Dehydrocoupling polymerization of arylsilanes with chloro(aryloxy)bis(cyclopentadienyl)zirconium complex catalysts

被引:19
作者
Obora, Y [1 ]
Tanaka, M [1 ]
机构
[1] Natl Inst Mat & Chem Res, Tsukuba, Ibaraki 3058565, Japan
关键词
dehydrocoupling polymerization; arylsilanes; aryloxy-zirconocene complex;
D O I
10.1016/S0022-328X(99)00495-7
中图分类号
O61 [无机化学];
学科分类号
070301 ; 081704 ;
摘要
Complexes generated by treating chloro(aryloxy)bis(cyclopentadienyl)zirconium [3; aryloxy = 2,6-di-tert-butyl-4-methylphenoxy (3a), 2,6-diisopropylphenoxy (3b), phenoxy (3c), 2,3,4,5,6-pentafluorophenoxy (3d), and 2,6-dimethoxyphenoxy (3e)] with one equivalent of n-BuLi catalyze dehydrocoupling polymerization of arylsilanes 1 [aryl=phenyl (la), p-methoxyphenyl (Ib), p-dimethylaminophenyl (Ic), p-methylthiophenyl (Id)] at room temperature to afford corresponding polysilanes. Their catalytic performance was compared with the conventional system generated from dichlorobis(cyclopentadienyl)zirconium (4) and two equivalents of n-BuLi. The reaction of la using 3a/n-BuLi, 3b/n-BuLi or 3c/n-BuLi gave high-molecular-weight polysilanes (M(w) = 13.3 x 10(3) and M(n) = 5.8 x 10(3) with 3a; M(w) = 10.4 x 10(3) and M(n) = 4.2 x 10(3) with 3b; M(w) = 8.8 x 10(3) and M(n) = 5.3 x 10(3) with 3c). Formation of the polysilane was fast in comparison with 4, in particular when the catalyst was ligated by a sterically demanding (3a) or electron-withdrawing (34) aryloxy group. The time course of the gel permeation chromatography profiles suggested that complex 3a showed faster chain growth than 34, 3e and 4. The extent of the formation of undesired cyclics was relatively small(< 10%) in the sterically demanding 3a/n-BuLi- or 3b/n-BuLi-catalyzed reaction. (C) 2000 Elsevier Science S.A. All rights reserved.
引用
收藏
页码:1 / 11
页数:11
相关论文
共 75 条
[1]   POLYMERIZATION OF PRIMARY SILANES TO LINEAR POLYSILANES CATALYZED BY TITANOCENE DERIVATIVES [J].
AITKEN, C ;
HARROD, JF ;
SAMUEL, E .
JOURNAL OF ORGANOMETALLIC CHEMISTRY, 1985, 279 (1-2) :C11-C13
[2]   A SURVEY OF CATALYTIC ACTIVITY OF ETA-5-CYCLOPENTADIENYL COMPLEXES OF GROUPS 4-6 AND URANIUM AND THORIUM FOR THE DEHYDROCOUPLING OF PHENYLSILANE [J].
AITKEN, C ;
BARRY, JP ;
GAUVIN, F ;
HARROD, JF ;
MALEK, A ;
ROUSSEAU, D .
ORGANOMETALLICS, 1989, 8 (07) :1732-1736
[3]   STRUCTURAL STUDIES OF OLIGOSILANES PRODUCED BY CATALYTIC DEHYDROGENATIVE COUPLING OF PRIMARY ORGANOSILANES [J].
AITKEN, C ;
HARROD, JF ;
GILL, US .
CANADIAN JOURNAL OF CHEMISTRY, 1987, 65 (08) :1804-1809
[4]   SYNTHETIC AND STRUCTURAL STUDIES ON SOME ORGANIC-COMPOUNDS OF ZIRCONIUM [J].
ANTINOLO, A ;
BRISTOW, GS ;
CAMPBELL, GK ;
DUFF, AW ;
HITCHCOCK, PB ;
KAMARUDIN, RA ;
LAPPERT, MF ;
NORTON, RJ ;
SARJUDEEN, N ;
WINTERBORN, DJW ;
ATWOOD, JL ;
HUNTER, WE ;
ZHANG, H .
POLYHEDRON, 1989, 8 (13-14) :1601-1606
[5]   DEHYDROGENATIVE COUPLING OF SUBSTITUTED PHENYLSILANES - SYNTHESIS OF POLY[((TRIFLUOROMETHYL)PHENYL)SILANES] [J].
BANOVETZ, JP ;
SUZUKI, H ;
WAYMOUTH, RM .
ORGANOMETALLICS, 1993, 12 (11) :4700-4703
[6]   STEREOSELECTIVITY IN THE CATALYTIC OLIGOMERIZATION OF PHENYLSILANE [J].
BANOVETZ, JP ;
STEIN, KM ;
WAYMOUTH, RM .
ORGANOMETALLICS, 1991, 10 (10) :3430-3432
[7]   NEW STABLE TITANOCENE AND ZIRCONOCENE CATALYST PRECURSORS FOR POLYSILANE SYNTHESIS VIA DEHYDROCOUPLING OF HYDROSILANES [J].
BOURG, S ;
CORRIU, RJP ;
ENDERS, M ;
MOREAU, JJE .
ORGANOMETALLICS, 1995, 14 (01) :564-566
[8]  
CAMBELL WH, 1989, ORGANOMETALLICS, V8, P2615
[9]   Synthesis and reactivity of 16-electron hafnocene silyl hydride complexes [J].
Casty, GL ;
Lugmair, CG ;
Radu, NS ;
Tilley, TD ;
Walzer, JF ;
Zargarian, D .
ORGANOMETALLICS, 1997, 16 (01) :8-12
[10]   DEHYDROGENATIVE COUPLING OF DIARYLSILANES [J].
CHANG, LS ;
COREY, JY .
ORGANOMETALLICS, 1989, 8 (08) :1885-1893