华南理工大学

邓远富

发布日期:2024-05-03 浏览次数:

更新日期:2022年2月25日 姓 名 邓远富 性 别 男 出生年月 1976年7月 籍贯 湖南常宁市 民 族 汉族 政治面貌 中国共产党党员 最后学历 博士研究生 最后学位 理学博士 技术职称 教授 导师类别 博、硕导 行政职务 系主任 Email chyfdeng@scut.edu.cn 工作单位 化学与化工学院 邮政编码 510640 通讯地址 广州市天河区五山路381号华工15号楼 单位电话 个人简介 邓远富(Yuanfu Deng),男,汉族,1976年出生,湖南常宁人。2000年毕业于湖南师范大学化学教育专业,获学士学位;2005年毕业于厦门大学化学物理化学专业,获理学博士学位。2007-2008年,在加拿大滑铁卢大学做博士后研究,2005年开始至今在华南理工大学任教,2009年晋升为副教授,2015年晋升为教授,2016年被聘为博士生指导教师。现为广东省本科高校化学类教学指导委员会秘书长,中国能源学会新能源组委员,中国电工学会超级电容器分会委员,中国储能与动力电池及其材料专业委员会委员。长期致力于电化学储能先进材料及其器件等方面的研究工作,主要研究方向包括锂/钠离子电池材料和技术、超级电容器和光/电催化以及工业废水处理等。曾获得了国家自然科学基金(5项)、广东省自然科学基金(2项)、教育部回国留学人员基金和广州市科技计划国际合作重点项目等10多项课题的资助。先后以第一/通讯作者在Adv. Energy. Mater., Energy Storage Mater., Chem. Commun., J. Mater. Chem. A, ACS Appl. Mater. Interface, Carbon, J. Power Sources, ACS Sustainable Chem. Eng.和J. Energy Chem.等国际著名期刊上发表论文70多篇。论文SCI他引4000多次(10篇论文入选ESI高被引论文,3篇论文入选ESI热点论文)。研究成果先后多次被国际知名科学家在Science, Chem. Rev., Adv. Mater.和Angew .Chem. Int. Ed.等世界顶级学术期刊上引用和高度评价。主讲《大学化学》、《现代电化学储能研讨》、《无机化学》、《无机化学实验》、《大学化学实验》和《现代电化学》等本科生和研究生课程,多次获得华南理工大学教学奖。作为主编编写了《现代电化学》教材1部、作为副主编编写了《现代无机化学》和《现代无机化学实验》教材。 工作经历 加拿大滑铁卢大学, 博士后 (2007.1-2008.12)华南理工大学化学与化工学院, 讲师 (2005. 11—2009.11)华南理工大学化学与化工学院, 副教授 (2009. 12—2015.8)香港科技大学霍英东研究院,访问学者(2010.4—2014.3)华南理工大学化学与化工学院, 教授 (2015. 9—至今)华南理工大学化学与化工学院, 教授,博士生导师 (2016. 7—至今)华南理工大学化学与化工学院, 教授,博士生导师 ,应用化学系主任(2017. 10—2021.11)华南理工大学化学与化工学院, 教授,博士生导师 ,化学系主任(2021. 12—至今) 教育经历 湖南师范大学化学系, 学士 (1996.9-2000.7)厦门大学, 博士 (2000.9-2005.7) 获奖、荣誉称号 两届“华南理工大学优秀硕士论文指导教师”三届“华南理工大学本科毕业论文优秀指导教师”两次华南理工教学奖 社会、学会及学术兼职 Chin. Chem. Lett. (中国化学快报)编委广东省本科类高校化学类专业教学指导委员会秘书长中国能源学会新能源组委员中国电工学会超级电容器分会委员中国储能与动力电池及其材料专业委员会委员中国化学会会员中国化工学会储能分会会员 研究领域 电化学先进储能材料及其器件(锂/钠电池电池及其相关材料、超级电容器及其相关材料);电/光催化制氢及其相关材料;微/纳米复合材料的设计及高效制备的化工过程;工业废水处理。 科研项目 代表性科研项目:(1) 国家自然科学基金项目—全固态锂电池用高面容量复合正极的设计、制备及其界面性能调控,2022/01-2025/12(2) 国家自然科学基金项目—高比能锂离子电容器掺杂碳正极材料的设计、制备及性能改善机理研究,2019/01-2022/12(3) 国家自然科学基金—香港RGC联合基金项目“电子和锂离子传输增强及多硫化物锚定的高性能锂硫电池正极的制备、性能及相关机理研究,2017/01-2020/12(4) 广州市科技计划产学研重大专项—高比能长寿命锰基动力电池体系的技术开发和转化,2017/05-2019/12(5) 国家自然科学基金项目—锂离子电容器负极用高性能多孔超细钛酸镁/碳复合材料的设计、合成及电极构筑,2015/01-2017/12、主持; (6) 广东省自然科学基金—高功率、长寿命镍锰酸锂/碳全电池的构建及其相关基础研究,2015/01-2016/12、主持; 发表论文 近年来代表性论文(按时间倒序):(1) Li, L. S.; Deng, Y. F.*; Duan, H. H.; Qian, Y. X.; Chen, G. H. LiF and LiNO3 as synergistic additives for PEO-PVDF/LLZTO-based composite electrolyte towards high-voltage lithium batteries with dual-interfaces stability. J. Energy Chem. 2022, 65 319–328.(2) Li, L. S.; Wang, J. Zhang, L. T.; Duan, H. H.; Deng, Y. F.*; Chen, G. H. Rational design of a heterogeneous double-layered composite solid electrolyte via synergistic strategies of asymmetric polymer matrices and functional additives to enable 4.5 V all-solid-state lithium batteries with superior performance. Energy Storage Mater., 2022, 45, 1062-1073.(3) Duan, H. H.; Li, L. S.; Zou, K. X.; Deng, Y. F.*; Chen, G. H. Cyclodextrin-Integrated PEO-Based Composite Solid Electrolytes for High-Rate and Ultrastable All-Solid-State Lithium Batteries. ACS Appl. Mater. Interfaces 2021, 13, 57380−57391.