MICROEMULSION

作品数:205被引量:302H指数:8
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相关领域:理学医药卫生更多>>
相关作者:周艳霞刘艳李馨儒宋粉云钟兆健更多>>
相关机构:北京大学天津大学福州大学清华大学更多>>
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相关基金:国家自然科学基金国家重点基础研究发展计划山东省自然科学基金北京市自然科学基金更多>>
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A microemulsion method for preparation of thiol-functionalized gold nanoparticles被引量:2
《Particuology》2018年第2期33-36,共4页Somayeh Tianimoghadam Alireza Salabat 
A new microemulsion method using tetraoctylammonium bromide as a cationic surfactant has been formulated to fabricate thiol-functionalized gold nanoparticles, The nanoparticles were compared with those synthesized by ...
关键词:Gold nanoparticles Brust method Microemulsion Thiol-functionalized gold 
Advanced microemulsion synthesis and characterization of wollastonite (CaSiO3)fpolystyrene one-dimensional nanorods with core-shell structures
《Particuology》2017年第1期118-128,共11页Aniruddha Chatterjee Prashant Khobragade, Satyendra Mishra Jitendra Naik 
In this work, one-dimensional core-shell nanorods (CSNRs; 185-250nm wide and 1-1.5μm long) consisting of triethoxyvinylsilane-modified wollastonite (CaSiO3) nanorods (MWNRs) as a core and polystyrene as a shell...
关键词:Core-shell structures Atomized microemulsion One-dimensional nanorods 
Ultrasonic irradiation and solvent effects on destabilization of colloidal suspensions of platinum nanoparticles被引量:1
《Particuology》2014年第6期145-148,共4页Alireza Salabat Shima Soleimani 
the Arak University research fund for providing financial support for this study
In this work,ultrasonic irradiation and destabilizer solvent were used for destabilizing colloidal platinum dispersions.The stabilized platinum nanoparticles were prepared in w/o microemulsion systems composed of sodi...
关键词:Colloid destabilization Ultrasonic irradiation MICROEMULSION Solvent effect 
Novel synthesis with an atomized microemulsion technique and characterization of nano-calcium carbonate(CaCO_3)/poly(methyl methacrylate) core-shell nanoparticles被引量:4
《Particuology》2013年第6期760-767,共8页Aniruddha Chatterjee Satyendra Mishra 
the University Grants Commission(UGC),New Delhi for providing the financial support[project fileNo:40-10/2011(SR),dated-July 14,2011]to conduct this research
The synthesis of hard-core/soft-shell calcium carbonate (CaCO3)/poly(methyl methacrylate) (PMMA) hybrid structured nanoparticles (〈100nm) by an atomized microemulsion polymerization process is reported. The p...
关键词:Atomized microemulsion Core-shell nanoparticles Thermal properties Compatibility of core-shell nanoparticles with polymer matrix 
Preparation of ultrafine chitosan particles by reverse microemulsion被引量:5
《China Particuology》2007年第6期384-390,共7页Guogen Liu Lei Shao Fei Ge Jianfeng Chen 
Ultrafine chitosan particles were prepared by reverse microemulsion consisting of water, Triton X-100, octanol and cyclohexane. Two methods of preparing ultrafine chitosan particles were adopted and compared using TEM...
关键词:CHITOSAN Ultrafine particles MICROEMULSION 
ADVANCES IN MICROEMULSION PHASE ON SELF-ASSEMBLY AND MICELLE EXTRACTION WITH BLOCK COPOLYMERS
《China Particuology》2005年第6期310-316,共7页Chen Guo Hao Wen Huizhou Liu 
supported by the National Natural Science Foundation of China(NO.20221603,NO.20490200 and NO.20273075);Chinese Academy of Sciences.
In this paper we review our work on self-assembly of the system, poly(ethylene oxide)-poly(propylene oxide)-poly(elhylene oxide) (PEO-PPO-PEO) block copolymers, which is a kind of macromolecular complex fluids...
关键词:microemulsion phase SELF-ASSEMBLY block copolymer EXTRACTION 
SYNTHESIS OF ZnO NANOPARTICLES WITH NARROW SIZE DISTRIBUTION UNDER PULSED MICROWAVE HEATING被引量:3
《China Particuology》2004年第4期168-170,共3页YongjunHe 
ZnO nanoparticles with very narrow size distribution were synthesized by coupling homogeneous precipi-tation with microemulsion under pulsed microwave heating. The conditions of preparing ZnO nanoparticles were inves-...
关键词:powder technology MICROEMULSION homogeneous precipitation MICROWAVE NANOMATERIALS SYNTHESIS 
SYNTHESIS OF NICKEL NANOPOWDERS IN MICROEMULSION
《China Particuology》2003年第3期131-133,共3页DeshengAi ShinhooKang XiamingDai HanjungKwon 
supported by Ministry of Education,Brain Korea 21;the Chinese National Natural Science Foundation(Grant No.50202011)
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