Access the full text.
Sign up today, get DeepDyve free for 14 days.
Y. Mua, T. Quickenden (1996)
Power Conversion Efficiency, Electrode Separation, and Overpotential in the Ferricyanide/Ferrocyanide Thermogalvanic CellJournal of The Electrochemical Society, 143
J. Weber, K. Potje-Kamloth, F. Haase, P. Detemple, F. Völklein, T. Doll (2006)
Coin-size coiled-up polymer foil thermoelectric power generator for wearable electronicsSensors and Actuators A-physical, 132
J. Nugent, K. Santhanam, and Rubio, P. Ajayan (2001)
Fast Electron Transfer Kinetics on Multiwalled Carbon Nanotube Microbundle ElectrodesNano Letters, 1
Xianbo Lu, Yi Xiao, Z. Lei, Jiping Chen (2009)
Graphitized macroporous carbon microarray with hierarchical mesopores as host for the fabrication of electrochemical biosensor.Biosensors & bioelectronics, 25 1
Yu Li, Z. Fu, B. Su (2012)
Hierarchically Structured Porous Materials for Energy Conversion and StorageAdvanced Functional Materials, 22
K. Babeł, K. Jurewicz (2004)
KOH activated carbon fabrics as supercapacitor materialJournal of Physics and Chemistry of Solids, 65
Qian Cheng, Jie Tang, Jun Ma, Han Zhang, N. Shinya, L. Qin (2011)
Graphene and carbon nanotube composite electrodes for supercapacitors with ultra-high energy density.Physical chemistry chemical physics : PCCP, 13 39
T. Quickenden, C. Vernon (1986)
Thermogalvanic conversion of heat to electricitySolar Energy, 36
C. Vining (2009)
An inconvenient truth about thermoelectrics.Nature materials, 8 2
A. deBethune, T. Licht, N. Swendeman (1959)
The Temperature Coefficients of Electrode Potentials The Isothermal and Thermal Coefficients—The Standard Ionic Entropy of Electrochemical Transport of the Hydrogen IonJournal of The Electrochemical Society, 106
M Pasta L Hu (2010)
Stretchable, porous, and conductive energy textilesNano Lett., 10
C. Hewitt, A. Kaiser, S. Roth, M. Craps, R. Czerw, D. Carroll (2012)
Multilayered carbon nanotube/polymer composite based thermoelectric fabrics.Nano letters, 12 3
Ji-il Kim, Soojin Park (2012)
A study of ion charge transfer on electrochemical behaviors of poly(vinylidene fluoride)-derived carbon electrodesJournal of Analytical and Applied Pyrolysis, 98
T. Hirai, Kazuhiko Shindo, T. Ogata (1996)
Charge and Discharge Characteristics of Thermochargeable Galvanic Cells with an [ Fe ( CN ) 6 ] 4 − / [ Fe ( CN ) 6 ] 3 − Redox CoupleJournal of The Electrochemical Society, 143
G. Snyder, James Lim, Chen-Kuo Huang, J. Fleurial (2003)
Thermoelectric microdevice fabricated by a MEMS-like electrochemical processNature Materials, 2
K. Settaluri, Hsinyi Lo, Rajeev Ram (2011)
Thin Thermoelectric Generator System for Body Energy HarvestingJournal of Electronic Materials, 41
Theodore Abraham, D. Macfarlane, J. Pringle (2011)
Seebeck coefficients in ionic liquids--prospects for thermo-electrochemical cells.Chemical communications, 47 22
R. Vullers, R. Schaijk, I. Doms, C. Hoof, R. Mertens (2009)
Micropower energy harvestingSolid-state Electronics, 53
Liangbing Hu, M. Pasta, F. Mantia, Lifeng Cui, Sangmoo Jeong, H. Deshazer, J. Choi, S. Han, Yi Cui (2010)
Stretchable, porous, and conductive energy textiles.Nano letters, 10 2
L. Bao, Xiaodong Li (2012)
Towards Textile Energy Storage from Cotton T‐ShirtsAdvanced Materials, 24
Eda Guler (2011)
Recent Advances on Body-Heat Powered Medical Devices, 4
V. Leonov, T. Torfs, P. Fiorini, C. Hoof (2007)
Thermoelectric Converters of Human Warmth for Self-Powered Wireless Sensor NodesIEEE Sensors Journal, 7
B. Burrows (1976)
Discharge Behavior of Redox Thermogalvanic CellsJournal of The Electrochemical Society, 123
Yi Qi, Michael McAlpine (2010)
Nanotechnology-enabled flexible and biocompatible energy harvestingEnergy and Environmental Science, 3
G. Snyder, E. Toberer (2008)
Complex thermoelectric materials.Nature materials, 7 2
E. Eastman (1926)
The Thermodynamics of Non-Isothermal Systems.Journal of the American Chemical Society, 49
T. Kang, S. Fang, M. Kozlov, Carter Haines, Na Li, Yong Kim, Yongsheng Chen, R. Baughman (2012)
