陈立东1981年,毕业于湖南大学。
1982年5月,毕业于西安电子科技大学应用数学系并获得学士学位,毕业后直接考取该校应用数学专业研究生。
1982年7月--1984年9月,湖南大学助教。
1984年9月,毕业并获硕士学位;10月赴日本留学。
1990年4月,在日本东北大学获工学博士学位。
1990年4月--1992年9月,日本RIKEN(理研)株式会社 Chief Engineer。
1992年10月--1995年9月,日本航空宇宙技术研究所特别研究员。
1995年10月--1998年10月,日本东北大学金属材料研究所助手。
1998年11月--2001年3月,日本东北大学金属材料研究所副教授。
2000年3月--2000年4月,美国密西根大学物理系访问学者。
2001年4月--今,上海硅酸盐研究所研究员、博导。
2005年7--2013年12日,上海硅酸盐研究所副所长。
2013年10月--今,中科院上海硅酸盐研究所国家重点实验室主任。[2]
2018年1月,经政协上海市第十二届委员会第39、40次常委会议通过,陈立东当选政协上海市第十三届委员会委员。
陈立东
陈立东研究员长期从事热电转换材料与器件的研究开发与应用工作。围绕电-热协同输运关键科学问题,系统研究了微观结构与电热输运性质的关系以及结构调控机制,发展了新一代高性能热电材料;系统开展了器件设计与集成技术的研究,研制成功碲化铋、方钴矿、锗硅合金热电器件以及级联器件,最大转换效率达到12%,并采用自主开发的高性能热电器件研制成功多种特种电源技术。所开发的高性能热电材料与热电转换技术正逐步应用于热电致冷与温控、热能高效回收利用等技术领域。[3]
陈立东一、先进热电材料现阶段主要的研究内容包括:
1、新型热电材料的制备和性能研究
2、热电器件和系统的优化设计及集成
3、纳米复合材料的制备及其微结构的控制和解析
二、具有电阻可逆变效应的薄膜材料
现阶段的主要研究内容包括:
1、高性能电脉冲电阻可逆变效应材料的制备
2、电脉冲电阻可逆变效应的机理研究
三、放电等离子体烧结(SPS)制备陶瓷基纳米复合材料
现阶段的主要研究内容包括:
1、SPS烧结制备高熔点、高强度以及具有较好化学稳定性的陶瓷基纳米复合材料
2、SPS烧结机理研究。
( 1 )Ba8Ga16Ge30热电单晶的生长方法,发明,2010,第 2 作者,专利号: 201110415867.X
( 2 )方钴矿基热电材料及器件用热防护涂层及其制备方法,发明,2011,第 1 作者,专利号: 201110401251.7
( 3 )热电材料化合物及其制备方法,发明,2011,第 1 作者,专利号: 201110318247.4
( 4 )一种碲化铋基热电元件及其制备方法,发明,2011,第 1 作者,专利号: 201110285849.2
( 5 )一种纳米/微米复合晶粒碲化铋基热电材料的制备方法,发明,2011,第 1 作者,专利号: 201110051508.0
( 6 )一种采用电化学法制备层片合金热电材料的方法及其材料,发明,2011,第 1 作者,专利号: 201110261010.7
( 7 )空穴补偿型方钴矿热电材料及其制备方法,发明,2011,第 1 作者,专利号: 201110194902.X
( 8 )P型方钴矿材料及其制备方法,发明,2010,第 1 作者,专利号: 201010259433.0
( 9 )一种铋基储氢材料及其制备方法,发明,2008,第 1 作者,专利号: ZL200910047339.6
( 10 )p型方钴矿材料及其制备方法,发明,2013,第 1 作者,专利号: 201010259433.0
( 11 )一种铋基硫族化合物热电薄膜的制备方法,发明,2013,第 1 作者,专利号: 201010231825.6
( 12 )METHOD FOR FABRICATING THERMOELECTRIC DEVICE,发明,2013,第 1 作者,专利号: EP 2377175
( 13 )一种三元类金刚石结构的热电材料的制备方法,发明,2013,第 1 作者,专利号: 201010127327.7
( 14 )一种金红石二氧化钒的制备方法,发明,2013,第 1 作者,专利号: 201010275610.4
( 15 )能够抑制Cu离子迁移的热电材料以及抑制Cu基热电材料中Cu离子迁移的方法,发明,2014,第 3 作者,专利号: 201410520197.1
( 16 )一种热电材料或热电器件用保护涂层,发明,2014,第 1 作者,专利号: 201410074938.8
( 17 )p型可逆相变高性能热电材料及其制备方法,发明,2014,第 3 作者,专利号: PCT/CN2014/078764
( 18 )一种碲化铋基材料的干法刻蚀方法,发明,2014,第 4 作者,专利号: 201410002044.8
( 19 )一种环形构造热电器件的制备方法,发明,2014,第 3 作者,专利号: 201410039382.9
( 20 )一种中高温热电模块,发明,2014,第 1 作者,专利号: 201410103467.9( 21 )Thermoelectric device, electrode materials and method for fabricating thereof,发明,2015,第 1 作者,专利号: US9012760B2
( 22 )GaSb-filled skutterudite composite material and method of preparing the same,发明,2015,第 1 作者,专利号: 5680090
( 23 )GaSb-filled skutterudite composite material and method of preparing the same,发明,2015,第 1 作者,专利号: US8968589
( 24 )P-type skutterudite material and method of making the same,发明,2015,第 1 作者,专利号: 2606160
