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[专家学者] 常州大学材料科学与工程学院朱卫国

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发表于 2018-2-4 09:21:21 | 只看该作者 |只看大图 回帖奖励 |倒序浏览 |阅读模式
朱卫国,男,湖南攸县人。湘潭大学化学学院、常州大学材料科学与工程学院教授、博士生导师,国务院特殊津贴专家。2008-2013年曾任湘潭大学化学学院院长,2013-2015湘潭大学研究生院院长、2008-2016环境友好化学教育部重点实验室主任,2009-2013年湘潭大学学位委员会委员,2007年英国Sheffield大学访问学者。
1986年毕业于湘潭大学化学系,获理学学士学位;2000年毕业于四川大学获理学博士学位;2002年师丛曹镛院士在华南理工大学光电所完成博士后研究工作。
2004年湖南省121人才工程第1批人选,2005年湖南省杰出青年基金获得者,2009年湖南省有机化学实验精品课程负责人,2012年先进能量转换存储材料及其器件湖南省自然科学基金创新群体负责人,2013年先进光电与超分子功能材料教育部“创新团队发展计划”培育团队负责人,2013年宝钢优秀教师奖获得者。中国化工学会精细化工专业委员会委员,湖南省化学化工学会理事,《精细化工》和《精细化工中间体》杂志编委。
科研成就
从事有机/聚合物光电功能材料(发光材料和光伏材料)及其分子器件的研究。先后主持国家、省部级科研项目10余项,包括国家自然科学基金重大研究计划培育项目和面上项目6项。主持省级教学改革项目2项。在有机/聚合物发光材料、光伏材料及其分子器件等国际前沿科学领域中已取得一些有国际影响的研究成果。以署名第一或通讯联系人在Advanced Energy Materials, Journal of Materials Chemistry, ChemicalCommunication, Macromolecules等国内外重要学术刊物上发表SCI学术论文98篇。
2009年获广东省自然科学奖一等奖(排名第9),2010年获湖南省自然科学奖二等奖(排名第1),2013年获湖南省教学成果二等奖(排名第1)。获中国授权发明专利9项(排名第1)。
指导研究生获欧盟“玛丽.居里”奖学金1人、宝钢教育奖-优秀学生奖1人、湖南省优秀博士论文1人、研究生国家奖学金3人、湘潭大学研究生校长奖特等奖3人、校长奖优秀奖2人。[
主讲课程
有机化学,有机化学实验,现代有机合成实验,有机催化,有机功能材料。
人物经历
学习经历
1982/09至1986/06,理学学士,化学专业,湘潭大学化学系
1994/09至1995/09,有机化学硕士学位课程学习,湘潭大学化学系
1997/09至2000/06,理学博士,有机化学,四川大学化学学院
2006/02至2007/02,英国Sheffield大学访问学者
工作经历
1986/06至1994/04,湘潭大学技术科学研究所,助理工程师、工程师,室副主任
1994/04至1997/09,湘潭大学化学系,讲师
1997/09至2002/08,湘潭大学化学化工学院,副教授,硕士生导师
2000/10至2002/10,华南理工大学聚合物光电材料与器件研究所,博士后
2002/10至2007/12,湘潭大学化学学院,副院长,教授,博士生导师
2007/12至2013/09,湘潭大学化学学院,院长,教授,博士生导师
2013/10至2015/12,湘潭大学研究生院,院长,教授,博士生导师
2016/01至今,常州大学材料科学与工程学院,教授,博士生导师[2]
研究方向
有机/聚合物光电功能材料及其分子器件
获奖情况
1. 有机/高分子电致发光材料及其发光器件的研究,湖南省自然科学奖(二等奖,证书号20102046-Z2-014-R01),2010-12,排名第一。
2. 广东省科学技术奖(一等奖,证书号A02-0-1-R09),2009-07,排名第九。
3. 宝钢教育奖(宝钢优秀教师奖,证书号201310238),2013-11。
4. 国务院政府特殊津贴(证书号2014018039),2015-01。
5. 发挥专业特色和平台优势,创新培养机制,培养化学创新创业人才,湖南省教学成果奖(二等奖,证书号2012069),2013-12,排名第一。
6. 湖南省优秀博士论文指导教师(证书号20151042),2015[3]
科研项目
1. “先进光电与超分子功能材料”创新团队发展计划培育团队(1337304),2014.01-2016.12,团队负责人
2. “先进能量转换存储材料及其器件”湖南省自然科学基金创新研究群体(12JJ7002),2012.06-2015.06,群体负责人
3. 国家自然科学基金(51473140):供体-受体型环金属铂(II)配合物近红外电致发光材料的分子设计、合成及其性能研究,2015.01-2018.12,主持
4. 国家自然科学基金重大研究计划培育项目(91233112):D-A-A 和D-A-Ar 线型和星型有机供体材料的分子构筑、合成及其光伏性能的研究,2013.01-2015.12,主持(结题)
5. 国家自然科学基金(21172187):基于多元供体受体的线型和星型有机光伏材料的合成及其溶液加工型有机太阳能电池的性能研究,2012.01-2015.12,主持(结题)[3]
授权专利编辑
朱卫国, 张友明, 谭华, 陶强, 贺克奇, 刘煜, 王亚飞. 一种D(A-Ar)n型化合物及其应用,中国发明专利,ZL201310349158.5,授权时间2015-10-07.
