Smart Nanohybrids of RAFT Polymers and Inorganic Particles
This doctoral thesis explains the synthesis and characterization of novel, smart hybrid nanomaterials. Bastian Ebeling combines in this work synthetic polymers with inorganic nanoparticles from silica or gold.
The first chapters offer a comprehensive introduction to basics of polymer science and the applied methodologies. In following chapters, the author describes in detail how he systematically tailored the polymers using reversible addition-fragmentation chain transfer polymerization (RAFT) for combination with inorganic nanoparticles.
This work also unravels mechanistic, thermodynamic, and structural aspects of all building blocks and reaction steps. The method described here is simple to perform and opens up pathways to new sets of nanohybrid materials with potential applications as sensors, in energy conversion, or catalysis. Readers will find a unique picture of the step-by step formation of new complex nanomaterials. It offers polymer scientists a systematic guide to the formation and synthesis of a new class of responsive nanomaterials.
1120960594
Smart Nanohybrids of RAFT Polymers and Inorganic Particles
This doctoral thesis explains the synthesis and characterization of novel, smart hybrid nanomaterials. Bastian Ebeling combines in this work synthetic polymers with inorganic nanoparticles from silica or gold.
The first chapters offer a comprehensive introduction to basics of polymer science and the applied methodologies. In following chapters, the author describes in detail how he systematically tailored the polymers using reversible addition-fragmentation chain transfer polymerization (RAFT) for combination with inorganic nanoparticles.
This work also unravels mechanistic, thermodynamic, and structural aspects of all building blocks and reaction steps. The method described here is simple to perform and opens up pathways to new sets of nanohybrid materials with potential applications as sensors, in energy conversion, or catalysis. Readers will find a unique picture of the step-by step formation of new complex nanomaterials. It offers polymer scientists a systematic guide to the formation and synthesis of a new class of responsive nanomaterials.
109.99 In Stock
Smart Nanohybrids of RAFT Polymers and Inorganic Particles

Smart Nanohybrids of RAFT Polymers and Inorganic Particles

by Bastian Ebeling
Smart Nanohybrids of RAFT Polymers and Inorganic Particles

Smart Nanohybrids of RAFT Polymers and Inorganic Particles

by Bastian Ebeling

Paperback(Softcover reprint of the original 1st ed. 2015)

$109.99 
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Overview

This doctoral thesis explains the synthesis and characterization of novel, smart hybrid nanomaterials. Bastian Ebeling combines in this work synthetic polymers with inorganic nanoparticles from silica or gold.
The first chapters offer a comprehensive introduction to basics of polymer science and the applied methodologies. In following chapters, the author describes in detail how he systematically tailored the polymers using reversible addition-fragmentation chain transfer polymerization (RAFT) for combination with inorganic nanoparticles.
This work also unravels mechanistic, thermodynamic, and structural aspects of all building blocks and reaction steps. The method described here is simple to perform and opens up pathways to new sets of nanohybrid materials with potential applications as sensors, in energy conversion, or catalysis. Readers will find a unique picture of the step-by step formation of new complex nanomaterials. It offers polymer scientists a systematic guide to the formation and synthesis of a new class of responsive nanomaterials.

Product Details

ISBN-13: 9783319386300
Publisher: Springer International Publishing
Publication date: 10/22/2016
Series: Springer Theses
Edition description: Softcover reprint of the original 1st ed. 2015
Pages: 292
Product dimensions: 6.10(w) x 9.25(h) x 0.03(d)

Table of Contents

Part I Introductory part: Introduction and theoretical background.- Part II Experimental: Instrumentation.- Substances.- Part III Results: Analysis of microscopic images.- Building-block design.- High-pressure phase behavior of aqueous pNIPAm solutions.- Nanocomposites via polymerization from silica.- Nanohybrids of gold particles.- Future perspectives.- Conclusions.- Part IV Appendices.
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