Aggregation-induced emission : materials and applications

著者

    • 藤木, 道也 フジキ, ミチヤ
    • Liu, Bin
    • Tang, Ben Zhong

書誌事項

Aggregation-induced emission : materials and applications

Michiya Fujiki, Bin Liu, Ben Zhong Tang, editor[s]

(ACS symposium series, 1226, 1227)

American Chemical Society , Distributed in print by Oxford University Press, c2016-

  • v. 1
  • v. 2

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注記

Includes bibliographical references and indexes

内容説明・目次

巻冊次

v. 1 ISBN 9780841231566

内容説明

Aggregation-induced emission (AIE) stands for an intriguing phenomenon in which a series of non-emissive molecules in solutions are induced to emit strongly in the aggregate or solid state. The concept of AIE was first coined by author Ben Zhong Tang in 2001, when he and his co-workers serendipitously discovered that 1-methyl-1,2,3,4,5-pentaphenylsilole was almost non-emissive in ethanol solution but became extremely bright in water-ethanol mixtures. Over the past 15 years, AIE has grown into a research field with high visibility and broad impact across both science and technology. Aggregation-Induced Emission: Materials and Applications summarizes the recent advances in AIE research, ranging from fundamentals, such as design, synthesis, and optical properties of AIE-active molecules, to mechanism studies supported by modeling and experimental investigations, and further to promising applications in the fields of energy, environment, and biology. Because of the large amount of excellent research, the contents have to be divided into two volumes, with Volume 1 focusing on materials and Volume 2 placing greater emphasis on applications. The topics covered in Volume 1 include: New mechanisms and theoretical understanding of AIE phenomena; Vibration-induced emission; The art of restriction of molecular rotation; Domino synthesis of AIE molecules; Small molecule AIE systems; and Mechanochromic AIE materials.

目次

Preface 1. Introduction 2. New Mechanistic Insights into the AIE Phenomenon 3. Vibration Induced Emission (VIE): An Intrinsic Fluorescence Tuning Mechanism of N,N'-Disubstituted-dihydribenzo[a,c]phenazines 4. Theoretical Insights into the Mechanism of AIE 5. Aggregation-Induced Emission Materials: The Art of Conjugation and Rotation 6. Multicomponent and Domino Syntheses of AIE Chromophores 7. Aggregation Induced Emission of 9,10-Distrylanthracene Derivatives: Molecular Design and Applications 8. Silole-Based Cyclosiloxanes with High Solid-State Fluorescence Quantum Yields and Their AIE Properties 9. Luminescent Organoboron Element-Blocks Exhibiting AIE Properties 10. AIE Active Heteroarylethylenes 11. Recent Progress in New AIE Structural Motifs 12. Mechano-Responsive AIE Luminogens Indexes
巻冊次

v. 2 ISBN 9780841231580

内容説明

Aggregation-induced emission (AIE) stands for an intriguing phenomenon in which a series of non-emissive molecules in solutions are induced to emit strongly in the aggregate or solid state. The concept of AIE was first coined by author Ben Zhong Tang in 2001, when he and his co-workers serendipitously discovered that 1-methyl-1,2,3,4,5-pentaphenylsilole was almost non-emissive in ethanol solution but became extremely bright in water-ethanol mixtures. Over the past 15 years, AIE has grown into a research field with high visibility and broad impact across both science and technology. Aggregation-Induced Emission: Materials and Applications summarizes the recent advances in AIE research, ranging from fundamentals, such as design, synthesis, and optical properties of AIE-active molecules, to mechanism studies supported by modeling and experimental investigations, and further to promising applications in the fields of energy, environment, and biology. The topics covered in Volume 2 include: AIE polymers; AIE-induced chirogenesis; Room-temperature phosphorescent AIE molecules; Liquid crystalline AIE molecules; AIE materials for energy devices; New chemo- and biosensors with AIE molecules; Cell structure and function imaging with AIE molecules; and AIE materials in drug delivery and therapy.

目次

Preface 1. Pure Organic Luminogens with Room Temperature Phosphorescence 2. Luminogenic Polymers with AIE Characteristics 3. Aggregation-Induced Chirogenesis of Luminescent Polymers 4. New Chemo-/Biosensors Based on the Aggregation-Induced Emission Mechanism 5. AIEgens-Functionalized Porous Materials for Explosives Detection 6. Liquid Crystalline AIE Luminogens: Properties and Applications 7. Aggregation-Induced Emission Luminogens (AIEgens) for Non-Doped Organic Light-Emitting Diodes 8. AIE Luminogens for Visualizing Cell Structures and Functions 9. AIE Nanoparticles for in Vitro and in Vivo Imaging 10. AIE Nanoprobes for Multi-Photon in Vivo Bioimaging 11. AIEgens for Drug Delivery Applications Editors' Biographies Indexes

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