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MnO2-Based Electrochemical Supercapacitors on Flexible Carbon Substrates
Authors:Marko J. Tadjer  Michael A. Mastro  José M. Rojo  Alberto Boscá Mojena  Fernando Calle  Francis J. Kub  Charles R. Eddy Jr.
Affiliation:1. American Society for Engineering Education, Washington, DC, USA
2. Instituto de Sistemas Optoelectrónicos y Microtecnología (ISOM), Universidad Politécnica de Madrid, Madrid, Spain
3. United States Naval Research Laboratory, Washington, DC, USA
4. Instituto de Ciencias de Materiales de Madrid (ICMM), CSIC, Madrid, Spain
Abstract:Manganese dioxide films were grown on large area flexible carbon aerogel substrates. Characterization by x-ray diffraction confirmed α-MnO2 growth. Three types of films were compared as a function of hexamethylenetetramine (HMTA) concentration during growth. The highest concentration of HM TA produced MnO2 flower-like films, as observed by scanning electron microscopy, whose thickness and surface coverage lead to both a higher specific capacitance and higher series resistance. Specific capacitance was measured to be 64 F/g using a galvanostatic setup, compared to the 47 F/g-specific capacitance of the carbon aerogel substrate. Such supercapacitor devices can be fabricated on large area sheets of carbon aerogel to achieve high total capacitance.
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