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13篇 您的检索式:作者名="Ye Tengling"
    题名 作者 年代 出处 被引量
1Thickness Uniformity Adjustment of Inkjet Printed Light-emitting Polymer Films by Solvent Mixture显示文摘在这份报纸,厚度一致性(9,9-di-n-octylfluorene ) poly,由打印的 inkjet 有图案的电影被溶剂混合物的使用改进(与有更低的轻快的另一溶剂,有更高的轻快,更高的表面精力和更低的粘性的溶剂降低表面精力和更高的粘性) 。poly 打印的 inkjet (9,9-di-n-octylfluorene ) 的厚度拍摄的一般水准从 ca 被增加。30 nm 到 ca。100 nm 当溶剂混合物被使用而不是纯 chlorobenzene 时。更完全, PFO 电影与象咖啡戒指效果形成的剖面图一样的凹面透镜被形成而不是原来的电影。这改进被强烈 Marangoni 流动的联合在早在在溶剂混合形成的以后的弄干过程弄干过程和弱互补流动解释。有图案(9,9-di-n-octylfluorene ) poly,电影与改进电子性质被用于 electroluminescence 设备的制造。有大约 80% 有效轻射出的区域的象素的数组被获得。Rubo Xing Tengling Ye Yan Ding Zicheng Ding Dongge Ma Yanchun Han 2013Chinese Journal of Chemistry2013,31,11:8
2Recent advances of Cu-based hole transport materials and their interface engineering concerning different processing methods in perovskite solar cells显示文摘In recent years, perovskite solar cells (PSCs) have become a much charming photovoltaic technology and have triggered enormous studies worldwide, owing to their high efficiency, low cost and ease of preparation. The power conversion efficiency has rapidly increased by more than 6 times to the current 25.5% in the past decade. Hole transport materials (HTMs) are an indispensable part of PSCs, which great affect the efficiency, the cost and the stability of PSCs. Inorganic Cu-based p-type semiconductors are a kind of representative inorganic HTMs in PSCs due to their unique advantages of rich variety, low cost, excellent hole mobility, adjustable energy levels, good stability, low temperature and scalable processing ability. In this review, the research progress in new materials and the control of photoelectric properties of Cu-based inorganic HTMs were first summarized systematically. And then, concerning different processing methods, advances of the interface engineering of Cu-based hole transport layers (HTLs) in PSCs were detailly discussed. Finally, the challenges and future trends of Cu-based inorganic HTMs and their interface engineering in PSCs were analyzed.Tengling Ye Xiaochen Sun Xiaoru Zhang Sue Hao 2021Journal of Energy Chemistry2021,30,11:2
3Blue-light-emitting polyfluorene functionalized with triphenylamine and cyanophenylfluorene bipolar side chains显示文摘Lin Ying Ye Tengling Chen Yu 2010J Polym Sci Part A: Polym Chem2010,48,24:1
4Star- shaped oligotriarylamines with planarized triphenylamine core : Solution-processable, high-T, hole-injecting and hole-transporting materials for organic light-emitting devices 显示文摘Jiang Zuoquan Ye Tengling Yang Chuluo 2011Chemistry of Materials2011,23,3:1
5Synthesis and electrophosphorescent device study of carbazole containing dendronized styrenic polymers显示文摘Yang Jun Ye Tengling Ma Dongge 2011Polymer2011,52,12:1
6Novel fluorene-based light-emitting copolymers containing cyanophenyl pendants and earbazole-triphenylamines: Synthesis, characterization and their PLED application显示文摘Lin Ying Chen Zhikuan Ye Tengling 2010Polymer2010,51,6:1
7spirobifluorene and tricarbazole-triphenylamine repeat Conjugated copolymers comprised of cyanophenyl substituted units for blue light-emitting diodes显示文摘Lin Ying Chen Zhikuan Ye Tengling 2010Polym Sci Part A: Polym Chem2010,48,2:1
8Blue light-emitting oligo-fluorenes with ambipolar end groups-cyanophenyl and carbazole显示文摘Lin Ying Chen Yu Ye Tengling 2012J Photochem Photobio A: Chem2012,230,1:1
9显示文摘JIANG ZUOQUAN Ye TENGLING YANG CHULUO 2011Chem Mater2011,23,3:1
10“Click”synthesis of a bipolar dendrimer as a host material for electrophosphorescent devices显示文摘Yang Jun Ye Tengling Ma Dongge 2010Macromolecular Chemistry and Physics2010,211,:1
