Triboelectric Nanogenerators
暫譯: 摩擦電納米發電機
Wang, Zhong Lin, Lin, Long, Chen, Jun
- 出版商: Springer
- 出版日期: 2016-08-25
- 售價: $10,360
- 貴賓價: 9.5 折 $9,842
- 語言: 英文
- 頁數: 517
- 裝訂: Hardcover - also called cloth, retail trade, or trade
- ISBN: 331940038X
- ISBN-13: 9783319400389
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相關分類:
奈米科技 Nano、感測器 Sensor
海外代購書籍(需單獨結帳)
相關主題
商品描述
Triboelectrification.- Part A: Fundamental Operation Modes.- Triboelectric Nanogenerator: Vertical Contact-Separation Mode.- Triboelectric Nanogenerator: Lateral Sliding Mode.- Triboelectric Nanogenerator: Single-Electrode Mode.- Triboelectric Nanogenerator: Freestanding Triboelectric-Layer Mode.- Theoretical Modeling of Triboelectric Nanogenerators.- Figure of Merits for Quantifying Triboelectric Nanogenerators.- Part B: Applications as a Sustainable Power Source.- Harvesting Body Motion Energy.- Harvesting Vibration Energy.- Harvesting Wind Energy.- Harvesting Large-Scale Blue Energy.- Hybrid Cell Composed of Triboelectric Nanogenerator.- Applicatons in Self-Powered Systems and Processes.- Self-Powered Sensing for Human-Machine Interface.- Self-Powered Sensing for Vibration and Biomedical Monitoring.- Self-Powered Sensing for Tracking Moving Objects.- Self-Powered Sensing for Chemical and Environmental Detection.
商品描述(中文翻譯)
摩擦電氣化.- 第一部分:基本操作模式.- 摩擦電納米發電機:垂直接觸-分離模式.- 摩擦電納米發電機:橫向滑動模式.- 摩擦電納米發電機:單電極模式.- 摩擦電納米發電機:獨立摩擦電層模式.- 摩擦電納米發電機的理論建模.- 定量摩擦電納米發電機的性能指標.- 第二部分:作為可持續能源的應用.- 收集人體運動能量.- 收集振動能量.- 收集風能.- 收集大規模藍色能源.- 由摩擦電納米發電機組成的混合電池.- 在自供電系統和過程中的應用.- 用於人機介面的自供電感測.- 用於振動和生物醫學監測的自供電感測.- 用於追蹤移動物體的自供電感測.- 用於化學和環境檢測的自供電感測。
作者簡介
Prof. Zhong Lin Wang is the Hightower Chair in Materials Science and Engineering and Regents' Professor at Georgia Tech. He is also the chief scientist and director of the Beijing Institute of Nanoenergy and Nanosystems, Chinese Academy of Sciences. His discovery and breakthroughs in developing nanogenerators establish the principle and technological road map for harvesting mechanical energy from environment and biological systems for powering a personal electronics. His research on self-powered nanosystems has inspired the worldwide effort in academia and industry for studying energy for micro-nano-systems, which is now a distinct disciplinary in energy research and future sensor networks. Prof. Wang received 2014 World Technology Prize in Materials; 2014 the James C. McGroddy Prize for New Materials from America Physical Society, 2013 ACS Nano Lectureship award, 2012 Edward Orton Memorial Lecture Award and 2009 Purdy Award from American Ceramic Society, 2011 MRS Medal from the Materials Research Society, 1999 Burton Medal from Microscopy Society of America.
Dr. Long Lin is a postdoctoral fellow at Georgia Institute of Technology. He received his B.S. in Materials Science and Engineering from Tsinghua University, China in 2010 and his Ph.D. from Georgia Tech in 2015 under the supervision of Prof. Zhong Lin Wang. His research interests include synthesis of semiconductor nanomaterials, piezoelectric nanogenerators, triboelectric nanogenerators, self-powered systems, and active sensors. He has co-authored over 60 peer-reviewed journal publications on Nature, Advanced Materials, Nano Letters, Energy & Environmental Science, etc. His work has been cited over 2000 times by scientists in the field of nanomaterials and energy technology. Dr. Lin received the 2013 Materials Research Society Graduate Student Award, and the 2015 Chinese Government Award for Outstanding Students Abroad.
