Cárdenas Carlos, Ayers Paul W, Chakraborty Debajit, Gómez Tatiana, Echeverri Andrea, Munoz Francisco, Fuentealba Patricio
Departmento de Física, Facultad de Ciencias, Universidad de Chile, Las Palmeras 3425, Casilla 653, Santiago, Chile.
Center for the Development of Nanoscience and Nanotechnology (CEDENNA), Santiago, Chile.
J Mol Model. 2024 Sep 14;30(10):332. doi: 10.1007/s00894-024-06137-2.
The reaction force constant ( ), introduced by Professor Alejandro Toro-Labbé, plays a pivotal role in characterizing the reaction pathway by assessing the curvature of the potential energy profile along the intrinsic reaction coordinate. This study establishes a novel link between and the reactivity descriptors of conceptual density functional theory (c-DFT). Specifically, we derive expressions that relate the reaction force constant to nuclear softness and variations in chemical potential. Our findings indicate that regions of the reaction pathway where is negative match with significant electronic structure rearrangements, while positive regions match mostly with geometric rearrangements. This correlation between and c-DFT reactivity descriptors enhances our understanding of the underlying forces driving chemical reactions and offers new perspectives for analyzing reaction mechanisms.
The internal reaction path for the proton transfer in SNOH, chemical potential, and nuclear softness were computed using DFT with B3LYP exchange-correlation functional and 6-311++G(d,2p) basis set.
亚历杭德罗·托罗 - 拉贝教授引入的反应力常数( ),通过评估沿本征反应坐标的势能面曲率,在表征反应路径方面起着关键作用。本研究在反应力常数与概念密度泛函理论(c - DFT)的反应性描述符之间建立了一种新的联系。具体而言,我们推导了将反应力常数与核软度和化学势变化相关联的表达式。我们的研究结果表明,反应路径中反应力常数为负的区域与显著的电子结构重排相匹配,而反应力常数为正的区域大多与几何重排相匹配。反应力常数与c - DFT反应性描述符之间的这种相关性增强了我们对驱动化学反应的潜在力的理解,并为分析反应机理提供了新的视角。
使用具有B3LYP交换 - 相关泛函和6 - 311++G(d,2p)基组的DFT计算了SNOH中质子转移的内反应路径、化学势和核软度。