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首页> 外文期刊>Physical chemistry chemical physics: PCCP >The influence of manganese concentration on the sensitivity of bandshape and lifetime luminescent thermometers based on Y3Al5O12:Mn3+, Mn4+, Nd3+ nanocrystals
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The influence of manganese concentration on the sensitivity of bandshape and lifetime luminescent thermometers based on Y3Al5O12:Mn3+, Mn4+, Nd3+ nanocrystals

机译:锰浓度对基于Y3Al5O12:Mn3 +,Mn4 +,Nd3 +纳米晶体的带形和寿命致光温度计敏感性的影响

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Luminescent thermometers based on transition metal and lanthanide ion codoped nanocrystals have become a group of non-contact thermometers which are gaining importance due to their high sensitivity upon temperature changes. Here we present two types of luminescent thermometers, namely, bandshape and lifetime temperature sensors based on Y3Al5O12: Mn3+, Mn4+, Nd3+ nanocrystals. Their ability for temperature sensing was investigated as a function of Mn concentration. It was found that both sensitivity and usable temperature range depend on the Mn concentration. The highest sensitivity (S = 2.69%/K) was found for the lifetime luminescent thermometer with 0.01% Mn concentration and its value is gradually reduced with Mn content. Similarly, in the case of the bandshape luminescent thermometer, the sensitivity decreases from 1.69%/K for 0.01% Mn to 0.54%/K for 1% Mn. On the other hand the usable temperature range extends with dopant concentration. The concentration effect on the temperature dependent optical parameters is discussed in terms of interionic interactions facilitated for shorter Mn-Mn distances.
机译:基于过渡金属和镧系元素离子编码纳米晶体的发光温度计已成为一组非接触温度计,这是由于温度变化的高敏感性而具有重要性。在这里,我们提出了两种类型的发光温度计,即基于Y3Al5O12:Mn3 +,Mn4 +,Nd3 +纳米晶体的带形和寿命温度传感器。作为Mn浓度的函数研究了它们的温度传感能力。发现敏感性和可用的温度范围取决于Mn浓度。发现最高的灵敏度(S = 2.69%/ k)对于0.01%Mn浓度的寿命发光温度​​计,其值逐渐降低Mn含量。类似地,在带形发光温度计的情况下,灵敏度从1.69%/ k降低0.01%Mn达0.54%/ k,对于1%Mn。另一方面,可用的温度范围与掺杂剂浓度延伸。就较短MN-Mn距离的促进而讨论了对温度依赖性光学参数的浓度效应。

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