Jun Chen received his B.S. and M.S. in Electrical Engineering from the School of Electronic Information and Communications at Huazhong University of Science and Technology in 2007 and 2010, respectively, and a second M.S. in Biological Engineering from the College of Engineering at The University of Georgia in 2012. He is currently a Ph.D. candidate in the School of Materials Science and Engineering at The Georgia Institute of Technology, working under the supervision of Prof. Zhong Lin Wang. His research focuses primarily on nanomaterial-based energy harvesting, energy storage, active sensing and self-powered micro-/nano-systems. He has already published 58 papers in total and 30 of them as first-author in prestigious scientific journals, such asNature Communications, Advanced Materials, Nano Letters, ACS Nano et al. And still, he filed 8 US patents and 15 Chinese patents. His research on triboelectric nanogenerators has been reported by worldwide mainstream media over 400 times in total, includingNature, PBS, The Wall Street Journal, Washington Times, Scientific American, NewScientist, Phys.org, ScienceDaily, Newsweek, and so on. Jun also received the 2015 Materials Research Society Graduate Student Award, and the 2016 Chinese Government Award for Outstanding Students Abroad. His current H-index is 25.
Simiao Niu is a Ph.D. candidate working as a graduate research assistant in Material Science and Engineering at the Georgia Institute of Technology, under the supervision of Dr. Zhong Lin Wang. He earned his Master of Science degree in the School of Electrical and Computer Engineering at the Georgia Institute of Technology in 2015 and Bachelor of Engineering degree in the Institute of Microelectronics at Tsinghua University in 2011. His doctoral research interests include theoretical and experimental studies on: mechanical energy harvesting by triboelectric nanogenerators and high-performance piezotronic sensors based on piezoelectric nanowires. He has co-authored over 47 peer-reviewed journal publications on Nature, Nature Photonics, Nature Communications, Advanced Materials, Nano Letters, Energy & Environmental Science, etc. Simiao Niu has received the several prestigious awards, including 2015 Material Research Society Graduate Student Silver Award, 2011 Tsinghua University Outstanding Bachelor Thesis Award, 2011 Beijing City and Tsinghua University Outstanding Bachelor Student Award, and 2010 Chinese National Scholarship.
Dr. Yunlong Zi received his Bachelor of Engineering from Department of Materials Science and Engineering at Tsinghua University, Beijing, China, in 2010, and his PhD from Department of Physics at Purdue University, West Lafayette, Indiana, USA, in 2014. He is currently working as a postdoctoral fellow at Georgia Institute of Technology under supervision of Prof. Zhong Lin Wang. His research interests include fundamental physics of triboelectric nanogenerators, hybrid nanogenerator for energy harvesting, self-powered systems, nanoelectronics and synthesis of semiconductor nanomaterials. As the 1st authors, his research have been published in top journals, including Nature Communications, Advanced Materials, Nano Letters and etc. He served as a reviewer over 30 times for high-impact journals such as Advanced Materials, Nano Energy, Advanced Functional Materials, Scientific Reports, and RSC Advances. He was honored as one of "5 students who are transformation makers" by Purdue University in 2013.
