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10.2298/JSC0503371R

Parasuraman Selvam (2013) Liquid Phase Oxidation via Heterogeneous Catalysis,
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Ángela B. Sifontes (2013) Biosynthesis of amorphous mesoporous aluminophosphates using yeast cells as templates, Materials Research Bulletin, 48 (2) : 730
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Parisa Sadeghpour (2018) Incorporation of mono and bimetallic MnNi into SAPO‐34 framework used in conversion of methanol to ethylene and propylene: Alteration of acidic properties and catalytic performance, Asia-Pacific Journal of Chemical Engineering, 13 (1)
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Sungjune Lee (2019) Sulfonium-based organic structure-directing agents for microporous aluminophosphate synthesis, Microporous and Mesoporous Materials, 280 : 75
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Ivan D. Kharitonov (2014) Rare‐Earth Cadmium Tellurite Chlorides with a Structural Type Exhibiting [Ln12(TeO3)12] Slabs Alternating with CdCl6 Octahedral Layers, European Journal of Inorganic Chemistry, 2014 (19) : 3140
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E. Gianotti (2009) FTIR Study of Cobalt Containing Aluminophosphates with Chabasite Like Structure by Using CO and NO as Molecular Probes, Catalysis Letters, 133 (1-2) : 27
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Udaypal Singh Thakur (2015) Synthesis variables and behavior of VPI-5: A review, Microporous and Mesoporous Materials, 201 : 258
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Nevenka Rajic (2005) Open‐Framework Aluminophosphates: Synthesis, Characterization and Transition Metal Modifications, ChemInform, 36 (49)
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E. E. Knyazeva (2019) Preparation of Binderless Silicoaluminophosphates by Vapor-Phase Crystallization of Kaolin–Phosphoric Acid Grains, Petroleum Chemistry, 59 (8) : 845
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Mohamed Elanany (2007) Strong templating effect of TEAOH in the hydrothermal genesis of the AlPO4-5 molecular sieve: Experimental and computational investigations, Journal of Molecular Catalysis A: Chemical, 270 (1-2) : 295
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B. F. Alfonso (2010) Double magnetic phase transition inND4Fe(DPO4)2andNH4Fe(HPO4)2, Physical Review B, 82 (14)
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Kanchana Utchariyajit (2008) Structural aspects of mesoporous AlPO4-5 (AFI) zeotype using microwave radiation and alumatrane precursor, Microporous and Mesoporous Materials, 114 (1-3) : 175
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Hong K. D. Nguyen (2017) Effects of the synthetic condition on the stability, particle size and redox chemistry of nanoporous CoAlPO-34, Journal of Porous Materials, 24 (3) : 567
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Seth B. Wiggin (2005) Boroarsenates:  A Framework Motif and Family Templated on Cations and Anions, Journal of the American Chemical Society, 127 (49) : 17172
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Seth B. Wiggin (2006) A chiral, 16-ring channel framework and a layered caesium zincoarsenate, Chemical Communications, (10) : 1100
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Parisa Sadeghpour (2015) DEA/TEAOH templated synthesis and characterization of nanostructured NiAPSO-34 particles: Effect of single and mixed templates on catalyst properties and performance in the methanol to olefin reaction, Particuology, 19 : 69
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B F Alfonso (2008) Structural and magnetic phases of Fe(ND3)2PO4, Journal of Physics: Condensed Matter, 20 (10) : 104227
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Djordje Stojakovic (2007) A kinetic study of the thermal degradation of cetyltrimethylammonium bromide inside the mesoporous SBA-3 molecular sieve, Journal of the Serbian Chemical Society, 72 (12) : 1309
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Jan Chyba (2014) Construction of Larger Molecular Aluminophosphate Cages from the Cyclic Four-Ring Building Unit, Inorganic Chemistry, 53 (7) : 3753
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M Valeanu (2016) The relationship between magnetism and magneto-optical effects in rare earth doped aluminophosphate glasses, Journal of Physics D: Applied Physics, 49 (7) : 075001
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Ali Alizadeh Eslami (2017) Short time microwave/seed-assisted synthesis and physicochemical characterization of nanostructured MnAPSO-34 catalyst used in methanol conversion to light olefins, Powder Technology, 310 : 187
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Ying Wang (2014) Synthesis and characterization of a new aluminophosphate with a Al3P6O249− three-dimensional framework, New J. Chem., 38 (3) : 889
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B. M. Swetha (2024) Photocatalytic 4-Nitrophenol Reduction by Hydrothermally Synthesized Mesoporous Co- and/or Fe-Substituted Aluminophosphates, Catalysts, 14 (7) : 408
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R. A. Kresiński (2006) Aluminium, gallium, indium and thallium, Annu. Rep. Prog. Chem., Sect. A: Inorg. Chem., 102 : 88
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Dmitri O. Charkin (2015) Cs7Sm11[TeO3]12Cl16 and Rb7Nd11[TeO3]12Br16, the new tellurite halides of the tetragonal Rb6LiNd11[SeO3]12Cl16 structure type, Journal of Solid State Chemistry, 232 : 56
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