( 25 )A coating for thermoelectric materials and a device containing the same,发明,2016,第 1 作者,专利号: EP2460182B1
( 26 )GaSb-filled skutterudite composite material and method of preparing the same,发明,2016,第 1 作者,专利号: EP2483205B1
( 27 )A coating for thermoelectric materials and a device containing the same,发明,2016,第 1 作者,专利号: TWI541382B
( 28 )一种方钴矿热电材料的制备方法,发明,2017,第 1 作者,专利号: 201410838061.5
( 29 )一种中温区具有优异热电性能的碲化铋材料及其制备方法,发明,2017,第 1 作者,专利号: 201510051468.8
( 30 )一种热电材料或热电器件用保护涂层,发明,2017,第 1 作者,专利号: 201410074938.8
( 31 )方钴矿基热电元件设备及其制备方法,发明,2017,第 1 作者,专利号: 201310338239.5
( 32 )铜硫基高性能热电材料及其制备方法,发明,2017,第 1 作者,专利号: 201210525982.7
( 33 )制备热电元器件的方法及热电元器件,发明,2017,第 1 作者,专利号: 201310549191.2
( 34 )一种热电空调模块,实用新型,2017,第 5 作者,专利号: 201621478866.4
( 35 )一种增强增韧热电复合材料及其制备方法,发明,2017,第 5 作者,专利号: 201310422591.7
( 36 )受保护的热电元件、包含所述元件的热电器件及其形成方法,发明,2017,第 2 作者,专利号: 201310432478.7
( 37 )一种中高温热电模块,发明,2017,第 1 作者,专利号: 201410103467.9
( 38 )一种激光高效制备方钴矿热电材料的方法,发明,2017,第 1 作者,专利号: 201610545800.0
( 39 )一种高膜厚高电导率的PEDOT薄膜及其制备方法,发明,2018,第 1 作者,专利号: 201610744324.5
( 40 )复合热电材料及其制备方法,发明,2018,第 1 作者,专利号: 201310722885.1
( 41 )p型可逆相变高性能热电材料及其制备方法,发明,2018,第 3 作者,专利号: EP3006397-EP14807559.1
( 42 )p型可逆相变高性能热电材料及其制备方法,发明,2018,第 3 作者,专利号: 特许6266099-特愿2016-517142
( 43 )一种铜硒基高性能热电材料及其制备方法,发明,2018,第 3 作者,专利号: 201510058519.X
( 44 )一种一步原位反应制备均质块体热电材料的方法,发明,2018,第 3 作者,专利号: 201510058487.3
(1)热电器件的设计与规模化制造的关键技术,主持,部委级,2013-01--2017-12
(2)高性能无机复合能量转换材料的研究,主持,国家级,2012-01--2014-12
(3)重大方向性项目,主持,院级级,2009-12--2014-03
(4)面向新能源应用的无机复合材料,主持,院级级,2008-01--2013-01
(5)热电发电器件的研究,主持,其他级,2008-01--2013-12
参考资料[2]
陈立东(左)2021年8月1日,中国科学院公布2021年中国科学院院士增选初步候选人名单,陈立东在列。[1]
2018年1月8日,陈立东凭借参与的面向太阳能利用的高性能光电材料和器件的结构设计与性能调控项目获得2017年度国家自然科学奖二等奖。[4]
2016年,部委级中国侨界贡献奖、部委级项目责任专家
2015年,上海市科技精英提名奖
2014年,国家技术发明二等奖
2013年,国家自然科学二等奖
2012年,上海市自然科学一等奖
2011年,上海市领军人才
2009年,上海市优秀学科带头人
2004年,上海市优秀留学回国人员
2003年,通用汽车中国科技成就一等奖
2002年,日本粉体与粉末冶金协会研究进步奖
1998年,日本Madzuda财团研究助成奖
1992年,日中科技交流协会“伏见”研究奖励奖[2]
2016-06-01-今,亚洲热电联盟主席
2015-01-01-今,npj Computational Materials,联合主编
2011-06-01-今,International Ceramics
2010-12-24-2014-10-14,中国材料研究学会热电材料及应用分会,主任
2008-08-01-今,无机材料学报执行主编,
2007-06-30-2013-06-30,国际热电学会, 理事
2006-05-01-2009-03-31,J. Ceram. Soc. Japan期刊编委
发表论文
(1)Room-temperature ductile inorganic semiconductor,NATURE MATERIALS,2018,通讯作者
(2)Intrinsically High Thermoelectric Performance in AgInSe2 n-Type Diamond-Like Compounds,ADVANCED SCIENCE,2018,通讯作者
(3)Suppression of atom motion and metal deposition in mixed ionic electronic conductors,NATURE COMMUNICATIONS,2018,通讯作者
(4)One-step Synthesis and Enhanced Thermoelectric Properties of Polymer-Quantum Dot Composite Films,ANGEWANDTE CHEMIE-INTERNATIONAL EDITION,2018,通讯作者
