Piezoelectric Zno Nanostructure For Energy Harvesting

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Piezoelectric ZnO Nanostructure for Energy Harvesting, Volume 1

Author : Yamin Leprince-Wang
Publisher : John Wiley & Sons
Page : 144 pages
File Size : 53,7 Mb
Release : 2015-04-13
Category : Technology & Engineering
ISBN : 9781848217188

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Piezoelectric ZnO Nanostructure for Energy Harvesting, Volume 1 by Yamin Leprince-Wang Pdf

Over the past decade, ZnO as an important II-VI semiconductor has attracted much attention within the scientific community over the world owing to its numerous unique and prosperous properties. This material, considered as a “future material”, especially in nanostructural format, has aroused many interesting research works due to its large range of applications in electronics, photonics, acoustics, energy and sensing. The bio-compatibility, piezoelectricity & low cost fabrication make ZnO nanostructure a very promising material for energy harvesting.

Nanostructured Piezoelectric Energy Harvesters

Author : Joe Briscoe,Steve Dunn
Publisher : Springer
Page : 58 pages
File Size : 42,7 Mb
Release : 2014-08-25
Category : Technology & Engineering
ISBN : 9783319096322

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Nanostructured Piezoelectric Energy Harvesters by Joe Briscoe,Steve Dunn Pdf

This book covers a range of devices that use piezoelectricity to convert mechanical deformation into electrical energy and relates their output capabilities to a range of potential applications. Starting with a description of the fundamental principles and properties of piezo- and ferroelectric materials, where applications of bulk materials are well established, the book shows how nanostructures of these materials are being developed for energy harvesting applications. The authors show how a nanostructured device can be produced, and put in context some of the approaches that are being investigated for the development of nanostructured piezoelectric energy harvesting devices, also known as nanogenerators. There is growing interest in strategies for energy harvesting that use a variety of existing and well-known materials in new morphologies or architectures. A key change of morphology to enable new functionality is the nanostructuring of a material. One area of particular interest is self-powered devices based on portable energy harvesting. The charging of personal electronic equipment and other small-scale electronic devices such as sensors is a highly demanding environment that requires innovative solutions. The output of these so-called nanogenerators is explained in terms of the requirements for self-powered applications. The authors summarise the range of production methods used for nanostructured devices, which require much lower energy inputs than those used for bulk systems, making them more environmentally friendly and also compatible with a wide range of substrate materials.

Piezoelectric ZnO Nanostructure for Energy Harvesting

Author : Yamin Leprince-Wang
Publisher : John Wiley & Sons
Page : 144 pages
File Size : 42,5 Mb
Release : 2015-03-24
Category : Technology & Engineering
ISBN : 9781119007449

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Piezoelectric ZnO Nanostructure for Energy Harvesting by Yamin Leprince-Wang Pdf

Over the past decade, ZnO as an important II-VI semiconductor has attracted much attention within the scientific community over the world owing to its numerous unique and prosperous properties. This material, considered as a “future material”, especially in nanostructural format, has aroused many interesting research works due to its large range of applications in electronics, photonics, acoustics, energy and sensing. The bio-compatibility, piezoelectricity & low cost fabrication make ZnO nanostructure a very promising material for energy harvesting.

Nanostructured Zinc Oxide

Author : Kamlendra Awasthi
Publisher : Elsevier
Page : 781 pages
File Size : 50,8 Mb
Release : 2021-08-10
Category : Technology & Engineering
ISBN : 9780128189016

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Nanostructured Zinc Oxide by Kamlendra Awasthi Pdf

Nanostructured Zinc Oxide covers the various routes for the synthesis of different types of nanostructured zinc oxide including; 1D (nanorods, nanowires etc.), 2D and 3D (nanosheets, nanoparticles, nanospheres etc.). This comprehensive overview provides readers with a clear understanding of the various parameters controlling morphologies. The book also reviews key properties of ZnO including optical, electronic, thermal, piezoelectric and surface properties and techniques in order to tailor key properties. There is a large emphasis in the book on ZnO nanostructures and their role in optoelectronics. ZnO is very interesting and widely investigated material for a number of applications. This book presents up-to-date information about the ZnO nanostructures-based applications such as gas sensing, pH sensing, photocatalysis, antibacterial activity, drug delivery, and electrodes for optoelectronics. Reviews methods to synthesize, tailor, and characterize 1D, 2D, and 3D zinc oxide nanostructured materials Discusses key properties of zinc oxide nanostructured materials including optical, electronic, thermal, piezoelectric, and surface properties Addresses most relevant zinc oxide applications in optoelectronics such as light-emitting diodes, solar cells, and sensors

