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首页> 外文期刊>Chemical engineering journal >Rapid and room temperature synthesis of MAPb(1-x)Sn(x)Br(3-2x)Cl(2x) perovskite quantum dots with enhanced lifetime in warm WLEDs: A step towards environmental friendly perovskite light harvester
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Rapid and room temperature synthesis of MAPb(1-x)Sn(x)Br(3-2x)Cl(2x) perovskite quantum dots with enhanced lifetime in warm WLEDs: A step towards environmental friendly perovskite light harvester

机译:MAPB(1-X)SN(x)SN(3-2X)CL(2x)CL(2X)普罗夫斯基钛料量子点(2x)温暖的WLED寿命增强:迈向环境友好植物佩罗夫斯基斯特利斯灯收割机的一步

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In this work, a facile approach to develop nontoxic CH3NH3PbBr3 perovskite quantum dots (PQDs) by substituting tin (Sn2+) ion instead of lead (Pb2+) ion and chloride (Cl-) ion instead of bromide (Br-) ion has been reported. Synchronized cation and anion substitution in CH3NH3Pb1-xSnxBr3-2xCl2x PQDs has resulted in commercial-friendly properties like fine-tuning of bandgap, shifting of color emission from green to cyan region (523 nm-490 nm), enhancing structural stability, excitonic lifetime, and color gamut. Presence of Sn2+ cations in +2 state, Cl- anions in -1 state, and ion exchange was confirmed from various spectroscopic and morphological analyses. Photoluminescence quantum yield (PLQY) for unsubstituted CH3NH3PbBr3 was observed as 97.50% and it is reduced to > 50% for 15% SnCl2 substituted CH3NH3PbBr3 PQDs because of the presence of defect-related nonradioactive recombination centres while cation and anion changeover. Warm white LED prototype with 123% color gamut encircling as per National Television System Committee Standard was achieved using as prepared CH3NH3Pb1-xSnxBr3-2xCl2x PQDs and commercial red phosphor on the blue LED chip. The inflated colour-gamut, promising PLQY, and slender FWHM of as-synthesized CH3NH3Pb1-xSnxBr3-2xCl2x PQDs illustrate great prospect to explore their utilization in display applications. Reduction in toxicity in perovskite material was confirmed by the biological study.
机译:在这项工作中,已经报道了通过用锡(SN2 +)离子代替铅(SN2 +)离子和氯化物(CL-)离子来开发无毒CH3NH3PBBBR3钙钛矿量子点(PQDS)的容易方法。 CH3NH3PB1-XSNXBR3-2XCL2X PQD中的同步阳离子和阴离子替代导致商业友好的属性,如带隙的微调,从绿色到青色区域的彩色排放(523 nm-490nm),增强结构稳定,兴趣寿命,和色域。从各种光谱和形态学分析中确认了+2状态下的SN2 +阳离子的存在和离子交换。未取代的CH3NH3PBBBR3的光致发光量子产率(PLQY)被观察为97.50%,由于存在缺陷相关的非偶极性重组中心,而在阳离子和阴离子转换时,将15%SNCL2取代的CH3NH3PBBBR3 PQD降至> 50%。温暖的白色LED原型,根据国家电视系统委员会标准的彩色色域配有123%的彩色障碍物,在蓝色LED芯片上的制备CH3NH3PB1-XSNXBR3-2XCL2X PQD和商用红磷光体实现。膨胀的颜色色域,有前途的PLQY和综合的CH3NH3PB1-XSNXBR3-2XCL2X PQD的纤细FWHM表示探讨其在显示应用中的利用的巨大前景。通过生物学研究证实了钙钛矿材料中毒性的降低。

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