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有机添加剂在钙钛矿电致发光器件中的应用
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作者 刘鑫妍 孙冠伟 +2 位作者 刘喆 孟凡源 苏仕健 《液晶与显示》 CAS CSCD 北大核心 2021年第1期149-157,共9页
为了得到高色纯度、高发光效率且制备方法简单的深红光钙钛矿电致发光器件(LED),本文选用乙胺碘(Ethylammonium Iodide(EAI))作为有机添加剂,掺杂在溶剂为N’N-二甲基甲酰胺(DMF)的CsPbBr0.5I2.5钙钛矿前驱体溶液中,采用旋涂的方法且在... 为了得到高色纯度、高发光效率且制备方法简单的深红光钙钛矿电致发光器件(LED),本文选用乙胺碘(Ethylammonium Iodide(EAI))作为有机添加剂,掺杂在溶剂为N’N-二甲基甲酰胺(DMF)的CsPbBr0.5I2.5钙钛矿前驱体溶液中,采用旋涂的方法且在不使用反溶剂的情况下,得到不同EAI掺杂比例的钙钛矿薄膜。经研究发现,当掺杂摩尔比例为0.5∶1(EAI∶Pb2+)时,钙钛矿薄膜平整致密,经钝化后的钙钛矿晶粒最小,约为40 nm。以此钙钛矿薄膜为发光层,制备结构为ITO(90 nm)/PVK(30 nm)/perovskite(40 nm)/TPBi(55 nm)/CsF(1.2 nm)/Al(120 nm)的深红光钙钛矿发光器件,其启亮电压为2.7 V,最大亮度为320 cd/m2,最大外量子效率(EQE)为7%,发光峰为680 nm,色坐标为(0.71,0.28)。因此,有机添加剂EAI可以有效抑制钙钛矿大晶粒生长,同时降低缺陷态密度,利用简单的溶液加工技术和分子尺度自组装工艺得到了高质量薄膜,进而制备出性能优良的深红光钙钛矿LED。 展开更多
关键词 钙钛矿 溶液加工 深红光发光 乙胺碘 电致发光二极管
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Fabricating ultralow-power-excitable lanthanide-doped inorganic nanoparticles with anomalous thermo-enhanced photoluminescence behavior
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作者 Hao Chen Zhifen Wu +4 位作者 Jianxi Ke Guowei Li Feilong Jiang Yongsheng Liu Maochun Hong 《Science China Materials》 SCIE EI CAS CSCD 2022年第10期2793-2801,共9页
Trivalent lanthanide(Ln^(3+))-doped luminescent nanoparticles(NPs)have been extensively investigated as deep-tissue-penetration visual bioimaging agents owing to their exceptional upconversion and near-infrared(NIR)lu... Trivalent lanthanide(Ln^(3+))-doped luminescent nanoparticles(NPs)have been extensively investigated as deep-tissue-penetration visual bioimaging agents owing to their exceptional upconversion and near-infrared(NIR)luminescence upon irradiation of NIR light.However,in most cases,the power density of irradiation used for in vivo biological imaging is much higher than that of the reported maximum permissible exposure(MPE)value of NIR light,which inevitably does great damage to the living organisms under study and thus impedes the plausible clinical applications.Herein,by using a facile syringe pump-aided shell epitaxial growth method,we construct for the first time a new class of Ln^(3+)-doped KMgF_(3):Yb/Er@KMgF_(3)core-shell NPs that can be activated by utilizing a 980-nm xenon lamp or diode laser with an ultralow excitation power density down to 0.08 mW cm^(−2),a value that is approximately 4 orders of magnitude lower than the MPE value set by the American National Standards Institute(ANSI)for safe bioimaging in vivo.By combining the comparative spectroscopic investigations with atomic-resolved spherical aberration corrected transmission electron microscopy(AC-TEM)characterization,we find that the reduced crystallographic defects are the primary cause underlying such an ultralow-power-excitable feature of the KMgF_(3):Yb/Er@KMgF_(3)core-shell NPs.And,by the same token,the resultant KMgF_(3):Yb/Er@KMgF_(3)core-shell NPs also exhibit an anomalous thermo-enhanced photoluminescence(PL)behavior coupled with an excellent photothermal stability that cannot occur in other Ln^(3+)-doped core-shell NPs.These findings described here unambiguously pave a new way to prepare high-quality Ln^(3+)-doped luminescent NPs with desirable ultralow-power-excitable capability and photothermal stability for future biomedical applications. 展开更多
关键词 KMGF3 LANTHANIDE ultralow-power-excitable photothermal stability nanoparticles
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