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Pamela Cartes et al / Revista Ingeniería UC , Vol. 23, No. 3, Diciembre 2016, 308-318 317<br />

in nanostructured hybrid materials for energy conversion<br />

and storage: solar cells, batteries, and fuel cells.<br />

Chemical Society Reviews, 40(2):520–535, 2011.<br />

[8] H. Gustafsson, S. Isaksson, A. Altskär, and K. Holmberg.<br />

Mesoporous silica nanoparticles with controllable<br />

morphology prepared from oil-in-water emulsions.<br />

Journal of Colloid and Interface Science, 467:253 –<br />

260, 2016.<br />

[9] Jean-Louis Salager. Formulation concepts for the<br />

emulsion maker. In Françoise Nielloud and Gilberte<br />

Marti-Mestres, editors, Pharmaceutical Emulsions and<br />

Suspensions, volume 105 of Drugs and the Pharmaceutical<br />

Sciences, chapter 2, pages 19–72. CRC Press,<br />

second edition, 2000.<br />

[10] A.M. Schwartz, J.W. Perry, and J. Berch. Surface<br />

Active Agents and Detergents, volume II. Krieger, New<br />

York, 1977.<br />

[11] M. Rosen. Surfactants and Interfacial phenomen. John<br />

Wiley & Sons, third edition, 2004.<br />

[12] S. H. Tolbert. Mesoporous silica: holey quasicrystals.<br />

Nature Materials, 11(9):749–751, 2012.<br />

[13] Yanyi Liu, Dawei Liu, Qifeng Zhang, and Guozhong<br />

Cao. Engineering nanostructured electro<strong>de</strong>s away<br />

from equilibrium for lithium-ion batteries. Journal of<br />

Materials Chemistry, 21(27):9969–9983, 2011.<br />

[14] K. Chatterjee, S. Sarkar, K. Jagajjanani Rao, and<br />

S. Paria. Core/shell nanoparticles in biomedical<br />

applications. Advances in Colloid and Interface<br />

Science, 209:8 – 39, 2014.<br />

[15] Mohammad Ali Faramarzi and Armin Sadighi. Insights<br />

into biogenic and chemical production of inorganic<br />

nanomaterials and nanostructures. Advances in Colloid<br />

and Interface Science, 189-190:1 – 20, 2013.<br />

[16] Larry Hench and Jon West. The sol-gel process.<br />

Chemical Reviews, 90(1):33–72, 1990.<br />

[17] R. Iler. The chemistry of silica. Solubility, polymerization,<br />

colloid and surface properties, and biochemistry.<br />

John Wiley & Sons, New York, 1979.<br />

[18] Werner Stöber, Arthur Fink, and Ernst Bohn. Controlled<br />

growth of monodisperse silica spheres in the<br />

micron size range. Journal of Colloid and Interface<br />

Science, 26(1):62 – 69, 1968.<br />

[19] Sarah L. Greasley, Samuel J. Page, Slobodan Sirovica,<br />

Shu Chen, Richard A. Martin, Antonio Riveiro, John V.<br />

Hanna, Alexandra E. Porter, and Julian R. Jones.<br />

Controlling particle size in the stöber process and<br />

incorporation of calcium. Journal of Colloid and<br />

Interface Science, 469(1):213 – 223, 2016.<br />

[20] Jerzy Choma, Aleksandra Dziura, Dominik Jamiola,<br />

Piotr Nyga, and Mietek Jaroniec. Preparation and<br />

properties of silica-gold core-shell particles. Colloids<br />

and Surfaces A: Physicochemical and Engineering<br />

Aspects, 373(1-3):167 – 171, 2011.<br />

[21] I. Ab Rahman and V. Padavettan. Synthesis of<br />

silica nanoparticles by sol-gel: size-<strong>de</strong>pen<strong>de</strong>nt properties,<br />

