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通过低共熔物的共晶机械化学反应机理:时间分辨原位监测研究

On the Mechanism of Cocrystal Mechanochemical Reaction via Low Melting Eutectic: A Time-Resolved In Situ Monitoring Investigation.

作者信息

Mazzeo Paolo P, Prencipe Michele, Feiler Torvid, Emmerling Franziska, Bacchi Alessia

机构信息

Department of Chemistry, Life Sciences and Environmental Sustainability, University of Parma, Parco Area delle Scienze 17/A, 43124 Parma, Italy.

Biopharmanet-TEC, University of Parma, Parco Area delle Scienze 27/A, 43124 Parma, Italy.

出版信息

Cryst Growth Des. 2022 Jul 6;22(7):4260-4267. doi: 10.1021/acs.cgd.2c00262. Epub 2022 Jun 1.

Abstract

Mechanochemistry has become a sustainable and attractive cost-effective synthetic technique, largely used within the frame of crystal engineering. Cocrystals, namely, crystalline compounds made of different chemical entities within the same crystal structure, are typically synthesized in bulk via mechanochemistry; however, whereas the macroscopic aspects of grinding are becoming clear, the fundamental principles that underlie mechanochemical cocrystallization at the microscopic level remain poorly understood. Time-resolved in situ (TRIS) monitoring approaches have opened the door to exceptional detail regarding mechanochemical reactions. We here report a clear example of cocrystallization between two solid coformers that proceeds through the formation of a metastable low melting binary eutectic phase. The overall cocrystallization process has been monitored by time-resolved in situ (TRIS) synchrotron X-ray powder diffraction with a customized ball milling setup, currently available at μSpot beamline at BESSY-II, Helmholtz-Zentrum Berlin. The binary system and the low melting eutectic phase were further characterized via DSC, HSM, and VT-XRPD.

摘要

机械化学已成为一种可持续且具有吸引力的经济高效合成技术,在晶体工程领域中广泛应用。共晶体,即在同一晶体结构中由不同化学实体组成的晶体化合物,通常通过机械化学批量合成;然而,虽然研磨的宏观方面已逐渐清晰,但微观层面机械化学共结晶的基本原理仍知之甚少。时间分辨原位(TRIS)监测方法为机械化学反应的细节研究打开了大门。我们在此报告了一个由两种固体共形剂之间共结晶的清晰示例,该过程通过形成亚稳的低熔点二元共晶相进行。整个共结晶过程通过定制的球磨装置,利用时间分辨原位(TRIS)同步加速器X射线粉末衍射进行监测,该装置目前可在柏林亥姆霍兹中心BESSY-II的μSpot光束线使用。通过差示扫描量热法(DSC)、热台显微镜(HSM)和变温X射线粉末衍射(VT-XRPD)对二元体系和低熔点共晶相进行了进一步表征。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/47ec/9264353/b6e6ce73321d/cg2c00262_0008.jpg

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