School of Electrical Engineering, Guangxi University, Nanning, Guangxi 530004, China.
Department of Chemical and Biological Engineering, Monash University, Clayton, VIC 3800, Australia.
J Chem Inf Model. 2024 Mar 25;64(6):1772-1777. doi: 10.1021/acs.jcim.4c00054. Epub 2024 Mar 14.
Hydrogen bonds, crucial noncovalent interactions in molecular systems, significantly impact biological, chemical, and energy-related processes; therefore, characterizing hydrogen bond information is of importance to fundamental studies. This work introduces the HBCalculator, a -based tool integrated with VMD for calculating 1D and 2D distributions of hydrogen bond density and strength. The tool facilitates spatial analysis, overcoming limitations in existing packages that lack direct spatial distribution output. By employing HBCalculator in MD simulations, three systems of cellulose/water and graphene/water interfaces, were tested to showcase its functionality. The 1D and 2D hydrogen bond distributions reveal insights into interfacial properties, reflecting the impact of material hydrophobicity. The simplicity of usage, along with its potential for diverse molecular systems, positions HBCalculator as a valuable tool for researchers exploring hydrogen bond networks.
氢键是分子系统中至关重要的非共价相互作用,对生物、化学和能量相关过程有重大影响;因此,氢键信息的描述对于基础研究很重要。本工作引入了 HBCalculator,这是一个基于 VMD 的工具,用于计算氢键密度和强度的 1D 和 2D 分布。该工具促进了空间分析,克服了现有缺乏直接空间分布输出的软件包的局限性。通过在 MD 模拟中使用 HBCalculator,对纤维素/水和石墨烯/水界面的三个系统进行了测试,以展示其功能。1D 和 2D 氢键分布揭示了界面性质的见解,反映了材料疏水性的影响。该工具使用简单,并且适用于多种分子系统,因此是研究人员探索氢键网络的有价值的工具。