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Effect of reactant concentrations an...
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Wang, Guan.
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Effect of reactant concentrations and aging effect in the synthesis of silver nanorods.
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
Effect of reactant concentrations and aging effect in the synthesis of silver nanorods./
作者:
Wang, Guan.
面頁冊數:
93 p.
附註:
Source: Masters Abstracts International, Volume: 55-05.
Contained By:
Masters Abstracts International55-05(E).
標題:
Chemical engineering. -
電子資源:
http://pqdd.sinica.edu.tw/twdaoapp/servlet/advanced?query=10133716
ISBN:
9781339922911
Effect of reactant concentrations and aging effect in the synthesis of silver nanorods.
Wang, Guan.
Effect of reactant concentrations and aging effect in the synthesis of silver nanorods.
- 93 p.
Source: Masters Abstracts International, Volume: 55-05.
Thesis (M.S.)--Illinois Institute of Technology, 2016.
In the recent years, anisotropic metallic nanoparticles have drawn much attention because of their unique optical properties. Particularly, gold and silver nanorods show great potential in extensive applications such as health care, food storage, drug delivery, biosensor, and cancer treatment. Among a variety of nanorods synthesis methods, the seed-mediated growth approach stands out due to its mild and convenient experimental conditions. However, there exist two defects of this method, the poor reproducibility and low yield of nanorods. In order to create nanoparticle systems of reproducible quality in high yields, a deeper understanding of the mechanism of nanorods formation as well as identifying the more important variables is necessary.
ISBN: 9781339922911Subjects--Topical Terms:
560457
Chemical engineering.
Effect of reactant concentrations and aging effect in the synthesis of silver nanorods.
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93 p.
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In the recent years, anisotropic metallic nanoparticles have drawn much attention because of their unique optical properties. Particularly, gold and silver nanorods show great potential in extensive applications such as health care, food storage, drug delivery, biosensor, and cancer treatment. Among a variety of nanorods synthesis methods, the seed-mediated growth approach stands out due to its mild and convenient experimental conditions. However, there exist two defects of this method, the poor reproducibility and low yield of nanorods. In order to create nanoparticle systems of reproducible quality in high yields, a deeper understanding of the mechanism of nanorods formation as well as identifying the more important variables is necessary.
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In this study, the original seed-mediated growth method has been modified to promote the reproducibility and yield of nanorods. Effects of CTAB concentration and ages of growth solution have been investigated in the nanorods formation process. The results suggest that a high concentration of CTAB is not necessary for the growth process and the age of growth solution can affect the optical performance of nanorods. In a brief survey on the stability property of nanorods, it shows that the degradation rate decreases with increasing concentrations of CTAB.
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