朱卫国, 于俊婷, 谭华, 王亚飞, 刘煜, 朱美香. 一种D-A-A型C^N配体化合物及其C^N环金属铂配合物和应用,中国发明专利,ZL2013 1029 1798.5,授权时间2015-12-02.
朱卫国, 石丹艳, 刘煜, 王亚飞, 朱美香. 树枝状三核环金属铂配合物电致磷光材料及其在聚合物电致白光器件中的应用. 中国发明专利,申请号: ZL 201110430975.4. 授权时间2014-04-16.
朱卫国, 王亚飞, 刘煜, 朱美香. 一类二(吡啶苯基)芴衍生物及其双核环金属铂配合物液晶偏振发光材料. 中国发明专利,ZL 2010 10515850.7. 授权时间2012-05-02.
朱卫国, 王亚飞, 刘煜, 朱美香. 液晶偏振异质环金属铂配合物发光材料. 中国发明专利,ZL 20091044088.6. 授权时间2011-10-15.
朱卫国, 吴秀刚, 胡峥勇, 刘煜. 一类双核环金属铂配合物近红外发光材料及其应用. 中国发明专利, ZL 200910044087.1. 授权时间2011-09-14.
朱卫国, 胡峥勇, 罗翠萍, 朱美香. 异喹啉基三芳胺环金属配合物及其应用. 中国发明专利, ZL 200610032479.2, 授权时间2009-07-22.
朱卫国, 朱美香, 甘泉, 杨玉萍. 功能化吡啶甲酸及其环金属铱配合物的制备和应用. 中国发明专利, ZL 200610032480.5, 授权时间 2009-03-11.
朱卫国, 刘煜, 罗翠萍, 胡峥勇, 朱美香. 基于功能化邻菲罗啉配体的有机铕配合物及其电致发光器件. 中国发明专利, ZL 200610032550.7, 授权时间2008-12-3.
朱卫国, 刘坚, 罗翠萍, 胡峥勇, 刘煜, 朱美香. 一种含三芳胺功能基的环金属铂配合物电致磷光材料. 中国发明专利, ZL 200510032482.XA. 授权时间2007-06-20.[3]
论文发表编辑
一、线型有机小分子光伏材料
1)Jianhua Chen, Linrui Duan, Manjun Xiao, Qiong Wang, Bin Liu, HaoXia, Renqiang Yang* and Weiguo Zhu*. Tuning the central fused ring and terminalunits to improve the photovoltaic performance of Ar(A–D)2 typesmall molecules in solution-processed organic solar cells. Journal of MaterialsChemistry A, 2016, DOI: 10.1039/c6ta00416d. IF = 8.262.
2)Xiongwei Duan, Manjun Xiao,Jianhua Chen,Xiangdong Wang, WenhongPeng, Linrui Duan,Hua Tan, Gangtie Lei, Renqiang Yang,*, and Weiguo Zhu*.Improving photovoltaic performance of the linear A-Ar-A-type small moleculeswith diketopyrropyrrole arms by tuning the linkage position of the anthracenecore. ACS Applied Materials & Interfaces, 2015, 33, 18292–18299. IF =7.145.
