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Titlebook: Nanomaterials for Advanced Technologies; Jitendra Kumar Katiyar,Vinay Panwar,Neha Ahlawat Book 2022 The Editor(s) (if applicable) and The

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书目名称Nanomaterials for Advanced Technologies
编辑Jitendra Kumar Katiyar,Vinay Panwar,Neha Ahlawat
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概述Highlights simulation methodologies to aid experimental techniques in creating desired nanomaterials.Presents the synthesis of size-dependent electronic, optical, and magnetic properties of nanomateri
图书封面Titlebook: Nanomaterials for Advanced Technologies;  Jitendra Kumar Katiyar,Vinay Panwar,Neha Ahlawat Book 2022 The Editor(s) (if applicable) and The
描述This book presents experimental as well as simulation methodologies for analysis and development of nanostructures for introducing the desirable effects through modifications in the basic structure of select nanomaterials. The initial chapters in this book focus on exploring the basic aspects of nanomaterials, e.g., distinguishing features, synthesis, processing, characterization, simulation and application dimensions, or nanostructures that enable novel/enhanced properties or functions. The chapters also cover the size-dependent electronic, optical, and magnetic properties of nanomaterials in exposing the specific properties essential for applications in nanophotonics, nanoplasmonics, nanosystems (e.g., biological, medical, chemical, catalytic, energy, and environmental applications), and nanodevices (e.g., electronic, photonic, magnetic, imaging, diagnostic, and sensor applications). This book is a useful resource for students, researchers, and technologists in gathering recent knowledge on novel nanostructures and their use in different application areas..
出版日期Book 2022
关键词Novel nanomaterials; Nanostructures; Nanodevices; Sensors and actuators; Energy storage and harvesting; N
版次1
doihttps://doi.org/10.1007/978-981-19-1384-6
isbn_softcover978-981-19-1386-0
isbn_ebook978-981-19-1384-6
copyrightThe Editor(s) (if applicable) and The Author(s), under exclusive license to Springer Nature Singapor
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Nanomaterials for Light Harvesting, the use of non-renewable, limited stock, greenhouse gas-emitting fuels. Therefore, the present-day energy research is heavily dedicated to mimicking the natural photosynthesis processes in the laboratory by employing synthetic nanocatalyst and modern reaction setups. In this chapter, we discussed t
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Transparent Conductive Oxide Nanolayers for Dye-sensitized Solar Cell, prospects. The DSSC system comprises of a transparent conductive oxide (TCO) layer coated over a substrate, semiconductive oxide (SCO) film, dye, electrolyte and platinized counter electrode, respectively. The cutting-edge technology involved makes the DSSC distinct from other photovoltaic cell but
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,Nanomaterials’ Architectural Study in Perovskite Solar Cells, solar cells (PSCs), to yield higher solar absorbance enhancement. The selection of the material of nanoparticle employed within the film is proportional to the enhancement factor of the PSC. Study reveals that the copper nanoparticles produce at par absorbance to other conventional metals such as g
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Nanoparticles and Their Role in Environmental Decontamination Technologies,cumulated in the environment. Both organic and inorganic contaminants are harmful to the living being. Their incidence and persistence have increased substantially in recent years. For the remediation of impurities from diverse ecological media such as water, soil, and air, ecological decontaminatio
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Thermoelastic Vibrations of Functionally Graded Nonuniform Nanobeams,cal models for advanced composite materials, macro and micro/nano continuum mechanics theories and thermal field are presented. To study the dynamic behaviour of structural elements, a mathematical model is obtained for nonuniform functionally graded nanobeam subjected to the thermal environment usi
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