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Dive into the research topics where Anne E. Fischer is active.

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Featured researches published by Anne E. Fischer.


Journal of The Electrochemical Society | 2008

Electroless Deposition of Nanoscale MnO2 on Ultraporous Carbon Nanoarchitectures: Correlation of Evolving Pore-Solid Structure and Electrochemical Performance

Anne E. Fischer; Matthew P. Saunders; Katherine A. Pettigrew; Debra R. Rolison; Jeffrey W. Long

The self-limiting redox reaction of carbon nanofoam substrates with permanganate at room temperature in neutral-pH solutions produces conformal nanoscale MnO 2 deposits throughout the macroscopic thickness (∼0.17 mm) of the nanofoam structure. The nanoscale MnO 2 morphology ranges from ∼10 nm layered ribbons and rods for a 4 h deposition to ∼20 nm polycrystalline nanoparticles that form at long deposition times (20 h). The through-connected pore network of the carbon nanofoam is maintained at all deposition times (5 min to 20 h), although the average pore size shifts to smaller values and the cumulative pore volume decreases as the MnO 2 coatings grow and thicken within the nanofoam structure. The electrochemical capacitance of the resulting hybrid electrode structure is dominated by the pseudocapacitance of the MnO 2 and increases with MnO 2 loading (a function of the exposure time in permanganate), particularly at low charge-discharge rates and at ac frequencies <0.1 Hz. The significant enhancement in mass-, volume-, and footprint-normalized capacitance at high MnO 2 mass loadings is accompanied by a modest increase in the Warburg resistance that develops as the pore size and void volume of the nanofoam substrate are reduced by internal MnO 2 deposition.


Chemical Society Reviews | 2009

Multifunctional 3D nanoarchitectures for energy storage and conversion

Debra R. Rolison; Jeffrey W. Long; Justin C. Lytle; Anne E. Fischer; Christopher P. Rhodes; Todd M. McEvoy; Megan E. Bourg; Alia M. Lubers


Nano Letters | 2007

Incorporation of Homogeneous, Nanoscale MnO2 within Ultraporous Carbon Structures via Self-Limiting Electroless Deposition: Implications for Electrochemical Capacitors

Anne E. Fischer; Katherine A. Pettigrew; Debra R. Rolison; and Rhonda M. Stroud; Jeffrey W. Long


Journal of Physical Chemistry C | 2009

Multifunctional MnO2-Carbon Nanoarchitectures Exhibit Battery and Capacitor Characteristics in Alkaline Electrolytes

Jeffrey W. Long; Megan B. Sassin; Anne E. Fischer; Debra R. Rolison; Azzam N. Mansour; Valencia S. Johnson; Phillip E. Stallworth; Steve Greenbaum


Archive | 2007

Nanoscale manganese oxide on ultraporous carbon nanoarchitecture

Jeffrey W. Long; Anne E. Fischer; Debra R. Rolison


Electrochimica Acta | 2009

Characterization of ultrathin electroactive films synthesized via the self-limiting electropolymerization of o-methoxyaniline

Anne E. Fischer; Todd M. McEvoy; Jeffrey W. Long


211th ECS Meeting | 2008

Self-Limiting Electropolymerization of o-Aminophenol on Ultraporous Carbon Nanoarchitectures for Electrochemical Capacitor Applications

Anne E. Fischer; Matthew P. Saunders; Justin C. Lytle; Debra R. Rolison; Jeffrey W. Long


Meeting Abstracts | 2009

Multifunctional 3-D Carbon Nanoarchitectures en route to High-Performance Electrochemical Power Sources

Jeffrey W. Long; Megan E. Bourg; Jean Marie Wallace; Anne E. Fischer; Justin C. Lytle; Katherine A. Pettigrew; Amanda June Barrow; Jennifer L. Dysart; Debra R. Rolison; Azzam N. Mansour


Archive | 2007

Oxyde de manganèse d'échelle nanoscopique sur une nano-architecture de carbone ultraporeuse

Jeffrey J. Long; Anne E. Fischer; Debra R. Rolison


Meeting Abstracts | 2007

Carbon Nanoarchitectures with Conformal, Nanoscopic MnO2 Coatings as High-Performance 3D Electrode Structures for Energy Storage

Jeffrey W. Long; Anne E. Fischer; Matthew P. Saunders; Katherine A. Pettigrew; Debra R. Rolison

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Jeffrey W. Long

Government of the United States of America

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Katherine A. Pettigrew

United States Naval Research Laboratory

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Justin C. Lytle

United States Naval Research Laboratory

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Matthew P. Saunders

United States Naval Research Laboratory

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Azzam N. Mansour

Naval Surface Warfare Center

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Megan E. Bourg

United States Naval Research Laboratory

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Todd M. McEvoy

United States Naval Research Laboratory

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Alia M. Lubers

United States Naval Research Laboratory

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Amanda June Barrow

United States Naval Research Laboratory

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