This first comprehensive presentation of this hot and important topic compiles the most up-to-date methods for chiral amine synthesis. The international list of authors reads like a "Who's Who" of the subject, providing a large array of highly practical information concentrated into the useful and e
Conjugated Objects: Developments, Synthesis, and Applications
โ Scribed by Atsushi Nagai, Koji Takagi
- Publisher
- Pan Stanford
- Year
- 2017
- Tongue
- English
- Leaves
- 555
- Edition
- 1
- Category
- Library
No coin nor oath required. For personal study only.
โฆ Synopsis
Conjugated Objects: Development, Synthesis, and Application contains 17 chapters written by young researchers and contains current trends in pi-conjugated systems for application in broad research areas such as design of uniqueย pi-conjugation, catalysts, self-assembly, charge transfer complexes, liquid crystals, supramolecules, and nanostructures by using conjugated small and/or macro-objects organically or electrochemically. The book can be used as a textbook of basic learning by undergraduate and graduate students of chemistry, electrical and electronics engineering, and materials science and by supramolecular researchers in nanotechnology and biotechnology.
โฆ Table of Contents
Content: Cover
Half Title
Title
Copy rights
Contents
Preface
Chapter 1. Unique Electronic and Stereochemical Properties of Salen Complexes
1 .1 Introduction
1.1.1 Syntheses of Salen Complexes
1.1.2 Salen Complex as an Asymmetric Catalyst
1.1.3 Role of a Redox-Active Salen Ligand in Catalysis
1.1.4 Building Block for Multimetallic Systems 1.2 Electronic and Stereochemical Properties Revealed by Experimental Studies 1.2.1 Role of Axial Ligands in Stereochemical Properties
1.2.2 Characterization of Salen Ligand Radicals
1.2.3 Localized versus Delocalized Salen Ligand Radicals 1.2.4 Stable Salen Ligand Radical with Cobalt 1.3 Conclusions
Chapter 2. Fused Polycyclic Aromatic Compounds: [n]Acenes, [n]Helicenes, and Their Heterocyclic Analogues
2.1 Introduction
2.2 [n]Acenes
2.2.1 Introduction
2.2.2 Hydrocarbon [n]Acenes
2.2.3 Heteroacenes
2.2.4 Semiconducting Properties of [n]Acenes and Heteroacenes 2.3 [n]Helicenes 2.3.1 Introduction
2.3.2 Hydrocarbon [n]Helicenes
2.3.3 Heterohelicenes
2.4 Synthesis of Heteroacenes and Heterohelicenes via Ring Construction by Carbon-Heteroatom Bond Formation
2.4.1 Introduction 2.4.2 Heteroacene Synthesis via Ring Construction Including Carbon- Heteroatom Bond Formation 2.4.3 Heterohelicene Synthesis via Ring Construction Including Carbon- Heteroatom Bond Formation
2.5 Conclusions
Chapter 3. Poly(ortho-Phenylene)s and Their Derivatives: Synthesis, Conformation, and Physical Properties
3.1 Introduction
โฆ Subjects
TECHNOLOGY & ENGINEERING / Material Science;Electromagnetics & Microwaves;Optoelectronics;Polymers & Plastics;Supramolecular chemistry;Chemical processes;Nanostructured materials;Electrochemistry
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