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Using carbon dioxide and its sulfur analogues as monomers in polymer synthesis

Ming Luo, +3 more
- 15 Jan 2016 - 
- Vol. 82, pp 406-431
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TLDR
In this paper, a review mainly focuses on the recent advances in C1-involved copolymerization via heterogeneous catalysis of zinc-cobalt(III) double metal cyanide complex [Zn-Co(III] DMCC] catalyst.
About
This article is published in Polymer.The article was published on 2016-01-15 and is currently open access. It has received 84 citations till now. The article focuses on the topics: Carbonyl sulfide & Copolymer.

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Sustainable Conversion of Carbon Dioxide: An Integrated Review of Catalysis and Life Cycle Assessment

TL;DR: The motivation to develop CO2-based chemistry does not depend primarily on the absolute amount of CO2 emissions that can be remediated by a single technology and is stimulated by the significance of the relative improvement in carbon balance and other critical factors defining the environmental impact of chemical production in all relevant sectors in accord with the principles of green chemistry.
Journal ArticleDOI

Sulfur Chemistry in Polymer and Materials Science

TL;DR: An overview of strategies and developments used over the last 5 years to reinforce the importance of the sulfur functional group in modern polymer and materials science is presented.
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Recent Trends in Catalytic Polymerizations

TL;DR: In this article, the authors describe polymers as one of the largest and most important materials we use in daily life and their popularity has stemmed from their wide range of material properties combined with their low cost of manufacturing.
Journal ArticleDOI

Completely Recyclable Monomers and Polycarbonate: Approach to Sustainable Polymers

TL;DR: A novel recyclable plastic: degradable polycarbonate synthesized by dinuclear chromium-complex-mediated copolymerization of CO2 with 1-benzyloxycarbonyl-3,4-epoxy pyrrolidine, a meso-epoxide in quantitative yield under mild reaction conditions is reported.
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Perfectly Alternating and Regioselective Copolymerization of Carbonyl Sulfide and Epoxides by Metal-Free Lewis Pairs

TL;DR: The preparation of perfectly alternating and regioslective copolymers derived from the copolymerization of carbonyl sulfide and epoxides by metal-free Lewis pair catalysts composed of a Lewis base and a Lewis acid is described.
References
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TL;DR: Hydrogen Production by Water−Gas Shift Reaction 4056 4.1.
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Chemical Routes for the Transformation of Biomass into Chemicals

TL;DR: Dehydroisomerization of Limonene and Terpenes To Produce Cymene 2481 4.2.1.
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Transformation of carbon dioxide.

TL;DR: Reaction Mechanism, Synthesis of Urea and Urethane Derivatives, and Alcohol Homologation 2382 10.1.
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Green Chemistry: Principles and Practice

TL;DR: The concepts of design and the scientific philosophy of Green Chemistry are covered with a set of illustrative examples and the challenge of using the Principles as a cohesive design system is discussed.
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Conversion of biomass to selected chemical products

TL;DR: This critical review provides a survey illustrated by recent references of different strategies to achieve a sustainable conversion of biomass to bioproducts to examine critically the green character of conversion processes.
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