3)Jianhua Chen, Manjun Xiao, Linrui Duan, Qiong Wang, Hua Tan,Ning Su, Yu Liu, Renqiang Yang* and Weiguo Zhu*, Benzodi(pyridothiophene): anovel acceptor unit for application in A1–A–A1 typephotovoltaic small molecules, Physical Chemistry Chemical Physics, 2016, 18,1507-1515. IF = 4.449.
4)Qiang Tao, Linrui Duan, Wenjing Xiong, Gongyue Huang, Pu Wang, HuaTan,* Yafei Wang, Renqiang Yang* and Weiguo Zhu*, D(A-A')2 architecture: anefficient strategy to improve photovoltaic performance of small molecules forsolution-processed organic solar cells. Dyes and Pigments, 2016,10.1016/j.dyepig. IF = 4.055.
5)Qunping Fan, Min Li, Pingao yang, Yu Liu*, Manjun Xiao, XiangdongWang, Hua Tan, Yafei Wang, Renqiang Yang*, Weiguo Zhu*. Acceptor-donor-acceptorsmall molecules containing benzo [1,2-b:4,5-b']dithiophene and rhodanine unitsfor solution processed organic solar cells. Dyes and Pigments, 2015, 116,13-19. IF = 4.055.
二、星型有机小分子光伏材料
6) Pei Zhou, Dongfeng Dang, Manjun Xiao, Qiong Wang, Juan Zhong, HuaTan, Yong Pei, Renqiang Yang* and Weiguo Zhu*. Improved photovoltaicperformance of star-shaped molecules with a triphenylamine core by tuning thesubstituted position of the carbazolyl unit at the terminal. Journal ofMaterials Chemistry A, 2015, 3, 10883-10889. IF = 8.262.
7) Pei Zhou, Dongfeng Dang, Qiong Wang, Xiongwei Duan, Manjun Xiao,Qiang Tao, Hua Tan, Renqiang Yang, Weiguo Zhu*. To enhance photovoltaicperformance of the triphenylamine based star-shaped molecules by tuning themoiety sequence of their arms in organic solar cells. Journal of MaterialsChemistry A, 2015, 3, 13568–13576. IF = 8.262.
8) Youming Zhang, Xichang Bao*, Manjun Xiao, Hua Tan*, Qiang Tao,Yafei Wang, Yu Liu, Renqiang Yang* and Weiguo Zhu*. Significantly improvedphotovoltaic performance of the triangular-spiral TPA(DPP-PN)3 by appendingplanar phenanthrene units into the molecular terminals. Journal of MaterialsChemistry A, 2015, 3, 886-893. IF = 8.262.
三、染料敏化分子
9) Yafei Wang*, Chuncheng Yang, Jue Chen, Hongrui Qi, Jianli Hua, YuLiu, Etienne Baranoff*, Hua Tan, Jiang Fan, Weiguo Zhu*. Influence of the donorsize in panchromatic D-π-A-π-A dyes bearing 5-phenyl-5H-dibenzo[b,f] azepine units fordye-sensitized solar cells. Dyes and Pigments,2016, 127, 204-212. 一区, IF =4.055.
四、一维聚合物光伏材料
10) Dongfeng Dang, Weichao Chen, Scott Himmelberger, Qiang Tao,Angelica Lundin, Renqiang Yang,* Weiguo Zhu*, Alberto Salleo, Christian Müller, andErgang Wang*. Enhanced photo- voltaic performance ofindacenodithiophene-quinoxaline copolymers by side-chain modulation. AdvancedEnergy Materials. 2014, 4, 1400680. IF = 15.23.
11) Dongfeng Dang*, Pei Zhou, Linrui Duan, Xichang Bao, Renqiang Yang*andWeiguo Zhu*. An efficient method to achieve a balanced open circuit voltageand short circuit current density in polymer solar cells, Journal of MaterialsChemistry A, 2016, 4, 8291-8297. IF = 8.262.
12) Dongfeng Dang, Weichao Chen, Renqiang Yang*, Weiguo Zhu*,Wendimagegn Mammo and Ergang Wang*. Fluorine substitution enhanced photovoltaicperformance of a D-A1-D-A2 copolymer. Chemical Communication, 2013, 49,9335-9337. IF = 6.567.