Micro and Nano Energy Harvesting Technologies

Author : Bin Yang,Huicong Liu,Jingquan Liu,Chengkuo Lee
Publisher : Artech House
Page : 305 pages
File Size : 55,9 Mb
Release : 2014-12-01
Category : Technology & Engineering
ISBN : 9781608078158

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Micro and Nano Energy Harvesting Technologies by Bin Yang,Huicong Liu,Jingquan Liu,Chengkuo Lee Pdf

Seeking renewable and clean energies is essential for releasing the heavy reliance on mineral-based energy and remedying the threat of global warming to our environment. In the last decade, explosive growth in research and development efforts devoted to microelectromechanical systems (MEMS) technology and nanowires-related nanotechnology have paved a great foundation for new mechanisms of harvesting mechanical energy at the micro/nano-meter scale. MEMS-based inertial sensors have been the enabler for numerous applications associated with smart phones, tablets, and mobile electronics. This is a valuable reference for all those faced with the challenging problems created by the ever-increasing interest in MEMS and nanotechnology-based energy harvesters and their applications. This book presents fundamental physics, theoretical design, and method of modeling for four mainstream energy harvesting mechanisms -- piezoelectric, electromagnetic, electrostatic, and triboelectric. Readers are provided with a comprehensive technical review and historical view of each mechanism. The authors also present current challenges in energy harvesting technology, technical reviews, design requirements, case studies, along with unique and representative examples of energy harvester applications.

Multifunctional Nanostructured Metal Oxides for Energy Harvesting and Storage Devices

Author : Vijay B. Pawade,Paresh H. Salame,Bharat Apparao Bhanvase
Publisher : CRC Press
Page : 280 pages
File Size : 44,5 Mb
Release : 2020-05-21
Category : Business & Economics
ISBN : 9781000073201

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Multifunctional Nanostructured Metal Oxides for Energy Harvesting and Storage Devices by Vijay B. Pawade,Paresh H. Salame,Bharat Apparao Bhanvase Pdf

Metal oxide nanoparticles exhibit potential applications in energy and environmental fields, such as solar cells, fuel cells, hydrogen energy, and energy storage devices. This book covers all points from synthesis, properties, and applications of transition metal oxide nanoparticle materials in energy storage and conversion devices. Aimed at graduate-level students and researchers associated with the energy and environment sector, this book addresses the application of nontoxic and environmentally friendly metal oxide materials for a clean environment and deals with synthesis properties and application metal oxides materials for energy conversion, energy storage, and hydrogen generation.

Solution Methods for Metal Oxide Nanostructures

Author : Rajaram S. Mane,Vijaykumar Jadhav,Abdullah M. Al-Enizi
Publisher : Elsevier
Page : 448 pages
File Size : 47,7 Mb
Release : 2023-06-27
Category : Technology & Engineering
ISBN : 9780323853323

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Solution Methods for Metal Oxide Nanostructures by Rajaram S. Mane,Vijaykumar Jadhav,Abdullah M. Al-Enizi Pdf

