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Glasses of three alkyl phosphates show a range of kinetic stabilities when prepared by physical vapor deposition

机译:三种烷基磷酸盐的眼镜显示通过物理气相沉积制备时的一系列动力学稳定性

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摘要

In situ AC nanocalorimetry was used to characterize vapor-deposited glasses of three phosphates with increasing lengths of alkyl side chains: trimethyl phosphate, triethyl phosphate, and tributyl phosphate. The as-deposited glasses were assessed in terms of their reversing heat capacity, onset temperature, and isothermal transformation time. Glasses with a range of kinetic stabilities were prepared, including kinetically stable glasses, as indicated by high onset temperatures and long transformation times. Trimethyl phosphate forms kinetically stable glasses, similar to many other organic molecules, while triethyl phosphate and tributyl phosphate do not. Triethyl phosphate and tributyl phosphate present the first examples of non-hydrogen bonding systems that are unable to form stable glasses via vapor deposition at 0.2 nm/s. Based on experiments utilizing different deposition rates, we conclude that triethyl phosphate and tributyl phosphate lack the surface mobility required for stable glass formation. This may be related to their high enthalpies of vaporization and the internal structure of the liquid state. Published by AIP Publishing.
机译:在原位AC纳米离子中用于表征三种磷酸盐的气相沉积玻璃,随着烷基侧链的增加:磷酸三甲基磷酸酯,磷酸三乙酯和磷酸三丁酯。根据其逆转热容量,发病温度和等温转化时间来评估沉积的眼镜。制备具有一系列动力稳定性的眼镜,包括动力学稳定的眼镜,如高发病温度和长转化时间所示。三甲基磷酸酯形成动力学稳定的眼镜,类似于许多其他有机分子,而磷酸三乙酯和磷酸三丁基酯不。磷酸三乙酯和磷酸酯呈呈列非氢键体系的第一个实施例,其不能通过0.2nm / s的气相沉积形成稳定的眼镜。基于利用不同沉积速率的实验,我们得出结论,磷酸三乙酯和磷酸三酯缺乏稳定玻璃形成所需的表面迁移率。这可能与其高蒸发焓和液态的内部结构有关。通过AIP发布发布。

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