Graduate School of Carbon Convergence Engineering, Jeonju University, Jeonju, 55069, Korea.
Department of Science Education, Jeonju University, Jeonju, 55069, Korea.
Sci Rep. 2023 Apr 15;13(1):6133. doi: 10.1038/s41598-023-33192-1.
An in-depth understanding of the physicochemical properties of the organic-inorganic hybrid [NH(CH)NH]CdBr whose structure corresponds to the formulation [NH(CH)NH]CdBr· 2Br is essential for its application in batteries, supercapacitors, and fuel cells. Therefore, this study aimed to determine the crystal structure, phase transition, structural geometry, and molecular dynamics of these complexes. Considering its importance, a single crystal of [NH(CH)NH]CdBr was grown; the crystal structure was found to be monoclinic. The phase transition temperatures were determined to be 443, 487, 517, and 529 K, and the crystal was thermally stable up to 580 K. Furthermore, the H, C, N, and Cd NMR chemical shifts caused by the local field surrounding the resonating nucleus of the cation and anion varied with increasing temperature, along with the surrounding environments of their atoms. In addition, H spin-lattice relaxation time T and C T, which represent the energy transfer around the H and C atoms of the cation, respectively, varied significantly with temperature. Consequently, changes in the coordination geometry of Br around Cd in the CdBr anion and the coordination environment around N (in the cation) were associated with changes in the N-H···Br hydrogen bond. The structural geometry revealed critical information regarding their basic mechanism of organic-inorganic hybrid compounds.
深入了解其物理化学性质的有机-无机杂化[NH(CH)NH]CdBr的结构对应配方[NH(CH)NH]CdBr·2Br 是必不可少的在电池、超级电容器和燃料电池中的应用。因此,本研究旨在确定这些配合物的晶体结构、相变、结构几何形状和分子动力学。考虑到它的重要性,生长了[NH(CH)NH]CdBr 的单晶;发现晶体结构为单斜晶系。确定相变温度分别为 443、487、517 和 529 K,晶体在 580 K 以下热稳定。此外,由于阳离子和阴离子共振核周围局部场,H、C、N 和 Cd NMR 化学位移随温度而变化,以及它们原子的周围环境。此外,H 自旋晶格弛豫时间 T 和 C T 分别代表阳离子 H 和 C 原子周围的能量转移,随温度变化显著。因此,CdBr 阴离子中 Br 围绕 Cd 的配位几何和 N(在阳离子中)的配位环境的变化与 N-H···Br 氢键的变化有关。结构几何形状揭示了有关有机-无机杂化化合物基本机制的关键信息。