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1.
Pre-Extracting Vegetable Protein in SDS-AOT/Isooctane (Octanol) Complex System of Reverse Micelles
AOT-SDS/异辛烷(正辛醇)复配反胶束体系在植物蛋白前萃取中的应用
2.
Study on the rheological behavior of mixed gels of gellan
结冷胶的复配胶体系的流变行为研究
3.
Study on Solubilization Properties of NPES/AOT Reverse Micelles in Diesel Oil
NPES/AOT反胶束增溶体系及性质研究
4.
Hyhrate Formation Characteristics in Reverse Micelles System and Its Influencing Mechanism on the Water Content of Reverse Micelles;
水合物在反胶束体系中的生成特性及对反胶束含水量的影响机制
5.
Application of Micro-emulsion,Micelle and Reversed Micelle Systems in the Technology of Chemistry Analysis and Separation;
微乳液、胶束、反胶束(团)有序体系在化学分析与分离技术中的应用
6.
Factors affecting reverse micelle extraction of protein and mechanism
影响反胶束体系萃取蛋白能力的因素及机理
7.
Enzymatic Synthesis of Menthyl Acetate Catalyzed in Reversed Micellar System
AOT反胶束体系中脂肪酶催化合成乙酸薄荷酯
8.
Study on preparation of D5 reverse micelle systems and their water solubilization performance
D5反胶束体系的制备及其增溶特性的研究
9.
Studies of ultrasound on backward extraction of soybean protein in AOT reverse micelles system
超声波辅助AOT反胶束体系后萃大豆蛋白的研究
10.
Study of extraction of vegetation protein using different reverse micelles
不同反胶束体系萃取植物蛋白的研究进展
11.
Study on the Application of Reversed Micelles System in Enzymatic Determination and Bioseparation
反胶束体系在酶法测定和生物分离中的应用研究
12.
Study on the superactivity of oxidation of indole catalyzed by chloroperoxidase in reverse micelles
反相胶束体系中氯过氧化物酶催化氧化吲哚的“超活性”研究
13.
Synthesis and characterization of Fe_3O_4/SiO_2 core-shell nanoparticles in reverse micelles
反胶束体系中Fe_3O_4/SiO_2核壳结构纳米粒子的制备和表征
14.
Research Progress of the Preparation of Highly Mono-disperse Small Size QDs in the Reverse Micelle System
反胶束体系制备高度单分散、小粒径量子点的研究进展
15.
Dissipative Particle Dynamics and Theoretical Study of Complex Block Copolymer Micelle Systems;
复杂嵌段共聚物胶束体系的耗散粒子动力学及理论研究
16.
Preparation of CdS with Reverse Micelle Method;
反相胶束法制备半导体CdS纳米线
17.
The formation characteristics and conditionsof micellar mixed ligand complexes are also reported.
介绍了胶束混配络合物的反应特点和形成条件。
18.
Novel Biomimetic Mixed Micelle Based on MePEG-Chol and MePEG-St for Drug Delivery;
仿脂质体复合胶束及其作为药物载体的研究