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Novel luminescent crystalline materi...
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Jin, Mingoo.
Novel luminescent crystalline materials of gold(I) complexes with stimuli-responsive properties
Record Type:
Electronic resources : Monograph/item
Title/Author:
Novel luminescent crystalline materials of gold(I) complexes with stimuli-responsive propertiesby Mingoo Jin.
Author:
Jin, Mingoo.
Published:
Singapore :Springer Singapore :2020.
Description:
x, 191 p. :ill., digital ;24 cm.
Contained By:
Springer eBooks
Subject:
Chemiluminescence.
Online resource:
https://doi.org/10.1007/978-981-15-4063-9
ISBN:
9789811540639$q(electronic bk.)
Novel luminescent crystalline materials of gold(I) complexes with stimuli-responsive properties
Jin, Mingoo.
Novel luminescent crystalline materials of gold(I) complexes with stimuli-responsive properties
[electronic resource] /by Mingoo Jin. - Singapore :Springer Singapore :2020. - x, 191 p. :ill., digital ;24 cm. - Springer theses,2190-5053. - Springer theses..
1. General Introduction -- 2. Introduction of a Biphenyl Moiety for a Solvent Responsive Aryl Gold(I) -- 3. Luminescent Mechanochromism of a Chiral Complex: Distinct Crystal Structures and Color Changes of Racemic and Homochiral Gold(I) Isocyanide Complexes with a Binaphthyl Moiety -- 4. Mechano-Responsive Luminescence via Crystal-to-Crystal Phase Transitions between Chiral and Non-Chiral Space Groups -- 5. Mechanical-Stimulation-Triggered and Solvent-Vapor-Induced Reverse Single-Crystal-to-Single-Crystal Phase Transitions with Alterations of the Luminescence Color -- 6. Thermo-Responsive Phosphorescence Control Mediated by Molecular Rotation and Aurophilic Interactions in Amphidynamic Crystals of Phosphane-Gold(I) Complex -- 7. Conclusion.
This book highlights and investigates novel solid-state luminescent properties of crystals with stimuli-responsive behavior. Several novel molecular designs for controlling crystal structures with photo-physical properties are described, with a special focus on external stimuli-responsive properties. The major goal of the material design concept was to capitalize on the chirality of crystals with stimuli-responsive properties. To allow crystals' chirality to be controlled and modified by means of external stimulation, the axial chirality of biaryl moiety was employed and, interestingly, produced several novel mechano- and vapo-responsive luminescent properties based on crystal-to-crystal or single-crystal-to-single-crystal phase transitions. In addition, the book details how the molecular rotation of luminophores in the solid phase can be used to achieve corresponding thermal-responsive phosphorescence. The reports presented here illustrate how the author has succeeded in controlling structural factors in a bulk environment by using molecular design with linking to photo-physical properties. The content will be of great interest to researchers in the field, and to members of chemical and material science societies.
ISBN: 9789811540639$q(electronic bk.)
Standard No.: 10.1007/978-981-15-4063-9doiSubjects--Topical Terms:
197327
Chemiluminescence.
LC Class. No.: QD505.8 / .J566 2020
Dewey Class. No.: 541.35
Novel luminescent crystalline materials of gold(I) complexes with stimuli-responsive properties
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1. General Introduction -- 2. Introduction of a Biphenyl Moiety for a Solvent Responsive Aryl Gold(I) -- 3. Luminescent Mechanochromism of a Chiral Complex: Distinct Crystal Structures and Color Changes of Racemic and Homochiral Gold(I) Isocyanide Complexes with a Binaphthyl Moiety -- 4. Mechano-Responsive Luminescence via Crystal-to-Crystal Phase Transitions between Chiral and Non-Chiral Space Groups -- 5. Mechanical-Stimulation-Triggered and Solvent-Vapor-Induced Reverse Single-Crystal-to-Single-Crystal Phase Transitions with Alterations of the Luminescence Color -- 6. Thermo-Responsive Phosphorescence Control Mediated by Molecular Rotation and Aurophilic Interactions in Amphidynamic Crystals of Phosphane-Gold(I) Complex -- 7. Conclusion.
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This book highlights and investigates novel solid-state luminescent properties of crystals with stimuli-responsive behavior. Several novel molecular designs for controlling crystal structures with photo-physical properties are described, with a special focus on external stimuli-responsive properties. The major goal of the material design concept was to capitalize on the chirality of crystals with stimuli-responsive properties. To allow crystals' chirality to be controlled and modified by means of external stimulation, the axial chirality of biaryl moiety was employed and, interestingly, produced several novel mechano- and vapo-responsive luminescent properties based on crystal-to-crystal or single-crystal-to-single-crystal phase transitions. In addition, the book details how the molecular rotation of luminophores in the solid phase can be used to achieve corresponding thermal-responsive phosphorescence. The reports presented here illustrate how the author has succeeded in controlling structural factors in a bulk environment by using molecular design with linking to photo-physical properties. The content will be of great interest to researchers in the field, and to members of chemical and material science societies.
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Chemistry and Materials Science (Springer-11644)
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