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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Applicability of optimal functional tuning in density functional calculations of ionization potentials and electron affinities of adenine-thymine nucleobase pairs and clusters
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Applicability of optimal functional tuning in density functional calculations of ionization potentials and electron affinities of adenine-thymine nucleobase pairs and clusters

机译:最佳功能调节在腺嘌呤-胸腺嘧啶核碱基对和簇的电离势和电子亲和力的密度泛函计算中的适用性

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摘要

The intrinsic properties of DNA and RNA nucleic acid bases (NABs) such as ionization potentials (IPs) and electron affinities (EAs) are crucial to reveal various biochemical mechanisms. Successful application of density functional theory (DFT) using nonempirically tuned long-range corrected (LC) functionals for calculation of vertical ionization potentials (VIPs) and electron affinities (VEAs) of various adenine-thymine (AT) nucleobase pairs and clusters is demonstrated. We employ a tuning method by applying an asymptotically correct exchange-correlation potential adjusted to give frontier orbital energies (-epsilon HOMO and -epsilon LUMO) representing IPs and EAs and assess the quality of prediction which is comparable to high-level EOM-IP-CCSD/CCSD methods. The delocalization error calculated using different DFT functionals is quantified by calculations using fractional electron numbers. The cooperative effect of H-bonding and pi-stacking on the IPs of AT clusters, as well as the reactivity parameters (global hardness and electrophilicity), is quantitatively characterized using the tuned LC functionals. The present work aims at providing a reliable and efficient theoretical tool for the prediction of the related electron donor and acceptor abilities of the NAB systems.
机译:DNA和RNA核酸碱基(NAB)的内在特性,例如电离势(IPs)和电子亲和力(EA),对于揭示各种生化机制至关重要。演示了密度函数理论(DFT)的成功应用,该理论使用非经验调谐的远程校正(LC)函数计算各种腺嘌呤-胸腺嘧啶(AT)核碱基对和簇的垂直电离势(VIP)和电子亲和力(VEA)。我们采用调整方法,通过应用渐近校正的交换相关势进行调整,以给出代表IP和EA的前沿轨道能量(-εHOMO和-εLUMO),并评估与高级EOM-IP-相当的预测质量CCSD / CCSD方法。使用不同的DFT功能计算出的离域误差通过使用分数电子数的计算进行量化。 H键和π堆积对AT簇IP的协同作用,以及反应性参数(整体硬度和亲电性),都通过调整后的LC功能进行了定量表征。本工作旨在提供一种可靠且有效的理论工具,用于预测NAB系统的相关电子供体和受体能力。

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