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Characterization and surface

III. CHARACTERIZATION AND SURFACE TREATMENT OF PIPETTES A. Characterization of Micro-iTiES... [Pg.387]

Salazar-Camacho, C., Villalobos, M., Rivas-Sanchez, M. D. L. L., Arenas-Alatorre, J., Alcaraz-Cienfuegos, J., Gutierrez-Ruiz, M. E. (2013). Characterization and surface reactivity of natural and synthetic magnetites. Chemical Geology, 347,233-245. doi 10.1016/j.chemgeo.2013.03.017... [Pg.10]

One may expect that future work on the electrochemistry of diamond should take two paths, namely, an extensive investigation (search for new processes and applications of the carbon allotropes in the electrochemical science and engineering) and intensive one (elucidation of the reaction mechanisms, revealing the effects of crystal structure and semiconductor properties on the electrochemical behavior of diamond and related materials). It is expected that better insight into these effects will result in the development of standard procedures for thin-film-electrodes growth, their characterization, and surface preparation. [Pg.263]

Smejkal P, Siskova K, Vlckova B, Pfleger J, Sloufova I, Slouf M, Mojzes P (2003) Characterization and surface-enhanced Raman spectral probing of silver hydrosols prepared by two-wavelength laser ablation and fragmentation. Spectrochim Acta A 59 2321-2329... [Pg.133]

Ridley, M.K., Hackley, V.A., and Machesky, M.L., Characterization and surface-reactivity of nanocrystaUine anatase in aqueous solutions, Langmuir, 22,10972, 2006. [Pg.925]

Surface and structural properties of nanoporous solids can be studied directly by employing modem techniques such as atomic force microscopy, electron microscopy, X-ray analysis and various spectroscopic methods suitable for materials characterization and surface imping [4]. In addition, these properties can be investigated by indirect methods such as adsorption [1, 11-13], chromatography [14, 15] and thermal analysis [16]. The quantities evaluated from adsorption, chromatographic and thermodesorption data provide information about the whole adsorbent-adsorbate system. These data can by used mainly to extract... [Pg.108]

Hamoudeh, M. and Fessi, H. (2006) Preparation, characterization and surface study of poly-epsilon caprolactone magnetic microparticles. /. Colloid Interface ScL, 300, 584-590. [Pg.211]

FIGURE 9.3 a) UV-vis spectra of 2.5 0,M Pd3oG4NH2 solutions before (pH 3) and after (pH 8) reduction, b) Time-resolved UV-vis spectra of 2.5 pM PdjoGdNH solutions in the presence of 0.1 M KCl before (pH 3) and after (pH 8) reduction. Reprinted with permission from H. Ye, R.W.J. Scott, R.M. Crooks, Synthesis, Characterization, and Surface Immobilization of Platinum and Palladium Nanoparticles Encapsulated within Amine-Terminated Poly(amidomine) Dendrimers Langmuir 20 (2004) 2915. Copyright 2004 American Chemical Society. [Pg.217]

H. Ye, R.W.J. Scott, R.M. Crooks, Synthesis, Characterization, and Surface Iituno-bilization of Platinum and Palladium Nanoparticles Encapsulated within Amine-Terminated Poly(amidoamine) Dendrimers, Langmuir 20, 2915, 2004. [Pg.232]

Guan, C.-M. Luo, Z.-H. Qiu, J.-J. Tang, P.-P., Novel Fluorosilicone Triblock Copolymers Prepared by Two-Step RAFT Polymerization Synthesis, Characterization, and Surface Properties. Eur. Polym. J. 2010, 46,1582-1593. [Pg.210]

Wang F, et al. Synthesis, characterization and surface modification of low moduli poly(ether carbonate urethane)ureas for soft tissue engineering. Acta Biomater 2009 5(8) 2901-12. [Pg.22]

