Bendable thermoelectric generators composed of p- and n-type silver chalcogenide nanoparticle thin films
暂无分享,去创建一个
Sangsig Kim | Kyoungah Cho | Sangsig Kim | Yoon-Tae Park | Kyoungah Cho | Seunggen Yang | Seunggen Yang | Yoonbeom Park
[1] Lidong Chen,et al. Thermoelectric transport of Se-rich Ag2Se in normal phases and phase transitions , 2014 .
[2] Jinyong Choi,et al. Flexible Thermoelectric Generators Composed of n‐and p‐Type Silicon Nanowires Fabricated by Top‐Down Method , 2017 .
[3] O. Madelung. Semiconductors: Data Handbook , 2003 .
[4] B. Cho,et al. A wearable thermoelectric generator fabricated on a glass fabric , 2014 .
[5] Michiyoshi Tanaka,et al. Size effect on the crystal phase of cobalt fine particles , 1997 .
[6] Sangsig Kim,et al. Length-dependent thermoelectric characteristics of silicon nanowires on plastics in a relatively low temperature regime in ambient air , 2013, Nanotechnology.
[7] J. Bahk,et al. Flexible thermoelectric materials and device optimization for wearable energy harvesting , 2015 .
[8] William J. Potscavage,et al. Processing and doping of thick polymer active layers for flexible organic thermoelectric modules , 2016 .
[9] Z. Tang,et al. Interface Engineering in Solution‐Processed Nanocrystal Thin Films for Improved Thermoelectric Performance , 2017, Advanced materials.
[10] Yue Wu,et al. Thermoelectric Properties of Solution Synthesized Nanostructured Materials. , 2015, Annual review of chemical and biomolecular engineering.
[11] Vladimir Leonov,et al. Thermoelectric Energy Harvesting of Human Body Heat for Wearable Sensors , 2013, IEEE Sensors Journal.
[12] H. Morimura,et al. Monolithic Integration Fabrication Process of Thermoelectric and Vibrational Devices for Microelectromechanical System Power Generator , 2007 .
[13] Yue Wu,et al. Impact of Surface-Bound Small Molecules on the Thermoelectric Property of Self-Assembled Ag₂Te Nanocrystal Thin Films. , 2015, Nano letters.
[14] H. Hng,et al. Preparation and thermoelectric properties of sulfur doped Ag2Te nanoparticles via solvothermal methods. , 2012, Nanoscale.
[15] Hanfu Wang,et al. High-performance organic thermoelectric modules based on flexible films of a novel n-type single-walled carbon nanotube , 2016 .
[16] Fernando Briones,et al. High Thermoelectric zT in n‐Type Silver Selenide films at Room Temperature , 2018 .
[17] Antonio M. López,et al. Crystallographic Control at the Nanoscale To Enhance Functionality: Polytypic Cu2GeSe3 Nanoparticles as Thermoelectric Materials , 2012 .
[18] S. Miyatani. Ionic Conduction in β-Ag2Te and β-Ag2Se , 1959 .
[19] S. Yamanaka,et al. Effect of Phase Transition on the Thermoelectric Properties of Ag2Te , 2012 .
[20] C. Boothroyd,et al. Shape and size control of Ag2Se nanocrystals from a single precursor [(Ph3P)3Ag2(SeC{O}Ph)2]. , 2005, Chemical communications.
[21] Jie Gao,et al. A novel glass-fiber-aided cold-press method for fabrication of n-type Ag2Te nanowires thermoelectric film on flexible copy-paper substrate , 2017 .
[22] A. Cabot,et al. Organic ligand displacement by metal salts to enhance nanoparticle functionality: thermoelectric properties of Ag2Te , 2013 .
[23] Sean Li,et al. A solution-processed TiS2/organic hybrid superlattice film towards flexible thermoelectric devices , 2017 .
[24] Sangsig Kim,et al. Thermal conductivity of silicon nanowires embedded on thermoelectric platforms , 2016 .
[25] Kun Li,et al. Superionic phase transition in silver chalcogenide nanocrystals realizing optimized thermoelectric performance. , 2012, Journal of the American Chemical Society.
[26] R. Buhrman,et al. Ultrafine metal particles , 1976 .
[27] A. Tiwari,et al. On-chip thermoelectric module comprised of oxide thin film legs , 2016 .
[28] G. J. Snyder,et al. Complex thermoelectric materials. , 2008, Nature materials.
[29] Ali Shakouri,et al. Nanostructured Thermoelectrics: Big Efficiency Gains from Small Features , 2010, Advanced materials.
[30] Dong-Kyun Ko,et al. Near-Infrared Absorption of Monodisperse Silver Telluride (Ag2Te) Nanocrystals and Photoconductive Response of Their Self-Assembled Superlattices , 2011 .
[31] H. Yoo,et al. Thermoelectric behavior of a mixed ionic electronic conductor, Ce(1-x)GdxO(2-x/2-delta). , 2009, Physical chemistry chemical physics : PCCP.
[32] R. Zheng,et al. Non-epitaxial pulsed laser deposition of Ag2Se thermoelectric thin films for near-room temperature applications , 2016 .
[33] M. Kanatzidis,et al. High-performance bulk thermoelectrics with all-scale hierarchical architectures , 2012, Nature.
[34] J. Feldhaus,et al. EXAFS Studies on the Size Dependence of Structural and Dynamic Properties of CdS Nanoparticles , 1997 .
[35] X. Crispin,et al. Thermoelectric Properties of Polymeric Mixed Conductors , 2016 .
[36] Thermoelectric characteristics of nanocomposites made of HgSe and Ag nanoparticles for flexible thermoelectric devices , 2017, Nano Research.
[37] S. P. Anthony. Synthesis of Ag2S and Ag2Se nanoparticles in self assembled block copolymer micelles and nano-arrays fabrication , 2009 .