£102.34

Springer Molecular Orientation and Emission Characteristics of Ir Complexes and Exciplex in Organic Thin Films (Springer Theses)

Price data last checked 57 day(s) ago - refreshing...

View at Amazon

Price History & Forecast

Last 34 days • 34 data points (No recent data available)

Historical
Generating forecast...
£102.34 £99.13 £99.83 £100.53 £101.23 £101.93 £102.63 25 January 2026 02 February 2026 10 February 2026 18 February 2026 27 February 2026

Price Distribution

Price distribution over 34 days • 3 price levels

Days at Price
Current Price
23 days 9 days 2 days · current 0 6 12 17 23 £99 £101 £102 Days at Price

Price Analysis

Most common price: £99 (23 days, 67.6%)

Price range: £99 - £102

Price levels: 3 different prices over 34 days

Description

Product Description This thesis considers molecular orientation in thin films and introduces an optical model describing this orientation as applied to organic light-emitting diodes (OLEDs). It also describes the electronic structure of intermolecular charge transfer excitons correlated to molecular orientation in solids. It has long been known that molecular orientation influences the electrical and optical properties of molecular films. One notable example is in liquid crystals where rigid rod or disk shaped molecules are commonly used. Understanding the origin of the molecular orientation and its control by surface treatment and electric field resulted in the development of liquid crystal displays. The same thing has happened in organic electronics, and considerable effort has been devoted to understanding and controlling molecular orientation in solid films to improve charge carrier mobility and light absorption, ultimately to improve the performance of organic solar cells and thin film transistors. In contrast, less attention has been paid to molecular orientation and its influence on the characteristics of OLEDs, probably because of the use of amorphous films rather than micro-crystalline films, and it is only in recent years that some molecular films are known to have preferred orientation.  This thesis addresses this topic, focusing on OLEDs, describing the origin and control of the orientation of phosphorescent Ir complexes possessing spherical shape rather than rod or disk shape, the simulation of the optical characteristics of OLEDs influenced by preferred molecular orientation, and finally the orientation of intermolecular charge transfer excitons and its correlation to electronic structures in thin films. From the Back Cover This thesis considers molecular orientation in thin films and introduces an optical model describing this orientation as applied to organic light-emitting diodes (OLEDs). It also describes the electronic structure of intermolecular charge transfer excitons correlated to molecular orientation in solids. It has long been known that molecular orientation influences the electrical and optical properties of molecular films. One notable example is in liquid crystals where rigid rod or disk shaped molecules are commonly used. Understanding the origin of the molecular orientation and its control by surface treatment and electric field resulted in the development of liquid crystal displays. The same thing has happened in organic electronics, and considerable effort has been devoted to understanding and controlling molecular orientation in solid films to improve charge carrier mobility and light absorption, ultimately to improve the performance of organic solar cells and thin film transistors. In contrast, less attention has been paid to molecular orientation and its influence on the characteristics of OLEDs, probably because of the use of amorphous films rather than micro-crystalline films, and it is only in recent years that some molecular films are known to have preferred orientation.  This thesis addresses this topic, focusing on OLEDs, describing the origin and control of the orientation of phosphorescent Ir complexes possessing spherical shape rather than rod or disk shape, the simulation of the optical characteristics of OLEDs influenced by preferred molecular orientation, and finally the orientation of intermolecular charge transfer excitons and its correlation to electronic structures in thin films. About the Author Dr. Chang-Ki Moon received the "Best PhD Theses Award in 2017" in the Materials Science and Engineering department at SNU in December 2017, and the “Best Paper Award” of Schrodinger’s 2017 Excellence in Materials Science Applications Publication Contest in Schrodinger Inc. in February 15, 2018.

Product Specifications

Format
Hardcover
Domain
Amazon UK
Release Date
07 February 2019
Listed Since
11 December 2018

Barcode

No barcode data available

Similar Products You Might Like

Springer Optoelectronics of Molecules and Polymers 104 Book
95% match

Springer Optoelectronics of Molecules and Polymers 104 Book

Springer

£147.91 17 Apr 2026
Organic Light-Emitting Materials and Devices
95% match

Organic Light-Emitting Materials and Devices

CRC Press

£75.69 07 Mar 2026
Organic Electronics: Materials, Processing, Devices and Applications
94% match

Organic Electronics: Materials, Processing, Devices and Applications

CRC Press

£174.80 04 Mar 2026
OLED Fundamentals: Materials, Devices, and Processing of Organic Light-Emitting Diodes
94% match

OLED Fundamentals: Materials, Devices, and Processing of Organic Light-Emitting Diodes

CRC Press

£72.97 09 Mar 2026
Studies on the Plasmon-Induced Photoexcitation Processes of Molecules on Metal Surfaces (Springer Theses)
94% match

