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Temperature-Modulated Micromechanical Thermal Analysis with Microstring Resonators Detects Multiple Coherent Features of Small Molecule Glass Transition

机译:具有微串谐振器的温度调制微机械热分析可检测小分子玻璃化转变的多个相干特征

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摘要

Micromechanical Thermal Analysis utilizes microstring resonators to analyze a minimum amount of sample to obtain both the thermal and mechanical responses of the sample during a heating ramp. We introduce a modulated setup by superimposing a sinusoidal heating on the linear heating and implementing a post-measurement data deconvolution process. This setup is utilized to take a closer look at the glass transition as an important fundamental feature of amorphous matter with relations to the processing and physical stability of small molecule drugs. With an additionally developed image and qualitative mode shape analysis, we are able to separate distinct features of the glass transition process and explain a previously observed two-fold change in resonance frequency. The results from this setup indicate the detection of initial relaxation to viscous flow onset as well as differences in mode responsivity and possible changes in the primary resonance mode of the string resonators. The modulated setup is helpful to distinguish these processes during the glass transition with varying responses in the frequency and quality factor domain and offers a more robust way to detect the glass transition compared to previously developed methods. Furthermore, practical and theoretical considerations are discussed when performing measurements on string resonators (and comparable emerging analytical techniques) for physicochemical characterization.
机译:微机械热分析利用微串谐振器来分析最小量的样品,以在加热斜坡期间获得样品的热响应和机械响应。我们通过将正弦加热叠加在线性加热上并执行测量后数据去卷积过程来引入调制设置。该设置可用于仔细观察玻璃化转变,它是无定形物质的重要基本特征,与小分子药物的加工和物理稳定性有关。通过另外开发的图像和定性模式形状分析,我们能够分离出玻璃化转变过程的不同特征,并解释先前观察到的共振频率的两倍变化。该设置的结果表明检测到了粘性流开始的初始松弛,以及模式响应度的差异以及弦谐振器的主谐振模式的可能变化。调制设置有助于在玻璃转变过程中以频率和品质因数域中的变化响应来区分这些过程,并且与以前开发的方法相比,它提供了一种更强大的方法来检测玻璃转变。此外,讨论了在弦谐振器(和可比较的新兴分析技术)上进行测量以进行物理化学表征时的实践和理论考虑。

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