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Search for "high performance polymers" in Full Text gives 3 result(s) in Beilstein Journal of Organic Chemistry.

Radical-mediated dehydrative preparation of cyclic imides using (NH4)2S2O8–DMSO: application to the synthesis of vernakalant

  • Dnyaneshwar N. Garad,
  • Subhash D. Tanpure and
  • Santosh B. Mhaske

Beilstein J. Org. Chem. 2015, 11, 1008–1016, doi:10.3762/bjoc.11.113

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  • ), captan (fungicide), flumipropyn (herbicide), flumioxazin (herbicide), procymidone (pesticide) and cinidon-ethyl (herbicide) [18][19]. Imides are the backbones of several commercially available high-performance polymers [20][21] and many other advanced materials [22][23][24][25]. The most commonly used
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Published 12 Jun 2015

Investigations of thiol-modified phenol derivatives for the use in thiol–ene photopolymerizations

  • Sebastian Reinelt,
  • Monir Tabatabai,
  • Urs Karl Fischer,
  • Norbert Moszner,
  • Andreas Utterodt and
  • Helmut Ritter

Beilstein J. Org. Chem. 2014, 10, 1733–1740, doi:10.3762/bjoc.10.180

Graphical Abstract
  • flexural strength and modulus of elasticity is twice as high compared to the PETMP reference system. Keywords: composites; crosslinking; dental polymers; high performance polymers; photopolymerization; Introduction Restorative composites consist of a polymerizable organic matrix (10–60 wt %) and
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Published 29 Jul 2014

Synthesis and characterization of a novel carboxyl group containing (co)polyimide with sulfur in the polymer backbone

  • Miroslav Mrsevic,
  • David Düsselberg and
  • Claudia Staudt

Beilstein J. Org. Chem. 2012, 8, 776–786, doi:10.3762/bjoc.8.88

Graphical Abstract
  • properties. High-performance polymers, such as polyimides, are renowned for comprising all these features in a remarkable way [1][2]. Additionally, their outstanding resistance to all kinds of acids makes them suitable for a broad range of applications, such as insulating technologies and industrial carriage
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Published 25 May 2012
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