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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >The tetragonal-to-orthorhombic phase transformation in ammonia borane and in its deuterium substituted compounds
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The tetragonal-to-orthorhombic phase transformation in ammonia borane and in its deuterium substituted compounds

机译:氨硼烷及其氘代化合物中的四方相到正​​交相变

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The tetragonal to orthorhombic phase transition occurring in ammonia borane has been characterized by means of anelastic spectroscopy and differential scanning calorimetry. The transformation is of first-order, as appreciable latent heat is developed during the phase conversion; however, the transition has also a second-order character, as demonstrated by a dramatic modulus softening starting well above the transformation temperature; a physical mechanism to account for the transformation is proposed. The direct step-by-step monitoring of the dynamic Young modulus allowed us to observe that the real temperature hysteresis between cooling and heating is rather small (~0.4K), and the complete transfor?mation evolves in a fraction of Kelvin with presence of etero-phase fluctuations. A comparison between the present deuterium substituted compounds and previous results in hydrogenated samples provided information about the effect of partial and selective deuteration on both the time constants and the width of the phase transformation.
机译:氨硼烷中发生的四方到正交相变已经通过非弹性光谱法和差示扫描量热法进行了表征。相变是一阶的,因为在相变过程中会产生明显的潜热。然而,转变也具有二阶特征,如在远高于转变温度时开始的剧烈模量软化所证明的。提出了解释这种转变的物理机制。直接的动态杨氏模量分步监控使我们可以观察到,冷却和加热之间的实际温度滞后很小(〜0.4K),并且在存在开尔文的情况下,完整的转变在开尔文的一部分中发生。相位波动。当前氘取代的化合物与氢化样品中先前结果之间的比较提供了有关部分和选择性氘代对时间常数和相变宽度的影响的信息。

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