NANOMATERIALS SYNTHESIS : DESIGN, FABRICATION AND APPLICATIONS /

Nanomaterials (NMs) have gained eminence in technological advances due to their tunable physical, chemical and biological properties with enhanced performance over their bulk counterparts. The NMs are categorized according to their size, composition, shape and origin. The ability to predict unique N...

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Автори: Sahay, Rahul, contributor 642499, Reddy, Venugopal Jayarama, contributor 642500, Ramakrishna, Seeram, contributor 196389, Namdari, Pooria, contributor 642501, Daraee, Hadis, contributor 642502, Eatemadi, Ali, contributor 642503, Chang, Shu-quan, contributor 642504, Kang, Bin, contributor 642505, Dai, Yao-dong, contributor 642506, Zhang, Hong-xu, contributor 642507, Chen, Da, contributor 642508, Khan, Aslam, contributor 642509, Malik, Ashraf, contributor 642510, Parveen, Shadma, contributor 642511, Ahamad, Tansir, contributor 642512, Alshehri, Saad M., contributor 642514, Singh, Prabal Kumar, contributor 642515, Nishat, Nahid, contributor 642516, Santiago, A. A., contributor 642517, Vargas, J., contributor 642518, Cruz-Morales, Jorge A., contributor 642519, Tlenkopatchev, M. A., contributor 642520, Gavino, R., contributor 642521, Malkanduev, Yu. A., contributor 642522, Sivov, N. A., contributor 642523, Demirelli, Kadir, contributor 642524, Bezgin, Feride, contributor 642525, Kizuka, Kanzunori, contributor 642527, Inoue, Shin-Inchi, contributor 642528, Ariga, Katsuhiko, 1962-, contributor 451466, Ji, Qingmin, contributor 642529, Hill, Jonathan P., contributor 642530, Bando, Yoshio, contributor 642531, Aono, Masakazu, contributor 642532, Tanaka, Kazuo, contributor 642533, Chujo, Yoshiki, contributor 642534
Формат:
Мова:eng
Опубліковано: United Kingdom : Koros Press Limited, 2021
Предмети:
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author Sahay, Rahul, contributor 642499
Reddy, Venugopal Jayarama, contributor 642500
Ramakrishna, Seeram, contributor 196389
Namdari, Pooria, contributor 642501
Daraee, Hadis, contributor 642502
Eatemadi, Ali, contributor 642503
Chang, Shu-quan, contributor 642504
Kang, Bin, contributor 642505
Dai, Yao-dong, contributor 642506
Zhang, Hong-xu, contributor 642507
Chen, Da, contributor 642508
Khan, Aslam, contributor 642509
Malik, Ashraf, contributor 642510
Parveen, Shadma, contributor 642511
Ahamad, Tansir, contributor 642512
Alshehri, Saad M., contributor 642514
Singh, Prabal Kumar, contributor 642515
Nishat, Nahid, contributor 642516
Santiago, A. A., contributor 642517
Vargas, J., contributor 642518
Cruz-Morales, Jorge A., contributor 642519
Tlenkopatchev, M. A., contributor 642520
Gavino, R., contributor 642521
Malkanduev, Yu. A., contributor 642522
Sivov, N. A., contributor 642523
Demirelli, Kadir, contributor 642524
Bezgin, Feride, contributor 642525
Kizuka, Kanzunori, contributor 642527
Inoue, Shin-Inchi, contributor 642528
Ariga, Katsuhiko, 1962-, contributor 451466
Ji, Qingmin, contributor 642529
Hill, Jonathan P., contributor 642530
Bando, Yoshio, contributor 642531
Aono, Masakazu, contributor 642532
Tanaka, Kazuo, contributor 642533
Chujo, Yoshiki, contributor 642534
author_facet Sahay, Rahul, contributor 642499
Reddy, Venugopal Jayarama, contributor 642500
Ramakrishna, Seeram, contributor 196389
Namdari, Pooria, contributor 642501
Daraee, Hadis, contributor 642502
Eatemadi, Ali, contributor 642503
Chang, Shu-quan, contributor 642504
Kang, Bin, contributor 642505
Dai, Yao-dong, contributor 642506
Zhang, Hong-xu, contributor 642507
Chen, Da, contributor 642508
Khan, Aslam, contributor 642509
Malik, Ashraf, contributor 642510
Parveen, Shadma, contributor 642511
Ahamad, Tansir, contributor 642512
Alshehri, Saad M., contributor 642514
Singh, Prabal Kumar, contributor 642515
Nishat, Nahid, contributor 642516
Santiago, A. A., contributor 642517
Vargas, J., contributor 642518
Cruz-Morales, Jorge A., contributor 642519
Tlenkopatchev, M. A., contributor 642520
Gavino, R., contributor 642521
Malkanduev, Yu. A., contributor 642522
Sivov, N. A., contributor 642523
Demirelli, Kadir, contributor 642524
Bezgin, Feride, contributor 642525
Kizuka, Kanzunori, contributor 642527
Inoue, Shin-Inchi, contributor 642528
Ariga, Katsuhiko, 1962-, contributor 451466
Ji, Qingmin, contributor 642529
Hill, Jonathan P., contributor 642530
Bando, Yoshio, contributor 642531
Aono, Masakazu, contributor 642532
Tanaka, Kazuo, contributor 642533
Chujo, Yoshiki, contributor 642534
author_sort Sahay, Rahul, contributor 642499