(5)Scanning laser melting for rapid and massive fabrication of filled skutterudites with high thermoelectric performance,JOURNAL OF MATERIALS CHEMISTRY A,2018,通讯作者
(6)Thermoelectric properties of Cu2Se1-xTex solid solutions,JOURNAL OF MATERIALS CHEMISTRY A,2018,通讯作者(7)Understanding the Intrinsic Carrier Transport in Highly Oriented Poly(3-hexylthiophene): Effect of Side Chain Regioregularity,POLYMERS,2018,通讯作者
(8)Entropy optimized phase transitions and improved thermoelectric performance in n-type liquid-like Ag9GaSe6 materials,MATERIALS TODAY PHYSICS,2018,通讯作者
(9)Optimizing the Thermoelectric Performance of Poly(3-hexylthiophene) through Molecular-Weight Engineering,CHEMISTRY_AN_ASIAN_JOURNAL,2018,通讯作者
(10)Cotton-based wearable poly(3-hexylthiophene) electronic device for thermoelectric application with cross-plane temperature gradient,THIN SOLID FILMS,2018,通讯作者
(11)方钴矿热电材料/Ti88Al12 界面稳定性研究,Journal of Inorganic Materials,2018,通讯作者
(12)Realizing a thermoelectric conversion efficiency of 12% in bismuth telluride/skutterudite segmented modules through full-parameter optimization and energy-loss minimized integration,Energy & Environmental Science,2017,通讯作者
(13)Skutterudite with graphene-modified grain-boundary complexion enhances zT enabling high-efficiency thermoelectric device,Energy & Environmental Science,2017,通讯作者
(14)Research progress on conducting polymer based supercapacitor electrode materials,Nano Energy,2017,通讯作者
(15)Entropy as a Gene-Like Performance Indicator Promoting Thermoelectric Materials,Advanced Materials,2017,通讯作者
(16)Enhanced Thermoelectric Performance through Tuning Bonding Energy in Cu2Se1-xSx Liquid-like Materials,Chemistry of Materials,2017,通讯作者
(17)Micron-thick highly conductive PEDOT films synthesized via self-inhibited polymerization: roles of anions,Npg Asia Materials,2017,通讯作者
(18)Cu8GeSe6-based thermoelectric materials with an argyrodite structure,Journal of Materials Chemistry C,2017,通讯作者
(19)Roles of Cu in the Enhanced Thermoelectric Properties in Bi0.5Sb1.5Te3,Materials,2017,通讯作者
(20)CuInTe2xSx(x=0, 0.05, 0.1, 0.15)固溶体的热电性能,Thermoelectric Properties for CuInTe2xSx (x = 0, 0.05, 0.1, 0.15) Solid Solution,Journal of Inorganic Materials,2017,通讯作者
(21)Ce0.85Fe3CoSb12/rGO 热电纳米复合材料的制备及其力学性能,Preparation and Mechanical Properties of Ce0.85Fe3CoSb12/rGO Thermoelectric Nanocomposite Thermoelectric Nanocomposite Thermoelectric Nanocomposite,Journal of Inorganic Materials,2017,通讯作者
(22)Ultrahigh Thermoelectric Performance in SrNb0.2Ti0.8O3 Oxide Films at a Submicrometer-Scale Thickness,Acs Energy Letters,2017,通讯作者
