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Calorimetric test of the photonic crystal globules growth process

Authors: Galkin N.K.
Published in issue: #7(24)/2018
DOI: 10.18698/2541-8009-2018-7-342


Category: Chemistry | Chapter: Organic Chemistry

Keywords: calorimetry, photonic crystals, synthesis, monodispersity, spectroscopic measurements, stop zone
Published: 24.07.2018

The article analyzes the process of photonic crystals synthesis with the help of calorimetric measurements. We have obtained the heat generation graphs in the process of future photonic crystal’s sol synthesis. Characteristic parts of the graphs conform with endo- and exo-effects: in case of the endoeffect the organic and nonorganic phases mix and the monomer hydrolysis process occurs, while in case of the great exo-effect the polyfunctional condensation reaction takes place and the solid phase nuclei growth is activated. According to the estimate of the reaction completion degree its value is about 6% of the total number of the silanol bonds, which is indicative of the loose structure of the sol obtained. After removing the solvent the monodisperse iridescent specimens were derived. By applying the spectroscopic measurements we have determined the particle sizes.


References

[1] Mayoral R., Requena J., Moya J.S., Lopez C., Cintas A., Miguez H., Vazquez L., Holgado M., Blanco A. 3D long-range ordering in an SiO2 submicrometer-sphere sintered superstructure. Adv. Mater., 1997, vol. 9, no. 3, pp. 257–260.

[2] Aubert T., Grasseta F., Mornet S., Duguet E., Cadora O., Cordiera S., Molarda Y., Demangea V., Mortier M., Hanedad H. Functional silica nanoparticles synthesized by water-in-oil microemulsion processes. J. Colloid Interface Sci., 2010, vol. 341, no. 2, pp. 201–208.

[3] Shabanova N.A., Sarkisov P.D. Zol’-gel’ tekhnologii. Nanodispersnyy kremnezem [Sol-gel technology. Nanodispersed silica]. Moscow, Binom publ., 2014, 331 p.

[4] Stöber W., Fink A., Bohn E. Controlled growth of monodisperse silica spheres in the micron size range. Journal of Colloid And Interface Science, 1968, vol. 26, is. 1, pp. 62–69.

[5] Wang X.D., Shen H.X., Sang T., Chen X.B., Li M.F., Cheng L.Ya., Wang Zh.Sh. Preparation of spherical silica particles by Stober process with high concentration of tetra-ethyl-orthosilicate. J. Colloid Interface Sci., 2010, vol. 341, no. 1, pp. 23–29.

[6] Volkov A.I., Zharskiy I.M. Spravochnik po fizicheskoy khimii [Handbook on physical chemistry]. Moscow, Litera Grand publ., 2016, 400 p.

[7] Lidin R.A., Andreeva L.L., Molochko V.A. Konstanty neorganicheskikh veshchestv [Constants of non-organic substances]. Moscow, Drofa publ., 2006, 685 p.

[8] Brinker C.J. Hydrolysis and condensation of silicates: effects on structure. Journal of Non-Crystalline Solids, 1988, vol. 100, no. 1-3, pp. 31–50.

[9] Goncharenko E.E., Badaev F.Z., Avsineeva N.K. Ustoychivost’ i koagulyatsiya liofobnykh zoley [Stability and coagulation of lyophobic sols]. Moscow, Bauman Press, 2011, 49 p.

[10] Gorelik V.S., Loboyko A.A. Spectroscopy of stop zones in porous photon crystals. Vestn. Mosk. Gos. Tekh. Univ. im. N.E. Baumana, Estestv. Nauki [Herald of the Bauman Moscow State Tech. Univ., Nat. Sci.], 2016, no. 3, pp. 102–109.