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Effect of the microstructure of graphitic boron nitride on the kinetics of the formation of boron nitride high-pressure phases

机译:石墨硼氮化物微观结构对氮化硼高压相的形成动力学的影响

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摘要

Three types of hexagonal boron nitride (h-BN) with graphitic crystal structure having different microstructures were subjected to high pressures (HP) and high temperatures (HT), and the kinetics of the phase transitions to the sp(3)-hybridized phases (w-BN, c-BN) was studied using in situ synchrotron diffraction. The analysis of the phase transformation kinetics revealed the transformation paths and activation energies E(a )of the transformation of h-BN to the high-pressure forms of BN for different microstructures of h-BN. Defect-poor h-BN transforms to metastable wurtzitic BN (w-BN) with E-a approximate to 0.3 eV/at. Defect-rich forms of h-BN transform directly to c-BN, but with a higher activation energy. It was observed that the turbostratic disorder in h-BN retards the phase transition as compared to h-BN containing corrugated basal planes and a low degree of turbostracity. The experimental results are discussed in view of the microstructure changes during the HP/HT treatment and compared to available theoretical phase transition models.
机译:具有具有不同微结构的石墨晶体结构的三种类型的六边形氮化硼(H-BN)经受高压(HP)和高温(HT),并且相位过渡的动力学对SP(3) - 杂交相(使用原位同步衍射研究了W-BN,C-BN)。相变动力学的分析揭示了H-BN的高压形式的H-Bn转化的转化路径和活化能量E(A),用于H-Bn的不同微结构的BN。缺陷差的H-BN与e-a近似的亚稳态Wurtzitic BN(W-BN)变换为0.3eV / AT。将富含缺陷的H-BN形式直接转换为C-BN,但具有更高的激活能量。观察到,与含有瓦楞基底平面的H-BN和低涡轮缩小程度相比,H-BN中的涡轮静脉紊乱延迟了相转变。考虑到HP / HT治疗期间的微观结构变化并与可用理论相位过渡模型进行了讨论了实验结果。

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