Ana Claudia Arias, PhD
Affiliations: | 1997- | Physics | University of Cambridge, Cambridge, England, United Kingdom |
2011- | Electrical Engineering and Computer Science | University of California, Berkeley, Berkeley, CA, United States |
Area:
Physical Electronics (PHY); Flexible and Printed Electronics; Energy (ENE)Website:
https://arias.berkeley.eduGoogle:
"Ana Claudia Arias"
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Publications
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Zhu J, Han D, Wu X, et al. (2020) Highly Flexible Transparent Micromesh Electrodes via Blade-coated Polymer Networks for Organic Light-emitting Diodes. Acs Applied Materials & Interfaces |
Zamarayeva AM, Jegraj A, Toor A, et al. (2020) Electrode Composite for Flexible Zinc‐Manganese Dioxide Batteries through In‐situ Polymerization of Polymer Hydrogel Energy Technology. 8: 1901165 |
Sadeghi M, Delparastan P, Pierre A, et al. (2020) Printed Flexible Organic Transistors with Tunable Aspect Ratios Advanced Electronic Materials. 6: 1901207 |
Khan Y, Thielens A, Muin S, et al. (2019) A New Frontier of Printed Electronics: Flexible Hybrid Electronics. Advanced Materials (Deerfield Beach, Fla.). e1905279 |
Deckman I, Lechêne PB, Pierre A, et al. (2018) All-printed full-color pixel organic photodiode array with a single active layer Organic Electronics. 56: 139-145 |
Zamarayeva AM, Ostfeld AE, Wang M, et al. (2017) Flexible and stretchable power sources for wearable electronics. Science Advances. 3: e1602051 |
Han D, Khan Y, Ting J, et al. (2017) Flexible Blade-Coated Multicolor Polymer Light-Emitting Diodes for Optoelectronic Sensors. Advanced Materials (Deerfield Beach, Fla.) |
Gaikwad AM, Arias AC. (2017) Understanding the Effects of Electrode Formulation on the Mechanical Strength of Composite Electrodes for Flexible Batteries. Acs Applied Materials & Interfaces |
Pierre A, Gaikwad A, Arias AC. (2017) Charge-integrating organic heterojunction phototransistors for wide-dynamic-range image sensors Nature Photonics. 11: 193-199 |
Lechene BP, Clerc R, Arias AC. (2017) Theoretical analysis and characterization of the energy conversion and storage efficiency of photo-supercapacitors Solar Energy Materials and Solar Cells. 172: 202-212 |