surface modification, and applications in silicapolymer<br />

nanocomposites – a review. Journal of<br />

Nanomaterials, 2012, January 2012.<br />

[22] S. Zhao, D. Xu, H. Ma, Z. Sun, and J. Guan.<br />

Controllable preparation and formation mechanism<br />

of monodispersed silica particles with binary sizes.<br />

Journal of Colloid and Interface Science, 388(1):40 –<br />

46, 2012.<br />

[23] A. Van Blaa<strong>de</strong>ren and A. Vrij. Synthesis and<br />

characterization of colloidal dispersions of fluorescent,<br />

monodisperse silica spheres. Langmuir, 8(12):2921–<br />

2931, 1992.<br />

[24] A. Van Blaa<strong>de</strong>ren and A. Vrij. Synthesis and<br />

characterization of monodisperse colloidal organosilica<br />

spheres. Journal of Colloid and Interface<br />

Science, 156(1):1 – 18, 1993.<br />

[25] A . Van Blaa<strong>de</strong>ren, J. Van Geest, and A. Vrij. Monodisperse<br />

colloidal silica spheres from tetraalkoxysilanes:<br />

Particle formation and growth mechanism. Journal of<br />

Colloid and Interface Science, 154(2):481 – 501, 1992.<br />

[26] X. Wang, Z. Shen, T. Sang, X. Cheng, M. Li, L. Chen,<br />

and Z. Wang. Preparation of spherical silica particles<br />

by Stöber process with high concentration of tetraethyl-orthosilicate.<br />

Journal of Colloid and Interface<br />

Science, 341(1):23 – 29, 2010.<br />

[27] Aldona Beganskienė, Valdas Sirutkaitis, Marytė Kurtinaitienė,<br />

Remigijus Juškėnas, and Aivaras Kareiva.<br />

FTIR, TEM and NMR iinvestigations of Stöber silica<br />

nanoparticles. Materials Science, 10(4):287–290,<br />

2004.<br />

[28] S. Park, K. Kim, and H. Kim. Preparation of silica<br />

nanoparticles: <strong>de</strong>termination of the optimal synthesis<br />

conditions for small and uniform particles. Colloids<br />

and Surfaces A: Physicochemical and Engineering<br />

Aspects, 197(1):7–17, 2002.<br />

[29] N. Shimura and M. Ogawa. Preparation of surfactant<br />

templated nanoporous silica spherical particles by<br />

the Stöber method. effect of solvent composition on<br />

the particle size. Journal of Materials Science,<br />

42(14):5299–5306, 2007.<br />

[30] A. Howard and N. Khdary. Spray synthesis of<br />

monodisperse sub-micron spherical silica particles.<br />

Materials Letters, 61(8-9):1951–1954, 2007.<br />

[31] H. Wang, C. Wu, C. Chung, M. Lai, and T. Chung.<br />

Analysis of parameters and interaction between parameters<br />

in preparation of uniform silicon dioxi<strong>de</strong> nanoparticles<br />

using response surface methodology. Industrial<br />

& Engineering Chemistry Research, 45(24):8043–<br />

8048, 2006.<br />

[32] C. Pienaar, G. Chiffoleau, L. Follens, J. Martens,<br />

C. Kirschhock, and T. Steinberg. Effect of gravity on<br />

the gelation of silica tools. Chemistry of Materials,<br />

19(4):660–664, 2007.<br />

[33] Rodmary Figallo. Síntesis <strong>de</strong> partículas <strong>de</strong> sílice a<br />

través <strong>de</strong> emulsiones <strong>de</strong> agua en aceite (W/O). Trabajo<br />

Especial <strong>de</strong> Grado, Escuela <strong>de</strong> Ingeniería Química,<br />

Facultad <strong>de</strong> Ingeniería, <strong>Universidad</strong> <strong>de</strong> <strong>Carabobo</strong>,<br />

Revista Ingeniería UC, ISSN: 1316–6832, Facultad <strong>de</strong> Ingeniería, <strong>Universidad</strong> <strong>de</strong> <strong>Carabobo</strong>.

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