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Nanopartides synthesis

Jacinto, M.J., Kiyohara, P.K., Masunaga, S.H., Jardim, R.F. and Rossi, L.M. (2008) Recoverable rhodium nanopartides synthesis, characterization and catalytic performance in hydrogenation reactions. Applied Catalysis A General, 338 (1-2), 52-57. [Pg.82]

Feldheim, D.L. and Foss, C.A., Jr. (eds) (2002) Metal Nanopartides Synthesis, Characterization and Application, Marcel Dekker.New York. [Pg.184]

DENs are typically named by the dendrimer from which they are prepared along with the metal dendrimer stoichiometry used in the nanopartide synthesis, e.g. G5-OH(Pt5o). With careful synthetic techniques, nanopartides with very narrow particle size distributions (1.3 0.3 nm) can be selectively prepared inside dendrimer interior cavities [14]. Provided that metal reoxidation is prevented, DENs are stable for long periods of time and do not agglomerate, since the nanopartides are trapped within the dendrimer framework [14, 25]. Further, this general synthetic methodology is quite flexible, having been used to prepare monometallic Pt, Au, Cu, Pd, and Ru nanopartides [14] as well as a number of bimetalUc systems (see below). [Pg.133]

D. L. Feldheim, C. A. Foss Jr, (Eds.), Metal Nanopartides Synthesis, Characterization and Applications, Marcel Dekker, New York, 2002. [Pg.385]

An-Hui Lu, Salabas E. L., Schiith Ferdi. (2007). Magnetic Nanopartides Synthesis, Protection, Functionalization, and Apphcation, Angewandte Chemie-International, Volume 46, Issue 8, pp 1222-1244. [Pg.417]

Nanopartide Synthesis in Microreactors, Fig. 5 Reproducibility of CdSe nanoparticle properties (a) band-edge peak location, (b) photoluminescence wavelength, and (c) photoluminescence intensity... [Pg.2394]

There are some general demands for the fabrication of nanopartides independently of the material. For this purpose, the control of size and shape is one of the most important quality features for nanopartides. The suppression of a large distribution of sizes is also a general challenge in nanopartide synthesis. In addition, microreaction technology seems to be particularly suited for the generation of complex nanopartides of well-defined composition. [Pg.781]

Newly developed gas-liquid micromixers are applied in several oxidation reactions, nanopartide synthesis, and size distribution studies [89-91]. [Pg.239]

Magnetic nanopartides synthesis, protection, functionalization, and application. Angewandte Chemie-International Edition. 46,1222 14. [Pg.308]

Chechik, V. and Yeung, L.K. (2001) Dendrimer-encapsulated metal nanopartides synthesis, characterization, and applications to catalysis. Accounts of Chemical Research, 34,181-90. [Pg.62]

Cason, J.P. and Roberts, C.B. (2000) Metallic copper nanopartides synthesis in AOT reverse micelles in compressed propane and supercritical ethane solution. Journal of Physical Chemistry B, 104,1217-21. [Pg.64]

Hunyadi, S.E. and Li, T. (2005) Anisotropic metal nanopartides synthesis, assembly, and optical applications. The Journal of Physical Chemistry B, 109,13857-70. [Pg.143]

Panacek, A., Kvitek, L., Prucek, R., Kolar, M., Vecerova, R., Pizurova, N., Sharma, V.K., Nevecna, T. and Zboril, R. (2006) Silver colloid nanopartides synthesis, characterization, and their antibacterial activity. The Journal of Physical Chemistry B, 110,16248-53. [Pg.147]

Ganesan, M., Ereemantle, R.G. and Obare, S.O. (2007) Monodisperse thioether-stabilized palladium nanopartides synthesis, characterization, and reactivity. [Pg.352]

An early example of nanopartide synthesis using bacteria was reported by Beveridge and coworkers, that included the precipitation of colloidal gold of nanoscale... [Pg.437]

In addition to the aforementioned reports on use of non-functionalized ILs towards synthesis of metal nanopartides, a recent noteworthy trend is towards synthesis of functionalized ILs, e.g. metal ion-containing ILs, which can be directly reduced, leading to metal nanopartides synthesis in ILs without requiring any additional metal salts. One of the... [Pg.370]


See other pages where Nanopartides synthesis is mentioned: [Pg.164]    [Pg.33]    [Pg.55]    [Pg.376]    [Pg.41]    [Pg.43]    [Pg.75]    [Pg.83]    [Pg.93]    [Pg.230]    [Pg.356]    [Pg.268]    [Pg.2393]    [Pg.205]    [Pg.171]    [Pg.184]    [Pg.289]    [Pg.312]    [Pg.478]    [Pg.371]    [Pg.373]    [Pg.378]    [Pg.549]   
See also in sourсe #XX -- [ Pg.350 , Pg.578 ]

See also in sourсe #XX -- [ Pg.13 , Pg.14 , Pg.16 , Pg.17 ]




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