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  • 1
    Online Resource
    Online Resource
    Singapore : Springer Nature Singapore | Singapore : Springer
    UID:
    b3kat_BV049725907
    Format: 1 Online-Ressource (XVIII, 123 p. 111 illus., 55 illus. in color)
    Edition: 1st ed. 2024
    ISBN: 9789819714773
    Additional Edition: Erscheint auch als Druck-Ausgabe ISBN 978-981-9714-76-6
    Additional Edition: Erscheint auch als Druck-Ausgabe ISBN 978-981-9714-78-0
    Language: English
    URL: Volltext  (URL des Erstveröffentlichers)
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  • 2
    Book
    Book
    Oxford [u.a.] : Oxford Univ. Press
    UID:
    gbv_227044274
    Format: 144 S , überwiegend Ill , 23cm
    ISBN: 019590270X
    Language: English
    Keywords: Uiguren ; Sinkiang ; Tarimbecken ; Basar ; Seidenstraße ; Sinkiang ; Reise ; Bildband
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  • 3
    Book
    Book
    Oxford : Oxford Univ. Press
    UID:
    gbv_349377774
    Format: 164 S , überw. Ill., Kt
    ISBN: 0195920090
    Note: Includes index
    Language: English
    Keywords: Angkor ; Khmer ; China ; Geschichte ; Kambodscha ; Geschichte Anfänge-1500 ; Angkor ; Chinesisch ; Quelle
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  • 4
    Book
    Book
    tai bei
    UID:
    gbv_1033799165
    Format: 232 S. , 照片
    Original writing title: 中国饮食疗法 : = Chinese food therapy
    Original writing person/organisation: 翁维健
    Original writing publisher: 台北 : 台湾珠海出版有限公司
    ISBN: 9576570107
    Note: SBB-PK Berlin
    Language: Chinese
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  • 5
    Online Resource
    Online Resource
    Chang sha
    UID:
    gbv_181215514X
    Format: 52 Seiten
    Edition: Online-Ausgabe Bei jing 2012 1 Online-Ressource Min guo tu shu shu ju ku = Early Twentieth Century Book in China, 1911-1949. tu shu ; yi qi
    Original writing title: 赠大学生
    Original writing person/organisation: 翁为
    Original writing publisher: 长沙 : 商务印书馆
    Content: 作者有感于"七·七"事变的爆发和南京的失守,而论及知识青年应该怎样认识中国, 认识西方的精神文明,以及如何成为中国社会的中坚.
    Note: Pinyin-Umschrift und Langzeichen wurden automatisiert erstellt , System requirements: Internet browser, Acrobat reader with Adobe simplified Chinese fonts.
    Language: Chinese
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  • 6
    Book
    Book
    tai bei
    UID:
    gbv_1034256033
    Format: 4,6,140 S.
    Original writing title: 法學緒論 : 大學用書
    Original writing person/organisation: 翁偉湛
    Original writing publisher: 臺北 : Selbstverl.
    Content: Einfuehrung in die Rechtswissenschaft.
    Note: SBB-PK Berlin
    Language: Chinese
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  • 7
    UID:
    edoccha_9960074120502883
    Format: 1 online resource (388 p.)
    ISBN: 0-12-811092-9
    Content: Polymer Materials for Energy and Electronic Applications is among the first books to systematically describe the recent developments in polymer materials and their electronic applications. It covers the synthesis, structures, and properties of polymers, along with their composites. In addition, the book introduces, and describes, four main kinds of electronic devices based on polymers, including energy harvesting devices, energy storage devices, light-emitting devices, and electrically driving sensors. Stretchable and wearable electronics based on polymers are a particular focus and main achievement of the book that concludes with the future developments and challenges of electronic polymers and devices. * Provides a basic understanding on the structure and morphology of polymers and their electronic properties and applications. * Highlights the current applications of conducting polymers on energy harvesting and storage. * Introduces the emerging flexible and stretchable electronic devices. * Adds a new family of fiber-shaped electronic devices.