(23)Engineering carrier scattering at the interfaces in polyaniline based nanocomposites for high thermoelectric performances,Materials Chemistry Frontiers,2017,通讯作者
(24)Ultrahigh thermoelectric performance in Cu2 ySe0.5S0.5 liquid-like materials,Materials Today Physics,2017,通讯作者
(25)Ultrahigh thermoelectric performance in Cu2 ySe0.5S0.5 liquid-like materials,Materials Today Physics,2017,通讯作者
(26)Solid state explosive reaction for nano-porous bulk thermoelectric materials,Advanced Materials,2017,通讯作者
(27)High thermoelectric performance and low thermal conductivity in Cu2−yS1/3Se1/3Te1/3 liquid-like materials with nanoscale mosaic structures,Nano Energy,2017,通讯作者
(28)Realizing high-performance thermoelectric power generation through grain boundary engineering of skutterudite-based nanocomposites,Nano Energy,2017,通讯作者
(29)Intrinsically High Thermoelectric Performance in AgInSe2 n-Type Diamond-Like Compounds,Advanced Science,2017,通讯作者
(30)Optimized thermoelectric properties in pseudocubic diamond-like CuGaTe 2 compounds,J. Mater. Chem. A.,2016,通讯作者
(31)Engineered Molecular Chain Ordering in Single-Walled Carbon Nanotubes/Polyaniline Composite Films for High-Performance Organic Thermoelectric Materials,Chem-Asian J.,2016,通讯作者
(32)Enhanced Thermoelectric Properties of Polyaniline Nanofilms Induced by Self-Assembled Supramolecules,Chem-Asian J.,2016,通讯作者
(33)Thermoelectric Devices for Power Generation: Recent Progress and Future Challenges,Advanced Engineering Materials,2016,通讯作者
(34)Fabrication and contact resistivity of W-Si3N4/TiB2-Si3N4/p-SiGe thermoelectric joints,Ceramics International,2016,通讯作者
(35)Thermoelectric performance of Cu1-x-delta AgxInTe2 diamond-like materials with a pseudocubic crystal structure,Inorganic Chemistry Frontiers,2016,通讯作者
(36)Microstructure and Thermoelectric Properties of p-type Si80Ge20B0.6-SiC Nanocomposite,Journal of Inorganic Materials,2016,通讯作者
(37)Enhanced thermoelectric performance in rare-earth filled-skutterudites,Journal of Materials Chemistry C,2016,通讯作者
(38)Influence of electronic type of SWNTs on the thermoelectric properties of SWNTs/PANI composite films,Organic electronics,2016,通讯作者
(39)On the tuning of electrical and thermal transport inthermoelectrics: an integrated theory–experiment perspective,NPJ Comput. Mater,2016,通讯作者
(40)Recent advances in high-performance bulk thermoelectric materials,International Materials Reviews,,2016,通讯作者
(41)Reduction of thermal conductivity by low energy multi-Einstein optic modes,J Mater Omics,2016,通讯作者
(42)High efficiency Bi2Te3-based materials and devices for thermoelectric power generation between 100 and 300 degrees C,Energy & Environmental Science,2016,通讯作者
