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首页> 外文期刊>Nanoscale >Glass stabilized ultra-stable dual-emitting Mn-doped cesium lead halide perovskite quantum dots for cryogenic temperature sensing
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Glass stabilized ultra-stable dual-emitting Mn-doped cesium lead halide perovskite quantum dots for cryogenic temperature sensing

机译:玻璃稳定超稳定dual-emittingMn-doped铯卤化铅钙钛矿量子制冷温度感应点

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摘要

Mn-Doped CsPb(Cl/Br)(3) quantum dots possess multi-functional optical, electronic and magnetic characteristics. However, they usually suffer from decomposition in air, and Mn2+ dopants will be gradually expelled from the perovskite host due to a radius mismatch between Pb2+ and Mn2+. To solve these crucial issues, the synthesis of glass stabilized Mn-doped quantum dots via an appropriate glass composition design and in situ glass crystallization is reported. Mn2+ dopants act as nucleating agents to promote the nucleation/growth of CsPb(Cl/Br)(3) from B-P-Zn-Cs-Pb based oxyhalide glass and partition into the perovskite host to produce dual-color luminescence via efficient exciton-to-dopant energy transfer. Benefitting from the effective protection of robust glass, Mn-doped CsPb(Cl/Br)(3) quantum dots exhibit superior water resistance and thermal stability. Particularly, almost 100% luminescence is retained after immersing the composite in water for 30 days. Interestingly, rapid thermal quenching for exciton recombination relative to Mn2+ d-d transition at cryogenic temperatures enables its promising applications as a ratiometric temperature sensing medium.
机译:Mn-Doped乳腺叶状囊肉瘤(Cl / Br)(3)量子点多功能光学、电子和磁特征。从空气中分解,Mn2 +掺杂物逐渐被驱逐出钙钛矿主机由于Pb2 +和Mn2 +半径不匹配。解决这些关键问题,的合成通过一个玻璃稳定Mn-doped量子点适当的玻璃成分设计和原位玻璃结晶报道。作为成核剂促进成核/乳腺叶状囊肉瘤的生长(Cl / Br) (3)基于B-P-Zn-Cs-Pb oxyhalide玻璃和分区钙钛矿主机生产既通过高效的发光exciton-to-dopant能量转移。强大的保护玻璃,Mn-doped乳腺叶状囊肉瘤(Cl / Br)(3)量子点具有优越水电阻和热稳定性。特别是,几乎100%的发光保留在水中浸泡后复合30天。激子复合相对于淬火在低温下Mn2 + d d转换使其应用前景比率计温度传感介质。

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