1999
DOI: 10.1070/mc1999v009n04abeh001080
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Cryochemical synthesis and properties of silver nanoparticle dispersions stabilised by poly(2-dimethylaminoethyl methacrylate)

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Cited by 33 publications
(11 citation statements)
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“…In addition, during the synthesis process, too many toxic and hazardous byproducts are excised out. Chemical methods make use of techniques such as cryochemical synthesis [ 43 ], laser ablation [ 44 ], lithography [ 45 ], electrochemical reduction [ 46 ], laser irradiation [ 47 ], sono-decomposition [ 48 ], thermal decomposition [ 49 ], and chemical reduction [ 50 ]. The advantage of the chemical synthesis of nanoparticles are the ease of production, low cost, and high yield; however, the use of chemical reducing agents are harmful to living organisms [ 13 ].…”
Section: Synthesis Of Agnpsmentioning
confidence: 99%
“…In addition, during the synthesis process, too many toxic and hazardous byproducts are excised out. Chemical methods make use of techniques such as cryochemical synthesis [ 43 ], laser ablation [ 44 ], lithography [ 45 ], electrochemical reduction [ 46 ], laser irradiation [ 47 ], sono-decomposition [ 48 ], thermal decomposition [ 49 ], and chemical reduction [ 50 ]. The advantage of the chemical synthesis of nanoparticles are the ease of production, low cost, and high yield; however, the use of chemical reducing agents are harmful to living organisms [ 13 ].…”
Section: Synthesis Of Agnpsmentioning
confidence: 99%
“…Numerous methods have been described for the preparation of colloidal AgNPs, such as conventional chemical reduction [ 10 ], radiation chemical reduction [ 11 ], sonochemical [ 12 ], and electrochemical reduction [ 13 ]. The size of AgNPs prepared using these methods are found to be in the range of 5 nm to 40 nm [ 14 , 15 ]. In addition, a stable AgNPs can be produced by electrostatic complexing of silver ions using an anionic surfactant aerosol [ 16 ].…”
Section: Introductionmentioning
confidence: 99%
“…There are also many more techniques of synthesizing silver nanoparticles, such as thermal decomposition in organic solvents [18], chemical and photoreduction in reverse micelles [19,20], spark discharge [21], and cryochemical synthesis [22] which yielded nanoparticles between the ranges of 5 to 80 nm in diameter.…”
Section: Chemical and Physical Syntheses Of Silver Nanoparticlesmentioning
confidence: 99%