Institute of Chemical Research of Catalonia (ICIQ), Av. Països Catalans 16, E-43007 Tarragona, Spain.
Chem Soc Rev. 2012 May 7;41(9):3445-63. doi: 10.1039/c2cs15338f. Epub 2012 Feb 14.
This tutorial review will deal with the study of metallacarboranes and their interactions with other molecules from a theoretical point of view. This contribution is devoted to guide experimental chemists through calculations that some years ago were reserved to theoretical specialists. The widespread availability of fast computers enables nowadays studies of complex compounds (e.g. metallacarboranes) from different perspectives including simulation of NMR, infrared or Raman spectra and calculation of other properties such as atomic charges or inter-/intramolecular interactions. The insights gained on the basis of theoretical calculations are crucial for either finding novel or improving existing applications of metallacarboranes. For example, in the case of enzyme inhibitors, the interactions of the metallacarboranes with the surrounding protein and how the interaction affects the efficiency are difficult problems to study experimentally. The use of theoretical tools can provide a detailed understanding of the physico-chemical basis of the interactions and thus offers a chance to control the overall process.
本教程综述将从理论角度探讨金属碳硼烷及其与其他分子相互作用的研究。本贡献旨在为实验化学家提供指导,通过计算来研究多年前仅保留给理论专家的课题。如今,快速计算机的广泛应用使得我们能够从不同角度研究复杂化合物(例如金属碳硼烷),包括模拟 NMR、红外或拉曼光谱以及计算其他性质,如原子电荷或分子间/内相互作用。基于理论计算得出的见解对于发现金属碳硼烷的新用途或改进现有用途至关重要。例如,在酶抑制剂的情况下,金属碳硼烷与周围蛋白质的相互作用以及这种相互作用如何影响效率是难以通过实验研究的问题。理论工具的使用可以提供对相互作用的物理化学基础的详细理解,从而为控制整个过程提供机会。