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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >The enhanced photoluminescence and temperature sensing performance in rare earth doped SrMoO4 phosphors by aliovalent doping: from material design to device applications
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The enhanced photoluminescence and temperature sensing performance in rare earth doped SrMoO4 phosphors by aliovalent doping: from material design to device applications

机译:通过Ali价掺杂的稀土掺杂SRMoo4磷光体的增强的光致发光和温度传感性能:从材料设计到装置应用

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摘要

Simultaneous enhancement of upconversion luminescence and temperature sensitivity is achieved by aliovalent doping in Er3+/Yb3+ codoped SrMoO4 phosphors and a highly accurate ratiometric temperature sensing platform has been constructed in an all-fiber structure. The influence of aliovalent doping of Li+ and Ga3+ in SrMoO4 phosphors on the crystal structure and growth was investigated by X-ray diffraction (XRD) and scanning electron microscopy (SEM). A detailed structural analysis was carried out using Eu3+ ions as a spectroscopic probe to disclose the change of the local site symmetry due to aliovalent doping. The upconversion emission intensity of Er3+ in SrMoO4 phosphors is enhanced by 82 times and 255 times due to Li+ doping and Li+/Ga3+ codoping, respectively. The intense upconversion luminescence and high temperature sensitivity lead to a small temperature uncertainty (0.091 K) and an absolute error (-0.5-0.3 K) as well as good repeatability (<1%). Preliminary experiments from material design to device applications pave the way for the practical applications of ratiometric temperature sensors.
机译:通过ER3 + / YB3 +编码的SRMOO4磷光体中的铝掺杂和高度精确的比率测温平台,在全纤维结构中构建了同时增强升高发光和温度敏感性。通过X射线衍射(XRD)和扫描电子显微镜(SEM)研究了在SRMOO4磷光体上对SRMOO4磷光体的渗透掺杂Li +和Ga3 +的影响。使用Eu3 +离子作为光谱探针进行详细的结构分析,以公开由于渗透性掺杂而导致的局部位点对称性的变化。由于Li +掺杂和Li + / Ga3 +编码,SRMOO4磷光体中ER3 +的升高发射强度增强了82倍和255倍。强烈的上变发光和高温敏感性导致小的温度不确定性(0.091 k)和绝对误差(-0.5-0.3k)以及良好的重复性(<1%)。从材料设计到设备应用的初步实验为比率温度传感器的实际应用铺平了道路。

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