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“Supersilyl” Compounds (R3Si)3SiSi(SiR3)3 and (R3Si)3SiC6H4Si(SiR3)3: Structures and Properties

✍ Scribed by Prof. Dr. Hans Bock; Dipl.-Chem. Jochen Meuret; Dr. Klaus Ruppert


Publisher
John Wiley and Sons
Year
1993
Tongue
English
Weight
369 KB
Volume
32
Category
Article
ISSN
0044-8249

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📜 SIMILAR VOLUMES


„Supersilyl”-Verbindungen (R1Si)3SiSi(Si
✍ Prof. Dr. Hans Bock; Jochen Meuret; Dr. Klaus Ruppert 📂 Article 📅 1993 🏛 John Wiley and Sons 🌐 English ⚖ 388 KB 👁 1 views

VgI. beispielsweiw R. SWwnrt. 7 h ~ Pruliin Ap~~/~i~ulinns 10 Orguific < ' / 1 wisrrj,. Ac:idemic Presa. New York. 1985. [6] i i ) Die Synlhese von ~Tetriicy;inhydrochinon (K. W;illenfels. G . Bachmann. D. Hoffm;inn. R. Kern. 7i.rruhnlrnir 1965. 21. 2239) erfolgt vorteilhaft uber das Dichlor-I)er~v;

Ditrielanes (R3Si)2E−E(SiR3)2 and Hetero
✍ Nils Wiberg; Thomas Blank; Kerstin Amelunxen; Heinrich Nöth; Hansgeorg Schnöckel 📂 Article 📅 2002 🏛 John Wiley and Sons 🌐 English ⚖ 432 KB 👁 1 views

In, Tl) and NaR\* via isolable R\* 2 ECl (reaction of GaCl 3 and NaR\* leads to R\* 2 GaէGaR\* instead of R\* 2 Ga-GaR\* 2 ), (ii) from EBr (E = In, Tl) and NaR\* or NaRЈ (reaction of AlBr or GaBr and NaR\* leads to R\* 4 Al 4 or R\* 8 Ga 18 and R\* 8 Ga 22 ), (iii) from NaGa 2 R\* 3 and Me 3 SiCl.

Synthesis and Crystal Structure of the t
✍ Karl Wilhelm Klinkhammer 📂 Article 📅 2000 🏛 John Wiley and Sons 🌐 German ⚖ 153 KB 👁 2 views

The two hypersilylcuprates LiCu 2 Hyp 3 (2) and [Li 7 (O t Bu) 6 ][Cu 2 Hyp 3 ] (3) (Hyp = Si(SiMe 3 ) 3 ) were synthesized by reactions of unsolvated lithium hypersilanide, Li-Hyp with hypersilylcopper and CuO t Bu, respectively. Both contain the novel A-frame trihypersilyldicuprate anion [Cu 2- Hy

A Manganese(II) Allyl Complex: Synthesis
✍ Richard A. Layfield; Simon M. Humphrey 📂 Article 📅 2004 🏛 John Wiley and Sons 🌐 English ⚖ 107 KB 👁 1 views

The synthetic and structural organometallic chemistry of manganese(ii) is atypical of organotransition metal chemistry due to the observation of essentially ionic CÀMn II bonds, a property more commonly observed in organometallic compounds of the alkali and alkaline-earth metals. [1] Hence Mn II for