(4) Li, L. S.; Duan, H. H.; Li J.; Zhang, L.*; Deng, Y. F.*; Chen, G. H. Toward High Performance All-Solid-State Lithium Batteries with High-Voltage Cathode Materials: Design Strategies for Solid Electrolytes, Cathode Interfaces, and Composite Electrodes. Adv. Energ. Mater., 2021, 11, 2003154. (5) Zou, K. X.; Deng, Y. F.*; Wu, W. J.; Zhang S. W.; Chen, G. H. A novel eutectic solvent precursor for efficiently preparing N-doped hierarchically porous carbon nanosheets with unique surface functional groups and micropores towards dual-carbon lithium-ion capacitors. J. Mater. Chem. A, 2021, 9, 13631-13641.(6) Wang, S. X.; Liu, X. Y.; Duan, H. H.; Deng, Y. F.*; Chen, G. H. Fe3C/Fe nanoparticles embedded in N-doped porous carbon nanosheets and graphene: A thin functional interlayer for PP separator to boost performance of Li-S batteries. Chem. Eng. J., 2021, 415, 129001.(7) Li, L. S.; Deng, Y. F.*; Chen, G. H. Status and prospect of garnet/polymer solid composite electrolytes for all-solid-state lithium batteries. J. Energy Chem. 2020, 50, 154–177. (ESI高被引论文)(8) Zou, K. X.; Guan, Z. X.; Deng, Y. F.*; Chen, G. H. Nitrogen-rich porous carbon in ultra-high yield derived from activation of biomass waste by a novel eutectic salt for high performance Li-ion capacitors. Carbon, 2020, 161, 25-35.(9) Huang, H.; Tan, H. Q.; Zou, K. X.; Deng, Y. F.*; Chen, G. H. An environmentally friendly strategy to prepare nitrogen-rich hierarchical porous carbon for high-performance supercapacitors. Chem. Commun., 2020, 56, 2182—2185.(10) Wang, S. X.; Liu, X. Y.; Zou, K. X.; Deng, Y. F.*; Chen, G. H.  Toward a practical Li-S battery enabled by synergistic confinement of a nitrogen-enriched porous carbon as a multifunctional interlayer and sulfur-host material. J. Electroanal. Chem., 2020, 858, 113797.(11) Bao, Y. B.; Wang, J.; Qian, Y. X.; Deng, Y. F.*; Yang, X. F.; Chen, G. H. An appropriate amount of new spinel phase induced by control synthesis for the improvement of electrochemical performance of Li-rich layered oxide cathode material. Electrochim. Acta, 2020, 330, 135240. (12) Yang, Y. B.; Wang, S. X.; Zhang, L. T.; Deng, Y. F.*; Xu, H.; Qin, X. S.; Chen, G. H. CoS-interposed and Ketjen black-embedded carbon nanofiber framework as a separator modulation for high performance Li-S batteries. Chem. Eng. J., 2019, 369, 77-86. (13) Wang, S.X.; Zou, K. X.; Qian, Y. X.; Deng, Y. F.*; Zhang, L.; Chen, G. H. Insight to the synergistic effect of N-doping level and pore structure on improving the electrochemical performance of sulfur/N-doped porous carbon cathode for Li-S batteries. Carbon, 2019, 144, 745-755.(14) Zou. K. X.; Tan, H. Q.; Wang, L.M.; Qian, Y. X.*; Deng, Y. F.*; Chen, G. H.; Biomass waste-derived nitrogen-rich hierarchical porous carbon offering superior capacitive behavior in an environmentally friendly aqueous MgSO4 electrolyte. J. Colloid Interface Sci., 2019, 537,475–485. (15) Zhuang, H. Bao, Y. B.; Nie, Y. K.; Qian, Y. X.; Deng, Y. F.