Characterization and Surface Chemistry. Thus obtained quantum crystallites have been characterized by various techniques. Figure 3 shows a high resolution transmission electron micrograph (HRTEM) of GaP nanocrystallites. Numerous lattice fringes... [Pg.182]

Busca, G., Lorenzelli, V. and Sanchez Escribano, V. (1992). Preparation, solid-state characterization and surface chemistry of high-surface area NixAl2 2 c03 2x mixed oxides, Chem. Mater., 4, pp. 595-605. [Pg.486]

Gallardo Amores, J.M., Sanchez Escribano, V., Daturi, M., and Busca, G. Preparation, characterization and surface structure of coprecipitated high-area Sr cTi02+ c (0 < X < 1) powders, y. Mater. Chem. 1996, 6, 879—886. [Pg.317]

Ye HC, Scott RWJ, Crooks RM (2004) Synthesis, characterization, and surface immobilization of platinum and palladium nanoparticles encapsulated within amine-terminated poly(amidoamine) dendrimers. Langmuir 20 2915... [Pg.90]

A. Abdolmalekia, S. Mallakpourb, S. Borandeh, Preparation, characterization and surface morphology of novel optically active poly(ester-amide)/functionalized ZnO bionanocomposites via ultrasonication assisted process, Appl. Surf. Sci. 257 6725-6733,2011. [Pg.349]

Hamed, A. et al (2013) Synthesis, characterization and surface modification of ZnCrFe04 nanoparticles. Mater. Sci. Eng. CMater. Biol. Appl, 33 (3), 1623-1628. [Pg.840]

Fukuoka, T, Moiita, T, Konishi, H. Structural characterization and surface-active properties of a new glycohpid biosurfactant, mono-acylated mannosylerythritol Upid, produced from glucose by Pseudozyma antarctica. Appl Microbiol Biotechnol. 2007, 76, 801-810. [Pg.102]

K Meiri. PhD Thesis on fenugreek gum Extraction, characterization and surface properties, Hebrew Univ Jerusalem, Israel, 2000. [Pg.387]

Varshney S, Singh K, Ohlan A et al (2012) Synthesis, characterization and surface properties of EejOs decorated ferromagnetic polyp5UTole nanocomposites. J Alloys Compd 538 107-114... [Pg.80]

K. Hu, M. Brust, A. Bard, Characterization and surface charge measurement of self-assembled... [Pg.217]

Kapoor, S. 1998. Preparation, characterization, and surface modification of silver particles. Langmuir 14 1021-1025. [Pg.354]

Preparation, characterization and surface modification of Cu metal nanopartides. Chemical Physics Letters,... [Pg.65]


See other pages where Characterization and surface is mentioned: [Pg.414]    [Pg.575]    [Pg.212]    [Pg.312]    [Pg.157]    [Pg.95]    [Pg.352]   


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Computer-aided characterization of solids and surfaces

Contact Angle Measurements and Surface Characterization Techniques

In Spectroscopic Characterization of Minerals and Their Surfaces Coyne

In Spectroscopic Characterization of Minerals and Their Surfaces Coyne ACS Symposium Series American Chemical Society: Washington

Particle shape, structure and surface characterization

Physical and Chemical Characterization of the Modified Material Surface

Physisorption Characterizing Surfaces and Pores

Regular Patterned Surfaces from Core-Shell Particles Preparation and Characterization

Specific Poisoning and Characterization of Catalytically Active Oxide Surfaces Helmut Knozinger

Surface Characterization of Oxides and Halides

Surface Modification and Characterization of Calcium Carbonate Whiskers

Surface and Material Characterization Techniques

Surface and Thin Film Characterization

Surface and interface characterization

Surface and pore characterization

Surface characterization and analysis

Surface chemistry of activated carbons and its characterization

Synthesis with Supported Metal Particles by Use of Surface Organometallic Chemistry Characterization and some Applications in Catalysis

Synthesis, Surface Modification, and Characterization of Nanoparticles

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