Solution Methods for Metal Oxide Nanostructures reviews solution processes that are used for synthesizing 1D, 2D and 3D metal oxide nanostructures in either thin film or in powder form for various applications. Wet-chemical synthesis methods deal with chemical reactions in the solution phase using precursors at proper experimental conditions. Wet-chemical synthesis routes offer a high degree of controllability and reproducibility for 2D nanomaterial fabrication. Solvothermal synthesis, template synthesis, self-assembly, oriented attachment, hot-injection, and interface-mediated synthesis are the main wet-chemical synthesis routes for 2D nanomaterials. Solution Methods for Metal Oxide Nanostructures also addresses the thin film deposition metal oxides nanostructures, which plays a very important role in many areas of chemistry, physics and materials science.Each chapter includes information on a key solution method and their application in the design of metal oxide nanostructured materials with optimized properties for important applications. The pros and cons of the solution method and their significance and future scope is also discussed in each chapter. Readers are provided with the fundamental understanding of the key concepts of solution synthesis methods for fabricating materials and the information needed to help them select the appropriate method for the desired application. Reviews the most relevant wet chemical solution methods for metal oxide nanostructures, including sol-gel, solvothermal, hydrothermal, co-precipitation methods, and more Addresses thin film deposition techniques for metal oxide nanostructures, such as spray-pyrolysis, electrodeposition, spin coating and self-assembly Discusses the pros and cons of each solution method and its significance and future opportunities

ZnO and TiO2 Based Nanostructures

Author : Andrea Lamberti
Publisher : MDPI
Page : 381 pages
File Size : 46,9 Mb
Release : 2018-10-15
Category : Electronic books
ISBN : 9783038970132

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ZnO and TiO2 Based Nanostructures by Andrea Lamberti Pdf

This book is a printed edition of the Special Issue "ZnO and TiO2 Based Nanostructures" that was published in Nanomaterials

Waste Energy Harvesting

Author : Ling Bing Kong,Tao Li,Huey Hoon Hng,Freddy Boey,Tianshu Zhang,Sean Li
Publisher : Springer Science & Business Media
Page : 603 pages
File Size : 42,8 Mb
Release : 2014-03-25
Category : Technology & Engineering
ISBN : 9783642546341

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Waste Energy Harvesting by Ling Bing Kong,Tao Li,Huey Hoon Hng,Freddy Boey,Tianshu Zhang,Sean Li Pdf

Waste Energy Harvesting overviews the latest progress in waste energy harvesting technologies, with specific focusing on waste thermal mechanical energies. Thermal energy harvesting technologies include thermoelectric effect, storage through phase change materials and pyroelectric effect. Waste mechanical energy harvesting technologies include piezoelectric (ferroelectric) effect with ferroelectric materials and nanogenerators. The book aims to strengthen the syllabus in energy, materials and physics and is well suitable for students and professionals in the fields.

Hybrid Materials for Piezoelectric Energy Harvesting and Conversion

Author : S. Wazed Ali,Satyaranjan Bairagi,Shahid Ul Islam
Publisher : John Wiley & Sons
Page : 357 pages
File Size : 54,8 Mb
Release : 2024-04-25
Category : Science
ISBN : 9781394150366

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Hybrid Materials for Piezoelectric Energy Harvesting and Conversion by S. Wazed Ali,Satyaranjan Bairagi,Shahid Ul Islam Pdf

Hybrid Materials for Piezoelectric Energy Harvesting and Conversion Power small devices more efficiently and practically with these essential materials Piezoelectric energy harvesting is an increasingly widely-deployed technique to generate electricity from mechanical energy. Reliability, ease of use, and cleanliness make piezoelectric energy harvesting in small electronic devices a potentially valuable alternative to the practical challenges and waste production of disposable or even reusable batteries. However, piezoelectric materials have their own challenges, advantages, and limitations, and choosing between them is a difficult engineering problem in itself; hybrid piezoelectric materials, which can be used to compensate the weaknesses of individual piezoelectric materials (like ceramic or polymer), are the emerging solution. Hybrid Materials for Piezoelectric Energy Harvesting and Conversion offers a systematic analysis of these hybrid piezoelectric materials and their applications. Each hybrid piezoelectric material is analyzed for its fundamentals, structural requirements, and applications, and the result is a significant contribution to materials science and electronic engineering. Hybrid Materials for Piezoelectric Energy Harvesting and Conversion readers will also find: Comprehensive coverage of piezoelectric materials to provide the best fit for any set of engineering needs Detailed discussion of inorganic, organic, and hybrid piezoelectric materials Surface modification of piezoelectric filler in composite based piezoelectric materials Importance of semiconductive and conductive materials in enhancing piezoelectric response of hybrid piezoelectric materials In depth analysis of bio-based hybrid piezoelectric materials Hybrid Materials for Piezoelectric Energy Harvesting and Conversion is ideal for researchers in materials sciences, polymers, textiles, green and renewable energy, and all related fields.

