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Controllable Modulation of Morphology and Property of CsPbCl_(3)Perovskite Microcrystals by Vapor Deposition Method
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作者 Na Dong Fangfang You +2 位作者 Ting He Yi Yao Faqiang Xu 《Chinese Journal of Chemical Physics》 SCIE EI CAS CSCD 2023年第5期613-619,I0002,共8页
As a direct wide bandgap semiconductor,CsPbCl_(3)has great potential applications in the eld of near-ultraviolet photodetectors,lasers and higher-order multiphoton uores-cent detectors.In this work,we synthesized CsPb... As a direct wide bandgap semiconductor,CsPbCl_(3)has great potential applications in the eld of near-ultraviolet photodetectors,lasers and higher-order multiphoton uores-cent detectors.In this work,we synthesized CsPbCl_(3)micro/nanocrystals by vapor depo-sition method with CsCl and PbCl_(2)powders as the source materials.It was con rmed that the formation of CsPbCl_(3)perovskite through the chemical reaction of CsCl with PbCl_(2)occurred in the quartz boat before the source evaporation,not in vapor or on sub-strate surface.The evaporated CsPbCl_(3)can form micro/nanocrystals on substrate surfaces under appropriate conditions.Various morphologies including irregular polyhedrons,rods and pyramids could be observed at lower temperature,while stable and uniform CsPbCl_(3)single crystal microplatelets were controllably synthesized at 450℃.Prolonging the growth time could modulate the size and density of the microcrystals,but could not change the morphology.Substrate types made little di erence to the morphology of CsPbCl_(3)crystals.The photoluminescence spectra indicated that the crystallinity and morphology of CsPbCl_(3)micro/nanocrystals have signi cant e ects on their optical properties.The work is expected to be helpful to the development of optoelectronic devices based on individual CsPbCl_(3)microcrystal. 展开更多
关键词 Vapor deposition method cspbcl_(3)micro/nanocrystal Controlled synthesis PHOTOLUMINESCENCE
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稀土Er^(3+)离子掺杂的全无机CsPbCl_(3)钙钛矿纳米晶的合成及发光性能
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作者 王沐伊 李会利 《微纳电子技术》 CAS 北大核心 2023年第10期1608-1618,共11页
CsPbCl_(3)全无机钙钛矿纳米晶(PNC)的应用受到其弱发光、极低的光致发光量子产率(PLQY)以及长期暴露于氧气和湿气环境中稳定性差等的限制。为了解决这一问题,使用稀土金属元素铒的三价阳离子(Er^(3+))作为B位掺杂元素,制备出了明亮蓝... CsPbCl_(3)全无机钙钛矿纳米晶(PNC)的应用受到其弱发光、极低的光致发光量子产率(PLQY)以及长期暴露于氧气和湿气环境中稳定性差等的限制。为了解决这一问题,使用稀土金属元素铒的三价阳离子(Er^(3+))作为B位掺杂元素,制备出了明亮蓝紫光发射的Er^(3+)∶CsPbCl_(3)钙钛矿纳米晶发光材料。掺杂后的纳米晶具有最佳的形貌和发光性能:PLQY为16.7%、平均粒径约为7.98nm、荧光发射峰蓝移至400nm、半峰全宽仅为10.0nm。同时该纳米晶的环境稳定性也显著提升,在测试环境(温度60℃、湿度60%RH)下存放10天后,其发光强度仍能保持初始荧光发射强度的60%以上。此工作较大程度上改善了CsPbCl_(3)钙钛矿纳米晶存在的问题,对于其实际应用存在重大意义。 展开更多
关键词 钙钛矿纳米晶(PNC) cspbcl_(3) 光致发光量子产率(PLQY) B位掺杂 稳定性
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