热点话题人物,欢迎提交收录!
最优雅的名人百科,欢迎向我们提交收录。
蒋伟
2023-05-09 17:40
  • 蒋伟
  • 蒋伟 - 副教授-东南大学-化学化工学院-个人资料

近期热点

资料介绍

近期论文


BanXinxin, Sun Kaiyong, Sun Yueming*, Huang Bin, Jiang Wei*. Enhanced Electron Affinity and Exciton Confinement inExciplex-Type Host:Power Efficient Solution-Processed Blue Phosphorescent OLEDs withLow Turn-on Voltage. ACS Applied Materials & Interfaces, 2015, revised.
BanXinxin, Sun Kaiyong, Sun Yueming*, Huang Bin, Jiang Wei*. High Power Efficiency Solution-Processed Blue PhosphorescentOrganic Light-Emitting Diodes Using Exciplex-Type Host with a Turn-on VoltageApproaching the Theoretical Limit. ACS Applied Materials & Interfaces, 2015, 7, 25129.
Jiang Wei*,Ye Muyang, Ban Xinxin, Sun Yueming*. Phenylcarbazole/ diphenylphosphineoxide-based alcohol soluble host materials for efficient solution-processedmultilayer blue electrophosphorescent OLEDs. Dyes and Pigments, 2015, 122, 192.
Ban Xinxin, Jiang Wei* Sun Kaiyong, Sun Yueming*. Tuning the energy gap and chargebalance property of bipolar host by molecular modification: Efficient blueelectrophosphorescence devices based on solution-process. Organic Electronics, 2015, 24, 65.
Jiang Wei*,Ban Xinxin, Sun Yueming*. Enhanced electron affinity and charge balance propertyof a bipolar material: highly efficient solution-processed deep blueelectrofluorescent and green electrophosphorescent devices. RSC Advances,2015, 5, 66994.
Jiang Wei*,Cui Peng, Ban Xinxin, Sun Yueming*. Bis(phosphine oxide)/triphenylamine basedmaterial for solution-processed blue electrofluorescent and greenelectrophosphorescent devices. RSC Advances, 2015, 5, 48654.
Ban Xinxin, JiangWei*, Sun Kaiyong, Yang Haiyong, Miao Yanan, Yang Fenghao, SunYueming*, Huang Bin, Duan Lian*. Systematic tuning the ΔEST and charge balanceproperty of the bipolar host for low operating voltage and high powerefficiency solution-processed electrophosphorescent devices. Journal of Materials Chemistry C, 2015, 3, 5004.
Zhang Zhaohang, Jiang Wei*, Ban Xinxin, Yang Min, Ye Shanghui*,Huang Bin, Sun Yueming*. Solution-processed efficient deep-blue fluorescentorganic light-emitting diodes based on novel 9,10-diphenyl-anthracenederivatives. RSC Advances, 2015, 5, 29708.
Huang Bin, Yin Zhihui, Ban Xinxin, Jiang Wei*, Dai Yu, Zhang Junya, Liu Yuanyuan,Yang Yaping, Sun Yueming*. Thermally activated delayed fluorescent ofN-phenylcarbazole and triphenylamine functionalized tris(aryl)triazines. Dyes and Pigments,2015, 117, 141.
Ban Xinxin, JiangWei*, Sun Kaiyong, Xie Xinyu, Peng Lang, Dong Hongshuang, SunYueming*, Huang Bin, Duan Lian*, Qiu Yong. Bipolar Host with multi-electrontransport benzimidazole units for low operating voltage and high powerefficiency solution-processed phosphorescent OLEDs. ACS Applied Materials & Interfaces,2015, 7, 7303.
Tian Wenwen, Qi Qi, Song Bo, Yi Chang, Jiang Wei* Cui Xia, Shen Wei, Huang Bin, SunYueming*. A bipolar homoleptic iridium dendrimer composed of diphenylphosphoryland diphenylamine dendrons for highly efficient non-doped single-layer green PhOLEDs.Journal of Materials Chemistry C 2015, 3, 981.