(43)Ce0.85Fe3CoSb12/rGO热电纳米复合材料的制备及其力学性能,Preparation and Mechanical Properties of Ce0.85Fe3CoSb12/rGO Thermoelectric Nanocomposite,J. Inorg. Mater.,2016,通讯作者
(44)Thermoelectric materials step up,Nature Mater,2016,通讯作者
(45)Electrical and thermal transports of binary copper sulfides CuxS with x from 1.8 to 1.96,APL. Mater,2016,通讯作者
(46)Cu-based thermoelectric materials,Energy Storage Materials,2016,通讯作者
(47)Study on the interfacial stability of p-type Ti/Ce y Fe x Co 4-x Sb 12thermoelectric joints at high temperature,J. Alloy. Compd.,2016,通讯作者
(48)The Influence of Molecular Configuration on the Thermoelectrical Properties of Poly(3-hexylthiophene),J. Electronic Mater,2016,通讯作者
(49)Highly anisotropic P3HT films with enhanced thermoelectric performance via organic small molecule epitaxy,NPG Asia Mater.,2016,通讯作者
(50)Ultrahigh Thermoelectric Performance in Mosaic Crystals,Adv. Mater.,2015,通讯作者(51)Improved Thermoelectric Performance of Silver Nanoparticles-Dispersed Bi2Te3 Composites Deriving from Hierarchical Two-Phased Heterostructure,Adv. Funct. Mater.,2015,通讯作者
(52)The effect of short carbon fibers on the thermoelectric and mechanical properties of p-type CeFe4Sb12 skutterudite composites,Mater. Design,2015,通讯作者
(53)Multiformity and fluctuation of Cu ordering in Cu2Se thermoelectric materials,J. Mater. Chem. A,2015,通讯作者
(54)Construction of a 3D-rGO network-wrapping architecture in a YbyCo4Sb12/rGO composite for enhancing the thermoelectric performance,J. Mater. Chem. A,2015,通讯作者
(55)Compound defects and thermoelectric properties in ternary CuAgSe-based materials,J. Mater. Chem. A,2015,通讯作者
(56)PANI/graphene nanocomposite films with high thermoelectric properties by enhanced molecular ordering,J. Mater. Chem. A,2015,通讯作者
(57)High Thermoelectric Performance in Non-Toxic Earth-Abundant Copper Sulfide,Adv. Mater.,2014,通讯作者
(58)High-Performance Pseudocubic Thermoelectric Materials from Non-cubic Chalcopyrite Compounds,Adv. Mater.,2014,通讯作者
(59)Phase diagram of In–Co–Sb system and thermoelectric properties of In-containing skutterudites,Energy Environ. Sci.,2014,通讯作者
(60)The synergic regulation of conductivity and Seebeck coefficient in pure polyaniline by chemically changing the ordered degree of molecular chains,J. Mater. Chem. A,2014,通讯作者
(61)Thermoelectric transport of Se-rich Ag2Se in normal phases and phase transitions,Appl. Phys. Lett.,2014,通讯作者
(62)Charge-Compensated Compound Defects in Ga-containing Thermoelectric Skutterudites,Adv. Funct. Mater.,2013,通讯作者