作者簡介(中文翻譯)
王忠麟教授是喬治亞理工學院材料科學與工程的海塔沃椅教授及校董教授。他同時也是中國科學院北京納米能源與納米系統研究所的首席科學家和所長。他在開發納米發電機方面的發現和突破,建立了從環境和生物系統中收集機械能以供應個人電子設備的原理和技術路線圖。他對自供電納米系統的研究,激發了全球學術界和產業界對微納系統能源研究的努力,這已成為能源研究和未來傳感器網絡中的一個獨特學科。王教授獲得了2014年材料領域的世界技術獎;2014年美國物理學會的詹姆斯·C·麥格羅迪新材料獎,2013年ACS Nano講座獎,2012年愛德華·奧頓紀念講座獎,以及2009年美國陶瓷學會的普迪獎,2011年材料研究學會的MRS獎章,1999年美國顯微學會的伯頓獎。
林龍博士是喬治亞理工學院的博士後研究員。他於2010年在中國清華大學獲得材料科學與工程學士學位,並於2015年在王忠麟教授的指導下獲得喬治亞理工學院的博士學位。他的研究興趣包括半導體納米材料的合成、壓電納米發電機、摩擦電納米發電機、自供電系統和主動傳感器。他已在《Nature》、《Advanced Materials》、《Nano Letters》、《Energy & Environmental Science》等期刊上共同發表了超過60篇同行評審的論文。他的工作在納米材料和能源技術領域被科學家引用超過2000次。林博士獲得了2013年材料研究學會的研究生獎,以及2015年中國政府的優秀留學生獎。
陳俊於2007年和2010年分別在華中科技大學電子信息與通信學院獲得電氣工程學士和碩士學位,並於2012年在喬治亞大學工程學院獲得生物工程碩士學位。他目前是喬治亞理工學院材料科學與工程學院的博士候選人,並在王忠麟教授的指導下進行研究。他的研究主要集中在基於納米材料的能量收集、能量儲存、主動感測和自供電微/納米系統。他已經發表了58篇論文,其中30篇為第一作者,發表在《Nature Communications》、《Advanced Materials》、《Nano Letters》、《ACS Nano》等著名科學期刊上。此外,他還申請了8項美國專利和15項中國專利。他對摩擦電納米發電機的研究已被全球主流媒體報導超過400次,包括《Nature》、《PBS》、《華爾街日報》、《華盛頓時報》、《科學美國人》、《新科學家》、《Phys.org》、《ScienceDaily》、《新聞週刊》等。陳俊還獲得了2015年材料研究學會的研究生獎,以及2016年中國政府的優秀留學生獎。他目前的H指數為25。
牛思淼是喬治亞理工學院材料科學與工程的博士候選人,擔任研究生研究助理,並在王忠麟博士的指導下進行研究。他於2015年在喬治亞理工學院電氣與計算機工程學院獲得碩士學位,並於2011年在清華大學微電子研究所獲得工程學士學位。他的博士研究興趣包括:通過摩擦電納米發電機進行機械能收集和基於壓電納米線的高性能壓電傳感器的理論和實驗研究。他已在《Nature》、《Nature Photonics》、《Nature Communications》、《Advanced Materials》、《Nano Letters》、《Energy & Environmental Science》等期刊上共同發表了超過47篇同行評審的論文。牛思淼獲得了多項著名獎項,包括2015年材料研究學會研究生銀獎、2011年清華大學優秀學士論文獎、2011年北京市和清華大學優秀學士學生獎,以及2010年中國國家獎學金。
子雲龍博士於2010年在中國清華大學材料科學與工程系獲得工程學士學位,並於2014年在美國印第安納州普渡大學物理系獲得博士學位。他目前在喬治亞理工學院擔任王忠麟教授的博士後研究員。他的研究興趣包括摩擦電納米發電機的基本物理、用於能量收集的混合納米發電機、自供電系統、納米電子學和半導體納米材料的合成。作為第一作者,他的研究已發表在《Nature Communications》、《Advanced Materials》、《Nano Letters》等頂級期刊上。他曾擔任超過30次高影響力期刊的審稿人,如《Advanced Materials》、《Nano Energy》、《Advanced Functional Materials》、《Scientific Reports》和《RSC Advances》。他於2013年被普渡大學評選為「5位變革者學生」之一。