![]() Rakoczy RA, Traa Y (2003) Nanocrystalline zeolite A: synthesis, ion exchange and dealumination. Li Q, Creaser D, Sterte J (2001) Nanozeolites: synthesis, crystallization mechanism, and applications. ![]() Li Q, Creaser D, Sterte J (2002) An investigation of the nucleation/crystallization kinetics of nanosized colloidal faujasite zeolites. Holmberg BA, Wang H, Yan Y (2004) High silica zeolite Y nanocrystals by dealumination and direct synthesis. Holmberg BA, Wang H, Norbeck JM, Yan Y (2003) Controlling size and yield of zeolite Y nanocrystals using tetramethylammonium bromide. Valtchev VP, Bozhilov KN (2004) Transmission electron microscopy study of the formation of fau-type zeolite at room temperature. Zhu G, Qiu S, Yu J, Sakamoto Y, Xiao F, Xu R, Terasaki O (1998) Synthesis and characterization of high-quality zeolite lta and fau single nanocrystals. Mintova S, Olson NH, Bein T (1999) Electron microscopy reveals the nucleation mechanism of zeolite y from precursor colloids. Mintova S, Valtchev V (1999) Synthesis of nanosized FAU-type zeolite. Schoeman BJ, Sterte J, Otterstedt J-E (1994) Analysis of the crystal growth mechanism of TPA-silicalite-1. Zhan B-Z, White MA, Lumsden M, Mueller-Neuhaus J, Robertson KN, Cameron TS, Gharghouri M (2002) Control of particle size and surface properties of crystals of nax zeolite. Valtchev VP, Bein T (2003) Synthesis and stabilisation of nanoscale zeolite particles. Mintova S, Valtchev V (1993) Moleculer sieves: investigation of crystal growth. Nature 417:813įeoktistova NN, Zhdanov SP, Lutz W, Bülov M (1989) On the kinetics of crystallization of silicalite. Adv Mater 14:629ĭavis ME (2002) Ordered porous materials for emerging applications. Schüth F, Schmidt W (2002) Microporous and mesoporous materials. Stein A (2003) Advances in microporous and mesoporous solids-highlights of recent progress. The emerging applications of nanozeolites in sensing, optoelectronics, and medicine constitute another topic in this review.Ĭundy CS, Cox PA (2003) The hydrothermal synthesis of zeolites: history and development from the earliest days to the present time. Other uses of nanozeolites for the preparation of functionalized materials, for the synthesis of mesoporous silicas of improved hydrothermal stability, and as seeds for zeolite syntheses are illustrated. ![]() ![]() The cover features of nanocrystalline zeolites and low-zeolite compositions received tailoring for functionalization of outside sialon organizations. The nanocrystalline zeolites did more employed as making pieces to make bigger, low zeolite compositions by encapsulated metal or natural classes. Nanocrystalline zeolites, so while silica lite, ZSM-5, including A, Y, did integrate also largely identified by film X-ray diffraction, including particle microscopy. Nanocrystalline zeolites comprise acceptable nanomaterials by glass areas of smaller than 100 nm that own a different surface, including inner cover reactivity. Special attention is paid to zeolites prepared as stable colloidal suspensions. The synthesis formulations and features of different zeolite-type structures prepared in nanosized form are summarized. This review focuses on the synthesis, crystallization mechanism, and application of colloidal zeolites.
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