Miguel A. Modestino, Ph.D.

Affiliations: 
2013 Chemical Engineering University of California, Berkeley, Berkeley, CA, United States 
Area:
Polymer Science
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"Miguel Modestino"
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Parents

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Paula T. Hammond research assistant 2003-2008 MIT
Rachel A. Segalman grad student 2013 UC Berkeley
 (Self-Assembly and Mass Transport in Membranes for Artificial Photosynthesis.)
Demetri Psaltis post-doc 2013- EPFL (Physics Tree)
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Publications

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Katzenberg A, Chowdhury A, Fang M, et al. (2020) Highly Permeable Perfluorinated Sulfonic Acid Ionomers for Improved Electrochemical Devices: Insights into Structure - Property Relationships. Journal of the American Chemical Society
Katzenberg A, Mukherjee D, Dudenas PJ, et al. (2020) Dynamic Emergence of Nanostructure and Transport Properties in Perfluorinated Sulfonic Acid Ionomers Macromolecules
Peñas P, van der Linde P, Vijselaar W, et al. (2019) Decoupling Gas Evolution from Water-Splitting Electrodes Journal of the Electrochemical Society. 166: H769-H776
Chinello E, Modestino MA, Schüttauf JW, et al. (2019) A comparative performance analysis of stand-alone, off-grid solar-powered sodium hypochlorite generators Rsc Advances. 9: 14432-14442
Hadikhani P, Hashemi SMH, Balestra G, et al. (2018) Inertial manipulation of bubbles in rectangular microfluidic channels. Lab On a Chip
Chinello E, Modestino MA, Coulot L, et al. (2017) A 25.1% Efficient Stand-Alone Solar Chloralkali Generator Employing a Microtracking Solar Concentrator. Global Challenges (Hoboken, Nj). 1: 1700095
Hashemi S, Neuenschwander M, Hadikhani P, et al. (2017) Membrane-less micro fuel cell based on two-phase flow Journal of Power Sources. 348: 212-218
Xiang C, Weber AZ, Ardo S, et al. (2016) Modeling, Simulation, and Implementation of Solar-Driven Water-Splitting Devices. Angewandte Chemie (International Ed. in English)
Zielinski MS, Choi JW, La Grange T, et al. (2016) Hollow Mesoporous Plasmonic Nanoshells for Enhanced Solar Vapor Generation. Nano Letters
Schüttauf J, Modestino MA, Chinello E, et al. (2016) Solar-to-Hydrogen Production at 14.2% Efficiency with Silicon Photovoltaics and Earth-Abundant Electrocatalysts Journal of the Electrochemical Society. 163: F1177-F1181
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