    Note: Description based upon print version of record. , Cover ; Title Page; Copyright Page; Contents; Preface; 1 - Introduction; 1.1 - History of Polymers; 1.2 - Energy Harvesting Based on Polymers; 1.3 - Energy Storage Based on Polymers; 1.4 - Light Emitting and Sensing Devices Based on Polymers; 1.5 - Flexible Energy and Electronic Devices Based on Polymers; 1.6 - Challenges and Perspectives; 1.6.1 - Stability; 1.6.2 - Electrical Conductivity; 1.6.3 - Temperature Tolerance; 1.6.4 - Scale-up Production; References; 2 - Synthesis and Design of Conjugated Polymers for Organic Electronics; 2.1 - Synthesis of Conjugated Polymers; 2.1.1 - Introduction , 2.1.2 - Common Methods for Constructing Carbon-Carbon Double Bond2.1.2.1 - Synthesis of Polyacetylenes; 2.1.2.2 - Synthesis of Poly(phenylenevinylene)s and Poly(arylene vinylene)s; 2.1.3 - Common Methods for Constructing Carbon-Carbon Single Bond; 2.1.3.1 - Chemical Oxidative Polymerization and Electrochemical Polymerization; 2.1.3.2 - Metal-Catalyzed Coupling; 2.1.3.2.1 - Kumada-Corriu and Negishi coupling; 2.1.3.2.2 - Suzuki-Miyaura and Stille coupling; 2.1.3.2.3 - Cassar-Heck-Sonogashira and Yamamoto coupling; 2.1.3.2.4 - A new tool-direct (hetero)arylation polycondesation , 2.1.4 - Conclusion2.2 - Design of Conjugated Polymers for Organic Electronics; 2.2.1 - Introduction; 2.2.2 - Rational Design of High-Performance Conjugated Polymers for PSCs; 2.2.2.1 - Backbones; 2.2.2.2 - Side Chains; 2.2.2.3 - Substitutes; 2.2.3 - Rational Design of High-Performance Conjugated Polymers for PLEDs; 2.2.3.1 - Blue Light-Emitting Polymers; 2.2.3.2 - White Light-Emitting Polymers; 2.2.3.3 - Phosphorescent Polymer Light-Emitting Materials; 2.2.4 - Rational Design of Conjugated Polymers for Electrochromic Devices; 2.2.4.1 - Backbones; 2.2.4.2 - Side Chains; 2.2.5 - Conclusions , References3 - Structure and Property of Electronic Polymers; 3.1 - Introduction; 3.2 - Aggregation Structure; 3.2.1 - Amorphous; 3.2.2 - Crystalline; 3.3 - Morphology of Assembly; 3.3.1 - Nanoparticle; 3.3.2 - Nanofiber; 3.3.3 - Solid Film; 3.3.4 - Porous Film; 3.3.5 - Polymer Gel; 3.4 - Properties; 3.4.1 - Mechanical Properties; 3.4.2 - Electronic Properties; 3.4.3 - Electrochemical Properties; 3.4.4 - Electroluminescent Properties; 3.4.5 - Electrochromic Properties; 3.4.6 - Electromechanical Properties; 3.4.7 - Stability; 3.4.8 - Biocompatibility; 3.5 - Summary; References , 4 - Electronic Polymer Composite4.1 - Synthesis; 4.1.1 - Direct Mixing; 4.1.2 - In Situ Polymerization in Inorganic Matrix; 4.1.3 - In Situ Growth of Inorganic Component in Polymer Matrix; 4.1.4 - One-Pot Synthesis; 4.1.5 - Multicomponent Preparation; 4.2 - Structure; 4.2.1 - Continuous Structure; 4.2.1.1 - Compacted Film; 4.2.1.2 - Porous; 4.2.1.3 - Layered; 4.2.2 - Separated Structure; 4.2.2.1 - Zero-Dimensional; 4.2.2.2 - One-Dimensional; 4.2.2.3 - Two-Dimensional; 4.2.2.4 - Three-Dimensional; 4.3 - Property; 4.3.1 - Mechanical Property; 4.3.2 - Electrical Property , 4.3.3 - Electrochemical Property
    Additional Edition: ISBN 0-12-811091-0
    Language: English
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  • 8
    UID:
    edocfu_9960074120502883
    Format: 1 online resource (388 p.)
    ISBN: 0-12-811092-9
    Content: Polymer Materials for Energy and Electronic Applications is among the first books to systematically describe the recent developments in polymer materials and their electronic applications. It covers the synthesis, structures, and properties of polymers, along with their composites. In addition, the book introduces, and describes, four main kinds of electronic devices based on polymers, including energy harvesting devices, energy storage devices, light-emitting devices, and electrically driving sensors. Stretchable and wearable electronics based on polymers are a particular focus and main achievement of the book that concludes with the future developments and challenges of electronic polymers and devices. * Provides a basic understanding on the structure and morphology of polymers and their electronic properties and applications. * Highlights the current applications of conducting polymers on energy harvesting and storage. * Introduces the emerging flexible and stretchable electronic devices. * Adds a new family of fiber-shaped electronic devices.