*; Chen, G. H. Synergistic effect of composite carbon source and simple pre-calcining process on significantly enhanced electrochemical performance of porous LiFe0.5Mn0.5PO4/C agglomerations. Electrochim. Acta, 2019, 314, 102-6114. (16) Yang, Y. B.; Xu, H.; Wang, S. X.; Deng, Y. F.*; Qian, X. Y.; Qin, X. S.; Chen, G. H.* N-doped carbon-coated hollow carbon nanofibers with interspersed TiO2 for integrated separator of Li-S batteries. Electrochim. Acta, 2019, 297, 641-649.(17) Yang, Y. B.; Zhang, L. T.; Xu, H.; Qin, X. S.; Deng, Y. F.*; Chen, G. H.* Net-Structured Filter of Co(OH)2-Anchored Carbon Nanofibers with Ketjen Black for High Performance Li−S Batteries. ACS Sustainable Chem. Eng., 2018, 6, 17099−17107. (18)  Gao, M.; Bao, Y. B.; Qian, Y. X.*; Deng*, Y. F.; Li, Y. W.; Chen, G. H. Porous Anatase-TiO2(B) Dual-Phase Nanorods Prepared from in Situ Pyrolysis of a Single Molecule Precursor Offer High Performance Lithium-Ion Storage. Inorg. Chem., 2018, 57, 12245-12254.(19) Zou, K. X.; Deng, Y. F.*; Chen, J. P.; Qian, Y. X.; Li, Y. W.; Chen, G. H.  Hierarchically porous nitrogen-doped carbon derived from the activation of agriculture waste by potassium hydroxide and urea for high-performance supercapacitors. J. Power Sources, 2018, 378, 579. (ESI高被引论文)(20) Deng, Y. F.*; Dong, S. Y.; Li, Z. F.; Jiang, H.; Zhang, X. G.; Ji, X. L. Applications of Conventional Vibrational Spectroscopic Methods for Batteries Beyond Li-Ion. Small Methods, 2018, 3, 1700332.(21) Zhuang, H.; Xie, Y.; Tan, H. Q.; Deng, Y. F.*; Li, Y. W.; Chen, G. H. CoFex-CoFe2O4/N-doped carbon nanocomposite derived from in situ pyrolysis of a single source precursor as a superior bifunctional electrocatalyst for water splitting. Electrochim. Acta, 2018, 262, 18. (22) Deng, Y. F.*; Yang, C. X.; Zou, K. X.; Qin, X. S.; Zhao, Z. X.; Chen, G. H.* Recent advances of Mn-rich LiFe1-yMnyPO4 (0.5 ≤ y < 1.0) cathode materials for high energy density lithium ion batteries. Adv. Energ. Mater., 2017, 7, 1601958. (23) Gao, M.; Zou, K. X.; Deng, Y. F. *; Zhao, Z. X.; Li, Y. W.; Chen, G. H. An unprecedented case: A low apecific surface area anatase/N-doped carbon nanocomposite derived from a new single source precursor affords fast and stable lithium storage. ACS Appl. Mater. Interfaces, 2017, 9, 28527−28536. (24) Yang, C. X.; Deng, Y. F.*; Gao. M.; Yang, X. F.; Qin, X. S.; Chen, G. H. High-rate and long-life performance of a truncated spinel cathode material with off-stoichiometric composition at elevated temperature. Electrochim. Acta, 2017, 225, 198. (25) Deng, Y. F.*; Xie, Y.; Zou, K. X.; Ji, X. L.* Review on recent advances in nitrogen-doped carbons: preparations and applications in supercapacitors. J. Mater. Chem. A, 2016, 4, 1144. (封面论文,ESI高被引论文,J. Mater. Chem. A热点论文)(26) Liu, J. J.; Deng, Y. F.*; Li, X. H.