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1)  solvent vaporization convection self-assembly
溶剂蒸发对流自组装
1.
Monodisperse silica microspheres were assembled into a three-dimensional colloidal crystal template with long-range order by the solvent vaporization convection self-assembly method.
采用溶剂蒸发对流自组装法将单分散二氧化硅(SiO2)微球组装形成三维有序胶体晶体模板,以锗烷(GeH4)为先驱体气用等离子增强化学气相沉积法在350℃填充高折射率材料锗,获得了锗反蛋白石光子晶体。
2.
Monodisperse silica microspheres were assembled into three-dimensional colloidal crystal template with long-ranged order by solvent vaporization convection self-assembly method.
采用溶剂蒸发对流自组装法制备SiO_2三维有序胶体晶体模板,采用等离子体增强化学气相沉积法在200℃填充高折射率材料Ge,获得了Ge反蛋白石三维光子晶体。
2)  Evaporation-Induced Self Assembly
溶剂挥发诱导自组装
3)  convection self-assembly
对流自组装
4)  evaporation self-assembly method
蒸发自组装法
5)  evaporation-induced self-assembly
蒸发诱导自组装
1.
Preparation of porous silica optical thin films by evaporation-induced self-assembly process;
蒸发诱导自组装法制备多孔二氧化硅光学薄膜
2.
A precursor sol containing tetraethoxysilane (TEOS), surfactant cetyltrimetylammonium bromide(CTAB)-templated and acid/ acid catalyst was prepared by sol-gel and evaporation-induced self-assembly process.
报道采用溶胶—凝胶技术、蒸发诱导自组装法,通过酸/酸二步法控制实验条件,实验中采用表面活性剂十六烷基三甲基溴化氨(CTAB)为模板剂,正硅酸乙酯为硅源,以及二次去离子水,盐酸为催化剂等原料制备前驱体溶胶。
3.
Ordered mesoporous carbon spheres(OMCs) were synthesized by suspension-assist evaporation-induced self-assembly of resorcinol-furfural oligomers and triblock copolymer F127.
以间苯二酚-糠醛低聚物为炭前驱体,三嵌段共聚物F127为结构导向剂,通过悬浮辅助的蒸发诱导自组装乳化成球,高温炭化后得到有序中孔炭球。
6)  solvent evaporation
溶剂蒸发
1.
Application of solvent evaporation method in preparation of drug microcapsule;
溶剂蒸发法制备药物微胶囊研究进展
2.
The modified curing agent is encapsulated by solvent evaporation method with thermoplastic resin as shell material.
文中用溶有芯材的二氯甲烷(DCM)作为溶剂相的溶剂蒸发法制备了热塑性树脂为壁材的改性固化剂微胶囊,通过粒径分析和SEM观察微胶囊的表面形貌来确定微胶囊的制备工艺参数。
3.
Ultrafine particles of Azithromycin were produced by ultrasonic emulsification-solvent evaporation.
采用超声乳化溶剂蒸发法制备了阿奇霉素超细粉体,讨论了溶剂、温度、稳定剂种类及用量、阿奇霉素浓度等对微粉粒径的影响,优化了实验条件。
补充资料:分子自组装
分子式:
CAS号:

性质:在平衡条件下自发组合,以共价键或非共价键连结形成结构确定、分子有序、稳定的分子聚集体。可产生具有热力学极小值的结构,这些结构不仅坚固,而且自身具有对抗外界不纯物质结合的能力。分子自组装在生命系统中普遍存在,是形成各种复杂生物结构的基础。

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