11Polymer ionogels and their application in flexible ionic devices显示文摘Polymer ionogel(PIG)is a new type of flexible,stretchable,and ion-conductive material,which generally consists of two components(polymer matrix materials and ionic liquids/deep eutectic solvents).More and more attention has been received owing to its excellent properties,such as nonvolatility,good ionic conductivity,excellent thermal stability,high electrochemical stability,and transparency.In this review,the latest research and developments of PIGs are comprehensively reviewed according to different polymer matrices.Particularly,the development of novel structural designs,preparation methods,basic properties,and their advantages are respectively summarized.Furthermore,the typical applications of PIGs in flexible ionic skin,flexible electrochromic devices,flexible actuators,and flexible power supplies are reviewed.The novel working mechanism,device structure design strategies,and the unique functions of the PIG-based flexible ionic devices are briefly introduced.Finally,the perspectives on the current challenges and future directions of PIGs and their application are discussed.Jinqiao Wen Lei Zhou Tengling Ye 2024SmartMat2024,5,2:0
12A novel perylene diimide-based ionene polymer and its mixed cathode interlayer strategy for efficient and stable inverted perovskite solar cells显示文摘Inverted(p-i-n)perovskite solar cells(PerSCs)have attracted much attention owing to their low temperature processability,less hysteresis effect and easy integration as a subunit for the tandem device.The unsatisfactory interface contacts and energy level barrier between adjacent interlayers on the cathode side are one of the key challenges for the development of p-i-n PerSCs.Herein,perylene diimidebased(PDI)ionene polymer was synthesized and developed as a cathode interlayer(CIL)to enhance interface contact,reduce the energy level barrier and prevent the migration of I-ions.The compact PNPDI CIL with high conductivity and appropriate lowest unoccupied molecular orbital(LUMO)level,resulted in a high efficiency device(20.03%),which is higher than the control device with bathophenanthroline(Bphen)(19.48%).Bphen-based CIL shows better adjusting ability of the work function of cathode metal but exhibits poor film-forming property.So,the synergistic effect of 1+1>2 can be obtained by combining Bphen and PNPDI into one CIL.As expected,the device performance was further improved by using the mixed CIL of Bphen and PNPDI,and 21.46%power conversion efficiency(PCE)was achieved.What’s more,the compact and hydrophobic mixed CIL dramatically enhanced the resistance to I-ions and moisture,which led to much enhanced device stability.Daizhe Wang Cong Kang Tengling Ye Dongqing He Shan Jin Xiaoru Zhang Xiaochen Sun Yong Zhang 2023Journal of Energy Chemistry2023,,7:0
13Interface Engineering of Inverted Perovskite Solar Cells Using a Self-doped Perylene Diimide Ionene Terpolymer as a Thickness-Independent Cathode Interlayer显示文摘Inverted perovskite solar cells(PerSCs)are a highly promising candidate in the photovoltaic field due to their low-temperature fabrication process,negligible hysteresis,and easy integration with Si-based solar cells.A cathode interlayer(CIL)is necessary in the development of inverted devices to reduce the trap density and energy barrier between the electron transport layer(ETL)and the electrode.However,most CILs are highly thickness-sensitive due to low conductivity and poor film-forming.In this study,we report on a self-doping perylene imide-based ionene polymer(PNPDIN)used as CIL material to modify electrode in inverted PerSCs.PNPDIN exhibits high conductivity and a good solubility in polar solvent,which results in an improved power conversion efficiency(PCE)from 10.05%(device without a CIL)to 16.97%.When the blend of PNPDIN and Bphen was used as a mixed CIL,the PCE of PerSCs can be further increased to 21.28%owing to the excellent morphology and matched energy level.More importantly,the PCE of the device is highly tolerant to the thickness of the mixed CIL,which benefited from the high conductivity of PNPDIN.This development is expected to provide an excellent mixed CIL material for roll-to-roll processing efficient and stable inverted PerSCs.Daizhe Wang Tengling Ye Dongqing He Xiaochen Sun Yong Zhang 2023Chinese Journal of Chemistry2023,41,23:0
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