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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Influence of Substrate Temperature on the Transformation Front Velocities That Determine Thermal Stability of Vapor-Deposited Glasses
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Influence of Substrate Temperature on the Transformation Front Velocities That Determine Thermal Stability of Vapor-Deposited Glasses

机译:基板温度对决定气相沉积玻璃热稳定性的转变前沿速度的影响

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摘要

Stable organic glasses prepared by physical vapor deposition transform into the supercooled liquid via propagating fronts of molecular mobility, a mechanism different from that exhibited by glasses prepared by cooling the liquid. Here we show that spectroscopic ellipsometry can directly observe this front-based mechanism in real time and explore how the velocity of the front depends upon the substrate temperature during deposition. For the model glass former indomethacin, we detect surface-initiated mobility fronts in glasses formed at substrate temperatures between 0.68T(g) and 0.94T(g). At each of two annealing temperatures, the substrate temperature during deposition can change the transformation front velocity by a factor of 6, and these changes are imperfectly correlated with the density of the glass. We also observe substrate-initiated fronts at some substrate temperatures. By connecting with theoretical work, we are able to infer the relative mobilities of stable glasses prepared at different substrate temperatures. An understanding of the transformation behavior of vapor-deposited glasses may be relevant for extending the lifetime of organic semiconducting devices.
机译:通过物理气相沉积制备的稳定的有机玻璃通过传播的分子迁移前沿转变为过冷的液体,这种机理不同于通过冷却液体制备的玻璃所展现的机理。在这里,我们展示了椭圆偏振光谱法可以直接实时观察这种基于前沿的机理,并探索在沉积过程中,前沿的速度如何取决于基底温度。对于模型玻璃原吲哚美辛,我们检测了在基板温度介于0.68T(g)和0.94T(g)之间形成的玻璃中表面引发的迁移率前沿。在两个退火温度的每一个下,沉积过程中的基板温度可以使相变前沿速度变化6倍,并且这些变化与玻璃的密度不完全相关。我们还观察了在某些基材温度下基材引发的前沿。通过理论联系,我们可以推断出在不同基板温度下制备的稳定玻璃的相对迁移率。对气相沉积玻璃的转变行为的理解可能与延长有机半导体器件的寿命有关。

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