13) Qiang Tao, Yuxin Xia, Xiaofeng Xu, Svante Hedström, Olof Bac̈ke,DavidI.James, Petter Persson Eva Olsson, Olle Inganas̈, Lintao Hou,*WeiguoZhu,* and ErgangWang*. D-A1- D-A2 copolymers with extended donor segmentsfor efficient polymer solar cells. Macromolecules, 2015, 48, 1009−1016. IF =5.554.
14) Jiamin Cao, Wei Zhang, Zuo Xiao, Lingyan Liao, Weiguo Zhu*, QiqunZuo, Liming Ding*. Synthesis and photovoltaic properties of low band gappolymers containing benzo[1,2-b:4,5-c¢] dithiophene-4,8-dione. Macromolecules,2012, 45, 1710−1714. IF = 5.554.
15) Qunping Fan, Yu Liu*, Manjun Xiao, Wenyan Su, Huishan Gao, JianhuaChen, Hua Tan, Yafei Wang, Renqiang Yang* andWeiguo Zhu*. Enhancing thephotovoltaic properties of terpolymers containing benzo[1,2-b:4,5-b′]dithiophene,phenanthro[4,5-abc]phenazine and benzo[c][1,2,5]thiadiazole by changing thesubstituents. Journal of Materials Chemistry C,2015, 3, 6240-6248. 一区, IF =5.066.
16) Wei Zhang, Jiamin Cao, Ying Liu, Zuo Xiao*, Weiguo Zhu*, Qiqun Zuo,Liming Ding *. Using cyclopenta[2,1-b:3,4-c¢]dithiophene-4-one as a buildingblock for low-bandgap conjugat- ed copolymers applied in solar cells.Macromolecular Rapid Communications, 2012, 33, 1574−1579. IF = 4.638.
17) Pei Zhou, Jiang Fan, Dongfeng Dang, Junwei Shi, Xiangdong Wang,Wenhong Peng, Hua Tan, Yafei Wang,* Yu Liu, Weiguo Zhu*. Enhanced photovoltaicproperties of di(dodecylthio-phene)-alt-2,3-di(3-octoxylphenyl)-5,8-dithieno[3,2-b]thiophene-6,7-difluoroquinoxalinecopolymer by fluorination. Dyes and Pigments,2015, 113, 312–317. IF = 4.055.
18) Dongfeng Dang, Pei Zhou, Qing Peng, Keqi He, Haigang Jiang, PingaoYang, Hua Tan, Yong Pei, Yu Liu,* Gangtie Lei, Weiguo Zhu*. Improvedphotovoltaic performance of two- dimensional low band-gap conjugated polymerswith thieno[3,2-b]thiophene and diketo- pyrrolo pyrrole units by alteringpendent position of conjugated side chain. Dyes and Pigments,2014, 109, 6-12.IF = 4.055.
五、二维聚合物光伏材料
19) Hua Tan, Xianping Deng, Junting Yu, Baofeng Zhao, Yafei Wang, YuLiu, Weiguo Zhu*, Hongbin Wu*, and Yong Cao*. A novelbenzo[1,2-b:4,5-b']dithiophene-based conjugated polymer with a pendantdiketopyrrolopyrrole unit for high-performance solar cells. Macro- molecules,2013, 46, 113–118. IF = 5.554.
20) Qunping Fan, Manjun Xiao, Yu Liu*, Wenyan Su, Huishan Gao, Hua Tan,Yafei Wang, Gangtie Lei, Renqiang Yang* and Weiguo Zhu*. Improved photovoltaicperformance of a 2D-conjugated benzodithiophene-based polymer by the side chainengineering of quino- xaline. Polymer Chemistry, 2015, 6, 4290-4298. IF =5.687.
21) Pei Zhou, Dongfeng Dang, Jiang Fan, Wenjing Xiong, Chunchen Yang,Hua Tan, Yafei Wang*, Yu Liu, Weiguo Zhu*. Increasing thiophene spacers betweenthieno[3,2-b] thiophene and benzothiadiazole units in backbone to enhancephotovoltaic performance for their 2-D polymers. Dyes and Pigments,2015, 112,99-104. IF = 4.055.
六、有机近红外发光材料及其及其聚合物电致发光器件
22) Wenjing Xiong, Fanyuan Meng, Hua Tan,* Yafei Wang, Pu Wang, YoumingZhang, Qiang Tao, and Shijian Su,* Weiguo Zhu*, Di-nuclear platinum complexescontaining aryl-isoquinoline and oxadiazole-thiol with an efficiency over 8.8%:In-depth investiga- tion on relationship between the molecular structure andnear-infrared electroluminescent properties in PLEDs. Journal of MaterialsChemistry C, 2016,4, 6007 - 6015.IF = 5.066.