Piezoelectric Energy Harvesting

Author : Alper Erturk,Daniel J. Inman
Publisher : John Wiley & Sons
Page : 377 pages
File Size : 52,5 Mb
Release : 2011-04-04
Category : Technology & Engineering
ISBN : 9781119991359

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Piezoelectric Energy Harvesting by Alper Erturk,Daniel J. Inman Pdf

The transformation of vibrations into electric energy through the use of piezoelectric devices is an exciting and rapidly developing area of research with a widening range of applications constantly materialising. With Piezoelectric Energy Harvesting, world-leading researchers provide a timely and comprehensive coverage of the electromechanical modelling and applications of piezoelectric energy harvesters. They present principal modelling approaches, synthesizing fundamental material related to mechanical, aerospace, civil, electrical and materials engineering disciplines for vibration-based energy harvesting using piezoelectric transduction. Piezoelectric Energy Harvesting provides the first comprehensive treatment of distributed-parameter electromechanical modelling for piezoelectric energy harvesting with extensive case studies including experimental validations, and is the first book to address modelling of various forms of excitation in piezoelectric energy harvesting, ranging from airflow excitation to moving loads, thus ensuring its relevance to engineers in fields as disparate as aerospace engineering and civil engineering. Coverage includes: Analytical and approximate analytical distributed-parameter electromechanical models with illustrative theoretical case studies as well as extensive experimental validations Several problems of piezoelectric energy harvesting ranging from simple harmonic excitation to random vibrations Details of introducing and modelling piezoelectric coupling for various problems Modelling and exploiting nonlinear dynamics for performance enhancement, supported with experimental verifications Applications ranging from moving load excitation of slender bridges to airflow excitation of aeroelastic sections A review of standard nonlinear energy harvesting circuits with modelling aspects.

Nanobatteries and Nanogenerators

Author : Huaihe Song,Rajendran Venkatachalam,Tuan Anh Nguyen,Hao Bin Wu,Phuong Nguyen Tri
Publisher : Elsevier
Page : 682 pages
File Size : 51,6 Mb
Release : 2020-11-21
Category : Technology & Engineering
ISBN : 9780128215494

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Nanobatteries and Nanogenerators by Huaihe Song,Rajendran Venkatachalam,Tuan Anh Nguyen,Hao Bin Wu,Phuong Nguyen Tri Pdf

The term ‘nanobattery’ can refer not only to the nanosized battery, but also to the uses of nanotechnology in a macro-sized battery for enhancing its performance and lifetime. Nanobatteries can offer many advantages over the traditional battery, including higher power density, shorter charging time, and longer shelf life. Nano-generators refer to the uses of nanosized devices and materials to convert mechanical, thermal and light-based energies into electricity. Similar to with traditional battery, in nanobatteries, the chemical energy is converted into electricity. This book addresses the fundamental design concepts and promising applications of nanobatteries and nanogenerators. Particular application areas include healthcare, biomedical, smart nanodevices and nanosensors, which may require new electric power sources, including self-powered ability and nanostructured electric power sources. In this regard, nanobatteries and nanogenerators represent the next generation of electric power. This is an important reference source for materials scientists, engineers and energy scientists, who are looking to increase their understanding of how nanotechnology is being used to create new energy storage and generation solutions. Outlines the major design and fabrication principles and techniques for creating nano-sized batteries and generators Demonstrates how nanotechnology is being used to make batteries and generators more powerful and longer lasting Assesses the challenges of mass manufacturing nanobatteries and nanogenerators

Novel Applications of Piezoelectric and Thermoelectric Materials

Author : Rafael Vargas-Bernal,Roberto Palma Guerrero
Publisher : BoD – Books on Demand
Page : 168 pages
File Size : 48,9 Mb
Release : 2024-01-31
Category : Science
ISBN : 9781837683963

