Literatura académica sobre el tema "Photobiocatalysis"
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Artículos de revistas sobre el tema "Photobiocatalysis"
Harrison, Wesley, Xiaoqiang Huang y Huimin Zhao. "Photobiocatalysis for Abiological Transformations". Accounts of Chemical Research 55, n.º 8 (30 de marzo de 2022): 1087–96. http://dx.doi.org/10.1021/acs.accounts.1c00719.
Texto completoGonçalves, Leticia C. P., Hamid R. Mansouri, Shadi PourMehdi, Mohamed Abdellah, Bruna S. Fadiga, Erick L. Bastos, Jacinto Sá, Marko D. Mihovilovic y Florian Rudroff. "Boosting photobioredox catalysis by morpholine electron donors under aerobic conditions". Catalysis Science & Technology 9, n.º 10 (2019): 2682–88. http://dx.doi.org/10.1039/c9cy00496c.
Texto completoGonçalves, Leticia C. P., Hamid R. Mansouri, Erick L. Bastos, Mohamed Abdellah, Bruna S. Fadiga, Jacinto Sá, Florian Rudroff y Marko D. Mihovilovic. "Morpholine-based buffers activate aerobic photobiocatalysis via spin correlated ion pair formation". Catalysis Science & Technology 9, n.º 6 (2019): 1365–71. http://dx.doi.org/10.1039/c8cy02524j.
Texto completoZhu, Dunming y Ling Hua. "Photobiocatalysis enables asymmetric Csp3–Csp3 cross-electrophile coupling". Chem Catalysis 2, n.º 10 (octubre de 2022): 2429–31. http://dx.doi.org/10.1016/j.checat.2022.09.041.
Texto completoMaciá-Agulló, Juan Antonio, Avelino Corma y Hermenegildo Garcia. "Photobiocatalysis: The Power of Combining Photocatalysis and Enzymes". Chemistry - A European Journal 21, n.º 31 (26 de mayo de 2015): 10940–59. http://dx.doi.org/10.1002/chem.201406437.
Texto completoBlossom, Benedikt M., David A. Russo, Raushan K. Singh, Bart van Oort, Malene B. Keller, Tor I. Simonsen, Alixander Perzon et al. "Photobiocatalysis by a Lytic Polysaccharide Monooxygenase Using Intermittent Illumination". ACS Sustainable Chemistry & Engineering 8, n.º 25 (21 de mayo de 2020): 9301–10. http://dx.doi.org/10.1021/acssuschemeng.0c00702.
Texto completoMARUTHAMUTHU, P., S. MUTHU, K. GURUNATHAN, M. ASHOKKUMAR y M. SASTRI. "Photobiocatalysis: hydrogen evolution using a semiconductor coupled with photosynthetic bacteria". International Journal of Hydrogen Energy 17, n.º 11 (noviembre de 1992): 863–66. http://dx.doi.org/10.1016/0360-3199(92)90036-v.
Texto completoMacia-Agullo, Juan Antonio, Avelino Corma y Hermenegildo Garcia. "ChemInform Abstract: Photobiocatalysis: The Power of Combining Photocatalysis and Enzymes". ChemInform 46, n.º 38 (septiembre de 2015): no. http://dx.doi.org/10.1002/chin.201538283.
Texto completoWang, Zijuan, Dong Gao, Hao Geng y Chengfen Xing. "Enhancing hydrogen production by photobiocatalysis through Rhodopseudomonas palustris coupled with conjugated polymers". Journal of Materials Chemistry A 9, n.º 35 (2021): 19788–95. http://dx.doi.org/10.1039/d1ta01019k.
Texto completoLee, Sahng Ha, Da Som Choi, Su Keun Kuk y Chan Beum Park. "Photobiocatalysis: Activating Redox Enzymes by Direct or Indirect Transfer of Photoinduced Electrons". Angewandte Chemie International Edition 57, n.º 27 (2 de julio de 2018): 7958–85. http://dx.doi.org/10.1002/anie.201710070.
Texto completoTesis sobre el tema "Photobiocatalysis"
Mascia, Francesco. "Engineering ferredoxin-dependent oxyfunctionalization in cyanobacteria". Electronic Thesis or Diss., Aix-Marseille, 2022. http://www.theses.fr/2022AIXM0648.
Texto completoCyanobacteria are attracting growing attention as photo-biocatalysts meeting the criteria of Green Chemistry. They are able to grow using only light and CO2 as energy and carbon sources. The addition of sacrificial electron donors (i.e. glucose) for the recycling of the NADPH cofactor of oxidoreductases is not necessary because it is regenerated by electrons from the photosynthetic oxidation of water, while the oxygenases can use the oxygen produced in-situ during photosynthesis. A strain of Synechocystis sp. PCC 6803, modified to express CYP153A6, a cytochrome P450, selectively hydroxylates limonene, a cheap and widely available substrate, to perillyl alcohol, usable as a flavor or drug. Another strain, expressing only CYP110D1 without any electron-carrier proteins of this cytochrome P450, catalyzes the regioselective hydroxylation of testosterone to 15β-hydroxytestosterone, which is more bioavailable and suitable for oral formulations. The activity (1 U gCDW-1) is twice as high as that of the reactions biocatalyzed by the bacterium Escherichia coli. A CYP110D1-Fed1 fusion protein, one of the native Synechocystis ferredoxins, was also designed, aiming to channel photosystem I electrons more efficiently to monooxygenase. This work demonstrated the efficacy of modified cyanobacteria expressing cytochromes P450 when used as biocatalysts in whole-cell processes. They enable the sustainable production of high-value products, such as pharmaceuticals
Capítulos de libros sobre el tema "Photobiocatalysis"
Verma, Madan L., Sarita Devi y Motilal Mathesh. "Photobiocatalysis: At the Interface of Photocatalysis and Biocatalysts". En Environmental Chemistry for a Sustainable World, 187–209. Cham: Springer International Publishing, 2019. http://dx.doi.org/10.1007/978-3-030-17638-9_7.
Texto completoSamantaray, Paresh Kumar, Giridhar Madras y Suryasarathi Bose. "Microbial Biofilm Membranes for Water Remediation and Photobiocatalysis". En ACS Symposium Series, 321–51. Washington, DC: American Chemical Society, 2019. http://dx.doi.org/10.1021/bk-2019-1329.ch014.
Texto completoYamanaka, Rio y Kaoru Nakamura. "Photobiocatalysis". En Future Directions in Biocatalysis, 69–82. Elsevier, 2017. http://dx.doi.org/10.1016/b978-0-444-63743-7.00003-2.
Texto completoTamborini, Lucia, Francesco Molinari y Andrea Pinto. "Development of asymmetric biotransformations: flow biocatalysis, photobiocatalysis, and microwave biocatalysis". En Biocatalysis in Asymmetric Synthesis, 403–29. Elsevier, 2024. http://dx.doi.org/10.1016/b978-0-443-19057-5.00001-7.
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