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Dive into the research topics where Anna E. Javier is active.

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Featured researches published by Anna E. Javier.


Angewandte Chemie | 2011

Simultaneous Electronic and Ionic Conduction in a Block Copolymer: Application in Lithium Battery Electrodes†

Anna E. Javier; Shrayesh N. Patel; Daniel T. Hallinan; Venkat Srinivasan; Nitash P. Balsara

Charging ahead: separate values for the simultaneous electronic and ionic conductivity of a conjugated polymer containing poly(3-hexylthiophene) and poly(ethylene oxide) (P3HT-PEO) were determined by using ac impedance and dc techniques. P3HT-PEO was used as binder, and transporter of electronic charge and Li(+) ions in a LiFePO(4) cathode, which was incorporated into solid-state lithium batteries.


ACS Nano | 2012

Simultaneous Conduction of Electronic Charge and Lithium Ions in Block Copolymers

Shrayesh N. Patel; Anna E. Javier; Greg M. Stone; Scott A. Mullin; Nitash P. Balsara

The main objective of this work is to study charge transport in mixtures of poly(3-hexylthiophene)-b-poly(ethylene oxide) (P3HT-PEO) block copolymers and lithium bis(trifluoromethanesulfonyl) imide salt (LiTFSI). The P3HT-rich microphase conducts electronic charge, while the PEO-rich microphase conducts ionic charge. The nearly symmetric P3HT-PEO copolymer used in this study self-assembles into a lamellar phase. In contrast, the morphologies of asymmetric copolymers with P3HT as the major component are dominated by nanofibrils. A combination of ac and dc impedance measurements was used to determine the electronic and ionic conductivities of our samples. The ionic conductivities of P3HT-PEO/LiTFSI mixtures are lower than those of mixtures of PEO homopolymer and LiTFSI, in agreement with published data obtained from other block copolymer/salt mixtures. In contrast, the electronic conductivities of the asymmetric P3HT-PEO copolymers are significantly higher than those of the P3HT homopolymer. This is unexpected because of the presence of the nonelectronically conducting PEO microphase. This implies that the intrinsic electronic conductivity of the P3HT microphase in P3HT-PEO copolymers is significantly higher than that of P3HT homopolymers.


Nano Letters | 2012

Morphology and Thermodynamic Properties of a Copolymer with an Electronically Conducting Block: Poly(3-ethylhexylthiophene)-block-poly(ethylene oxide)

Shrayesh N. Patel; Anna E. Javier; Keith M. Beers; John A. Pople; Victor Ho; Rachel A. Segalman; Nitash P. Balsara


ACS Nano | 2013

Electrochemically Oxidized Electronic and Ionic Conducting Nanostructured Block Copolymers for Lithium Battery Electrodes

Shrayesh N. Patel; Anna E. Javier; Nitash P. Balsara


Journal of The Electrochemical Society | 2014

Discharge Characteristics of Lithium Battery Electrodes with a Semiconducting Polymer Studied by Continuum Modeling and Experiment

Shao-Ling Wu; Anna E. Javier; Didier Devaux; Nitash P. Balsara; Venkat Srinivasan


ACS Macro Letters | 2015

Relationship between Mobility and Lattice Strain in Electrochemically Doped Poly(3-hexylthiophene)

Jacob L. Thelen; Shao-Ling Wu; Anna E. Javier; Venkat Srinivasan; Nitash P. Balsara; Shrayesh N. Patel


Bulletin of the American Physical Society | 2014

Probing Structural Changes in Poly(3-hexylthiophene) (P3HT) During Electrochemical Oxidation with In Situ X-ray Scattering

Jacob L. Thelen; Shrayesh N. Patel; Anna E. Javier; Nitash P. Balsara


Bulletin of the American Physical Society | 2013

Charge Transport Properties of P3HT-PEO block copolymers that are Electrochemically Oxidized in the Solid-State

Shrayesh N. Patel; Anna E. Javier; Nitash P. Balsara


224th ECS Meeting (October 27 – November 1, 2013) | 2013

Structural Impacts of Electrochemically Doping Simultaneous Ionic and Electronic Conducting Block Copolymer Electrolytes in the Solid-State

Jacob L. Thelen; Shrayesh N. Patel; Anna E. Javier; Nitash P. Balsara


224th ECS Meeting (October 27 – November 1, 2013) | 2013

Multifunctional Binder-Electrolyte for Use in Lithium Battery Cathodes

Anna E. Javier; Shrayesh N. Patel; Nitash P. Balsara

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Venkat Srinivasan

Lawrence Berkeley National Laboratory

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Shao-Ling Wu

Lawrence Berkeley National Laboratory

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Didier Devaux

Lawrence Berkeley National Laboratory

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Keith M. Beers

Lawrence Berkeley National Laboratory

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