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Novel Applications of Piezoelectric and Thermoelectric Materials by Rafael Vargas-Bernal,Roberto Palma Guerrero Pdf

Piezoelectric and thermoelectric materials represent emerging cutting-edge technological materials for energy harvesting for high-value-added applications. Although these materials have been exhaustively exploited for decades, researchers around the world continue to find technological and scientific innovations that must be disseminated to the engineers of yesterday, today, and tomorrow. Piezoelectric materials, through mechanical stresses applied to them, are capable of generating electricity, while thermoelectric materials are capable of producing electricity thanks to the heat applied to them. Therefore, the direct application of these materials is in energy harvesting, which, together with the reduction of materials, leads them to portable and wearable functional applications. The purpose of this work is to disseminate some of the latest scientific and technological advances by different researchers around the world in the development of devices and applications based on these materials. The book compiles state-of-the-art fundamentals, current uses, as well as emerging applications of piezoelectric and thermoelectric materials. It is a source of inspiration for continued scientific research on the commercial, industrial, and military applications of these materials. Furthermore, it is a valuable and informative resource for undergraduate and graduate students, as well as experts and researchers in the field.

Nanostructured Semiconductors

Author : Serge Zhuiykov
Publisher : Woodhead Publishing
Page : 568 pages
File Size : 54,6 Mb
Release : 2018-01-02
Category : Technology & Engineering
ISBN : 9780081019207

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Nanostructured Semiconductors by Serge Zhuiykov Pdf

Nanostructured Semiconductors focuses on the development of semiconductor nanocrystals, their technologies and applications, including energy harvesting, solar cells, solid oxide fuel cells, and chemical sensors. Semiconductor oxides are used in electronics, optics, catalysts, sensors, and other functional devices. In their 2D form, the reduction in size confers exceptional properties, useful for creating faster electronics and more efficient catalysts. Since the first edition of the book, there has been significant progress in the development of new functional nanomaterials with unique and sometimes unpredictable quantum-confined properties within the class what it called two-dimensional (2D) semiconductors. These nanocrystals represent extremely thin nano-structures with thickness of just few nano-meters. Since that time, not only were 2D semiconductor oxides further developed, more importantly, 2D metal dichalcogenides, such as MoS2, MoSe2, WS2, WSe2 and others also progressed significantly in their development demonstrating their superior properties compared to their bulk and microstructural counterparts. The book has been expanded to include these advancements. The book begins with the structure and properties of semiconductor nanocrystals (chapter 1), addresses electronic device applications (chapter 2), discusses 2-Dimensional oxides and dichalcogenide semiconductors (chapters 3 through 5), and ends with energy, environment, and bio applications (chapters 6 through 8). Focuses on the development of semiconductor nanocrystals and their technologies and applications, including energy harvesting, solar cells, solid oxide fuel cells and chemical sensors Include other 2D materials, such as dichalcogenides to present a comprehensive resource on the latest advancements in nanostructured semiconductors Reviews the fundamental physics of conductivity and electron arrangement before proceeding to practical applications Contains a unique chapter dedicated to the new atomic layer deposition (ALD) technique which has the ability to develop 2D nanostructures with great precision

Piezoelectric Nanomaterials for Biomedical Applications

Author : Gianni Ciofani,Arianna Menciassi
Publisher : Springer Science & Business Media
Page : 250 pages
File Size : 52,9 Mb
Release : 2012-03-31
Category : Technology & Engineering
ISBN : 9783642280443

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Piezoelectric Nanomaterials for Biomedical Applications by Gianni Ciofani,Arianna Menciassi Pdf

Nanoscale structures and materials have been explored in many biological applications because of their novel and impressive physical and chemical properties. Such properties allow remarkable opportunities to study and interact with complex biological processes. This book analyses the state of the art of piezoelectric nanomaterials and introduces their applications in the biomedical field. Despite their impressive potentials, piezoelectric materials have not yet received significant attention for bio-applications. This book shows that the exploitation of piezoelectric nanoparticles in nanomedicine is possible and realistic, and their impressive physical properties can be useful for several applications, ranging from sensors and transducers for the detection of biomolecules to “sensible” substrates for tissue engineering or cell stimulation.