Jones Jeffrey, Phuoc Vinh Ta, Del Campo Leire, Massa Nestor E, Brown Craig M, Pagola Silvina
Thomas Nelson Community College, Hampton, Virginia 23666, United States.
Groupement de Recherche Matériaux Microélectronique Acoustique Nanotechnologies, Université François Rabelais Tours, Faculté des Sciences & Techniques, Bâtiment E, 20 Avenue Monge, Parc Grandmont, 37200, Tours, France.
Cryst Growth Des. 2019;19(9). doi: https://doi.org/10.1021/acs.cgd.9b00182.
Two polymorphs of tetrathiafulvalene chloranilic acid (TTF-CAH) have been synthesized by mechanochemistry. The previously known "ionic" polymorph (form I) was prepared by liquid-assisted grinding (LAG) using various highly polar solvents as well as protic but moderately polar solvents, such as alcohols of one to four carbon atoms. A new TTF-CAH polymorph (form II) was obtained by LAG and slurry mechanochemistry using aprotic, low-polarity solvents, as well as nonpolar solvents and neat grinding. The crystal structure of the new TTF-CAH polymorph was determined from the combined analysis of synchrotron powder X-ray diffraction and neutron powder diffraction data at room temperature. The material displays segregated stacks of TTF and CAH molecules. Fourier transform infrared spectroscopy as a function of the temperature (10-300 K) indicates that TTF-CAH form II is an electrical semiconductor with a small band gap of ∼0.115 eV (versus ∼0.146 eV for the "ionic" form I), and there is no indication of phase transitions in that temperature interval. The examination of the frequency regions wherein the absorption bands of TTF and TTF species occur suggests that TTF-CAH form II is most likely a neutral phase.
通过机械化学方法合成了四硫富瓦烯氯冉酸(TTF-CAH)的两种多晶型物。通过使用各种高极性溶剂以及质子性但中等极性的溶剂(如含一至四个碳原子的醇)进行液相助磨(LAG),制备了先前已知的“离子型”多晶型物(晶型I)。通过使用非质子性、低极性溶剂以及非极性溶剂并进行纯研磨,通过LAG和淤浆机械化学方法获得了一种新的TTF-CAH多晶型物(晶型II)。在室温下,通过对同步辐射粉末X射线衍射和中子粉末衍射数据的联合分析,确定了新的TTF-CAH多晶型物的晶体结构。该材料呈现出TTF和CAH分子的分离堆积。作为温度(10 - 300 K)函数的傅里叶变换红外光谱表明,TTF-CAH晶型II是一种具有约0.115 eV小带隙的电半导体(相比之下,“离子型”晶型I的带隙约为0.146 eV),并且在该温度区间内没有相变的迹象。对TTF和TTF物种吸收带出现的频率区域的研究表明,TTF-CAH晶型II很可能是一个中性相。