Electron-Deficient Acridone Derivatives as a New Functional Core Towards Low-Bandgap Metallopolyynes

The synthesis, thermal, and photoluminescence properties of novel platinum metallopolyynes of electron‐deficient acridone derivatives with electronically tunable bandgaps and their molecular model complexes are described. Polymer P2 has an optical bandgap (Eg) of 2.10 eV which is much lowered than t...

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Published inMacromolecular chemistry and physics Vol. 208; no. 10; pp. 1129 - 1136
Main Authors Chow, Wing-Cheong, Zhou, Gui-Jiang, Wong, Wai-Yeung
Format Journal Article
LanguageEnglish
Published Weinheim WILEY-VCH Verlag 21.05.2007
WILEY‐VCH Verlag
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Abstract The synthesis, thermal, and photoluminescence properties of novel platinum metallopolyynes of electron‐deficient acridone derivatives with electronically tunable bandgaps and their molecular model complexes are described. Polymer P2 has an optical bandgap (Eg) of 2.10 eV which is much lowered than that of P1 (2.60 eV). The incorporation of electron‐accepting dicyanomethylene units on the acridone ring in the main chain creates a strong π‐conjugated system that features unique donor‐acceptor interactions and intramolecular charge‐transfer states.
AbstractList The synthesis, thermal, and photoluminescence properties of novel platinum metallopolyynes of electron‐deficient acridone derivatives with electronically tunable bandgaps and their molecular model complexes are described. Polymer P2 has an optical bandgap (Eg) of 2.10 eV which is much lowered than that of P1 (2.60 eV). The incorporation of electron‐accepting dicyanomethylene units on the acridone ring in the main chain creates a strong π‐conjugated system that features unique donor‐acceptor interactions and intramolecular charge‐transfer states.
Abstract The synthesis, thermal, and photoluminescence properties of novel platinum metallopolyynes of electron‐deficient acridone derivatives with electronically tunable bandgaps and their molecular model complexes are described. Polymer P2 has an optical bandgap ( E g ) of 2.10 eV which is much lowered than that of P1 (2.60 eV). The incorporation of electron‐accepting dicyanomethylene units on the acridone ring in the main chain creates a strong π ‐conjugated system that features unique donor‐acceptor interactions and intramolecular charge‐transfer states. magnified image
The synthesis, thermal, and photoluminescence properties of novel platinum metallopolyynes of electron-deficient acridone derivatives with electronically tunable bandgaps and their molecular model complexes are described. Polymer P2 has an optical bandgap (E-g) of 2.10 eV which is much lowered than that of P1 (2.60 eV). The incorporation of electron-accepting dicyanomethylene units on the acridone ring in the main chain creates a strong pi-conjugated system that features unique donor-acceptor interactions and intramolecular charge-transfer states. [GRAPHICS]
The synthesis, thermal, and photoluminescence properties of novel platinum metallopolyynes of electron-deficient acridone derivatives with electronically tunable bandgaps and their molecular model complexes are described. Polymer P2 has an optical bandgap (Eg) of 2.10 eV which is much lowered than that of P1 (2.60 eV). The incorporation of electron-accepting dicyanomethylene units on the acridone ring in the main chain creates a strong -conjugated system that features unique donor-acceptor interactions and intramolecular charge-transfer states. .
Author Chow, Wing-Cheong
Zhou, Gui-Jiang
Wong, Wai-Yeung
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  fullname: Chow, Wing-Cheong
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  givenname: Gui-Jiang
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Issue 10
Keywords synthesis
acridone
photoluminescence
METAL DIYNES
cyano groups
ENERGY-GAP
COPOLYMERS
INTRAMOLECULAR CHARGE-TRANSFER
EUROPIUM(III) LUMINESCENCE
metallopolymers
NMR
FLUORENE SERIES
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platinum(II) polyynes
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Snippet The synthesis, thermal, and photoluminescence properties of novel platinum metallopolyynes of electron‐deficient acridone derivatives with electronically...
The synthesis, thermal, and photoluminescence properties of novel platinum metallopolyynes of electron-deficient acridone derivatives with electronically...
Abstract The synthesis, thermal, and photoluminescence properties of novel platinum metallopolyynes of electron‐deficient acridone derivatives with...
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StartPage 1129
SubjectTerms acridone
cyano groups
donor-acceptor compounds
metallopolymers
NMR
photoluminescence
Physical Sciences
platinum(II) polyynes
Polymer Science
Science & Technology
synthesis
Title Electron-Deficient Acridone Derivatives as a New Functional Core Towards Low-Bandgap Metallopolyynes
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