1、

molecular self-assembly is ubiquitous in nature and has recently emerged as a new approach in chemical synthesis, nanotechnology, polymer science, materials and engineering.

分子自组装在自然界中是普遍存在的,而且最近已经在化学合成、纳米技术、高分子科学、材料与工程领域成为一种新的研究手段。

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2、

we have compounds assembled highly ordered aggregation through the molecular self-assembly, and through a series of characterization methods explore the molecular structure to find the effect to aggregate arrangement and relationship between aggregate morphology and properties.

我们通过分子自组装,把酞菁化合物组装成高度有序的聚集体,并通过一系列表征手段来探究分子结构对其在聚集体中排列方式的作用以及聚集体形貌和性质之间的关系。

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3、

molecular self-assembly combined with electroless copper plating of laser-induced patterning on polyimide film

聚酰亚胺膜分子自组装与激光诱导图形化学镀铜

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4、

based on the structural property of starch molecules and adopting molecular self-assembly technology, starch was formed an organized nanoscale lamellar structure through self-assembly.

根据淀粉分子的结构特性,采用分子自组装技术,经加热糊化,淀粉分子形成有着中孔结构的淀粉聚合物。炭化淀粉聚合物可得到多尺度有序中孔炭材料。

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5、

currently, anion-induced molecular self-assembly is mainly used in the synthesis of helices and rotaxane structure compound, macrocyclic compounds, molecular recognition.

目前阴离子诱导分子自组装主要应用于合成螺旋和轮烷结构化合物、大环化合物、分子识别等领域。

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6、

influence factors of molecular self-assembly systems and the application in the preparation of nanometer-sized materials by molecular self-assembly method are introduced. molecular self-assembly of polymer and research progress are reviewed.

介绍了分子自组装体系的影响因素以及分子自组装技术在纳米材料制备方面的应用,并对聚合物自组装体系及研究进展作了综述。

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7、

Molecular self-assembly systems lie at the interface between molecular biology, chemistry, polymer science, materials science and engineering.

分子自组装系统是分子生物学、化学、高分子科学、材料科学与工程之间的交叉学科。

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8、

Supramolecular self-assembly which rely on the non-covalent bond interaction between different molecular units can form highly ordered macromolecular with thermodynamic stability.

超分子自组装是不同分子单元之间依靠非共价键作用组装得到高度有序的热力学稳定的大分子结构。

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10、

design and research of molecular self-assembly system has attracted great interest in the people because of the potential significance of molecular devices and supramolecular materials.

由于在分子器件和超分子材料方面有潜在的应用价值,分子自组装体系的设计与研究已经引起人们极大的兴趣。

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11、

Molecular Self-assembly and Molecular Machines

分子自组装与分子机器

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12、

It is a significative problem for people to study on the molecular self-assembly and function devices.

分子纳米构筑与功能器件研制是极有意义的研究课题。

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13、

The formation of regular honeycomb porous structure in high humidity is one of the great developments in the molecular self-assembly of macromolecule. It may be applied in biology, tissue engineering, micrographics, separation and medicine.

高湿度条件下规整蜂窝孔结构的形成是高分子分子自组装领域的一大进展,其在生物技术、组织工程、微图象技术、高端分离技术及医药等领域有可能获得重要应用。

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14、

molecular self-assembly systems will create a new class of materials at the molecular level.

分子自组装系统将在分子水平上创造一种新型材料。

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15、

molecular self-assembly processes widely exist in nature, which make human and natural prosperity.

分子自组装过程广泛存在于自然界,通过这种自组装方式使得人类和自然得以繁荣发展。

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16、

influence factors of molecular self-assembly systems and application in nanometer-sized materials

分子自组装体系的影响因素及其在纳米材料中的应用

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17、

study on synthesis of peptides rada using in molecular self-assembly

用于分子自组装的短肽RADA的合成研究

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18、

molecular self-assembly laboratory in massachusetts institute of technology

美国麻省理工学院分子自组装实验室简介

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19、

and so these became intuitive models to understand how molecular self-assembly works at the human scale.

这些形象的模型帮助我们在宏观上理解分子是如何自我组装的。

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20、

the copolymerization modification and molecular self-assembly of polysilanes are also discussed to show the even wider potential applications as a new functional polymeric material. polyamide of variety and excellent capability through copolymerization modification was exploited.

本文介绍了国内外关于聚硅烷的研究进展,包括聚硅烷的性能和应用、以及聚硅烷的共聚改性和分子自组装.通过共聚改性,可以开发出品种繁多,性能优异的聚酰胺新产品。

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