collection OCEAN
description Nanomaterials (NMs) have gained eminence in technological advances due to their tunable physical, chemical and biological properties with enhanced performance over their bulk counterparts. The NMs are categorized according to their size, composition, shape and origin. The ability to predict unique NM properties increases the value of each classification. Due to the increase in the production of NMs and their industrial applications, toxic issues are inevitable. Nanoparticles (NPs) and nanostructured materials (NSMs) represent an active research area and a fully-fledged techno-economic sector in many applications. NPs and NSMs have gained prominence in technological advancements due to their tunable physicochemical characteristics such as melting point, wettability, electrical and thermal conductivity, catalytic activity, light absorption and scattering resulting in enhanced performance over their bulk counterparts. Nanocomposites have attracted a huge amount of interest due to their improved mechanical properties, dimensional stability, thermal/chemical stability, and electrical conductivity. Nanostructures are found to be of great significance because of their inherent properties such as large surface area to volume ratio and the engineered properties such as porosity, stability, and permeability. Composite material can achieve multifunctionality by combining the relevant, desirable features of different materialstoform anewmaterialhavinga broad spectrum of desired properties. These properties include liquid/gas sensing, self-repair nano/microstructure, catalysis initiator/inhibitor, as well as biomedical engineering. In this book, the nano/microcomposites are critically analyzed against the combination of functionalities i.e. mechanical, optical, chemical, electrical, and thermal properties.
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spelling KOHA-OAI-TEST:6003442022-08-24T09:09:25ZNANOMATERIALS SYNTHESIS : DESIGN, FABRICATION AND APPLICATIONS / Sahay, Rahul, contributor 642499 Reddy, Venugopal Jayarama, contributor 642500 Ramakrishna, Seeram, contributor 196389 Namdari, Pooria, contributor 642501 Daraee, Hadis, contributor 642502 Eatemadi, Ali, contributor 642503 Chang, Shu-quan, contributor 642504 Kang, Bin, contributor 642505 Dai, Yao-dong, contributor 642506 Zhang, Hong-xu, contributor 642507 Chen, Da, contributor 642508 Khan, Aslam, contributor 642509 Malik, Ashraf, contributor 642510 Parveen, Shadma, contributor 642511 Ahamad, Tansir, contributor 642512 Alshehri, Saad M., contributor 642514 Singh, Prabal Kumar, contributor 642515 Nishat, Nahid, contributor 642516 Santiago, A. A., contributor 642517 Vargas, J., contributor 642518 Cruz-Morales, Jorge A., contributor 642519 Tlenkopatchev, M. A., contributor 642520 Gavino, R., contributor 642521 Malkanduev, Yu. A., contributor 642522 Sivov, N. A., contributor 642523 Demirelli, Kadir, contributor 642524 Bezgin, Feride, contributor 642525 Kizuka, Kanzunori, contributor 642527 Inoue, Shin-Inchi, contributor 642528 Ariga, Katsuhiko, 1962-, contributor 451466 Ji, Qingmin, contributor 642529 Hill, Jonathan P., contributor 642530 Bando, Yoshio, contributor 642531 Aono, Masakazu, contributor 642532 Tanaka, Kazuo, contributor 642533 Chujo, Yoshiki, contributor 642534 United Kingdom : Koros Press Limited,2021©2021engNanomaterials (NMs) have gained eminence in technological advances due to their tunable physical, chemical and biological properties with enhanced performance over their bulk counterparts. The NMs are categorized according to their size, composition, shape and origin. The ability to predict unique NM properties increases the value of each classification. Due to the increase in the production of NMs and their industrial applications, toxic issues are inevitable. Nanoparticles (NPs) and nanostructured materials (NSMs) represent an active research area and a fully-fledged techno-economic sector in many applications. NPs and NSMs have gained prominence in technological advancements due to their tunable physicochemical characteristics such as melting point, wettability, electrical and thermal conductivity, catalytic activity, light absorption and scattering resulting in enhanced performance over their bulk counterparts. Nanocomposites have attracted a huge amount of interest due to their improved mechanical properties, dimensional stability, thermal/chemical stability, and electrical conductivity. Nanostructures are found to be of great