23) Youming Zhang, Fanyuan Meng, Jian-Hong Tang, Yafei Wang, Caifa You,Hua Tan, Yu Liu, Yu-Wu Zhong, Shijian Su and Weiguo Zhu*. Achievingnear-infrared emission in platinum(II) complexes by using an extended donor–acceptortypeligand. Dalton Trans.2016, 45, 5071-5080. IF = 4.177.
24) Ning Su, Fanyuan Meng, Jianhua Chen, Yafei Wang, Hua Tan, ShijianSu, Weiguo Zhu*. Near-infrared emitting pyrazole-bridged binuclear platinumcomplexes: Synthesis, photophysical and electroluminescent properties in PLEDs.Dyes and Pigments. 2016, 128 68-74. IF = 4.055.
25) Junting Yu, Keqi He, Yanhu Li, Hua Tan, Meixiang Zhu, Yafei Wang,Yu Liu, Weiguo Zhu*, Hongbin Wu*. A novel near-infrared-emitting cyclometalatedplatinum (II) complex with donoreacceptoreacceptor chromophores. Dyes andPigments,2014, 107, 146-152. IF = 4.055.
七、液晶偏振磷光材料
26) Yafei Wang, Qing Chen, Yanhu Li, Yu Liu, Hua Tan, Junting Yu,Meixiang Zhu, Hongbin Wu, Weiguo Zhu*, Yong Cao. Highly dichroic metallomesogenof dinuclear platinum complex: synthesis, liquid crystal and photophysicalproperties. Journal of Physical Chemistry. C, 2012, 116, 5908−5914. IF = 4.509.
27) Yafei Wang, Junwei Shi, Jianhua Chen, Weiguo Zhu* and EtienneBaranoff. Recent progress in luminescent liquid crystal materials: design,properties and application for linearly polarised emission. Journal ofMaterials Chemistry C, 2015, 3, 7993-8005. IF = 5.066.
28) Yafei Wang, Yu Liu*, Jian Luo, Hongrui Qi, Xiaoshuang Li, MeijunNin, Ming Liu, Danyan Shi, Weiguo Zhu*, Yong Cao*. Metallomesogens based onplatinum (II) complexes: synthesis, luminescence and polarized emission. DaltonTransactions, 2011, 40,5046- 5051.IF = 4.177.
八、单分子有机电致白光材料及其聚合物白光器件
29) Yafei Wang, Ning Sun, Basile F. E. Curchod, Louise Male, Dongge Ma,Jiang Fan, Yu Liu, Weiguo Zhu* and Etienne Baranoff. Tuning the oxidationpotential of 2-phenylpyridine-based iridium complexes to improve theperformance of bluish and white OLEDs. J. Mater. Chem. C, 2016, DOI:10.1039/C5TC02355F.IF = 5.066.
30) Danyan Shi, Yafei Wang*, Yu Liu, Zhiyong Zhang, Jian Luo, Juan He,Qing Chen, Gangtie Lei, and Weiguo Zhu*. Star-shaped trinuclear cyclometalatedplatinum(II) complexes as single-component emitters in white-emitting PLEDs.Chemistry An Asian Journal, 2012, 7, 2096-2101.IF = 4.592.
31) Xiaoshuang Li, Yu Liu, Jian Luo, Zhiyong Zhang, Danyan Shi, QingChen, Yafei Wang,* Juan He, Jianming Li, Gangtie Lei, Weiguo Zhu*. Synthesisand optoelectronic properties of a heterobimetallic Pt(II)–Ir(III)complex used as a single-component emitter in white PLEDs. DaltonTransactions,2012, 41, 2972-2978. IF = 4.177.
32) Aihui Liang, Yanhu Li, Weiguo Zhu*, Yafei Wang, Fei Huang, HongbinWu, Yong Cao. Novel cyclometalated platinum (II) complex containingcarrier-transporting groups: synthe -sis, luminescence and application insingle-dopant white PLEDs. Dyes and Pigments, 2013, 96, 732-737. IF = 4.055.
