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首页> 外文期刊>Physica, B. Condensed Matter >Investigation on spectroscopic properties and temperature dependent photoluminescence of NIR emitting Cr3+ doped zinc gallate long persistent nanophosphor
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Investigation on spectroscopic properties and temperature dependent photoluminescence of NIR emitting Cr3+ doped zinc gallate long persistent nanophosphor

机译:NIR发射CR3 +掺杂锌的光谱性能和温度依赖性光致发光的研究

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In the present context, detailed spectroscopic analysis of Cr3+ doped ZnGa2O4 has been reported. Hydrothermal method was adopted for the formation of nanoparticles. XRD patterns revealed the cubic phase with good crystallinity. The PL emission spectra showed a broadband NIR emission with a sharp peak from the T-4(2) and E-2 states of Cr3+. Strong crystal field strength was estimated from the spectroscopic data for the Cr(3+)ion in ZnGa2O4 host. The material also showed long afterglow property. With increase of temperature, the FWHMs of the emission band were found to be increased and the average lifetimes were decreased because of the increasing population of the T-4(2) state. Further, the system was utilized for optical temperature sensing using lifetime based technique and maximum sensitivity was obtained as 0.018 K-1. UV, as well as blue and orange light was found to be suitable to be used as excitation sources for temperature sensing measurement. The possibility of the present nanophosphor to emit a long persistent signal in first biological window and the significant temperature dependent photoluminescence property allows it to be considered as a promising material in bioimaging application as well as for temperature sensing in biotechnological applications.
机译:在本文中,报道了Cr3 +掺杂Znga2O4的详细光谱分析。采用水热法形成纳米颗粒。 XRD图案揭示了具有良好结晶度的立方相。 PL发射光谱显示宽带NIR发射,具有来自T-4(2)的尖峰和CR3 +的E-2状态。从Znga2O4宿主中的Cr(3+)离子的光谱数据估计强晶场强度。该材料还显示出长期的余辉性能。随着温度的增加,发现发射带的FWHMS增加,并且由于T-4(2)状态的群体增加而降低了平均寿命。此外,该系统用于使用基于寿命的技术进行光学温度感测,获得最大灵敏度为0.018k-1。发现紫外线以及蓝色和橙色光被发现适合用作温度传感测量的激励源。本纳米磷在第一生物窗口中发射长持续信号的可能性和显着的温度依赖性光致发光性能使其被认为是生物影像机应用中的有希望的材料以​​及生物技术应用中的温度感测。

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