Produktbild: Bioinspired and Biomimetic Materials
Neu

Bioinspired and Biomimetic Materials Versatile Applications

272,99 €

inkl. gesetzl. MwSt., Versandkostenfrei


Beschreibung

Produktdetails

Einband

Gebundene Ausgabe

Erscheinungsdatum

17.08.2026

Herausgeber

Divya Bajpai Tripathy + weitere

Verlag

John Wiley & Sons

Seitenzahl

560

Sprache

Englisch

ISBN

978-1-394-30361-8

Beschreibung

Produktdetails

Einband

Gebundene Ausgabe

Erscheinungsdatum

17.08.2026

Herausgeber

Verlag

John Wiley & Sons

Seitenzahl

560

Sprache

Englisch

ISBN

978-1-394-30361-8

Herstelleradresse

Libri GmbH
Europaallee 1
36244 Bad Hersfeld
DE

Email: gpsr@libri.de

Noch keine Bewertungen vorhanden

Verfassen Sie die erste Bewertung zu diesem Artikel

Helfen Sie anderen Kundinnen und Kunden durch Ihre Meinung.

Kundinnen und Kunden meinen

Bewertungen (0)

Die Leseprobe wird geladen.
  • Produktbild: Bioinspired and Biomimetic Materials
  • Preface xxi

    1 Introduction to Bioinspired and Biomimetic Materials 1
    Manvi Karayat, Ritam Mondal, Deepika Paliwal, Aman Thakur and Saurabh Srivasatva

    1.1 Introduction 2
    1.2 Historical Overview 11
    1.3 Properties and Mechanism 17
    1.4 Conclusion 30

    2 Biomimicry: Learning from Nature to Innovate a Sustainable Future 39
    Diptee Mitra, Nishant Shekhar, Ashlesha P. Kawale, Ramesh Chandra, Arti Srivastava, M.K. Bharty and Mamata Singh

    2.1 Introduction to Biomimicry 40
    2.2 Principle of Biomimicry 41
    2.3.1 Biological Inspiration in Explosives Detection 44
    2.4 Exploring Biomimicry in Self-Healing 52
    2.5 Insights on Biomimicry for Sustainable Business Practices 52
    2.6 Exploring the Role of Biomimicry in STEM Education 55
    2.7 Mimicking Natural Processes 59
    2.8 Bio-Inspired Design Strategies 60
    2.9 The Future of Biomimicry 68
    2.10 Conclusion 71

    3 Innovative Biomaterials: Bridging Nature and Technology for Enhanced Performance 79
    Ashlesha P. Kawale, Nishant Shekhar, Arti Srivastava, S.Y. Bodkhe and Dinesh Kumar Mishra

    3.1 Introduction 80
    3.2 Definition and History 82
    3.3 Biomimetic Materials in Structural Engineering 83
    3.4 Nature-Inspired Lightweight Designs 91
    3.5 Composite Materials Inspired by Nacre 91
    3.6 Self-Healing Materials 92
    3.7 Biomimetic Applications in Concrete and Coatings 95
    3.8 Architectural Applications 97
    3.9 Conclusion 98

    4 Biomimicry in Material Science 111
    Mansi Sharma, Ashutosh Kumar and Usha Chahal

    4.1 Introduction 111
    4.2 Material Synthesis and Fabrication 118
    4.3 Nanotechnology and Biomimicry 123
    4.4 Smart Materials and Responsive Surfaces 128
    4.5 Conclusion and Future Perceptive 130

    5 Bioinspired Materials in Medicine 139
    Manvi Karayat, Deepika Paliwal, Niranjan Kaushik, Aman Thakur and Sathvik Belagodu Sridhar

    5.1 Introduction 140
    5.2 Application of Bioinspired Materials 141
    5.3 Tissue Engineering and Regenerative Medicine 159
    5.4 Bioinspired Medical Devices 173

    6 Bioinspired Energy Technologies 187
    Ashutosh Kumar, Mansi Sharma and Satya Prakash Singh

    6.1 Introduction 188
    6.2 Energy-Harvesting Technologies 189
    6.3 Bioinspired Energy Conversion 199
    6.4 Energy-Storage Technology 203
    6.5 Sustainability and Environmental Impact 205
    6.6 Conclusions 207

    7 Bioinspired Materials in Energy Technologies 215
    Nidhi Puri and Shikha Kumari

    7.1 Introduction 216
    7.2 Energy Harvesting from Nature 218
    7.3 Bioinspired Solar Cells 223
    7.4 Energy Storage and Batteries 226
    7.5 Conclusion 230

    8 Biomimicry for Environmental Sustainability and Climate Resilience: A Nature-Inspired Innovation for a Greener Future 239
    Sayantika Chanda

    8.1 Introduction 240
    8.2 Role of Biomimicry in Developing Eco-Friendly Materials 243
    8.3 Biomimicry-Based Materials 248
    8.4 Biomimicry in Pollution Remediation 256
    8.5 Solutions Using Biomimicry to Address Global Environmental Issues 259
    8.6 Case Studies in Biomimicry for Sustainable Design 262
    8.7 Discussion 265
    8.8 Conclusion 267

