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基于钙钛矿量子点/染料的夹层型高效率荧光太阳能集光器
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作者 严佳恒 黄丹舟 +2 位作者 王新楚 魏来 王建颖 《湖北大学学报(自然科学版)》 CAS 2024年第6期840-847,共8页
构建多节结构是扩大荧光吸收和发射光谱的有效技术,进而提升荧光太阳能集光器的效率。本研究使用CTAB作为配体修饰的CsPbBr_(3)量子点、染料Yellow083、染料Red305作为荧光材料,EVA作为聚合物波导材料制备钙钛矿量子点/染料的夹层结构... 构建多节结构是扩大荧光吸收和发射光谱的有效技术,进而提升荧光太阳能集光器的效率。本研究使用CTAB作为配体修饰的CsPbBr_(3)量子点、染料Yellow083、染料Red305作为荧光材料,EVA作为聚合物波导材料制备钙钛矿量子点/染料的夹层结构的荧光太阳能集光器。通过设计单夹层/多夹层结构可以起到扩大吸收光谱、提高光学效率、增加荧光材料稳定性、降低荧光物质毒性风险以及保护环境的作用。以CTAB作为配体修饰的CsPbBr_(3)量子点、染料Yellow083和染料Red305分别作为荧光材料的单夹层荧光太阳能集光器的外部光学效率(η_(opt))分别可以达到4.50%、4.86%以及10.92%。以CTAB作为配体修饰的CsPbBr_(3)量子点/染料Yellow083、染料Red305单层荧光太阳能集光器组合形成的双夹层结构的外部光学效率(η_(opt))分别可以达到6.04%和11.32%。我们进一步对3种荧光材料组合形成的三夹层荧光太阳能集光器进行JV测试,得到其η_(opt)可以达到11.95%,本研究也为制备钙钛矿量子点/染料的多夹层的荧光太阳能集光器提供了一种新思路。 展开更多
关键词 钙钛矿量子点 染料 荧光太阳能集光器 夹层结构 外部光学效率
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Red fluorescent siloles with aggregation-enhanced emission characteristics
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作者 Bin Chen Han Nie +3 位作者 Rongrong Hu Anjun Qin Zujin Zhao Ben-Zhong Tang 《Science China Chemistry》 SCIE EI CAS CSCD 2016年第6期699-706,711+706,共8页
A series of new red fluorescent siloles consisting of a silole core and dimesitylboranyl substituent connected with a furan, thiophene, and selenophene bridges were synthesized and characterized. The optical propertie... A series of new red fluorescent siloles consisting of a silole core and dimesitylboranyl substituent connected with a furan, thiophene, and selenophene bridges were synthesized and characterized. The optical properties, electronic structures, and electroluminescence (EL) performances were investigated. The emission wavelengths were red-shifted from the siloles with furan, to those with thiophene, and then selenophene. The thiophene, and selenophene-containing siloles, (MesB)2DTTPS, and (MesB)zDSTPS, showed the typical aggregation-enhanced emission (AEE) feature, while furan-containing one, (MesB)2DFTPS, showed slight emission decrease as the aggregate formation. Theoretical calculations were carried out to explain the difference in the optical properties. Undoped OLEDs using these red siloles as light-emitting layers were fabricated. The device of (MesB)2DTTPS exhibited the best performance. It radiated red EL emission at 589 nm, and afforded good maximum luminance, current, power, and external quantum efficiency of 13300 cd m^-2, 4.3 cd A^-1, 2.9 lm W^-1, and 1.8%, respectively. 展开更多
关键词 SILOLE ORGANOBORON aggregation-enhanced emission red fluorescence organic light-emitting diodes
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