significance because of their inherent properties such as large surface area to volume ratio and the engineered properties such as porosity, stability, and permeability. Composite material can achieve multifunctionality by combining the relevant, desirable features of different materialstoform anewmaterialhavinga broad spectrum of desired properties. These properties include liquid/gas sensing, self-repair nano/microstructure, catalysis initiator/inhibitor, as well as biomedical engineering. In this book, the nano/microcomposites are critically analyzed against the combination of functionalities i.e. mechanical, optical, chemical, electrical, and thermal properties.Includes references and index.Nanomaterials (NMs) have gained eminence in technological advances due to their tunable physical, chemical and biological properties with enhanced performance over their bulk counterparts. The NMs are categorized according to their size, composition, shape and origin. The ability to predict unique NM properties increases the value of each classification. Due to the increase in the production of NMs and their industrial applications, toxic issues are inevitable. Nanoparticles (NPs) and nanostructured materials (NSMs) represent an active research area and a fully-fledged techno-economic sector in many applications. NPs and NSMs have gained prominence in technological advancements due to their tunable physicochemical characteristics such as melting point, wettability, electrical and thermal conductivity, catalytic activity, light absorption and scattering resulting in enhanced performance over their bulk counterparts. Nanocomposites have attracted a huge amount of interest due to their improved mechanical properties, dimensional stability, thermal/chemical stability, and electrical conductivity. Nanostructures are found to be of great significance because of their inherent properties such as large surface area to volume ratio and the engineered properties such as porosity, stability, and permeability. Composite material can achieve multifunctionality by combining the relevant, desirable features of different materialstoform anewmaterialhavinga broad spectrum of desired properties. These properties include liquid/gas sensing, self-repair nano/microstructure, catalysis initiator/inhibitor, as well as biomedical engineering. In this book, the nano/microcomposites are critically analyzed against the combination of functionalities i.e. mechanical, optical, chemical, electrical, and thermal properties.NanotechnologyNanoparticlesURN:ISBN:9781789223309
spellingShingle Nanotechnology
Nanoparticles
Sahay, Rahul, contributor 642499
Reddy, Venugopal Jayarama, contributor 642500
Ramakrishna, Seeram, contributor 196389
Namdari, Pooria, contributor 642501
Daraee, Hadis, contributor 642502
Eatemadi, Ali, contributor 642503
Chang, Shu-quan, contributor 642504
Kang, Bin, contributor 642505
Dai, Yao-dong, contributor 642506
Zhang, Hong-xu, contributor 642507
Chen, Da, contributor 642508
Khan, Aslam, contributor 642509
Malik, Ashraf, contributor 642510
Parveen, Shadma, contributor 642511
Ahamad, Tansir, contributor 642512
Alshehri, Saad M., contributor 642514
Singh, Prabal Kumar, contributor 642515
Nishat, Nahid, contributor 642516
Santiago, A. A., contributor 642517
Vargas, J., contributor 642518
Cruz-Morales, Jorge A., contributor 642519
Tlenkopatchev, M. A., contributor 642520
Gavino, R., contributor 642521
Malkanduev, Yu. A., contributor 642522
Sivov, N. A., contributor 642523
Demirelli, Kadir, contributor 642524
Bezgin, Feride, contributor 642525
Kizuka, Kanzunori, contributor 642527
Inoue, Shin-Inchi, contributor 642528
Ariga, Katsuhiko, 1962-, contributor 451466
Ji, Qingmin, contributor 642529
Hill, Jonathan P., contributor 642530
Bando, Yoshio, contributor 642531
Aono, Masakazu, contributor 642532
Tanaka, Kazuo, contributor 642533
Chujo, Yoshiki, contributor 642534
NANOMATERIALS SYNTHESIS : DESIGN, FABRICATION AND APPLICATIONS /
title NANOMATERIALS SYNTHESIS : DESIGN, FABRICATION AND APPLICATIONS /
title_full NANOMATERIALS SYNTHESIS : DESIGN, FABRICATION AND APPLICATIONS /
title_fullStr NANOMATERIALS SYNTHESIS : DESIGN, FABRICATION AND APPLICATIONS /
title_full_unstemmed NANOMATERIALS SYNTHESIS : DESIGN, FABRICATION AND APPLICATIONS /
title_short NANOMATERIALS SYNTHESIS : DESIGN, FABRICATION AND APPLICATIONS /
title_sort nanomaterials synthesis design fabrication and applications
topic Nanotechnology
Nanoparticles
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