Electrical Power From Nanotube and Graphene Electrochemical Thermal Energy HarvestersAdvanced Functional Materials, 22
D. Kraemer, B. Poudel, H. Feng, J. Caylor, Bo Yu, Xiaohan Yan, Yi Ma, Xiaowei Wang, Dezhi Wang, A. Muto, K. McEnaney, Matteo Chiesa, Matteo Chiesa, Z. Ren, Gang Chen (2011)
High-performance flat-panel solar thermoelectric generators with high thermal concentration.Nature materials, 10 7
Y. Juan, Qiu Ke-qiang (2009)
Preparation of activated carbon by chemical activation under vacuum.Environmental science & technology, 43 9
Zhiyong Wang, Elizabeth Kiesel, A. Stein (2008)
Silica-free syntheses of hierarchically ordered macroporous polymer and carbon monoliths with controllable mesoporosityJournal of Materials Chemistry, 18
E D Eastman (1926)
Thermodynamics of non-isothermal systemsJ. Am. Chem. Soc., 48
Yaoming Xiao, Jeng-Yu Lin, Sheng-Yen Tai, S. Chou, Gentian Yue, Jihuai Wu (2012)
Pulse electropolymerization of high performance PEDOT/MWCNT counter electrodes for Pt-free dye-sensitized solar cellsJournal of Materials Chemistry, 22
G. Lota, K. Fic, E. Frąckowiak (2011)
Carbon nanotubes and their composites in electrochemical applicationsEnergy and Environmental Science, 4
Renchong Hu, B. Cola, N. Haram, J. Barisci, Sergey Lee, S. Stoughton, G. Wallace, C. Too, Michael Thomas, Adrian Gestos, M. Cruz, J. Ferraris, A. Zakhidov, R. Baughman (2010)
Harvesting waste thermal energy using a carbon-nanotube-based thermo-electrochemical cell.Nano letters, 10 3
E. Nightingale (1959)
PHENOMENOLOGICAL THEORY OF ION SOLVATION. EFFECTIVE RADII OF HYDRATED IONSThe Journal of Physical Chemistry, 63
R B Bird C F Curtiss (1999)
Multicomponent diffusionInd. Eng. Chem. Res., 38
Yonghui Deng, Chong Liu, T. Yu, Feng Liu, Fuqiang Zhang, Y. Wan, Lijuan Zhang, Changchun Wang, B. Tu, P. Webley, Huanting Wang, Dongyuan Zhao (2007)
Facile Synthesis of Hierarchically Porous Carbons from Dual Colloidal Crystal/Block Copolymer Template ApproachChemistry of Materials, 19
R. Saliba, B. Agricole, and Mingotaud, S. Ravaine (1999)
Voltammetric and Impedance Analysis of Dimethyldioctadecylammonium/Prussian Blue Langmuir−Blodgett Films on ITO ElectrodesJournal of Physical Chemistry B, 103
E. Eastman (1928)
THEORY OF THE SORET EFFECTJournal of the American Chemical Society, 50
T. Kang, A. Choi, Dai-Hong Kim, K. Jin, D. Seo, D. Jeong, Seong‐Hyeon Hong, Y. Park, Y. Kim (2010)
Electromechanical properties of CNT-coated cotton yarn for electronic textile applicationsSmart Materials and Structures, 20
M. Romano, Na Li, Dennis Antiohos, J. Razal, A. Nattestad, S. Beirne, S. Fang, Yongsheng Chen, R. Jalili, G. Wallace, R. Baughman, Jun Chen (2013)
Carbon Nanotube – Reduced Graphene Oxide Composites for Thermal Energy Harvesting ApplicationsAdvanced Materials, 25
Jianzhi Zhao, F. Cheng, C. Yi, Jing Liang, Zhanliang Tao, Jun Chen (2009)
Facile synthesis of hierarchically porous carbons and their application as a catalyst support for methanol oxidationJournal of Materials Chemistry, 19
E. Morais, G. Alvial, R. Longuinhos, J. Figueiredo, R. Lacerda, A. Ferlauto, L. Ladeira (2011)
Enhanced electrochemical activity using vertically aligned carbon nanotube electrodes grown on carbon fiberMaterials Research-ibero-american Journal of Materials, 14
Nano Research – CrossRef
Published: Apr 1, 2014
Read and print from thousands of top scholarly journals.
Already have an account? Log in
Bookmark this article. You can see your Bookmarks on your DeepDyve Library.
To save an article, log in first, or sign up for a DeepDyve account if you don’t already have one.
Copy and paste the desired citation format or use the link below to download a file formatted for EndNote
Access the full text.
Sign up today, get DeepDyve free for 14 days.
All DeepDyve websites use cookies to improve your online experience. They were placed on your computer when you launched this website. You can change your cookie settings through your browser.