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From Mechanical Effects to Mechanochemistry: Softening and Depression of the Melting Point of Deformed Plastic Crystals

机译:从机械化学的机械效应:软化和抑制变形塑料晶体的熔点

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摘要

The melting of any pure crystalline material at constant pressure is one of its most fundamental properties, and it has been used to identify organic compounds or to verify their chemical or phase purity since the early times of chemistry. Here, we report that a mechanical deformation of plastic organic single crystals such as bending results in a small yet significant decrease in their melting point of about 0.3-0.4 K. The bent section of the crystal was found to be mechanically sorter relative to the straight sections, and the softening temperature preceding the melting was also lower on the convex (outer) side of the bent crystal. Melting of the bent crystal starts at the kink and often appears as splitting of the respective endothermic peak in its thermal (DSC) fingerprint, while unilateral compression of the crystal results in multiple peaks. These thermomechanical effects become more pronounced with heavier mechanical damage due to an increased concentration of defects and ultimately result in a large temperature spread of the associated phase change in addition to melting-point depression in deformed or damaged crystals relative to their pristine counterparts. Within a broader context, the results show that mechanical treatment during sample preparation has a profound effect on the melting of a pure substance, and this could be critically important where the exact melting point is used as a means for polymorph identification.
机译:在恒定压力下熔化任何纯的结晶材料是其最基本的性质中的一种,并且已经用于鉴定有机化合物或自化学早期以来验证其化学或相纯度。在这里,我们报告说,塑料有机单晶如弯曲的机械变形导致其熔点的熔点的小而显着降低,约为0.3-0.4k。发现晶体的弯曲部分相对于直线是机械分子的在熔融晶体的凸(外)侧的熔点上的剖面和软化温度也较低。弯曲晶体的熔化在扭结时开始,并且通常看起来像在其热(DSC)指纹中相应的吸热峰的分裂,而晶体的单侧压缩导致多个峰。由于缺陷的浓度增加,并且最终导致相关相变的浓度增加,并且在相对于其原始对应物中的熔点凹陷之外,这些热机械效果较重导致相关相变的大的温度扩散。在更广泛的背景下,结果表明,样品制剂期间的机械处理对纯物质的熔化具有深远的影响,这可能是至关重要的,其中精确的熔点用作多晶型物鉴定的手段。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2020年第25期|11219-11231|共13页
  • 作者单位

    New York University Abu Dhabi Abu Dhabi United Arab Emirates;

    New York University Abu Dhabi Abu Dhabi United Arab Emirates;

    Department of Chemistry Bioscience and Environmental Engineering Faculty of Science and Technology University of Stavanger 4036 Stavanger Norway Institute of Chemistry Faculty of Natural Sciences and Mathematics Ss. Cyril and Methodius University MK-1000 Skopje Macedonia;

    New York University Abu Dhabi Abu Dhabi United Arab Emirates;

    Bruker Nano Surfaces Division Santa Barbara California 93117 United States;

    New York University Abu Dhabi Abu Dhabi United Arab Emirates Radcliffe Institute far Advanced Study Harvard University Cambridge Massachusetts 02138 United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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  • 入库时间 2022-08-18 22:16:46

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