首页> 外文期刊>Acta crystallographica. Section F, Structural biology communications >A first-prototype multi-determinant X-ray constrained wavefunction approach: the X-ray constrained extremely localized molecular orbital-valence bond method
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A first-prototype multi-determinant X-ray constrained wavefunction approach: the X-ray constrained extremely localized molecular orbital-valence bond method

机译:第一原型多判定X射线约束波段方法:X射线约束极其局部分子轨道价值键合方法

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摘要

All the current variants of Jayatilaka's X-ray constrained wavefunction (XCW) approach work within the framework of the single-determinant wavefunction ansatz. In this paper, a first-prototype multi-determinant XCW technique is proposed. The strategy assumes that the desired XCW is written as a valence-bond-like expansion in terms of pre-determined single Slater determinants constructed with extremely localized molecular orbitals. The method, which can be particularly suitable to investigate systems with a multi-reference character, has been applied to determine the weights of the resonance structures of naphthalene at different temperatures by exploiting experimental high-resolution X-ray diffraction data. The results obtained have shown that the explicit consideration of experimental structure factors in the determination of the resonance structure weights may lead to results significantly different compared with those resulting only from the simple energy minimization.
机译:Jayatilaka的X射线约束虚空函数(XCW)方法的所有当前变体在单个决定脉波函数ANSATZ的框架内工作。 本文提出了一种第一原型多判集XCW技术。 该策略假设所需的XCW被写入具有用极其局部分子轨道构建的预定单层替换剂的价键样的扩展。 可以特别适合于研究具有多参考特征的系统的方法,以通过利用实验高分辨率X射线衍射数据来确定不同温度下萘的共振结构的重量。 所获得的结果表明,在确定共振结构重量中的实验结构因素的明确考虑可能导致与仅从简单的能量最小化产生的那些相比显着不同。

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