    9 Bioinspired Materials in Aerospace and Transportation 275
    Mansi Sharma, Parminder Singh and Vishal Sharma

    9.1 Introduction 276
    9.2 Aerodynamics and Wing Design 282
    9.3 Light Weight Material in Vehicles 286
    9.4 Bioinspired Materials in Space Exploration 288
    9.5 Conclusions and Future Aspects 292

    10 Biomaterials in Communication System 301
    Irfan Ansari, Shikha Yadav and Sarad Pawar Naik Bukke

    10.1 Introduction 302
    10.2 Fundamentals of Communication System 303
    10.3 Biomimicry and Bioinspired Design in Communication 308
    10.4 Biological Inspiration for Antenna 312
    10.5 Biomaterials for Signal Transmission 316xii Contents
    10.6 Energy-Harvesting Biomaterials 320
    10.7 Bioinspired Sensors and Receivers 323
    10.8 Biomaterials for Signal Processing 327
    10.9 Real-World Applications 330
    10.10 Future Perspective of Biomaterials 333
    10.11 Sustainability and Environmental Impact 336
    10.12 Ethical and Societal Implication 341

    11 Biomaterials in Architecture and Construction 355
    Shatrudhan Prajapati, Shikha Yadav and Sarad Pawar Naik Bukke

    11.1 Introduction to Biomaterials in Architecture and Construction 356
    11.2 Natural Materials and Traditional Building Techniques 357
    11.3 Mechanical and Thermal Characteristics of Buildings and Architecture 372
    11.4 Sustainability and Environmental Impact 374
    11.5 Biomimicry and Architectural Inspiration 377
    11.6 Wood and Timber as Biomaterials 380
    11.7 Plant-Based Biomaterials 381
    11.8 Biophilic Design and Aesthetic Appeal 384
    11.9 Applications in Architecture and Construction 386
    11.10 Advances in Sustainable Concrete 386
    11.11 Energy-Efficient Biomaterials 388
    11.12 Challenges and Future Directions 389
    11.13 Future Directions 391
    11.14 Sustainability and Environmental Impact 393

    12 Ethical and Environmental Considerations in Biomimicry 409
    Shikha Chaudhary, Aman Sisodia, Shaweta Sharma, Yashika Singh, S.K. Abdul, Rahaman and Awaneet Kaur

    12.1 Introduction 410
    12.2 Origins of Biomimicry 411
    12.3 Development of Biomimicry 412
    12.4 Interdisciplinary Collaborations 415xvi Contents
    12.5 Case Studies 416
    12.6 Environmental Ethics 418
    12.7 Social Ethics 419
    12.8 Intellectual Property 420
    12.9 Ethical Use of Technology 420
    12.10 Environmental Implications 422
    12.11 Sustainability 422
    12.12 Principles of Sustainability 423
    12.13 Social Sustainability 423
    12.14 Principles of Responsible Innovation 423Contents xvii
    12.15 Importance of Responsible Innovation 425
    12.16 Environmental Sustainability 426
    12.17 Practical Applications of Responsible Innovation 426
    12.18 Future Directions and Challenges in Biomimicry 427
    12.19 Challenges in Biomimicry 428
    12.20 Future Trends in Bioinspired Material Research 429
    12.21 Cross-Disciplinary Collaboration 431
    12.22 Cross-Disciplinary Approaches 432
    12.23 Cross-Disciplinary Collaboration in Biomimicry 433
    12.24 Role of Artificial Intelligence in Biomimicry 433

    13 Bioinspired Future Batteries 443
    Vinamrita Singh and Rahul Singhal

    13.1 Introduction to Bioinspired Future Batteries 443
    13.2 Biological Systems as Inspiration 445
    13.3 Principles of Bioinspired Battery Design 447
    13.4 Biomimetic Materials for Batteries 452
    13.5 Bioinspired Energy Storage and Performance Evaluation 461
    13.6 Challenges and Future Directions 468

    14 Biomimicry in Robotics and Automation 475
    Anushka Sharma, Awaneet Kaur, Pranav Gupta, Himani Pandey, Debashish Paramanick, Shikha Chaudhary, Parakh Basist and Abdulsalam Alhalmi

    14.1 Introduction 476
    14.2 Design of Biomimetic Robots 477
    14.3 Bioinspired Sensing and Actuation 481
    14.4 Application in Industrial Automation 486

    15 Biomimetic Robotics: A New Paradigm for Industrial Automation 495
    Jyoti Bhatt, Lovlish Gupta and Divya Bajpai Tripathy

    15.1 Introduction 496
    15.2 Biomimetic Robot Design 503
    15.3 Bioinspired Sensing and Actuation 507
    15.4 Actuation Methodologies 514
    15.5 Applications and Future Outlook 519
    15.6 Conclusion 521

    References 522
    Index 529