1)  Inclusion complexation
包结配位
2)  inclusion
包结
1.
Phosphine ligands especially chiral phosphine ligands have the remarkable significance both in fundamental research and practical applications in the asymmetric catalysis and host-guest inclusion-resolution chemistry fields.
本文主要合成了新型膦二炔类化合物,开展了对它的加成反应、包结性能研究,以期发现新的性能优异的主体化合物和手性膦配体。
3)  Competitive inclusion
竞争包结
4)  Inclusion
包结作用
1.
Inclusion Mechanics between β-Cyclodextrin Derivatives and α-Cyclohexyl-Mandelic Acid by UV Spectrophotometry;
紫外光谱研究β-环糊精衍生物与α-环己基扁桃酸的包结作用
2.
On inclusion mechanics betweenβ-cyclodextrin and R/S-mandelic acid;
紫外光谱研究β-环糊精衍生物对R/S-扁桃酸的包结作用
3.
Study on the Inclusion of Neurotransmitters with β-Cyclodextrin by the UV-Vis Spectrographic;
紫外-可见光谱法研究β-环糊精与神经递质的包结作用
5)  Inclusion complex
包结物
1.
The thermal decomposition activation kinetics of βcyclodextrin and 1-methylcyclopropene inclusion complex was researched by means of the principles of non-linear simulation.
用非线性拟合原理对β-CD/1-MCP的包结物热分解反应动力学进行了研究。
2.
In order to set up the velocity equation of inclusion complex,the inclusion complex was released in different media,such as benzoic acid,sodium bicarbonate and distilled water.
相对来说,所制备的包结物在弱碱性介质中比在弱酸性和中性介质中易于释放。
3.
The change of the reduction peak current of the inclusion complex with time and the change of the peak potential of the inclusion complex with β-CD concentration were examined.
方法用极谱法考察主体分子-βCD与电活性客体分子辅酶Q10发生包结反应时,包结物还原波峰电流随时间的变化,峰电位随-βCD浓度的变化,并在自然光照条件下分别考察辅酶Q10和包结物的还原波峰电流随时间的变化。
6)  inclusion interaction
包结作用
1.
An adamantane-modified hypocrellin B was designed and synthesized, and was dissolved in aqueous solutions by way of the supramolecular inclusion interaction between the adamantane group and β-cyclodextrin polymer.
本文设计合成了金刚烷修饰的竹红菌乙素衍生物,利用环糊精聚合物与金刚烷基团间的包结作用制备了基于竹红菌乙素的水溶性光敏体系,并通过顺磁共振技术研究了该光敏体系的活性氧产生能力。
参考词条
补充资料:异配位体配位化合物
分子式:
CAS号:

性质:又称异配位体配位化合物。中心离子同时与两种以上不同配体共存于配位内界所组成的单核或多核配位化合物。例如,三氯·氨合铂(II)酸钾和(2)铜(II)-吡啶(py)-水杨酸(sal)配位化合物。在溶液中混配配位化合物的形成是普遍现象。与单一型配位化合物比较,它加强了中心体的化学个性(如易满足高配位数、增强不稳价态稳定性、光学性质改变等),也加强了配体的反应活性和协同萃取效应。在湿法冶金、电化学、分析化学、药物化学、环境化学、生物无机化学和材料化学等方面有着重要作用。

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