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Inside Back Cover: H2‐Fueled ATP Synthesis on an Electrode: Mimicking Cellular Respiration (Angew. Chem. Int. Ed. 21/2016) 下载免费PDF全文
Dr. Óscar Gutiérrez‐Sanz Dr. Paolo Natale Dr. Ileana Márquez Dr. Marta C. Marques Sonia Zacarias Dr. Marcos Pita Dr. Inês A. C. Pereira Dr. Iván López‐Montero Dr. Antonio L. De Lacey Dr. Marisela Vélez 《Angewandte Chemie (International ed. in English)》2016,55(21):6343-6343
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Dr. Óscar Gutiérrez‐Sanz Dr. Paolo Natale Dr. Ileana Márquez Dr. Marta C. Marques Sonia Zacarias Dr. Marcos Pita Dr. Inês A. C. Pereira Dr. Iván López‐Montero Dr. Antonio L. De Lacey Dr. Marisela Vélez 《Angewandte Chemie (International ed. in English)》2016,55(21):6216-6220
ATP, the molecule used by living organisms to supply energy to many different metabolic processes, is synthesized mostly by the ATPase synthase using a proton or sodium gradient generated across a lipid membrane. We present evidence that a modified electrode surface integrating a NiFeSe hydrogenase and a F1F0‐ATPase in a lipid membrane can couple the electrochemical oxidation of H2 to the synthesis of ATP. This electrode‐assisted conversion of H2 gas into ATP could serve to generate this biochemical fuel locally when required in biomedical devices or enzymatic synthesis of valuable products. 相似文献
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