Artikel
Öffentlich zugänglich
1,4:3,6-Dianhydrohexitols: Original platform for the design of biobased polymers using robust, efficient, and orthogonal chemistry
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Pascal Dimitrov Raytchev
Veröffentlicht/Copyright:
15. August 2012
Online erschienen: 2012-8-15
Erschienen im Druck: 2012-8-15
© 2013 Walter de Gruyter GmbH, Berlin/Boston
Artikel in diesem Heft
- Preface
- Soluble polymer-supported organocatalysts
- 1,4:3,6-Dianhydrohexitols: Original platform for the design of biobased polymers using robust, efficient, and orthogonal chemistry
- Renewable resources-based PTT [poly(trimethylene terephthalate)]/switchgrass fiber composites: The effect of compatibilization
- Chemical modification of silica support to improve the branching ability of Phillips catalyst
- Multifunctional organic polymeric catalysts and reagents
- Synthesis of multifunctional polymers by combination of controlled radical polymerization (CRP) and effective polymer analogous reactions
- Catalyst-transfer condensation polymerization for precision synthesis of π-conjugated polymers
- Fluorescence anisotropy measurements in solution: Methods and reference materials (IUPAC Technical Report)
- Electroanalytical chemistry for the analysis of solids: Characterization and classification (IUPAC Technical Report)
Schlagwörter für diesen Artikel
1,4:3,6-dianhydrohexitols;
alkynes;
atom economy;
azides;
biomaterials;
biosources;
click chemistry;
cycloadditions;
isoidide;
isomannide;
isosorbide;
materials chemistry;
monomers;
polyadditions;
polymer chemistry;
renewability;
step growth polymerization;
stereochemistry;
structure–property relationships
Artikel in diesem Heft
- Preface
- Soluble polymer-supported organocatalysts
- 1,4:3,6-Dianhydrohexitols: Original platform for the design of biobased polymers using robust, efficient, and orthogonal chemistry
- Renewable resources-based PTT [poly(trimethylene terephthalate)]/switchgrass fiber composites: The effect of compatibilization
- Chemical modification of silica support to improve the branching ability of Phillips catalyst
- Multifunctional organic polymeric catalysts and reagents
- Synthesis of multifunctional polymers by combination of controlled radical polymerization (CRP) and effective polymer analogous reactions
- Catalyst-transfer condensation polymerization for precision synthesis of π-conjugated polymers
- Fluorescence anisotropy measurements in solution: Methods and reference materials (IUPAC Technical Report)
- Electroanalytical chemistry for the analysis of solids: Characterization and classification (IUPAC Technical Report)