1) layer-by-layer(LbL) self-assembly
逐层自组装技术
2) Layer-by-Layer
层层自组装技术
1.
Progress on Layer-by-Layer Self-assemble Technique in Surface Design of Biomaterials;
层层自组装技术在生物医用材料领域中的应用研究进展
3) layer-by-layer self-assembly
逐层自组装
1.
The purpose of this paper is to review the development of layer-by-layer self-assembly films in second order non-linear optics, focusing on the preparation, characteristic and applica.
逐层自组装(layer-by-layer self-assembly)技术制备光学功能薄膜和器件,具有可设计性强,可实现组成剪裁和微结构调控,对研究发展一类新型光子学材料、器件与微系统有重要理论意义和广阔应用前景,是一个很具前瞻性的研究新领域。
4) layer-by-layer
逐层自组装
1.
Among all of these techniques, layer-by-layer (LBL) self-assembly technique is widely employed.
自组装技术近年来得到了极大发展,其中逐层自组装技术(layer-by-layer selfassembly technique)是最为简便有效的制备超薄膜的方法,近年来得到了广泛的应用。
5) Layer-by-layer self-assembly technique
层层静电自组装技术
1.
Layer-by-layer self-assembly technique is used to form Azure Ⅰ and nano-Au multilayer films(nano-Au/AI)n onto a poly(p-aminobenzene sulfonic acid)-modified glassy carbon electrode,then the positively charged horseradish peroxidase is successfully immobilized on the gold nanoparticles surface.
在玻碳电极(GCE)上,构造了一种以对氨基苯磺酸电聚合膜(PABSA)为基底,利用层层静电自组装技术固定多层天青Ⅰ(AI)和纳米金(nano-Au)制备的复合薄膜(nano-Au/AI)n,然后通过静电吸附辣根过氧化物酶(HRP)制得过氧化氢生物传感器[HRP/(nano-Au/AI)n/PABSA/GCE]。
6) Layer-by-layer(LBL) self-assembled monolayer
层层累积自组装膜技术
补充资料:摈逐
1.斥逐。
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