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Synthesis shape-controlled

Zhu J, Liu S, Palchik O et al (2000) Shape-controlled synthesis of silver nanoparticles by pulse sonoelectrochemical methods. Langmuir 16 6396-6399... [Pg.128]

Sun YG, Xia YN (2002) Shape-controlled synthesis of gold and silver nanoparticles. Science 298 2176-2179... [Pg.165]

Zeng, H., Rice, P.M., Wang, S.X. and Sun, S.H. (2004) Shape-controlled synthesis and shape-induced texture of MnFe204 nanoparticles. Journal of the American Chemical Society, 126 (37), 11458-11459. [Pg.80]

Xia, Y., Xiong, Y., Lim, B., and Skrabalak, S.E. (2009) Shape-controlled synthesis of metal nanocrystals simple chemistry meets complex physics Angewandte Chemie International Edition, 48 (1), 60-103. [Pg.122]

Yuan, J., Li, W., Gomez, S. and Suib, S.L. (2005) Shape-controlled synthesis of manganese oxide octahedral molecular sieve three-dimensional nanostructures. Journal of the American Chemical Society, 127, 14184-14185. [Pg.234]

The advantage of template synthesis is that organo or hydrogelator templates can direct the shape-controlled synthesis of oxide nanotubes. Recent reports describe the use of carbon nanofibers as a template for the shape-controlled synthesis of zirconia, alumina and silica nanotubes [78]. The shape of vapor grown carbon nanofiber... [Pg.262]

Ogihara H, Sadakane M, Nodasaka Y, Ueda W (2006) Shape-controlled synthesis of Zr02, AI2O3 and Si02 nanotubes using carbon nanofibers as templates. Cbem Mater 21 4981-4983... [Pg.360]

Jana, N. R., Gearheart, L. Murphy, C. J. Seed-mediated growth approach for shape-controlled synthesis of spheroidal and rod-like gold nanoparticles using a surfactant template. Adv. Mater. (Weinheim, Ger.) 13, 1389-1393 (2001). [Pg.238]

Xia, Y. N. and Halas, N. J. (2005). Shape-controlled synthesis and surface plasmonic properties of metallic nanostructures. Mrs Bulletin 30 338-344. [Pg.116]

Ahmadi TS, Wang ZL, Green TC, Henglein A, El-Sayed MA (1996) Shape-controlled synthesis of colloidal platinum nanoparticles. Science 272 1924... [Pg.413]

Li, X., Cheng, E, Zhang, S., and Chen, J. 2006. Shape-controlled synthesis and lithium-storage... [Pg.291]

Chen, Z.Y., Zhou, Y, Wang, C.Y, and Zhu, Y.R., A novel ultraviolet irradiation technique for shape-controlled synthesis of gold nanoparticle at room temperature, Chem. Mater., 11,2310-2312, 1999. [Pg.406]

Esumi K, Ghosh SK, Kundu S, Mandal M, Pal T. 2002. UV photoactivation for size and shape controlled synthesis and coalescence of gold nanoparticles in micelles. Langmuir 75 7792-7797. [Pg.105]

J. Zhu, S. Liu, O. Palchik, Yu. Koltypin, A. Gedanken Shape-Controlled Synthesis of Silver Nanoparticles by Pulse Sonoelectrochemical Methods, ""Langmuir . 2000, v. 16,6396-6399. [Pg.238]

X. Wang, Z. Feng, D. Fan, F. Fan, C. Li, Shape-Controlled Synthesis of CdS Nanostructures via a Solvothermal Method. Crystal Growth Design 2010, 10,5312-5318. [Pg.215]

Fujikawa D, Uota M, Sakai G, Kijima T (2007) Shape-controlled synthesis of nanocarbons from resorcinol-formaldehyde nanopolymers using surfactant-templated vesicular assemblies. Carbon 45 1289-1295... [Pg.267]

The shape-controlled synthesis of nanocrystals depends on the following above-mentioned parameters. [Pg.469]

Jena BK, Raj CR (2007) Shape-controlled synthesis of gold nanopiism and nanoperiwinkles with pronounced electrocatalytic activity. J Phys Chem C 111(42) 15146-15153... [Pg.512]

Shape-Controlled Synthesis of Semiconductor and Oxide Nanocrystals... [Pg.63]

Very recently, pulsed sonoelectrochemical synthesis, which was first introduced by Reisse et al. and involves alternating sonic and electric pulses, has been employed to obtain shape-controlled synthesis of nanoparticles [25-28]. The present understanding of the sonoelectrochemical mechanism describes an electrochemical deposition of a thin layer on the sonoelectrode during the electric pulse. The thin layer is then destroyed by the coming sonic pulse, to form jet-suspended nanoparticles in the solution. The electrochemical and sonic parameters, including the pulse duration, can be used to control... [Pg.347]

Fig. 6.7 Schematic of the shape-controlled synthesis of ZnO nanorods via a microwave hydrothermal route [47]... Fig. 6.7 Schematic of the shape-controlled synthesis of ZnO nanorods via a microwave hydrothermal route [47]...

See other pages where Synthesis shape-controlled is mentioned: [Pg.347]    [Pg.361]    [Pg.358]    [Pg.207]    [Pg.252]    [Pg.266]    [Pg.323]    [Pg.515]    [Pg.310]    [Pg.328]    [Pg.60]    [Pg.65]    [Pg.284]   
See also in sourсe #XX -- [ Pg.732 ]




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