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Germanium alkoxides

Ammonia and alcohol may be used instead of sodium alkoxides to manufacture alkoxides of titanium and other metals such as tirconium, hafnium, germanium, niobium, tantalum, aluminum, and tin. [Pg.25]

Germanium, eyclopentadienyl-, 3, 218 Germanium, tris(acetyiacetone)-structure, 1, 65 Germanium alkoxides physical properties, 2, 346 Germanium complexes, 3,183-223 acetylacetone isomerization, 2,383 bivalent... [Pg.132]

Germanium hydrides (as well as silicon hydrides) can be obtained in high yields by reduction of the corresponding halides or alkoxides by LiAlFLt in the presence of phase-transfer catalysts244. [Pg.500]

Arkles BA (1995) Silicon, germanium, tin and lead compounds metal alkoxides, diketo-nates and carboxylates a survey of properties and chemistry. Gelest, Tullytown PA... [Pg.422]

Monomeric amide, alkoxide and thiolate derivatives of germanium(II), tin(II) and lead(II) are only obtained with very sterically crowded ligands. Thus, bis(2,2,6,6-... [Pg.220]

The direct electrochemical synthesis of metal alkoxides by the anodic dissolution of metals into alcohols containing conducting electrolytes was initially demonstrated by Szilard in 1906 for the methoxides of copper and lead.19 More recently the method has received some attention particularly in the patent literature.29-25 The preparation of the ethoxides of silicon, titanium, germanium, zirconium and tantalum by electrolysis of ethanolic solutions of NH Cl has been patented, although the production of the ethoxides was found to cease after several hours.24,25... [Pg.337]

The alkoxides of both oxidation states were obtained by metathesis of germanium halides (chlorides and iodides) with alkali alkoxides [1488, 1142, 857, 1535]. The yields can be increased by application of GeCl4 solvates with Py or NH3 or amines [3, 222] (method 5) and also by alcohol interchange of ethoxides (method 6) or alcoholysis of Ge[Si(NR3)2]2 [568, 1543] (method 4). The application of alkali alkoxides in the preparation of Ge(OR)4is possible in contrast to that of analogous derivatives of Sn(IV) and Zr due presumably to the much lower stability of corresponding alkoxogermanates the intermediate products of the corresponding reactions because of stability — of the tetrahedral coordination for Ge. The direct electrochemical preparation of Ge(OEt)4... [Pg.289]

Larso GL Silicon-Based Blocking Agents. In Suplement to the Gelest-Catalog (ABCR) Silicon, Germanium Tin Compounds, Metal Alkoxides and Metal Diketonates See http //www.gelest.com... [Pg.174]

The polycondensation of BHET to PET proceeds in the melt at temperatures of 270-305 °C, under vacuum (< 1 mbar absolute pressure) and in the presence of Lewis acid metal compounds, such as titanium alkoxides, dialkyltin oxide, gallium oxide, germanium oxide, thallium oxide, lanthanide salts, and most commonly, antimony oxide [1,2, 22-26]. Under polymerization reaction conditions, these catalysts are generally converted to their alkoxides with ethylene glycol. Typical of such alkoxides is antimony(III) glycolate, the active catalyst for the majority of the world s PET production [27] (cf. Structure 1). [Pg.550]

The reactions of aminoalcohols, such as aminoethanol and A-methylamino-ethanol, with a number of metal alkoxides were investigated in our laboratories (6). These alcohols depict an interesting variation in the reactivity pattern and nature of the final product(s). For example, in reactions of boron, aluminum, silicon, titanium, and zirconium alkoxides with these ligands only the hydroxyl group was found to be reactive. However, with niobium, germanium, and tin... [Pg.375]


See other pages where Germanium alkoxides is mentioned: [Pg.258]    [Pg.294]    [Pg.26]    [Pg.163]    [Pg.66]    [Pg.92]    [Pg.212]    [Pg.220]    [Pg.608]    [Pg.294]    [Pg.1080]    [Pg.114]    [Pg.289]    [Pg.291]    [Pg.90]    [Pg.692]    [Pg.451]    [Pg.401]    [Pg.278]    [Pg.574]    [Pg.1414]    [Pg.438]    [Pg.608]    [Pg.91]    [Pg.99]    [Pg.103]    [Pg.552]    [Pg.32]    [Pg.204]    [Pg.1413]    [Pg.961]   


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