    Note: Description based upon print version of record. , Cover ; Title Page; Copyright Page; Contents; Preface; 1 - Introduction; 1.1 - History of Polymers; 1.2 - Energy Harvesting Based on Polymers; 1.3 - Energy Storage Based on Polymers; 1.4 - Light Emitting and Sensing Devices Based on Polymers; 1.5 - Flexible Energy and Electronic Devices Based on Polymers; 1.6 - Challenges and Perspectives; 1.6.1 - Stability; 1.6.2 - Electrical Conductivity; 1.6.3 - Temperature Tolerance; 1.6.4 - Scale-up Production; References; 2 - Synthesis and Design of Conjugated Polymers for Organic Electronics; 2.1 - Synthesis of Conjugated Polymers; 2.1.1 - Introduction , 2.1.2 - Common Methods for Constructing Carbon-Carbon Double Bond2.1.2.1 - Synthesis of Polyacetylenes; 2.1.2.2 - Synthesis of Poly(phenylenevinylene)s and Poly(arylene vinylene)s; 2.1.3 - Common Methods for Constructing Carbon-Carbon Single Bond; 2.1.3.1 - Chemical Oxidative Polymerization and Electrochemical Polymerization; 2.1.3.2 - Metal-Catalyzed Coupling; 2.1.3.2.1 - Kumada-Corriu and Negishi coupling; 2.1.3.2.2 - Suzuki-Miyaura and Stille coupling; 2.1.3.2.3 - Cassar-Heck-Sonogashira and Yamamoto coupling; 2.1.3.2.4 - A new tool-direct (hetero)arylation polycondesation , 2.1.4 - Conclusion2.2 - Design of Conjugated Polymers for Organic Electronics; 2.2.1 - Introduction; 2.2.2 - Rational Design of High-Performance Conjugated Polymers for PSCs; 2.2.2.1 - Backbones; 2.2.2.2 - Side Chains; 2.2.2.3 - Substitutes; 2.2.3 - Rational Design of High-Performance Conjugated Polymers for PLEDs; 2.2.3.1 - Blue Light-Emitting Polymers; 2.2.3.2 - White Light-Emitting Polymers; 2.2.3.3 - Phosphorescent Polymer Light-Emitting Materials; 2.2.4 - Rational Design of Conjugated Polymers for Electrochromic Devices; 2.2.4.1 - Backbones; 2.2.4.2 - Side Chains; 2.2.5 - Conclusions , References3 - Structure and Property of Electronic Polymers; 3.1 - Introduction; 3.2 - Aggregation Structure; 3.2.1 - Amorphous; 3.2.2 - Crystalline; 3.3 - Morphology of Assembly; 3.3.1 - Nanoparticle; 3.3.2 - Nanofiber; 3.3.3 - Solid Film; 3.3.4 - Porous Film; 3.3.5 - Polymer Gel; 3.4 - Properties; 3.4.1 - Mechanical Properties; 3.4.2 - Electronic Properties; 3.4.3 - Electrochemical Properties; 3.4.4 - Electroluminescent Properties; 3.4.5 - Electrochromic Properties; 3.4.6 - Electromechanical Properties; 3.4.7 - Stability; 3.4.8 - Biocompatibility; 3.5 - Summary; References , 4 - Electronic Polymer Composite4.1 - Synthesis; 4.1.1 - Direct Mixing; 4.1.2 - In Situ Polymerization in Inorganic Matrix; 4.1.3 - In Situ Growth of Inorganic Component in Polymer Matrix; 4.1.4 - One-Pot Synthesis; 4.1.5 - Multicomponent Preparation; 4.2 - Structure; 4.2.1 - Continuous Structure; 4.2.1.1 - Compacted Film; 4.2.1.2 - Porous; 4.2.1.3 - Layered; 4.2.2 - Separated Structure; 4.2.2.1 - Zero-Dimensional; 4.2.2.2 - One-Dimensional; 4.2.2.3 - Two-Dimensional; 4.2.2.4 - Three-Dimensional; 4.3 - Property; 4.3.1 - Mechanical Property; 4.3.2 - Electrical Property , 4.3.3 - Electrochemical Property
    Additional Edition: ISBN 0-12-811091-0
    Language: English
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  • 9
    UID:
    almahu_9948025490002882
    Format: 1 online resource (388 p.)
    ISBN: 0-12-811092-9
    Content: Polymer Materials for Energy and Electronic Applications is among the first books to systematically describe the recent developments in polymer materials and their electronic applications. It covers the synthesis, structures, and properties of polymers, along with their composites. In addition, the book introduces, and describes, four main kinds of electronic devices based on polymers, including energy harvesting devices, energy storage devices, light-emitting devices, and electrically driving sensors. Stretchable and wearable electronics based on polymers are a particular focus and main achievement of the book that concludes with the future developments and challenges of electronic polymers and devices. * Provides a basic understanding on the structure and morphology of polymers and their electronic properties and applications. * Highlights the current applications of conducting polymers on energy harvesting and storage. * Introduces the emerging flexible and stretchable electronic devices. * Adds a new family of fiber-shaped electronic devices.
