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Tunable blue-green-emitting wurtzite ZnS:Mg nanosheet-assembled hierarchical spheres for near-UV white LEDs

机译:可调蓝光发射纤锌矿型ZnS:Mg纳米片组装的分层球体用于近紫外白光LED

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摘要

Mg-doped ZnS hierarchical spheres have been synthesized via hydrothermal method using mixed solvents of ethylenediamine and DI water without any surface-active agent. The surface morphology and microstructure studies revealed that the hierarchical spheres were consisted of many well-aligned nanosheets with width 10 nm and length about 50 ~ 100 nm. X-Ray diffraction results show that the ZnS:Mg hierarchical spheres have wurtzite structure with high crystallinity. The absorption edge in the diffuse reflection spectra shifts towards lower wavelength with increasing Mg concentration, indicating an expansion in the bandgap energy that is estimated to be in the range of 3.28 to 3.47 eV. Blue-green photoluminescence with tunable intensity and peak position was observed depending on the Mg content. The Mg2+-activated ZnS phosphor can be good candidates for blue-green components in near-UV white light-emitting diodes.
机译:使用乙二胺和去离子水的混合溶剂,不加任何表面活性剂,通过水热法合成了掺镁的ZnS分级球。表面形貌和微观结构研究表明,层状球由许多排列良好的纳米片组成,纳米片的宽度为10 nm,长度约为50〜100 nm。 X射线衍射结果表明,ZnS:Mg分级球具有纤锌矿结构,且结晶度高。随着Mg浓度的增加,漫反射光谱中的吸收边移向较低的波长,这表明带隙能量的扩展估计在3.28至3.47 eV的范围内。取决于镁含量,观察到具有可调强度和峰位置的蓝绿色光致发光。 Mg 2 + 活化的ZnS荧光粉可以很好地替代近紫外白光发光二极管中的蓝绿色成分。

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