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首页> 外文期刊>The Journal of Chemical Physics >Molecular dynamics at ambient and elevated pressure of the amorphous pharmaceutical: Nonivamide (pelargonic acid vanillylamide)
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Molecular dynamics at ambient and elevated pressure of the amorphous pharmaceutical: Nonivamide (pelargonic acid vanillylamide)

机译:无定形药物在常压和高压下的分子动力学:壬基酰胺(壬酸香草醛酰胺)

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摘要

Broadband dielectric spectroscopy was employed to investigate the relaxation dynamics of supercooled and glassy nonivamide-the synthetic form of capsaicin being the most spicy-hot substance known to man. The material is of great importance in the pharmaceutical industry because it has wide usage in the medical field for relief of pain, and more recently it has been shown to be effective in fighting cancers. Dielectric measurements carried out at various isobaric and isothermal conditions (pressure up to 400 MPa) revealed very narrow -loss peak and unresolved secondary relaxations appearing in the form of an excess wing on the high frequency flank. Moreover, our studies have shown the shape of dielectric loss spectrum at any fixed loss peak frequency is invariant to different combinations of temperature and pressure, i.e., validity of the time-temperature-pressure superpositioning. We also found the fragility index is nearly constant on varying pressure. This property is likely due to the unusual structure of nonivamide, which has a part characteristic of van der Waals glass-former and another part characteristic of hydrogen-bonded glass-former.
机译:宽带介电谱用于研究过冷的玻璃态壬二酰胺的松弛动力学-辣椒素的合成形式是人类已知的最辣的物质。该材料在制药工业中非常重要,因为它在医学领域用于缓解疼痛具有广泛的用途,并且最近已证明它在对抗癌症方面有效。在各种等压和等温条件(压力高达400 MPa)下进行的介电测量表明,损耗峰非常窄,并且未解决的二次弛豫以高频侧翼过量的机翼形式出现。此外,我们的研究表明,在任何固定的损耗峰值频率下,介电损耗谱的形状对于温度和压力的不同组合都是不变的,即时间-温度-压力叠加的有效性。我们还发现,在变化的压力下,脆性指数几乎恒定。该性质可能是由于壬二酰胺的不寻常结构,其具有范德华玻璃形成剂的一部分特征和氢键玻璃形成剂的另一特征。

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