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Titlebook: Emerging Nanodielectric Materials for Energy Storage; From Bench to Field Srikanta Moharana,Duncan H. Gregory,Ram Naresh Mah Book 2024 The

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書(shū)目名稱(chēng)Emerging Nanodielectric Materials for Energy Storage
副標(biāo)題From Bench to Field
編輯Srikanta Moharana,Duncan H. Gregory,Ram Naresh Mah
視頻videohttp://file.papertrans.cn/309/308315/308315.mp4
概述Highlights processing methods for developing nanodielectric materials.Presents latest advances in energy conversion applications.Features contributions from experts in the field
叢書(shū)名稱(chēng)Nanostructure Science and Technology
圖書(shū)封面Titlebook: Emerging Nanodielectric Materials for Energy Storage; From Bench to Field Srikanta Moharana,Duncan H. Gregory,Ram Naresh Mah Book 2024 The
描述This contributed volume presents multiple techniques for the synthesis of nanodielectric materials and their composites and examines their applications in the field of energy storage. It overviews various methods for designing these materials and analyses their properties such as mechanical strength, flexibility, dielectric as well as electrical performances for end-user applications such as thin-film flexible capacitors, advanced energy storage capacitors, and supercapacitors. The book gives a special focus on examining the dielectric properties of polymer-based nanomaterials, core-shell structured nanomaterials, and graphene-based polymeric composites among others, and explains the importance of their use in the aforementioned energy storage applications. It provides a great platform for understanding and expanding technological solutions needed for global energy challenges and it is of great benefit to industry professionals, academic researchers, material scientists, engineers, graduate students, physicists, and chemists working in the area of nanodielectrics.
出版日期Book 2024
關(guān)鍵詞Nanodielectrics; Energy storage; Capacitors; Nanostructured Materials; Nanofillers; Composites; Thin Films
版次1
doihttps://doi.org/10.1007/978-3-031-40938-7
isbn_softcover978-3-031-40940-0
isbn_ebook978-3-031-40938-7Series ISSN 1571-5744 Series E-ISSN 2197-7976
issn_series 1571-5744
copyrightThe Editor(s) (if applicable) and The Author(s), under exclusive license to Springer Nature Switzerl
The information of publication is updating

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Synthesis, Microstructural and Dielectric Characterization of Nanodielectrics, materials are highly desired for advanced low-voltage operating carbon nanotube (CNT)-based TFTs and for complementary logic gates applications. Another fact is the ease of deposition of dielectric solution over plastic substrates for flexible nanoelectronic applications. Other categories of nanodi
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Role and Prospects of Polymer-Based Nanomaterials in the Dielectric World,he high energy density of the electrostatic capacitor is to tailor the features of dielectric materials. Both the ceramics and polymers were used individually in the dielectric layer of the electrostatic capacitors, while the both the individuals have some pros and cons. So, materials scientist comb
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Effect of Nanofillers-Reinforced Polymer Blends for Dielectric Applications,polymer-ceramic dielectric composites, ceramic-based dielectric composites, natural fiber-reinforced polymer composites (NFRPCs), and bio-based polymer dielectric composites. Finally, the production procedures of all of the dielectric materials discussed, as well as their key applications, have been
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Metal and Metal-Oxide-Based Polymeric Nanodielectrics for Energy Storage: Opportunities and Challenactured as high energy storage devices. Polymer nanodielectrics are a new class of materials that combine the processability, breakdown field strength, and low-loss features of polymers with the high dielectric constant of metal oxide fillers. This chapter examines this class of materials, first she
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Fluoropolymer-Based Nanodielectrics for Energy Storage Application,or a high capacitive response. This chapter will mostly stress PVDF, due to its low cost, easy availability, stability, and flexibility for enormous electrical applications. The introduction of high k dielectric materials into polymers increases their dielectric constant, energy storage density, and
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