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243523-5GCrystals of SnCl 2 .2H 2 O exhibit exhibit monoclinic crystal system and space group P 2 1 / c .
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31669-100GTin(II) chloride dihydrate is the hydrated salt of tin(II). Its crystals are monoclinic and their structure has been investigated by single crystal X-ray diffraction method.
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31669-500GTin(II) chloride dihydrate is the hydrated salt of tin(II). Its crystals are monoclinic and their structure has been investigated by single crystal X-ray diffraction method.
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431508-250GApplication Reducing agent carbonyl allylation Lewis acid catalyst in C-C bond-forming reactions catalyst withAgClO4 for the synthesis of α-glycosides synthesis of alkenes, dienes, cis-vinyloxiranes, and allylic selenides deoxygenation of
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431508-50GApplication Reducing agent carbonyl allylation Lewis acid catalyst in C-C bond-forming reactions catalyst withAgClO4 for the synthesis of α-glycosides synthesis of alkenes, dienes, cis-vinyloxiranes, and allylic selenides deoxygenation of
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474762-25GApplication Tin(II) chloride dihydrate can be used as a mild Lewis acid catalyst to synthesize:       3-Aminoimidazo[1,2- a ]pyridines via three-component condensation reaction of aromatic aldehydes, 2-aminopyridines,
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474762-5GApplication Tin(II) chloride dihydrate can be used as a mild Lewis acid catalyst to synthesize:       3-Aminoimidazo[1,2- a ]pyridines via three-component condensation reaction of aromatic aldehydes, 2-aminopyridines,
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96527-250GTin(II) chloride dehydrate converts conjugated dioxolones to aldehyde. It helps as a catalyst in multi-component condensation reaction from aromatic aldehydes, 2-aminopyridines and isonitriles which results in reasonable yield and reducing the
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96527-50GTin(II) chloride dehydrate converts conjugated dioxolones to aldehyde. It helps as a catalyst in multi-component condensation reaction from aromatic aldehydes, 2-aminopyridines and isonitriles which results in reasonable yield and reducing the
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402761-100GTin(II) oxalate
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402761-500GTin(II) oxalate
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244643-100GTin(II) oxide (SnO) is a metal oxide with wide applications in superconductivity, photovoltaics, optoelectronics as an anode, coating substrate, Schottky diode, and catalyst. Application Tin(II) oxide has been used in the synthesis of nanofiber