, Yixin Zhao*, All-inorganic Cs2CuX4 (X = Cl, Br,and Br/I) perovskite quantum dots with blue-green luminescence, Chem.Commun., 2018, 54, 11638-11641.


[67] Yongbing Lou*, Jinxin He, Guoning Liu, Shaopeng Qi, Lin Cheng, Jinxi Chen*, Yixin Zhao*, Jun-Jie Zhu*,Efficient hydrogen evolution from thehydrolysis of ammonia borane using bilateral- like WO3-x nanorods coupled withNi2P nanoparticles, Chem. Commun.,2018, 54, 6188-6191.


  1. [66] YongbingLou*, Mengying Fang, Jinxi Chen*, Yixin Zhao*, Formation of Highly LuminescentCesium Bismuth Halide Perovskite Quantum Dots Tuned by Anion Exchange, Chem.Commun., 2018, 54, 3779-3782.


  2. [65] Qingsong Zhang, Jinghua Yang, Min Xu, Jinxi Chen, Yongbing Lou, Jiancheng Zhou, LinCheng,* Fabrication of WO2.72/UiO-66 nanocomposites and effects of WO2.72 ratioon photocatalytic performance: judgement of the optimal content and mechanism study, J. Chem. Technol. Bio., 2018, DOI: 10.1002/jctb.5627.


  3. [64] YongbingLou*, Yake Zhang, Lin Cheng, Jinxi Chen*, and Yixin Zhao*, A Stable PlasmonicCu@Cu2O/ZnO Heterojunction for Enhanced Photocatalytic H2 Generation, ChemSusChem, 2018, 11, 1505-1511.


  4. [63] Xiaoyue Ma, Yongbing Lou, and Jinxi Chen*, New UiO- 66/CuxS heterostructures: surfacefunctionalization synthesis and their application in photocatalytic degradationof RhB, Bulletin of the Chemical Society of Japan, 2018, 91, 515-522.


  5. [62] Xixi Mu, Jifei Jiang, Fufang Chao,Yongbing Lou, Jinxi Chen*, Ligand modification of UiO-66 with an unusualvisible light photocatalytic behavior for RhB degradation, Dalton Trans., 2018,47, 1895-1902.


  6. [61] YongbingLou*, Yandan Niu, Dongwen Yang, Qiaoling Xu, Yuhang Hu, Ying Shen, Jing Ming,Jinxi Chen, Lijun Zhang*, and Yixin Zhao*, Rod-shaped thiocyanate inducedabnormal band gap broadening in SCN- doped CsPbBr3 perovskite nanocrystals,Nano Research, 2018, 5, 2715-2723.


  7. 2017


  1. [60] Wenjuan Yan, Ziyang Guo, Huoshu Xu,Yongbing Lou, Jinxi Chen* and Qiaowei Li,* Downsizing metal–organic frameworkswith distinct morphologies as cathode materials for high-capacity Li–O2batteries, Mater. Chem. Front., 2017, 1, 1324-1330.


  2. [59] Mengjuan Du, Dan He, Yongbing Lou,*Jinxi Chen*, Porous nanostructured ZnCo2O4 derived from MOF-74:high-performance anode materials for lithium ion batteries, Journal of Energy Chemistry, 2017, 26, 673-680.


  3. [58] Xin Zhang, Zhong-Jie Wang, Shu-GuangChen, Zhen-Zhen Shi, Jin-xi Chen*, and He-Gen Zheng*, Cd-Based metal–organicframeworks from solvothermal reactions involving in situ aldimine condensationand the highly sensitive detection of Fe3+ ions, Dalton Trans., 2017, 46,2332-2338.


  4. [57] Yongbing Lou*, Dan He, Zhifei Wang,*Yuhang Hu, Ying Shen, Jing Ming, Jinxi Chen, Nanocomposite of ultrasmall Co3O4nanoparticles deposited on ultrathin MoS2 surfaces for excellent performanceanode materials in lithium ion batteries, Chemical Engineering Journal, 2017,313, 1269-1277.


  5. [56] Zhen-Nan Shan, Yong-Bing Lou, JinxiChen*, Triblock copolymer-assisted synthesis of hierarchical ZIF-67 in thepresence of 1,3,5-trimenthylbenzene, Inorg. Chem. Commun, 2017, 78, 74-77.


  6. [55] Jinxi Chen*, Xixi Mu, Mengjuan Du,Yongbing Lou, Porous rod-shaped Co3O4 derived from Co-MOF-74 ashigh-performance anode materials for lithium ion batteries, Inorg. Chem.Commun, 2017, 84, 241-245.


  7. 2016

  8. [54] Zhifei Wang,* Xuejiao Tang, XiaoxiaoWang, Dandan Yang,Chao Yang, YongbingLou, Jinxi Chen*, Nongyue He,* Near-infrared light-induced dissociation ofzeolitic imidazole framework-8 (ZIF-8) with encapsulated CuS nanoparticles andtheir application as a therapeutic nanoplatfor, Chem. Commun., 2016, 52(82),12210-12213.


  9. [53] Zhong-Jie Wang, Ling Qin, Jin-xi Chen,He-Gen Zheng,* H-Bonding Interactions Induced Two Isostructural Cd(II)Metal-Organic Frameworks Showing Different Selective Detection of NitroaromaticExplosives, Inorg. Chem., 2016, 55(21), 10999-11005.


  10. [52] Xiangli Guo, Tiantian Xing, YongbingLou,* Jinxi Chen*, Controlling ZIF-67 crystals formation through various cobaltsources in aqueous solution, J. of Solid State Chem., 2016, 235, 107-112.


  11. [51] Xin Zhang, 专利、著作版权等

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