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分子玻璃形成剂 5'-(2,3-二氟苯基)-2'-乙氧基-4-戊氧基-2,3-二氟噻吩的等温冷结晶的分子动力学和动力学,具有可调维度。

Molecular dynamics and kinetics of isothermal cold crystallization with tunable dimensionality in a molecular glass former, 5'-(2,3-difluorophenyl)-2'-ethoxy-4-pentyloxy-2,3-difluorotolane.

机构信息

Department of Chemistry, Faculty of Pure and Applied Sciences, University of Tsukuba, Tsukuba, Ibaraki 305-8571, Japan.

Department of Chemical and Process Engineering, Faculty of Chemistry, Rzeszow University of Technology, 35-959 Rzeszow, Poland.

出版信息

Phys Chem Chem Phys. 2022 Dec 21;25(1):724-735. doi: 10.1039/d2cp03638j.

Abstract

This paper characterizes the molecular mobility that triggers the cold crystallization abilities in 5'-(2,3-difluorophenyl)-2'-ethoxy-4-pentyloxy-2,3-difluorotolane (short name DFP25DFT) material by broadband dielectric spectroscopy (BDS). We analyze the properties of identified molecular motions by referring to the Vogel-Fulcher-Tammann (VFT) model for the structural α-process associated with molecular rotation in isotropic liquid and the Eyring and Starkweather approach for the thermally activated processes, β-process related to intramolecular movement in liquid and glassy state and emerging during cold crystallization α'-process ascribed to confined movements of molecules located adjacent to crystalline surfaces. To characterize the material, we employ single-crystal X-ray diffraction, differential scanning calorimetry (DSC), adiabatic calorimetry, and polarizing optical microscopy (POM), while we utilize molecular mechanics simulations (MM2) to explore molecular flexibility. Our study focuses on inter- and intramolecular interactions that determine the cold-crystallization tendency. We demonstrate that the solidification path is controlled by the fragility of the system, the dipole-dipole attraction, and the intramolecular dynamics. The study of cold crystallization kinetics under isothermal conditions reveals the complexity of the process: the formation of two crystalline phases, Cr2 and Cr3, proceeding in different modes. This feature discloses the possibility of switching the crystal growth between three- and two-dimensional in the cold-crystallization process driven by different mechanisms.

摘要

本文通过宽频介电谱(BDS)研究了 5'-(2,3-二氟苯基)-2'-乙氧基-4-戊氧基-2,3-二氟甲苯(简称 DFP25DFT)材料中引发冷结晶能力的分子迁移特性。我们通过 Vogel-Fulcher-Tammann(VFT)模型分析了与各向同性液体中分子旋转相关的结构α-过程的分子运动特性,通过 Eyring 和 Starkweather 方法分析了与液体和玻璃态中分子内运动相关的热激活β-过程以及在冷结晶α'-过程中出现的与相邻结晶表面分子受限运动相关的特性。为了对材料进行表征,我们采用了单晶 X 射线衍射、差示扫描量热法(DSC)、绝热量热法和偏光显微镜(POM),同时利用分子力学模拟(MM2)探索分子的柔韧性。我们的研究重点是决定冷结晶倾向的分子间和分子内相互作用。我们证明了凝固路径由系统的脆性、偶极-偶极吸引和分子内动力学决定。等温条件下的冷结晶动力学研究揭示了该过程的复杂性:两种晶相 Cr2 和 Cr3 以不同模式形成。这一特征揭示了在由不同机制驱动的冷结晶过程中,晶体生长在三维和二维之间切换的可能性。

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