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1)  molecular gel
分子体凝胶
1.
Performance assessment and field test of the oil-displacement molecular gel system;
分子体凝胶驱油调剖体系性能评价和矿场试验
2)  molecular gel
分子凝胶
1.
Many solvents can be gelated by some of low molecular weight compounds and oligomeric at low concentrations (typically < 1wt%) and form viscoelastic liquidlike or solidlike materials that are called molecular gels.
某些小分子有机化合物或齐聚物能在很低的浓度下(甚至低于1wt%)使大多数有机溶剂凝胶化,使整个体系形成类似粘弹性液体或固体的物质,称为分子凝胶。
3)  polymer gels
高分子凝胶
1.
This review deals with recent progress in the study on pH and thermo-responsive polymer gels, involving their preparation and their current or potential applications like drug controlled release.
pH值及温度双重敏感高分子凝胶是近20余年来的前沿研究课题之一。
4)  polymer gel
高分子凝胶
1.
This review deals with research and application of smart polymer gels, involving definition,categories,history,theory and potential applications.
介绍了智能高分子凝胶的定义、分类、研究历史和体积相变原理。
2.
The structural characteristics of various polymer gels were described.
对高分子凝胶的流变性,重点讨论了高分子凝胶的粘度、触变性、蠕变行为和剪切模量等。
5)  water molecular gel
水分子凝胶
1.
A water molecular gel can be formed by the aggregation and self-assembly of gelator 4,4′-bisstearylamide diphenyl ether at very low concentration.
合成了一种新型凝胶因子 ,能在很低的浓度下使水发生凝胶化 ,形成水分子凝胶 。
6)  supramolecular gels
超分子凝胶
1.
In recent years, supramolecular gels formed by the self-assembly of gelators throughintermolecular hydrogen bonding,π-πstacking and other non-covalent bond interationswere applied on catalyzer, electrolyte and other fields because of its properties between theliquids and solids.
小分子量化合物凝胶因子可通过分子间氢键、π-π相互作用,以及其它非共价键作用形成超分子聚集体结构进而形成稳定的超分子凝胶。
补充资料:Sds-聚丙烯酰胺凝胶电泳凝胶电泳

sds-聚丙烯酰胺凝胶电泳(sds-page,sodium dodecyl sulfate-polyacrylamide gel electrohoresis)

在有去污剂十二烷基硫酸钠存在下的聚丙烯酰胺凝胶电泳。sds-page只是按照分子大小分离的,而不是根据分子所带的电荷和大小分离的。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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