Synthesis of New Black Pigment; Carbon Black Pigment Capsulated into the Meso-pore of Silica as Black Pigment in Cosmetic

새로운 Black Color의 합성;화장품에서 블랙 색소로서 Meso-pore Silca에 캡슐레이션된 Carbon-black Silica

  • Hye-in, Jang (Department of Make Up of Skin Science Institute, Enprani Co. Ltd.,) ;
  • Kyung-chul, Lee (Sungkyunkwan University) ;
  • Hee-chang , Ryoo (Department of Make Up of Skin Science Institute, Enprani Co. Ltd.,)
  • Published : 2004.09.01

Abstract

Carbon black have not been used as pigment material in cosmetic because of very low density and dispersity, but carbon black have applicable character as black pigment because of non-toxic, stable physico-chemical property, and black colority. In this study, mesoporous silica samples were synthesized by sol-gel reaction using surfactants-template method; TEOS (tetraethoxysilane) - a) PEO/lecithin, b) PEO/polyethylene glycol, c) lecithin/polyethylene glycol in ethanol/water solution. Synthesized organic-inorganic hybrid - silica were heat-treated in N2 condition at 500$^{\circ}C$. Mesoporous silica with black carbon in pore have the effective density and show the good dispersity in both hydrophilic and hydrophobic solvent. Properties of the samples were measured; specific surface area (750㎡/g) and pore size (4-6nm) using BET, pore structure (cylindrical type) using XRD, morphology (spherical powder with 0.1-0.5$\mu\textrm{m}$ partical size) of the samples using SEM. Carbon-silica black color applied to mascara, it shows a dark black colority and good dispersity as compared with the general black color titania pigment. Moreover, it is possible to control the density of black color pigment because it is possible to control pore volume and particle size of mesoporous silica properly. It show the good volume effects in mascara. That is why possible to apply all kinds of cosmetic products.

카본 블랙은 매우 낮은 밀도로 화장품에는 사용되지 않고 있지만 독성이 없고 안정한 물리적 특성과 검은색의 특성으로 이용 가치가 있다고 사료되는 바이다. 본 연구에서는 TEOS, a) PEO/ lecithin, b) PEO/polyethylene glycol, c) lecithin/polyethylene을 ethanol/water 수용액상에서 계면활성제를 탄화시켜 sol-gei반응에 의해 meso-porous silica샘플을 얻었고 N2 조건하 50$0^{\circ}C$에서 열처리된 organic-inorganic hybrid silica를 합성하였다. Pore안에 카본 블랙을 함유하는 meso-porous silica는 친수성, 소수성 용매에서 모두 좋은 분산성을 보여준다. 이 샘플은 BET에 의해 specific surface area (750$m^2$/g)과 pore size (4-6 nm)이고, XRD측정으로 pore structure (cylindrical type)를, 샘플의 SEM촬영으로 morphology(0.1-0.5$\mu\textrm{m}$ 입자 크기를 갖는 spherical powder)를 갖는다는 것을 알아냈다. 이렇게 합성한 카본-실리카 블랙 컬러를 마스카라에 적용하면 일반적으로 마스카라에 사용되던 블랙 컬러 사용시 보다 좀더 검은색을 보여주는 것은 물론이고 우수한 분산성도 갖는다. 무엇보다 이 파우더의 밀도 조절이 가능하여 마스카라 뿐 만 아니라 모든 화장품에의 사용이 가능하다.

Keywords

References

  1. T. Yanagisawa, T. Shimizu, K. Kuroda, and C. Kato, The preparation of alkyltrimethylamrnoniumkanemite complexes and their conversion to microporous materials, Bull. Chem. Soc. Jpn., 63, 988 (1990)
  2. S. Inagaki, Y. Fukushima, and K. Kuroda, Syntheses of highly ordered mesoporous materials from a layered polysilicate, J. Chem. Soc. Chem. Commun, 680 (1993)
  3. S. Inagaki, A. Koiwai, N. Suzuki, Y. Fukushima, and K. Kuroda, Syntheses of highly ordered mesoporous materials, FSM-16, derived from kanemite, Bull. Chem. Soc. Jpn., 69, 1449 (1996)
  4. C. T. Kregse, M. E. Leonowicz, W. J. Roth, J. C. Vartuli, and J. S. Beck, Ordered mesoporous molecular sieves synthesized by a liquid-crystal template mechanism, Nature, 359, 710 (1992)
  5. J. S. Beck, J. C. Vartuli, W. J. Roth, M. E. Leonowicz, C. T. Kragse, K. D. Schmitt, C. T.-W. Chu, D. H. Olson, E. W Sheppard, S. B. McCullen, J. B. Higgins, and J. L. Schlenker, A new family of mesoporous molecular sieve prepared with liquid crystal templates, J. Am. Chem. Soc., 114, 10834 (1992)
  6. A. Corma, From microporous to mesoporous molecular sieve materials and their use in catalsis, Chem. Rev., 97, 2373 (1997)
  7. L. Mercier and J. Thomas, Access in mesoporous materials. Advantages of a uniform pore structure in the design of a heavy metal ion adsorbent for environmental remediation. Advanced materials(Weinheim, Germany), Adv. Mater., 9, 500 (1997)
  8. F. Marlow, M. D. McGehee, D. Zhao, B. F. Chmelka, and G. D. Stucky, Doped mesoporous silica fibers: A new laser material, Adv. Mater., 11, 632 (1999)
  9. L.-R. Dai, T.-W. Wang, L.-T. Bu, and G. Chen, Mixed surfactant templating route for mesoporous silica, Colloids and Surfaces, A: Physicodiemical and Engineering Aspects, 181, 151 (2001)
  10. P. J. Bruinsma, A. Y. Kim, J. Liu, and S. Baskaran, Mesoporous silica synthesized by solvent evaporation: Spun fibers and spray-dried hollow spheres, Chem. Mater., 9, 2507 (1997)
  11. S. H. Tolbert, T. E. Schaffer, J. L. Feng, P. K. Hansma, and G. D. Stucky, A new phase of oriented mesoporous silicate thin films, Chem. Mater., 9, 1962 (1997)
  12. M. C. Weissenberger, G. C. Goltner and M. Antonietti, Mesoporous inorganic monoliths from lyotropic liquid crystalline polymer templates. Berichte der Bunsen-Gesellschaft 101(11), 1679 (1997)
  13. Q. Huo, J. L. Feng, F. Schuth, and G. D. Stucky, Preparation of hard mesiporous silica spheres, Chem Mater., 9, 14 (1997)
  14. D, Zhao, P. Yang, Q. Huo, B. F. Chmelka and G. D. Stucky, Topological construction of mesoporous materials, Curr. Opin. Solid State Mater. Sci., 3, 111 (1998)
  15. G. S. Attard, J. C. Glyde, and C. G. Gatner, Liquid-crystalline phases as templates for the synthesis of mesoporous silica, Nature, 378, 366 (1995)