Jiang Wei,Ban Xinxin, Ye Muyang, Sun Yueming*, Duan Lian*, Qiu Yong. A high tripletenergy small molecule base thermally cross-linkable hole-transporting materialfor solution-processed multilayer blue electrophosphorescent devices. Journal of Materials Chemistry C, 2015, 3, 243.
Huang Bin, Qi Qi, Jiang Wei*, Tang Jinan, Liu Yuanyuan, Fan Wenjuan,Yin Zhihui, Shi Fachen, Ban Xinxin, Xu Huange, Sun Yueming*. Thermallyactivated delayed fluorescence materials based on3,6-di-tert-butyl-9-((phenylsulfonyl)phenyl)-9H-carbazole. Dyes and Pigments, 2014, 111, 135.
Jiang Wei,Tang Jinan, Ban Xinxin, Sun Yueming*, Duan Lian*, Qiu Yong. Ideal bipolar hostmaterials with bis-benzimidazole unit for highly efficient solution-processedgreen electrophosphorescent devices. Organic Letters, 2014, 16, 5346.
Ban Xinxin, Xu Huange, Yuan Gonglong, Jiang Wei*, Huang Bin, Sun Yueming*.Spirobifluorene/sulfone hybrid: highly efficient solution-processable materalfor UV-violet electrofluorescence, blue and green phosphorescent OLEDs. Organic Electronics,2014, 15, 1678.
Jiang Wei,Xu Huange, Ban Xinxin, Yuan Guolong, Sun Yueming*, Huang Bin, Duan Lian*, QiuYong. Alcohol-soluble electron-transport small molecule for fully solution-processedmultilayer white electrophosphorescent devices. Organic Letters, 2014, 16, 1140.
Tian Wenwen, Yi Chang, Song Bo, Qi Qi, Jiang Wei*, Zheng Yingping, Qi Zhengjian, SunYueming*. Self-host homoleptic green iridum dendrimers based on diphenylaminedendrons for highly efficient single-layer PhOLEDs. Journal of Materials Chemistry C,2014, 2, 1104.
Huang Bin, JiangWei*, Tang Jinan, Ban Xinxin, Zhu Ruigang, Xu Huange, Yang Wen, SunYueming*. A novel, bipolar host based on triazine for efficientsolution-processed single-layer green phosphorescent organic light-emittingdiodes. Dyes andPigments, 2014, 101, 9.
Yang Wen, Ban Xinxin, Chen Yuanshen, XuHuange, Huang Bin, Jiang Wei*, DaiYunqian, Sun Yueming*. New host materials based on fluorine and benzimidazoleunits for efficient solution-processed green phosphorescent OLEDs. Optical Materials,2013, 35, 2201.
Yang Wen, Chen Yuanshen, Jiang Wei*, Ban Xinxin, Huang Bin, Dai Yunqian,Sun Yueming*. A carbazole-based dendritic host material for efficientsolution-processed blue phosphorescent OLEDs. Dyes and Pigments, 2013, 97, 286.
Huang Bin, Tang Jinan, Jiang Wei*, Yang Wen, Ban Xinxin, Sun Yueming*.Organic small molecules host materials for blue phosphorescent organiclight-emitting diodes. Chinese Journal of Organic Chemistry, 2013, 33,1395.
Jiang Wei,Ge Zijian, Cai Peiyuan, Huang Bin, Dai Yunqian, Sun Yueming*, Qiao Juan, WangLiduo, Duan Lian *, Qiu Yong. Star-shaped dendritic hosts based on carbazolemoieties for highly ef?cient blue phosphorescent OLEDs. Journal of Materials Chemistry,2012, 22, 12016.
Jiang Wei,Yang Wen, Ban Xinxin, Huang Bin, Dai Yunqian, Sun Yueming*, Duan Lian*, QiuYong. Synthesis of new bipolar materials based on diphenylphosphine oxide andtriphenylamine units: efficient host for deep blue phosphorescent organiclight-emitting diodes. Tetrahedron, 2012, 68, 9672.

相关热点

扫码添加好友