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1)  Silver nanoparticle multilayer film
银纳米粒子多层膜
2)  silver nanoparticles film
银纳米粒子薄膜
1.
In this paper, the preparation and modification of self-assembled monolayers on silicon wafer and the preparation of silver nanoparticles film on the functional self-assembled monolayers were investigated.
运用原子力显微镜、紫外光谱仪和电化学工作站表征了得到的银纳米粒子薄膜。
3)  Ag-Coated Au Nanoparticulate Film
银包覆金纳米粒子膜
1.
Raman Scattering Activity Study on Ag-Coated Au Nanoparticulate Film Synthesized by Microwave Method;
微波合成银包覆金纳米粒子膜的拉曼散射活性研究
4)  silver nanoparticle
银纳米粒子
1.
Spectroscopic Characterizations of Silver Nanoparticles Functionalized by Surface Adsorbed Molecules;
表面分子功能化银纳米粒子的光谱特征
2.
Catalytic Reduction of p-Nitrobenzoic Acid by Silver Nanoparticles;
银纳米粒子上对硝基苯甲酸的催化还原
3.
Study on the influence on the characteristic of the second-order nonlinear optics by using aggregation of silver nanoparticles;
聚集效应对银纳米粒子的二阶非线性光学特性的影响研究
5)  silver nanoparticles
纳米银粒子
1.
Preparation and characterization of silver nanoparticles-silica composite grain by sol-gel technology;
纳米银粒子-二氧化硅复合颗粒溶胶-凝胶的制备与表征
2.
Studies on silver nanoparticles synthesized by microemulsion and their fluorescence;
微乳液法制备纳米银粒子的结构及其荧光现象研究
3.
Fluorescence quenching of dye molecules coating onto silver nanoparticles surface in composite film;
染料包覆纳米银粒子复合膜的荧光猝灭效应
6)  Ag nanoparticles
银纳米粒子
1.
In this contribution,3'-alkythiol-capped oligonucleotides were successfully attached to the Ag nanoparticles.
实验将3’端修饰巯基的寡聚核苷酸标记在纳米银粒子上,并基于银纳米粒子溶解后产生的Ag+对K2S2O8-luminol化学发光体系的催化作用,对标记寡聚核苷酸的银纳米粒子进行了定量检测。
2.
Ag nanoparticles were produced by the reduction of AgNO 3 with the protecting of sodium oleate using NaBH 4.
在油酸钠保护下用NaBH4 还原AgNO3 ,制得了银纳米粒子胶体溶液 。
3.
The purpose of this dissertation are to study the preparation of Au nanoparticles, Ag nanoparticles, their 2D organization by electrophoretic deposition.
通过光还原法制备了不同形貌的Ag纳米颗粒,并对三角形银纳米粒子进行了电泳沉积组装。
补充资料:全氟羧酸-磺酸多层阳离子交换膜
分子式:
CAS号:

性质:又称全氟羧酸-磺酸多层阳离子交换膜,需在膜的一面形成一羧酸膜层。其制法是将全氟磺酸膜片与全氟羧酸膜片加热层压而成,或在全氟磺酸膜的一面经化学处理,使—SO3H转换成—COOH基。这种离子膜一面为—SO3H基,另一面为—COOH,用聚四氟乙烯织物增强,在氯化钠电解制碱中的电流效率为95%左右。

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