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首页> 外文期刊>ACS applied materials & interfaces >Enhancing the Stability of CH3NH3PbBr3 Nanoparticles Using Double Hydrophobic Shells of SiO2 and Poly(vinylidene fluoride)
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Enhancing the Stability of CH3NH3PbBr3 Nanoparticles Using Double Hydrophobic Shells of SiO2 and Poly(vinylidene fluoride)

机译:使用SiO2双疏水壳增强CH3NH3PBBBR3纳米粒子的稳定性,POLY(偏二氟乙烯)

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摘要

The instability of lead halide perovskites (LHPs) has tremendously hindered their practical applications. Although some examples on encapsulating LHPs into a SiO2 shell have been reported, these SiO2-coated LHPs still suffer from limited stability. Herein, MAPbBr3 (MA = CH3NH3) nanoparticles encapsulated in double hydrophobic shells of organic functionalized SiO2 and poly(vinylidene fluoride) (MAPbBr(3)pSiO(2)/PVDF) are successfully synthesized by infiltrating the MAPbBr3 precursor solution into hollow siliceous nanospheres and followed by PVDF capping. With the dual protection of SiO2 and PVDF, the MAPbBr(3)@SiO2/ PVDF nanoparticles exhibit drastically improved stability against water and UV-light illumination. A white light-emitting diode with luminous efficiency up to 147.5 mu m W-1 and a color gamut encompassing 120% of National Television System Committee in Commission Internationale de L'Eclairage 1931 color space has been demonstrated using the MAPbBr(3)pSiO(2)/PVDF nanoparticles as the green light source. This study enlightens new insights into the synthesis of highly stable LHPs-based core-shell-shell architectures toward their practical applications.
机译:铅卤化铅的不稳定性(LHPS)巨大地阻碍了它们的实际应用。据报道,虽然已经报道了将LHP封装到SiO 2壳中的一些实例,但这些SiO2涂层的LHP仍然存在有限的稳定性。这里,通过渗透Mapbbr3前体溶液成功地合成MAPBBR3(MA = CH3NH3)纳米颗粒,其包封在有机官能化SiO2和聚(3)psio(2)/ pVDF)中成功合成了中空的硅质纳米球和其次是PVDF封盖。随着SiO2和PVDF的双重保护,MAPBBR(3)/ / PVDF纳米粒子表现出危及水和紫外光照明的稳定性。具有明亮效率的白光发光二极管,可达147.5亩,包括Mapbbr(3)Psio(3)PSIO( 2)/ PVDF纳米粒子作为绿光源。本研究开明了新的见解,对其对实际应用的高度稳定的LHPS核心壳壳架构合成。

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