Flexible and Robust Thermoelectric Generators Based on All-Carbon Nanotube Yarn without Metal Electrodes.
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Yeonsu Jung | Jaeyoo Choi | Seung Eon Moon | Jinwoo Oh | Jun Young Oh | Yeonsu Jung | Seung Jae Yang | C. Park | Jinwoo Oh | Seung Eon Moon | J. G. Son | Heesuk Kim | Jaeyoo Choi | Heesuk Kim | Kiyoung Jo | Heesuk Kim | Seung Jae Yang | Jun Young Oh | Kiyoung Jo | Jeong Gon Son | Chong Rae Park | Yeon-Ho Jung | Jin-Kyoung Oh | C. Park
[1] N. Zhang,et al. Ultrahigh-Power-Factor Carbon Nanotubes and an Ingenious Strategy for Thermoelectric Performance Evaluation. , 2016, Small.
[2] M. Dresselhaus,et al. Perspectives on thermoelectrics: from fundamentals to device applications , 2012 .
[3] T. Kawai,et al. Simple Salt‐Coordinated n‐Type Nanocarbon Materials Stable in Air , 2016 .
[4] X. Crispin,et al. Towards polymer-based organic thermoelectric generators , 2012 .
[5] X. Crispin,et al. Optimization of the thermoelectric figure of merit in the conducting polymer poly(3,4-ethylenedioxythiophene). , 2011, Nature materials.
[6] Shiren Wang,et al. Enhancing thermoelectric properties of organic composites through hierarchical nanostructures , 2013, Scientific Reports.
[7] Changhong Liu,et al. A Promising Approach to Enhanced Thermoelectric Properties Using Carbon Nanotube Networks , 2010, Advanced materials.
[8] Hua Zhang,et al. Flexible carbon nanotube papers with improved thermoelectric properties , 2012 .
[9] P. Ajayan,et al. Enhanced thermopower of graphene films with oxygen plasma treatment. , 2011, ACS nano.
[10] Michael Chabinyc,et al. Thermoelectric polymers: Behind organics' thermopower. , 2014, Nature materials.
[11] Choongho Yu,et al. Flexible power fabrics made of carbon nanotubes for harvesting thermoelectricity. , 2014, ACS nano.
[12] Rachel A. Segalman,et al. Varying the ionic functionalities of conjugated polyelectrolytes leads to both p- and n-type carbon nanotube composites for flexible thermoelectrics , 2015 .
[13] Michael Sennett,et al. High-Performance Carbon Nanotube Fiber , 2007, Science.
[14] K. Hata,et al. Systematic Conversion of Single Walled Carbon Nanotubes into n-type Thermoelectric Materials by Molecular Dopants , 2013, Scientific Reports.
[15] Yan Li,et al. Electronic doping and scattering by transition metals on graphene , 2009, 0903.2837.
[16] B. Cho,et al. A wearable thermoelectric generator fabricated on a glass fabric , 2014 .
[17] Kevin C. See,et al. Effect of Interfacial Properties on Polymer–Nanocrystal Thermoelectric Transport , 2013, Advanced materials.
[18] Yeonsu Jung,et al. Effect of polymer infiltration on structure and properties of carbon nanotube yarns , 2015 .
[19] G. J. Snyder,et al. Complex thermoelectric materials. , 2008, Nature materials.
[20] Jeffrey L. Blackburn,et al. Tailored semiconducting carbon nanotube networks with enhanced thermoelectric properties , 2016, Nature Energy.
[21] Philip S. Casey,et al. Research progress on polymer–inorganic thermoelectric nanocomposite materials , 2012 .
[22] Choongho Yu,et al. Outstanding Low Temperature Thermoelectric Power Factor from Completely Organic Thin Films Enabled by Multidimensional Conjugated Nanomaterials , 2016 .
[23] T. Kawai,et al. Water-Processable, Air-Stable Organic Nanoparticle-Carbon Nanotube Nanocomposites Exhibiting n-Type Thermoelectric Properties. , 2017, Small.
[24] Feng Qiu,et al. Towards high-performance polymer-based thermoelectric materials , 2013 .
[25] Richard Czerw,et al. Multilayered carbon nanotube/polymer composite based thermoelectric fabrics. , 2012, Nano letters.
[26] B. Cho,et al. High-Performance Flexible Thermoelectric Power Generator Using Laser Multiscanning Lift-Off Process. , 2016, ACS nano.
[27] L. Bell. Cooling, Heating, Generating Power, and Recovering Waste Heat with Thermoelectric Systems , 2008, Science.
[28] K. Zhang,et al. Engineered doping of organic semiconductors for enhanced thermoelectric efficiency. , 2013, Nature materials.
[29] Zhiqun Lin,et al. Thermopower enhancement in conducting polymer nanocomposites via carrier energy scattering at the organic–inorganic semiconductor interface , 2012 .
[30] J. Huang,et al. Investigation of the Effects of Doping and Post‐Deposition Treatments on the Conductivity, Morphology, and Work Function of Poly(3,4‐ethylenedioxythiophene)/Poly(styrene sulfonate) Films , 2005 .
[31] M. Knupfer,et al. Electronic properties of FeCl 3 -intercalated single-wall carbon nanotubes , 2004 .
[32] H. Anno,et al. Novel Hybrid Organic Thermoelectric Materials:Three‐Component Hybrid Films Consisting of a Nanoparticle Polymer Complex, Carbon Nanotubes, and Vinyl Polymer , 2015, Advanced materials.