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Sustainable supercapacitors = next-g...
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Ahamed, M. Basheer.
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Sustainable supercapacitors = next-generation of green energy storage devices /
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
Sustainable supercapacitors/ edited by Basheer Ahamed and Chaudhary Mustansar Hussain.
其他題名:
next-generation of green energy storage devices /
其他作者:
Ahamed, M. Basheer.
出版者:
Hoboken, NJ :John Wiley & Sons ; : 2025.,
面頁冊數:
1 online resource (375 p.) :ill.
標題:
Supercapacitors. -
電子資源:
https://onlinelibrary.wiley.com/doi/book/10.1002/9781394237920
ISBN:
9781394237920
Sustainable supercapacitors = next-generation of green energy storage devices /
Sustainable supercapacitors
next-generation of green energy storage devices /[electronic resource] :edited by Basheer Ahamed and Chaudhary Mustansar Hussain. - 1st ed. - Hoboken, NJ :John Wiley & Sons ;2025. - 1 online resource (375 p.) :ill.
Includes bibliographical references and index.
Flexible sustainable supercapacitors /S. Siva Shalini [and others] --
The requirement for energy-storing devices that can handle the necessary power for modern day electronic systems and the miniaturization of electronic devices, has sparked the evolution of energy-storing devices in their most portable forms. Integration of mini- or micro-powering devices with tiny electronic devices has led to the simultaneous evolution of nanomaterials and, correspondingly, nanotechnology. The nanotechnology evolution has provided the control and ability to restructure matter at the atomic and molecular levels on a scale of l-100 nm. Nanotechnology primarily aims to create materials, devices, and systems that exhibit fundamentally new properties and functions. As such, nanotechnology and functionalized nanomaterials have proven to be the ultimate frontier in the production of novel materials that have manufacturing longevity and cost-efficiency. The integration of nanotechnology to produce functionalized nanomaterials and energy storage from electrochemical principles has established a new platform for science and technology. The integration of two technologies does not compromise their fundamentals and principles, but instead results in novel and high-performance supercapacitors.
ISBN: 9781394237920Subjects--Topical Terms:
1529939
Supercapacitors.
LC Class. No.: TK7872.C65 / S87 2025
Dewey Class. No.: 621.31/5
Sustainable supercapacitors = next-generation of green energy storage devices /
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Flexible sustainable supercapacitors /
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Green supercapacitors /
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Materials for sustainable supercapacitors /
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Electronics and communication applications /
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Umesh V. Shembade [and others] --
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Energy storage breakthroughs: supercapacitors in healthcare applications /
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Jyoti Prakash Das [and others] --
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Cyclic stability and capacitance retention of MXene-based supercapacitors /
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Muhammad Akmal Kosnan [and others] --
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Current status of sustainable supercapacitors /
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Umesh V. Shembade [and others].
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The requirement for energy-storing devices that can handle the necessary power for modern day electronic systems and the miniaturization of electronic devices, has sparked the evolution of energy-storing devices in their most portable forms. Integration of mini- or micro-powering devices with tiny electronic devices has led to the simultaneous evolution of nanomaterials and, correspondingly, nanotechnology. The nanotechnology evolution has provided the control and ability to restructure matter at the atomic and molecular levels on a scale of l-100 nm. Nanotechnology primarily aims to create materials, devices, and systems that exhibit fundamentally new properties and functions. As such, nanotechnology and functionalized nanomaterials have proven to be the ultimate frontier in the production of novel materials that have manufacturing longevity and cost-efficiency. The integration of nanotechnology to produce functionalized nanomaterials and energy storage from electrochemical principles has established a new platform for science and technology. The integration of two technologies does not compromise their fundamentals and principles, but instead results in novel and high-performance supercapacitors.
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https://onlinelibrary.wiley.com/doi/book/10.1002/9781394237920
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