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Semiconductors morphology

Baxter J. B. and AydU E. S. (2006), Dye-sensitized solar cells based on semiconductor morphologies with ZnO nanowires . Solar Energy Mat. Solar Cells 90, 607-622. [Pg.31]

With the given delineation we have not considered the influence of varying pentacene morphologies on the different substrates with respect to the charge carrier transport. While the semiconductor morphology may influence the OFET transport properties, as has been observed by Karl [40] and Voigt et al. [Pg.529]

Xin H, Guo X, Kim FS, Ren G, Watson MD, Jenekhe S A (2009) Efficient solar cells based on a new phthalimide-based donor-acceptor copolymer semiconductor morphology, charge-transport, and photovoltaic properties. J Mater Chem 19 5303... [Pg.27]

Lu CY, Adams JA, Yu Q, Ohta T, Olmstead MA, Ohuchi FS (2008) Heteroepitaxial growth of the intrinsic vacancy semiconductor AQSes on Si(l 11) Initial structure and morphology. Phys Rev B 78 075321-075326... [Pg.56]

Chaparro AM, Salvador P, Mir A (1996) The scanning microscope for semiconductor characterization (SMSC) Study of the influence of surface morphology on the photoelectrochemical behavior of an n-MoSe2 single crystal electrode by photocurrent and electrolyte electroreflectance imaging. J Electroanal Chem 418 175-183... [Pg.299]

Many different topics are involved in the study of metallic nanoparticles and many fundamental issues can be present for example, which is the infiuence of the nanoparticle size, shape and composition on the chemical activity of heterogeneous catalysts Or, considering another problem, at what size does a small particle behave like the bulk material, for example, changing from an insulator to a semiconductor [9-12] An enormous amount of literature is published on metallic nanoclusters this review is focusing on the relevant problem concerning the characterization of metallic nanosized materials from the morphological and... [Pg.129]

Abstract A convenient method to synthesize metal nanoparticles with unique properties is highly desirable for many applications. The sonochemical reduction of metal ions has been found to be useful for synthesizing nanoparticles of desired size range. In addition, bimetallic alloys or particles with core-shell morphology can also be synthesized depending upon the experimental conditions used during the sonochemical preparation process. The photocatalytic efficiency of semiconductor particles can be improved by simultaneous reduction and loading of metal nanoparticles on the surface of semiconductor particles. The current review focuses on the recent developments in the sonochemical synthesis of monometallic and bimetallic metal nanoparticles and metal-loaded semiconductor nanoparticles. [Pg.151]


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See also in sourсe #XX -- [ Pg.8 , Pg.31 ]




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