...
首页> 外文期刊>RSC Advances >An optical ratiometric temperature sensor based on dopant-dependent thermal equilibrium in dual-emitting Ag Mn:ZnInS quantum dots
【24h】

An optical ratiometric temperature sensor based on dopant-dependent thermal equilibrium in dual-emitting Ag Mn:ZnInS quantum dots

机译:基于掺杂剂依赖性热平衡的光学比例温度传感器,Znins量子点

获取原文
   

获取外文期刊封面封底 >>

       

摘要

We reported an optical ratiometric temperature sensor via dopant-dependent dual emissions in AgMn:ZnInS QDs. For QDs, the Ag-related emission is around 485 nm arising from the radiative recombination of the captured electrons' anion vacancies with holes trapped at the Ag dopant level. The energy level of anion vacancies is just below the conduction band, which can attain thermal equilibrium easily without further energy level adjusting. Moreover, Mn-related emission is around 585 nm via the Mn ~(2+) ligand-field transition from ~(4) T _(1) to ~(6) A _(1) . Mn-related thermal equilibrium is effectively suppressed due to the large energy gap between the conduction band and ~(4) T _(1) energy level. These features not only obtain the opportunity to use the photoluminescence temperature specificity of Ag and Mn for ratiometric temperature sensing, but also make the flash synthetic approach via a pot non-injection possible. This temperature sensor, designed with AgMn:ZnInS QDs, exhibits good temperature sensitivity (~0.227% °C ~(?1) ) and high QY (20%).
机译:我们通过AGMN:Znins QDS的掺杂剂依赖性双发射报道了一种光学比例温度传感器。对于QD,Ag相关的发射是从捕获的电子的阴离子空位的辐射重组产生约485nm,捕获在Ag掺杂剂水平处的孔。阴离子空位的能量水平仅在导通带下方,可以容易地达到热平衡而无需进一步的能级调节。此外,Mn〜(2+)配体场转变的Mn〜(2+)与〜(6)A _(1)的Mn〜(2+)配体 - 场转变为约585nm。由于导通带和〜(4)T_(1)能级之间的大能隙,有效地抑制了MN相关的热平衡。这些特征不仅可以获得使用Ag和Mn的光致发光温度特异性的机会,并且还可以通过可能的锅未注入制造闪光合成方法。该温度传感器,设计具有AGMN:Znins QDS,具有良好的温度敏感性(〜0.227%°C〜(?1))和高QY(20%)。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号