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A density functional theory investigation on the properties of supramolecular catalysts for photoinitiated electron collection

机译:光灭绝电子收集超分子催化剂性能的密度泛函理论研究

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In this work we investigated by density functional theory (DFT)/time-dependent DFT (TDDFT) supramolecular complexes for photoinitiated electron collection, in particular [{(bpy)_2Ru(dpp)}_2RhCl_2]~(5+) and related catalysts derived by variation of the ligand/metal. The electron collection in this class of catalysts enables hydrogen production or DNA cleavage, among other applications. Changes in excitation energies upon variation of the ligand/metal were mostly consistent with experiment, and within the expected TDDFT accuracy, thus enabling their use as the basis for further analysis. Indeed, the consistency observed between the predicted excitation energy and the bridging ligand's reduction potential can assist in catalyst design for electron collection. Calculated fragment orbital energies could explain, in part, changes in the propensity towards photocleavage of DNA.
机译:在这项工作中,我们通过密度函数理论(DFT)/时间依赖性DFT(TDDFT)超分子复合物用于光灭绝的电子收集,特别是[{(BPY)_2RU(DPP)} _ 2RHCL_2]〜(5+)和相关催化剂衍生通过配体/金属的变化。这类催化剂中的电子收集使氢气产生或DNA裂解,以及其他应用。在配体/金属变化时,激发能量的变化主要与实验一致,并且在预期的TDDFT精度内,从而使其用作进一步分析的基础。实际上,预测的激发能量和桥接配体的降低电位之间观察到的一致性可以有助于电子收集的催化剂设计。计算的片段轨道能量可以部分地解释,部分地改变DNA的光学释放的倾向。

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