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Defense Intelligence Reference Document Ultracapacitors As Energy And Power Storage Devices

Defense Intelligence Agency · 34 pages · text from the file's own layer

This Defense Intelligence Reference Document from the Defense Intelligence Agency, dated 1 November 2010, was one of a series of advanced technology reports produced in FY 2010 under the Advanced Aerospace Weapons System Applications (AAWSA) Program. It reviews ultracapacitors as energy and power storage devices. It covers how they work, their materials, their commercial and military uses, and new developments such as carbon nanotubes, thin films and magnetic capacitors. It concludes that the U.S. government must understand and adopt advanced ultracapacitors.

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Chapter 7: Endnotes
1 Tecate Group website
2 B. E Conway, Electrochemical Supercapacitors: Scientific, Fundamentals, and Technological Applications, Kluwer,
New York (1999).
' Wikipedia Commons
1 J. R. Miller, P. Simon, Fundamentals of Electrochem1cal Capacitor Design and Operation; ECS Interface, 17, Spr.
2008, 31-33
' EPCOS White Paper on UltraCap Technology
"P. Simon, A. Burke, Nanostructured Carbons: Double-Layer Capacitance and More; ECS Interface, 17, Spr. 2008,
38-43
7 EPCOS White Paper on UltraCap Technology
8 D. Tuite, Get the Lowdown On Ultracapacitors; Electronic Design, Nov 2007.
9 J. R. Miller, A. F. Burke, Electrochemical Capacitors: Challenges and Opportunities for Real-World Applications;
ECS Interface, 17, Spr. 2008, 53-57
10 J. R. Miller, A. F. Burke, Electrochemical Capacitors: Challenges and Opportunities for Real-World Applications;
ECS Interface, 17, Spr. 2008, 53-57
11 J. R. Miller, A. F. Burke, Electrochemical Capacitors: Challenges and Opportunities for Real-World Applications;
ECS Interface, 17, Spr. 2008, 53-57
12 K. Naoi, P. Simon, New Materials and New Configurations for Advanced Electrochemical Capacitors; ECS
Interface, 17, Spr. 2008, 34-37
13 Burke, Ultracapacitor Technologies and Application In Hybrid and Electric Vehicles; International Journal of
Energy Research; July 2009
14 J. R. Miller, P. Simon, Fundamentals of Electrochemical Capacitor Design and Operation; ECS Interface, 17, Spr.
2008, 31-33
15 P. Simon, A. Burke, Nanostructured Carbons: Double-Layer Capacitance and More; ECS Interface, 17, Spr. 2008,
38-43
16 EPCOS White Paper on UltraCap Technology
11 P. Simon, Y. Gogotsi, Charge Storage Mechanism in Nanoporous Carbons and Its Consequence for Electrical
Double Layer Capacitors, Phil. Trans. R. Soc. A, 368, 3457 (2010)
18 C. N. R. Rao, A. K. Sood, R. Voggu, K. S. Subrahmanyam, Some Novel Attributes of Graphene, J. Phys. Chem.
Lett., 1, 572 (2010)
19 S. Park, R. Ruoff, Chemical Methods for the Production of Graphenes; Nature Nanotechnology; 4,217 (2009)
20 J. Chmiola, G. Yushin, Y. Gogots1, C. Portet, P. simon, P. L. Taberna, Anomalous Increase in Carbon Capacitance
at Pore Sizes Less than 1 Nanometer; Science, 313, 1760 (2006)
21 P. Simon, A. Burke, Nanostructured Carbons: Double-Layer Capacitance and More; ECS Interface, 17, Spr. 2008,
38-43
22 D. Tuite, Get the Lowdown On Ultracapacitors; Electronic Design, Nov 2007.
23 D. Tuite, Get the Lowdown On Ultracapacitors; Electronic Design, Nov 2007.
24 A. S. AricO, P. Bruce, B. Scrosati, J.-M. Tarascon,W. van Schalkwijk, Nat. Mater. 4,366 (2005).
2' S. W. Lee, B.-S. Kim, S. Chen, Y. Shao-Horn, P. T. Hammond, J. Am. Chem. Soc. 131, 671 (2009).
26 D. Pech et al., J. Power Sources 195, 1266 (2010).
27 W. Sun, X. Y. Chen, Microelectron. Eng. 86, 1307 (2009).
28 J. Wang, J. Polleux, J. Lim, B. Dunn, J. Phys. Chem. C 111, 14925 (2007).
29 K. Naoi, P. Simon, New Materials and New Configurations for Advanced Electrochemical Capacitors; ECS
Interface, 17, Spr. 2008, 34-37
30 H.J. Ahn, W. B. Kim, T. Y. Seang, Electrochem. Commun. 10, 1284 (2008).
31 C. N. R. Rao, A. K. Sood, R. Voggu, K. S. Subrahmanyam, Some Novel Attributes of Graphene, J. Phys. Chem.
Lett., 1, 572 (2010)
32 M. D. Stoller, S. Park, Y. Zhu, J. An, R. S. Ruoff, Graphene-Based Ultracapacitors, Nano Lett, 8, 3498 (2008)
33 M. D. Stoller, S. Park, Y. Zhu, J. An, R. S. Ruoff, Graphene-Based Ultracapacitors, Nano Lett, 8, 3498 (2008)
34 J. Chmiola, G. Yushin, Y. Gogotsi, C. Portet, P. simon, P. L. Taberna, Anomalous Increase in Carbon Capacitance
at Pore Sizes Less than 1 Nanometer; Science, 313, 1760 (2006)
35 D. Pech et al., J. Power Sources 195, 1266 (2010).
36 J. Leis, M. Arulepp, A. Kuura, M. Latt, E. Lust, Carbon 44, 2122 (2006).
''A.Janes, E. Lust, J. Electrochem. Soc. 153, A113 (2006).
38 E. N. Hoffman, G. Yushin, B. G. Wendler, M. W. Barsoum,Y. Gogotsi, Mater. Chem. Phys. 112, 587 (2008).
39 R. K. Dash, G. Yushin, Y. Gogotsi, MicroporousMesoporous Mater. 86, 50 (2005).
40 Z. G. Cambaz, G. N. Yushin, Y. Gogotsi, K. L. Vyshnyakova, L. N. Pereselentseva, J. Am. Ceram. Soc. 89, 509
(2006)
11 J. Chmiola, C. Largeot, P. Taberna, P.Simon, Y.Gogotsi, Monolithic Carbide-Derived Carbon Films for Micro-
Supercapacitors, Science,328, 480 (2010)
42 A. Janes, E. Lust, J. Electrochem. Soc. 153, A113 (2006).
28
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Report, from the dia collection. The PDF is mirrored here; the original link is above. 34 pages are in the text index: search them above, or from the library's search.