Diagram Alir METODE PENELITIAN

Chen., Xiaobo and Samuel S.M. 2007. Titanium Dioxide Nanomaterials: Syntesis, Properties, Modifications and Aplications. Chemical Reviews. 107. p.2891-2959. Cho, S. I., Chung, C. H., dan Moo, S. H. 2001. Temperatur Programmed Desorption Study on the Decomposition Mechanism of TiOC 3 H 7 4 on Si100. Journal of Electrochemical Society. 148, p. 599. Dhamayanti, Y., Wijaya, K., dan Tahir, I., 2005, Fotodegradasi Zat Warna Methyl Orange Menggunakan Fe 2 O 3 -Montmorillonit dan Sinar Ultraviolet, Prosiding Seminar Nasional DIES ke 50 FMIPA UGM, hal. 22 –29. Darmawan, R. P., Wardhani, S dan Purwonugroho, D., 2013. Pengaruh Penambahan NO 3 terhadap Degradasi Methyl Orange Menggunakan Fotokatalis TiO 2 -Bentonit. Student Journal, Vol.1, No.1, pp. 140-146. Universitas Brawijaya Malang. Eiden-Assmann, S., Widoniak, J., and Maret, G., 2004. Synthesis and Characterization of Porous and Nonporous Monodisperse Colloidal TiO 2 Particles. Journal Chemistry of Materials, Vol. 16.p. 6-11. Elaziouti, Laouedj, N., and Ahmed, B. 2011. ZnO-Assisted Photocatalytic Degradation of Congo Red and Benzopurpurine 4B in Aqueous Solution. Journal of Chemical Engineering and Process Technology , Vol.2. pp. 2157- 7048. Enggrit, D. E., 2011. Preparasi Nanopartikel Titania Menggunakan Aseton Beramonia sebagai Media Reaksi serta Hasil Karakterisasinya. Tesis. Universitas Indonesia: Depok. Hal 6. Eun, H.T., Kim, S,H., Jeong, W,J., Jeon, S,J., Kim, S,H., and Yang S,M., 2009. Single-Step Fabrication of Monodisperse TiO 2 Hollow Spheres with Embedded Nanoparticles in Microfluidic Devices. Chemistry of Material, 21 2, pp 201 –203. Fatimah, I. 2009. Dispersi TiO 2 kedalam SiO 2 -Montmorillonit: Efek Jenis Prekursor. Journal Penelitian Saintek. Vol.14. p. 41-58. Ferdiansyah, A. H., 2009. Aplikasi Lapisan Tipis Titanium Dioksida TiO 2 sebagai Agen Pembersih Mandiri pada Panel Kaca Bangunan. Teknik Metalurgi dan Material . Universitas Indonesia: Depok. Fitriana, F.N., 2014. Sintesis Dan Karakterisasi Superkapasitor Berbasis Nanokomposit TiO 2 C. Skripsi. Universitas Negeri Malang: Malang. p. 10. Force, E. R and Lynd, L.E., 1984. Titanium-Mineral Resources of the United States: Definition and Documentation: U.S. Geological Survey Bulletin, Vol. 11.p. 1558-1563. Fujishima, A, K. Hashimoto, T., Watanabe., 1999. TiO 2 Photocatalysis Fundamentals and Aplications . Books. BKC inc. Japan.p.176. Goresy, A.I., Chen, M., Dubrovinsky, L., Gillet, P and Graup, G. 2001. An Ultradense Polymorph of Rutile with Seven Coordinated Titanium from Ries Crater. Science. 293.p.1467-1470. Gratzel, M., 2003, Review: Dye-Sensitized Solar Cells. Journal of Photochemistry and Photobiology ., Vol. 4. pp. 145-153. Guan, Z.S., Zhang, X.T., Ma, Y., Cao, Y.A. and Yao, J.N. 2001. Photocatalytic Activity of TiO 2 Prepared at Low Temperature by A Photo-Assisted Sol-Gel Method. Journal of Materials Research. Vol.16.p. 907 –909. Hariyadi, H., 2010, Pengaruh Ukuran Partikel TiO 2 terhadap Efisiensi Sel Surya Jenis DSSC Dye Sensitized Solar Cell. Skripsi. Jurusan Fisika, FMIPA Univ Diponegoro, Semarang. Han, C., Luque, R., and Dionysiou, D. D., 2011. Facile Preparation of Controllable Size Monodisperse Anatase Titania Nanoparticles. Chemical Communications. Vol.48.p1860-1862. Haugen, H., Will, J., Kohler., A., Hopfner, U., Aigner, J., Wintermantel, E., 2004. Ceramic TiO 2 -Foams: Characterisation of a Potential Scaffold. Journal of the European Ceramic Society , Vol. 24, Issue 4, April 2004, p. 661 –668. Hoffman, M. R., S. T. MArtin, W.Choi, and D. W. Bahnemann , 1995, Enviromental Applications of Semiconductor Photocatalysis, Chemical Reviews , Vol. 95, No. 1, W, pp.69-96. Hosokawa, M., Nishino, K., Yokoyama, T., 2007. Nanoparticle Technology Handbook. Elsevier B.V :Oxford Howard, C. J., Sabine, T. M., and Dicson, F., 1991. Structure and Termal Parameter for Rutile and Anatase. Acta Crystallographica, 4B. pages 462- 468. Hsieh, C.S., Zhu, H., Wei, T.Y., Chungc, Z.J., Yang, W.D., and Ling, Y.H., 2008. Applying the Experimental Statistical Method to Deal the Preparatory Conditions of Nanometric-sized TiO 2 Powders from a Two-emulsion Process. Journal of the European Ceramic Society. Vol. 28. p. 1177 –1183. Hunter, B. A. 2001. Rietveld Analysis Using a Visual Interface. ANSTO Neutron Scattering. PMB 1, Menai, N.S.W. 2234. Australia. page 1. Kraus, A., and Nolze, G. 1995. Powder Cell for Windows Version 2.3. ICDD. Federal Institute for Materials Research and Testing . Rudower Chaussee 5. 12489, Berlin. Germany.