(63)Ultrahigh Thermoelectric Performance by Electron andPhonon Critical Scattering in Cu 2 Se 1-x I x,Adv. Mater. ,2013,通讯作者(64)Experiment on thermal uniformity and pressure drop of exhaust heat exchanger for automotive thermoelectric generator,Energy,2013,通讯作者
(65)Investigation of thermoelectric properties of Cu2Gax Sni(1-x)Se(3) diamond-like compounds by hot pressing and spark plasma sintering,Acta Mater.,2013,通讯作者
(66)Structural modifications and non-monotonic carrier concentration in Bi2Se0.3Te2.7 by reversible electrochemical lithium reactions,Acta Mater.,2013,通讯作者
(67)Enhancement of thermoelectric performance in slightly charge-compensated CeyCo4Sb12 skutterudites,Appl. Phys. Lett.,2013,通讯作者
(68)Charge-Compensated Compound Defects in Ga-containing Thermoelectric Skutterudites,Adv. Mater.,2013,通讯作者
(69)New Monoclinic Phase at the Composition Cu2SnSe3?and Its Thermoelectric Properties,Inorg. Chem,2013,通讯作者
(70)Ternary compound CuInTe2: a promising thermoelectric material with diamond-like structure,Chem. Comm.,2012,通讯作者
(71)Thermoelectric properties of Ni-doped CeFe4Sb12 skutterudites,J. Appl. Phys.,2012,通讯作者
(72)Copper ion liquid-like thermoelectrics,Nature Materials,2012,通讯作者
(73)Optimized thermoelectric properties of Mo3Sb7-xTex with significant phonon scattering by electrons,Energy Environ. Sci.,2011,通讯作者
(74)Multiple-filled Skutterudites: high thermoelectric figure of merit through separately optimizing electrical and thermal transports, J. Am. Chem. Soc.,2011,通讯作者
(75)Direct tuning of electrical properties in nano-structured Bi2Se0.3Te2.7 by reversible electrochemical lithium reactions,Chem. Commun.,2011,通讯作者
(76)Top-down Fabrication of Nano-scaled Bi2Se0.3Te2.7 Associated by Electrochemical Li Intercalation,Dalton Trans.,2011,通讯作者
(77)Cu-Se Bond Network and Thermoelectric Compounds with Complex Diamondlike Structure,Chem. Mater.,2010,通讯作者
(78)Effect of antisite defects on band structure and thermoelectric performance of ZrNiSn half-Heusler alloys,Appl. Phys. Lett.,2010,通讯作者
(79)Lattice thermal transport in BaxREyCo4Sb12 (RE=Ce, Yb, and Eu) double-?lled skutterudites,Appl. Phys. Lett.,2010,通讯作者
(80)On the design of high efficiency thermoelectric clathrates through a systematic cross-substitution of framework elements,Adv. Funct. Mater., ,2010,通讯作者
(81)Enhanced thermoelectric performance of single-walled carbon nanotubes/polyaniline hybrid nanocomposites,ACS Nano,2010,通讯作者
(82)Controllable synthesis and electrochemical hydrogen storage properties of Bi2Se3 architectural structures,Chem. Commun.,2010,通讯作者
发表著作
(1)热电材料的制备和表征,Materials, Preparation, and Characterization in Thermoelectrics,CRC Press,2012-03,第1作者
(2)热电材料与器件,Thermoelectric Materials and Devices,科学出版社,2018-03,第1作者