    Note: Description based upon print version of record. , Cover ; Title Page; Copyright Page; Contents; Preface; 1 - Introduction; 1.1 - History of Polymers; 1.2 - Energy Harvesting Based on Polymers; 1.3 - Energy Storage Based on Polymers; 1.4 - Light Emitting and Sensing Devices Based on Polymers; 1.5 - Flexible Energy and Electronic Devices Based on Polymers; 1.6 - Challenges and Perspectives; 1.6.1 - Stability; 1.6.2 - Electrical Conductivity; 1.6.3 - Temperature Tolerance; 1.6.4 - Scale-up Production; References; 2 - Synthesis and Design of Conjugated Polymers for Organic Electronics; 2.1 - Synthesis of Conjugated Polymers; 2.1.1 - Introduction , 2.1.2 - Common Methods for Constructing Carbon-Carbon Double Bond2.1.2.1 - Synthesis of Polyacetylenes; 2.1.2.2 - Synthesis of Poly(phenylenevinylene)s and Poly(arylene vinylene)s; 2.1.3 - Common Methods for Constructing Carbon-Carbon Single Bond; 2.1.3.1 - Chemical Oxidative Polymerization and Electrochemical Polymerization; 2.1.3.2 - Metal-Catalyzed Coupling; 2.1.3.2.1 - Kumada-Corriu and Negishi coupling; 2.1.3.2.2 - Suzuki-Miyaura and Stille coupling; 2.1.3.2.3 - Cassar-Heck-Sonogashira and Yamamoto coupling; 2.1.3.2.4 - A new tool-direct (hetero)arylation polycondesation , 2.1.4 - Conclusion2.2 - Design of Conjugated Polymers for Organic Electronics; 2.2.1 - Introduction; 2.2.2 - Rational Design of High-Performance Conjugated Polymers for PSCs; 2.2.2.1 - Backbones; 2.2.2.2 - Side Chains; 2.2.2.3 - Substitutes; 2.2.3 - Rational Design of High-Performance Conjugated Polymers for PLEDs; 2.2.3.1 - Blue Light-Emitting Polymers; 2.2.3.2 - White Light-Emitting Polymers; 2.2.3.3 - Phosphorescent Polymer Light-Emitting Materials; 2.2.4 - Rational Design of Conjugated Polymers for Electrochromic Devices; 2.2.4.1 - Backbones; 2.2.4.2 - Side Chains; 2.2.5 - Conclusions , References3 - Structure and Property of Electronic Polymers; 3.1 - Introduction; 3.2 - Aggregation Structure; 3.2.1 - Amorphous; 3.2.2 - Crystalline; 3.3 - Morphology of Assembly; 3.3.1 - Nanoparticle; 3.3.2 - Nanofiber; 3.3.3 - Solid Film; 3.3.4 - Porous Film; 3.3.5 - Polymer Gel; 3.4 - Properties; 3.4.1 - Mechanical Properties; 3.4.2 - Electronic Properties; 3.4.3 - Electrochemical Properties; 3.4.4 - Electroluminescent Properties; 3.4.5 - Electrochromic Properties; 3.4.6 - Electromechanical Properties; 3.4.7 - Stability; 3.4.8 - Biocompatibility; 3.5 - Summary; References , 4 - Electronic Polymer Composite4.1 - Synthesis; 4.1.1 - Direct Mixing; 4.1.2 - In Situ Polymerization in Inorganic Matrix; 4.1.3 - In Situ Growth of Inorganic Component in Polymer Matrix; 4.1.4 - One-Pot Synthesis; 4.1.5 - Multicomponent Preparation; 4.2 - Structure; 4.2.1 - Continuous Structure; 4.2.1.1 - Compacted Film; 4.2.1.2 - Porous; 4.2.1.3 - Layered; 4.2.2 - Separated Structure; 4.2.2.1 - Zero-Dimensional; 4.2.2.2 - One-Dimensional; 4.2.2.3 - Two-Dimensional; 4.2.2.4 - Three-Dimensional; 4.3 - Property; 4.3.1 - Mechanical Property; 4.3.2 - Electrical Property , 4.3.3 - Electrochemical Property
    Additional Edition: ISBN 0-12-811091-0
    Language: English
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  • 10
    UID:
    gbv_1843998807
    Format: 86 Seiten
    Edition: Online-Ausgabe Bei jing 2016 1 Online-Ressource Min guo tu shu shu ju ku = Early Twentieth Century Books in China, 1911-1949. tu shu ; er qi
    Original writing title: 加减乘除
    Original writing publisher: 上海 : 商务印书馆
    Content: 内分释数、四法、四法合演3篇。
    Note: Pinyin-Umschrift und Langzeichen wurden automatisiert erstellt , System requirements: Internet browser, Acrobat reader with Adobe simplified Chinese fonts.
    Language: Chinese
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