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Solid-state metathesis reactions under pressure: A rapid route to crystalline gallium nitride

机译:压力下的固态复分解反应:快速生成结晶氮化镓的途径

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摘要

High pressure chemistry has traditionally involved applying pressure and increasing temperature until conditions become thermodynamically favorable for phase transitions or reactions to occur. Here, high pressure alone is used as a starting point for carrying out rapid, self-propagating metathesis reactions. By initiating chemical reactions under pressure, crystalline phases, such as gallium nitride, can be synthesized which are inaccessible when initiated from ambient conditions. The single-phase gallium nitride made by metathesis reactions under pressure displays significant photoluminescence intensity in the blue/ultraviolet region. The absence of size or surface-state effects in the photoluminescence spectra show that the crystallites are of micron dimensions. The narrow lines of the x-ray diffraction patterns and scanning electron microscopy confirm this conclusion. Brightly luminescent thin films can be readily grown using pulsed laser deposition.
机译:传统上,高压化学涉及施加压力和升高温度,直到条件变得热力学上有利于相变或反应发生为止。在此,仅将高压用作进行快速,自蔓延的复分解反应的起点。通过在压力下引发化学反应,可以合成结晶相,例如氮化镓,这些结晶相在从环境条件下引发时是不可及的。在压力下通过复分解反应制得的单相氮化镓在蓝色/紫外线区域显示出显着的光致发光强度。在光致发光光谱中不存在尺寸或表面状态效应,这表明微晶具有微米尺寸。 X射线衍射图和扫描电子显微镜的细线证实了这一结论。使用脉冲激光沉积可以容易地生长出明亮发光的薄膜。

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