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1)  theoretical linear solvation energy relationships
理论线性溶剂化能关系
2)  Theoretical linear solvation energy relationship(TLSER)
理论线性溶剂化能相关
3)  TLSER
理论线性溶解能关系
1.
The relationships between structure and infinite dilution activity coefficients of organic molecules were studied in four different temperatures, quantum chemical parameters were used to describe the organic molecular structure, correlation equations were established and compared by using genetic programming (GP) and theoretical linear solvation energy relationships (TLSER) respectively.
以量子化学参数定量刻画有机分子结构,分别采用遗传程序设计(GP)和理论线性溶解能关系(TLSER)构建关联模型,并对两种方法进行了比较。
4)  linear solvation energy relationships (LSER)
线性溶剂化能关系
5)  theoretical linear solvation energy relationship
理论线性溶解能相关
1.
QSPR research on the lipophilicity of monohydric alcohols based on theoretical linear solvation energy relationship;
一元醇亲脂性基于理论线性溶解能相关的QSPR研究
6)  linear solvation energy relationships
线性溶剂化能相关
1.
The similarities and differences in retention characteristics of p-tert-Butyl-calix\arene-bonded and other three silica-based phases have been elucidated by linear solvation energy relationships under a(common) mobile phase.
利用线性溶剂化能相关,在相同色谱条件下,研究了对-叔丁基-杯[4]芳烃键合硅胶固定相与其它硅胶基质键合固定相的反相色谱行为。
补充资料:溶剂化
分子式:
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性质:溶液中溶剂分子结合在溶质分子或离子周围称为溶剂化。极性溶剂对盐类的溶剂化作用较强。盐类溶剂化反应分晶格解离和离子溶剂化两步,如NaCl晶体在水中的溶解:NaCl(晶)=Na++(g)+Cl—(g)(晶格解离),Na+(g)+Cl—(g)=Na+·aq+Cl—·aq(溶剂化)。溶剂化过程放出的热足够抵消晶格能量,盐就会溶解。盐类溶剂化分子有一、二级之分。如水合时牢固地和离子结合的水分子称一级水化分子,在其外面还有更多的水分子受到电场作用,称为二级水化分子。

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