33) Yafei Wang, Yu Liu*, Zhiyong Zhang, Jian Luo, Danyan Shi, Hua Tan,Gangtie Lei, Meixiang Zhu, Weiguo Zhu*, Yong Cao*. Single-layer white polymerlight emitting diodes based on iridium (III) complex containingalkyltrifluorene picolinic acid. Dyes and Pigments, 2011, 91, 495-500. IF =4.055.
九、三基色有机/聚合物磷光材料及其聚合物电致发光器件
34) Jian Luo, Yu Liu, Qing Chen, Danyan Shi, Ying Huang, Junting Yu,Yafei Wang*, Zhiyong Zhang, Gangtie Lei, Weiguo Zhu*. Synthesis, optoelectronicproperties of a dinuclear platinum (II) complex containing a binarycyclometalated ligand in the single-emissive-layer PLEDs. Dalton Transactions,2013,42, 1231-1237. IF = 4.177.
35) Yu Liu, Yafei Wang, Haipeng Guo, Meixiang Zhu, Chun Li, JunbiaoPeng, Weiguo Zhu*, Yong Cao*. Synthesis and optoelectronic characterization ofa monochromic red-emitting europium (III) complex containing triphenylamine-functionalizedphenanthroline. Journal of Physical Chemistry. C, 2011, 115, 4209–4216. IF =4.509.
36)Jian Luo, Yu Liu, Danyan Shi, Yafei Wang*, Zhiyong Zhang, JuntingYu, Gangtie Lei, Qing Chen, Jianming Li, Xianping Deng, Weiguo Zhu*. Synthesis,optoelectronic properties of carbazole-modified platinum (II) complexes inpolymer light-emitting devices. Dalton Transactions, 2012, 41, 1074-1081. IF =4.177.
37) Yu Liu*, Jianyu Wang, Yafei Wang, Zhiyong Zhang, Meixiang Zhu,Gangtie Lei,Weiguo Zhu*. Bipolar-transporting dinuclear europium (III)complexes involving carbazole and oxadiazole units: Synthesis, photophysicaland electroluminescent properties. Dyes and Pigments, 2012, 95, 322-329. IF =4.055.
38) Zhengyong Hu, Yafei Wang, Danyan Shi, Hua Tan,Xiaoshuang Li, Lei Wang, Weiguo Zhu*, Yong Cao. Highly-efficiency red-emittingplatinum (II) complexes containing 4¢-diaryl amino-1-phenylisoquinoline ligandsin polymer light-emitting diodes: Synthesis, structure, photoelectron andelectroluminescence. Dyes and Pigments, 2
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发表于 2018-3-18 15:34:52 | 只看该作者

在国家自然科学基金项目的支持下,2017年12月,常州大学材料科学与工程学院有机光电子材料与器件科研创新团队朱卫国教授与中国科学院青岛生物能源与过程研究所阳仁强研究员、青岛大学陈为超副教授合作,在高性能聚合物给体材料研究方面取得重要进展,聚合物太阳能电池器件的光电转换效率突破11.2%,达到国际先进水平。该成果以Significantly Enhancing the Efficiency of a New Light-Harvesting Polymer with Alkylthio naphthyl Substituents Compared to Their Alkoxyl Analogs 为题,近日已被国际顶级材料期刊《Advanced Energy Materials》(DOI: 10.1002/aenm.201702489,影响因子16.721) 在线接受发表。

[Abstract] In this work, a new benzo[1,2-b:4,5-b’]dithiophene (BDT) building block containing alkylthio naphthyl as a side chain is designed and synthesized, and the resulting polymer, namely PBDTNS-BDD, shows a lower HOMO energy level than that of its alkoxyl naphthyl counterpart PBDTNO-BDD. An optimized photovoltaic device using PBDTNS-BDD as a donor exhibits power conversion efficiencies (PCE) of 8.70% and 9.28% with the fullerene derivative PC71BM and the fullerene-free small molecule ITIC as acceptors, respectively. Surprisingly, ternary blend devices based on PBDTNS-BDD and two acceptors, namely PC71BM and ITIC, shows a PCE of 11.21%, which is much higher than that of PBDTNO-BDD based ternary devices (7.85%) even under optimized conditions.

文章链接:
http://onlinelibrary.wiley.com/doi/10.1002/aenm.201702489/full



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