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QUANTUM CHEMICAL DESCRIPTORS FOR LINEAR SOLVATION ENERGY RELATIONSHIPS

机译:用于线性溶剂能关系的量子化学描述子

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Linear solvation energy relationships (LSER) have been successfully used to correlate over 300 complex chemical and biochemical properties with small sets of descriptors related to fundamental characteristics of molecular structure and chemistry. This is a branch of the unnamed science (after Hansch) which is concerned with the intricate interactions between chemicals and life. Until recently, the descriptors in these relationships have been empirically determined. Recent developments in both the experimental understanding of these descriptors and in molecular orbital calculations have provided a new ground for fertile interaction between computational and experimental techniques. This manuscript describes development in the use of LSER and the recent molecular orbital formulations which provide basic descriptors developed from fundamental computational techniques. Examples from current research are presented to illustrate the expanding areas of chemistry accessible to these new ideas.
机译:线性溶剂化能量关系(LSER)已成功用于将300多种复杂的化学和生化特性与与分子结构和化学基本特征相关的少量描述符进行关联。这是未命名的科学的一个分支(以汉施为后),该分支关注化学物质与生命之间的错综复杂的相互作用。直到最近,这些关系中的描述符还是凭经验确定的。在对这些描述符的实验理解以及分子轨道计算方面的最新进展为计算技术与实验技术之间的肥沃互动提供了新的基础。该手稿描述了LSER的使用发展以及最近的分子轨道公式,这些公式提供了从基本计算技术发展而来的基本描述符。提出了来自当前研究的示例,以说明这些新想法可扩展的化学领域。

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