Studies on the Plasmon-Induced Photoexcitation Processes of Molecules on Metal Surfaces (Springer Theses)

Springer

£73.96 25 Feb 2026
Woodhead Publishing - Principles and Applications of OLEDs
94% match

Woodhead Publishing - Principles and Applications of OLEDs

Woodhead Publishing

£104.64 05 Mar 2026
Molecular Electronic Control Over Tunneling Charge Transfer Plasmons Modes (Springer Theses)
94% match

Molecular Electronic Control Over Tunneling Charge Transfer Plasmons Modes (Springer Theses)

Springer

£75.56 24 Feb 2026
Energy Level Alignment and Electron Transport Through Metal/Organic Contacts: From Interfaces to Molecular Electronics (Springer Theses)
94% match

Energy Level Alignment and Electron Transport Through Metal/Organic Contacts: From Interfaces to Molecular Electronics (Springer Theses)

Springer

£73.48 23 Feb 2026
Organic Electroluminescence
94% match

Organic Electroluminescence

CRC Press

£65.64 08 Mar 2026
Organic Electroluminescence: 94 (Optical Science and Engineering)
94% match

Organic Electroluminescence: 94 (Optical Science and Engineering)

CRC Press

£133.07 08 Mar 2026
Organometallic Magnets: 64 (Topics in Organometallic Chemistry, 64)
94% match

Organometallic Magnets: 64 (Topics in Organometallic Chemistry, 64)

Springer

£179.27 24 Jan 2026
Systematic Exploration of Indolizine-Based Small Fluorescent Molecules: Synthesis, Analysis and Application (Springer Theses)
94% match

Systematic Exploration of Indolizine-Based Small Fluorescent Molecules: Synthesis, Analysis and Application (Springer Theses)

Springer

£74.83 25 Feb 2026
The Investigation of Plastic Behavior by Discrete Dislocation Dynamics for Single Crystal Pillar at Submicron Scale (Springer Theses)
94% match

The Investigation of Plastic Behavior by Discrete Dislocation Dynamics for Single Crystal Pillar at Submicron Scale (Springer Theses)

Springer

£71.14 06 Mar 2026
Optoelectronics of Molecules and Polymers: 104 (Springer Series in Optical Sciences, 104)
94% match

Optoelectronics of Molecules and Polymers: 104 (Springer Series in Optical Sciences, 104)

Springer

£76.02 13 Dec 2025
Dyes and Photoactive Molecules in Microporous Systems: 183 (Structure and Bonding, 183)
94% match

Dyes and Photoactive Molecules in Microporous Systems: 183 (Structure and Bonding, 183)

Springer

£156.00 14 Feb 2026
Dyes and Photoactive Molecules in Microporous Systems: 183 (Structure and Bonding)
94% match

Dyes and Photoactive Molecules in Microporous Systems: 183 (Structure and Bonding)

Springer

£180.32 11 Feb 2026
Chemistry in Action: Making Molecular Movies with Ultrafast Electron Diffraction and Data Science (Springer Theses)
94% match

Chemistry in Action: Making Molecular Movies with Ultrafast Electron Diffraction and Data Science (Springer Theses)

Springer

£74.57 20 Feb 2026
Short-Channel Organic Thin-Film Transistors: Fabrication, Characterization, Modeling and Circuit Demonstration (Springer Theses)
94% match

Short-Channel Organic Thin-Film Transistors: Fabrication, Characterization, Modeling and Circuit Demonstration (Springer Theses)

Springer

£75.40 02 Apr 2026
Optical and Electrical Properties of Nanoscale Materials: 318 (Springer Series in Materials Science, 318)
94% match

Optical and Electrical Properties of Nanoscale Materials: 318 (Springer Series in Materials Science, 318)

Springer

£110.34 09 Mar 2026
Elsevier Solution Processed Metal Oxide Thin Films Book
94% match

Elsevier Solution Processed Metal Oxide Thin Films Book

Elsevier

£115.49 17 Apr 2026
Spin-Orbit-Induced Spin Textures of Unoccupied Surface States on Tl/Si(111) (Springer Theses)
94% match

Spin-Orbit-Induced Spin Textures of Unoccupied Surface States on Tl/Si(111) (Springer Theses)

Springer

£75.84 06 Mar 2026
Theoretical Study on Correlation Effects in Topological Matter (Springer Theses)
94% match

Theoretical Study on Correlation Effects in Topological Matter (Springer Theses)

Springer

£71.08 27 Feb 2026
Semiconductors for Optoelectronics: Basics and Applications (Graduate Texts in Physics)
94% match

Semiconductors for Optoelectronics: Basics and Applications (Graduate Texts in Physics)

Springer

£62.38 08 Mar 2026
Thermoelectric Thin Films: Materials and Devices
93% match

Thermoelectric Thin Films: Materials and Devices

Springer

£72.60 25 Feb 2026