Journal ArticleDOI
Anionic Polymerization of the Barium Salt of One-Ended Living Polystyrene. I. Conductance and Kinetic Studies
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This article is published in Macromolecules.The article was published on 1975-01-01. It has received 46 citations till now. The article focuses on the topics: Ionic polymerization & Anionic addition polymerization.read more
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From limestone to catalysis: application of calcium compounds as homogeneous catalysts.
TL;DR: A comparison of Yb2+ and Ca2+ Chemistry with real-world examples shows the importance of knowing the carrier and removal status of chlorine in the mixture of these two gases.
Book ChapterDOI
Anionic polymerizations of non-polar monomers involving lithium
TL;DR: In this paper, the authors deal with developments in the field of anionic polymerization of nonpolar monomers by the use of the lithium counter-ion and discuss the structure and bonding of organolithium compounds, the initiation and propagation reactions in hydrocarbon solvents, the influence of polar co-solvents on chain propagation, the stereochemistry of polydienes and chain end functionalization.
Book ChapterDOI
Developments in anionic polymerization — A critical review
TL;DR: A survey of the recent progresses in anionic polymerization can be found in this paper, where the authors review the different living polymerization systems described in the earlier and recent litterature and a brief discussion of the concept of living polymers and its implications.
Journal ArticleDOI
Benzyl Complexes of the Heavier Alkaline-Earth Metals: The First Crystal Structure of a Dibenzylstrontium Complex
Florian Feil,Sjoerd Harder +1 more
TL;DR: The first benzylstrontium complex, di(2-Me2N-α-Me3Si-benzyl) strontium, has been prepared via reaction of the benzylpotassium complex with SrI2 as mentioned in this paper.
Journal ArticleDOI
Cyclische Oligomere von (R)-3-Hydroxybuttersäure: Herstellung und strukturelle Aspekte†
Diemar A. Plattner,Andreas Brunner,Max Dobler,Hans-Martin Müller,W. Petter,Peter Zbinden,Dieter Seebach +6 more
TL;DR: In this article, the authors present a method for the synthesis of (R)-3-hydroxybutanoate (3-HB) units from the hydroxy acid itself, its methyl ester, its lactone (monolide) or its polymer.