Hyperbranched poly(phenylenesilolene)s

军武 陈;Han Peng;Charles C.W. Law;Yuping Dong;Jacky W.Y. Lam;Ian D. Williams;本忠 唐

China Association for Science and Technology;Hong Kong University of Science and Technology

发表时间:2003-6-17

期 刊:Macromolecules

语 言:English

U R L: http://www.scopus.com/inward/record.url?scp=0038236390&partnerID=8YFLogxK

摘要

Silole-containing hyperbranched polyphenylenes (1) are synthesized, which exhibit high thermal stability, extended electronic conjugation, excellent optical power limiting performance, and novel cooling-enhanced photoluminescence. The homopolycyclotrimerization of 1,1-diethynyl-2,3,4,5-tetraphenylsilole (2) and its copolycyclotrimerizations with 1-octyne catalyzed by TaCl5-Ph4Sn proceed smoothly at room temperature and produce completely soluble polymers in high yields (up to ∼85%). The molecular structures of 1 are characterized by spectroscopic analyses. The thermal stability of 1 is evaluated by thermogravimetric analyses, which detect virtually no weight losses when the polymers are heated to ∼300°C. The hyperbranched polyphenylenes are electronically conjugated, as suggested by their strong absorption in the visible spectral region (λmax ∼520 nm). Because of this extended electronic conjugation, polymers 1 are nonlinear optically active and strongly attenuate the optical power of intense laser pulses, whose optical limiting performances are superior to that of C60, the best-known optical linear. The photoluminescence of the polymers is dramatically enhanced by cooling their solutions to low temperatures. This unique phenomenon of cooling-enhanced emission is probably caused by the restricted intramolecular rotations of the phenyl rings upon the axes of the single bonds linked to the silole cores at the cryogenic temperatures.

相关科学

化学
无机化学
有机化学
材料科学
材料化学
塑料和聚合物

期刊度量

Scopus度量

年份 CiteScore SJR SNIP
1996
1997
1998
1999 2.75 1.94
2000 2.671 1.987
2001 2.863 1.709
2002 2.8 1.684
2003 2.565 1.633
2004 2.619 1.667
2005 2.623 1.629
2006 3.004 1.701
2007 3.1 1.592
2008 2.834 1.495
2009 2.971 1.504
2010 2.516 1.492
2011 8.5 2.556 1.566
2012 9.4 2.78 1.564
2013 10.5 2.578 1.727
2014 10.3 2.524 1.687
2015 10.1 2.357 1.582
2016 9.8 2.564 1.475
2017 10 2.419 1.524
2018 9.9 2.243 1.492
2019 10.2 2.064 1.464
2020 9.5

相似文献推荐