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Accounts of Chemical Research|September 26, 2017
Cyborgian Material Design for Solar Fuel Production: The Emerging Photosynthetic Biohybrid SystemsKelsey K Sakimoto, Nikolay Kornienko, Peidong YangScience (New York, N.Y.)|January 2, 2016
Self-photosensitization of nonphotosynthetic bacteria for solar-to-chemical productionKelsey K Sakimoto, Andrew Barnabas Wong, Peidong YangNano Letters|August 19, 2016
Cysteine-Cystine Photoregeneration for Oxygenic Photosynthesis of Acetic Acid from CO2 by a Tandem Inorganic-Biological Hybrid SystemKelsey K Sakimoto, Stephanie J Zhang, Peidong YangAngewandte Chemie (International Ed. in English)|January 17, 2015
Artificial photosynthesis for sustainable fuel and chemical productionDohyung Kim, Kelsey K Sakimoto, Dachao Hong, et al.Nano Letters|August 14, 2014
Salt-induced self-assembly of bacteria on nanowire arraysKelsey K Sakimoto, Chong Liu, Jongwoo Lim, et al.Current Opinion in Chemical Biology|November 15, 2017
Biological-inorganic hybrid systems as a generalized platform for chemical productionShannon N Nangle, Kelsey K Sakimoto, Pamela A Silver, et al.Nature Nanotechnology|October 7, 2018
Interfacing nature's catalytic machinery with synthetic materials for semi-artificial photosynthesisNikolay Kornienko, Jenny Z Zhang, Kelsey K Sakimoto, et al.Journal of the American Chemical Society|January 25, 2018
Physical Biology of the Materials-Microorganism InterfaceKelsey K Sakimoto, Nikolay Kornienko, Stefano Cestellos-Blanco, et al.Proceedings of the National Academy of Sciences of the United States of America|June 8, 2017
Ambient nitrogen reduction cycle using a hybrid inorganic-biological systemChong Liu, Kelsey K Sakimoto, Brendan C Colón, et al.Science (New York, N.Y.)|November 17, 2018
Light-driven fine chemical production in yeast biohybridsJunling Guo, Miguel Suástegui, Kelsey K Sakimoto, et al.Pageof 2