[1] Malekfar R., Ahmadi G., Cheraghi A., Rohollahnejad J., Sahraiyan F., Khanzadeh M., "Micro-Raman scattering of KTP (KTiOPO4) nanocrystallites synthesized by modified sol–gel Pechini method", Acta Physica Polonica A, 51(2009) , 308–312.
[2] Gharibshahian E., Jafar Tafreshi M., fazli M., "Growth of KTiOPO4 cryctalls by flux technique and their characterization", Indian Journal of Pure and Applied Physics ,47(2009),356-361.
[3] Blessi S., Maria Lumina Sonia M., Vijayalakshmi S., Pauline S., " Preparation and characterization of SnO2 nanoparticles by hydrothermal method", International Journal of ChemTech Research, No.3, 16(2014), 2153-2155
[4] Xuan L.L., Chauvat D., Slablab A., Roch J. R., " KTiOPO4 Single Nanocrystal for Second-Harmonic Generation Microscopy", "Nanocrystals", Yoshitake Masuda (Ed.), (2010), ISBN: 978-953-307-126-8
[5] Abrabri M., Larbot A., Persin M., Sarrazin J., Rafiq M., Cot L., "Potassium titanyl phosphate membranes : Surface properties and application to ionic solution filtration", Journal of membrane science, 39 (1975) 275-283
[6] Christophe J. B., Mark A. H., George W.S., "Sol-Gel synthesis of Potassium Titanyl Phosphate: Solution Chemistry and Gelation ", Journal of Sol-Gel Science and Technology, 9(1997) 183-199.
[7] Kanno Y., "Synthesis and sintering of KTiOPO4 via mechanochemical mixing route", Journal of Alloys and Compounds, 210(1994) 45-50.
[8] Arul Dhas N., Patil K.C., "Synthesis of AIPO4, LaPO4 and KTiOPO4 by flash combustion", Journal of Alloys and Compounds, 202(1993), 137-141.
[9] Kanti Biswas S., Pathak A., Pramanik P., "Synthesis of Nanocrystalline KTiOPO4 Powder by Method", Journal of the American Ceramic Society 90 (2007) 1071-1076.
[10] Alaei M., Rashidi A. M., Bakhtiari I., "Preparation of High Surface Area ZrO2 Nanoparticles", Iranian Journal of Chemistry and Chemical Engineering ,No. 2,33( 2014), 47-53
[11] Harish K., Manisha and Poonam S., "Synthesis and Characterization of MnO2 Nanoparticles using Co-precipitation Technique", International Journal of Chemistry and Chemical Engineering, No. 3, 3 (2013) 155-160.
[12] Benyang W., Qifeng W., Shiliang Q., "Synthesis and Characterization of Uniform and Crystalline Magnetite Nanoparticles via Oxidation-precipitation and Modified co-precipitation Methods", International Journal of Electrochemical Science, 8 (2013) 3786 – 3793
[13] Kavitha M., Gopinathan C., Pandi P., "Synthesis and Characterization of TiO2 Nanopowders in Hydrothermal and Sol-Gel Method", International Journal of Advancements in Research & Technology, 2 (2013) 102-108
[14] Chen K., Lin J., Wang W., Zhang Y., Wang X., Su H.," Effectsof surfactants on microstructure and photocatalytic activity of TiO2 nanoparticles prepared by the hydrothermal method" , Materials Science in Semiconductor Processing, 15 (2012) 20–26.
[15] Aneesh P.M., Vanaja K.V., Jayaraj M.K., "Synthesis of ZnO nanoparticles by Hydrothermal method", Nanophotonic Materials IV, 6639 (2007) 66390J1-9•
[16] Jacco J.C., ‘‘The Infrared Spectra of KTiOPO4 and A K2O–P2O5–TiO2 Glass’’, Materials Research Bulletin, 21 (1986),1189–94.
[17] Kannan C.V, "Investigations on the growth of KTiOPO4, RbTiOPO4 and LiB3O5 single crystals and their electrical and optical characterization", Ph.D. Thesis. Crystal Growth Center, Anna University, Madras, India (2002).