*; Wang, L. H. Promising nitrogen-rich porous carbons derived from one-step calcium chloride activation of biomass-based waste for high performance supercapacitors. ACS Sustainable Chem. Eng., 2016, 4, 177. (ESI高被引论文)(27) Deng, Y. F.*; Fang, C. C.; Chen, G. H.* The developments of SnO2/graphene nanocomposites as anode materials for high performance lithium ion batteries: A review. J. Power Sources, 2016, 304, 81. (ESI高被引论文)(28) Deng, Y. F.*; Xu, H.; Bai, Z. W.; Huang, B. L.; Su, J. Y.; Chen, G. H.* Durable polydopamine-coated porous sulfur coreeshell cathode for high performance lithium-sulfur batteries. J. Power Sources, 2015, 300, 386. (29) Xie, F. X.; Deng, Y. F.*; Xie, Y.; Xu, H. J.; Chen, G. H.* Ultra-small nanoparticles of MgTi2O5 embedded in carbon rods with superior rate performance for sodium ion batteries. Chem. Commun., 2015, 51, 3545. (30) Fang, C. C.; Deng, Y. F.*; Xie, Y.; Su, J. Y.; Chen, G. H.* Improving the electrochemical performance of Si nanoparticle anode material by synergistic strategies of polydopamine and graphene oxide coatings. J. Phy. Chem. C, 2015,119, 1720. (31) Zhou, X.; Xie, Y.; Deng, Y. F.*; Qin, X. S.; Chen, G. H.* The enhanced rate performance of LiFe0.5Mn0.5PO4/C cathode material via synergistic strategies of surfactant-assisted solid state method and carbon coating. J. Mater. Chem. A, 2015, 3, 996. (ESI高被引论文,J. Mater. Chem. A热点论文)(33) Xu, H.; Deng, Y. F.*; Zhao, Z. X.; Xu, H. J.; Qin, X. S.; Chen, G. H.* The superior cycle and rate performance of a novel sulfur cathode by immobilizing sulfur into porous N-doped carbon microspheres. Chem. Commun., 2014, 50, 10468. (34) Zhou, X.; Deng, Y. F.*; Wan, L. N.; Qin, X. S.; Chen, G. H.* A surfactant-assisted synthesis route for scalable preparation of high performance of LiFe0.15Mn0.85PO4/C cathode using bimetallic precursor. J. Power Sources, 2014, 265, 223. (ESI热点论文)(35) Qian, Y. X.; Deng, Y. F.*; Wan, L. N.; Qin, X. S.; Chen, G. H.* Investigation of the effect of extra lithium addition and post-annealing on the electrochemical performance of high-voltage spinel LiNi0.5Mn1.5O4 cathode material. J. Phys. Chem. C, 2014, 118, 15581. (36) Sun, C.; Deng, Y. F.*; Wan, L. N.; Qin, X. S.; Chen, G. H.* Graphene oxide-immobilized NH2-terminated silicon nanoparticles by cross-linked interactions for highly stable silicon negative electrodes. ACS Appl. Mater. Interfaces, 2014, 6, 11277. 出版专著和教材 《现代电化学》,2014,华南理工大学出版社《现代无机化学》,2020,化学工业出版社《现代无机化学实验》,2020, 化学工业出版社 科研创新 近年来授权专利(按时间倒序): (1) 邓远富,邹凯翔,一种生物质废弃物热还原活化硫酸锂制备锂硫电池正极Li2S/NCs复合材料的方法。中国发明专利,授权号:ZL 201610816165.(2) 邓远富,杨春香,一种高温长寿命型非化学计量比的锰酸锂基正极材料及其制备方法。国发明专利,授权号:ZL201610816456.(3) 邓远富,李雪辉,刘旌江,王乐夫,基于CaCl2催化蔗渣热裂解制备多级孔结构的氮掺杂碳材料的方法。中国发明专利,授权号:ZL. 104876207.(4) 邓远富,孙诚,覃旭松,徐辉,陈国华,一种基于化学键构筑的高性能硅/氧化石墨烯负极材料及其制备方法。中国发明专利,授权号:ZL.2013.1.0355328.0.(5) 邓远富,周玉波,施志聪,陈申,陈国华,一种制备高功率性能锂离子电池正极材料LiMn2O4的新型方法。中国发明专利,授权号:ZL 2012.1.013996.8. 教学活动 主讲《大学化学》、《现代无机化学》、《现代电化学储能研讨》、《无机化学实验》、《大学化学实验》和《现代电化学》等本科生和研究生课程。 指导学生情况 目前指导博士生4名,硕士生6名。

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