Zaczek Adam J, Catalano Luca, Naumov Panče, Korter Timothy M
Department of Chemistry , Syracuse University , 1-014 Center for Science and Technology , Syracuse , New York 13244-4100 , USA . Email:
New York University Abu Dhabi , P.O. Box 129188 , Abu Dhabi , United Arab Emirates.
Chem Sci. 2018 Nov 23;10(5):1332-1341. doi: 10.1039/c8sc03897j. eCollection 2019 Feb 7.
The thermosalient behavior of 1,2,4,5-tetrabromobenzene (TBB) is related to a temperature-induced polymorphic structural change. The mechanism behind the phase transition has been investigated in this work using low-frequency (10-250 cm) Raman spectroscopy and solid-state density functional theory simulations. Careful adjustments of the probing laser power permitted thermal control of the polymorph populations and enabled high-quality Raman vibrational spectra to be obtained for both the β (low temperature) and γ (high temperature) forms of TBB. Numerous well-defined vibrational features appear in the Raman spectra of both polymorphs which could be assigned to specific motions of the solid-state TBB molecules. It was discovered that the lowest-frequency vibration at 15.5 cm in β-TBB at 291 K is a rotational mode that functions as a gateway for inducing the polymorphic phase transition to γ-TBB, and serves as the initiating step in the storage of mechanical strain for subsequent macroscopic release. Computationally mapping the potential energy surface along this vibrational coordinate reveals that the two TBB polymorphs are separated by a 2.40 kJ mol barrier and that γ-TBB exhibits an enhanced cohesion energy that stabilizes its structure.
1,2,4,5-四溴苯(TBB)的热致突出行为与温度诱导的多晶型结构变化有关。在这项工作中,使用低频(10 - 250 cm)拉曼光谱和固态密度泛函理论模拟研究了相变背后的机制。对探测激光功率的仔细调整实现了对多晶型物数量的热控制,并能够为TBB的β(低温)和γ(高温)形式获得高质量的拉曼振动光谱。两种多晶型物的拉曼光谱中都出现了许多明确的振动特征,这些特征可以归因于固态TBB分子的特定运动。研究发现,在291 K时β-TBB中15.5 cm处的最低频率振动是一种旋转模式,它是诱导向γ-TBB多晶型相变的通道,并作为后续宏观释放机械应变存储的起始步骤。沿着该振动坐标对势能面进行计算映射表明,两种TBB多晶型物之间存在2.40 kJ mol的势垒,并且γ-TBB表现出增强的内聚能,从而稳定其结构。