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2026 Journal Article Robust distributed Rydberg sensing under heterogeneous noise via evidential multi-view learningZhang, Li, Liang, Xinyan, Qian, Yuhua, Yuan, Jinpeng, Zhang, Linjie, Ding, Dong-Sheng and Li, Feng (2026). Robust distributed Rydberg sensing under heterogeneous noise via evidential multi-view learning. Information Fusion, 138 104719, 104719. doi: 10.1016/j.inffus.2026.104719 |
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2026 Journal Article Polymer Brushes Govern Defect‐Selective Oxidative Etching of Penta‐Twinned Gold NanorodsWu, Tianyi, Koriakina, Irina, Li, Feng, Yang, Zhi‐bo, Zhang, Yan, Chen, Zitao, Wang, Da, Nie, Zhihong, Liu, Kun and Kumacheva, Eugenia (2026). Polymer Brushes Govern Defect‐Selective Oxidative Etching of Penta‐Twinned Gold Nanorods. Angewandte Chemie International Edition e8508304. doi: 10.1002/anie.8508304 |
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2025 Journal Article Voltage distribution within carbon dioxide reduction electrolysersArabyarmohammadi, Fatemeh, Miao, Rui Kai, Zeraati, Ali Shayesteh, Zargartalebi, Mohammad, O’Brien, Colin P., Dorakhan, Roham, Alkayyali, Tartela, Lee, Geonhui, Fan, Mengyang, Abed, Jehad, Li, Feng, Sargent, Edward H. and Sinton, David (2025). Voltage distribution within carbon dioxide reduction electrolysers. Nature Sustainability, 8 (12), 1592-1600. doi: 10.1038/s41893-025-01643-4 |
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2025 Journal Article Proton-Tuned Surface Chemistry Promotes Multicarbon Formation in Acidic CO<sub>2</sub> ElectroreductionSong, Qingqing, Li, Feng, Xu, Aoni, Zhang, Chenchen, Xie, Yuanming, Mao, Junjun, Zhang, Ying and Zhao, Yong (2025). Proton-Tuned Surface Chemistry Promotes Multicarbon Formation in Acidic CO2 Electroreduction. The Journal of Physical Chemistry Letters, 16 (40), 10499-10505. doi: 10.1021/acs.jpclett.5c02529 |
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2025 Journal Article Atomic-level Cu active sites enable energy-efficient CO2 electroreduction to multicarbon products in strong acidFan, Lizhou, Li, Feng, Liu, Tianqi, Huang, Jianan Erick, Miao, Rui Kai, Yan, Yu, Feng, Shihui, Tai, Cheuk-Wai, Hung, Sung-Fu, Tsai, Hsin-Jung, Chen, Meng-Cheng, Bai, Yang, Kim, Dongha, Park, Sungjin, Papangelakis, Panos, Wu, Chengqian, Shayesteh Zeraati, Ali, Dorakhan, Roham, Sun, Licheng, Sinton, David and Sargent, Edward (2025). Atomic-level Cu active sites enable energy-efficient CO2 electroreduction to multicarbon products in strong acid. Nature Synthesis, 4 (2) e202211396, 262-270. doi: 10.1038/s44160-024-00689-0 |
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2025 Journal Article Rapid screening of CO <sub>2</sub> capture fluidsGuo, Yaohao, Li, Feng, Saber, Sepehr, Zargartalebi, Mohammad, Sun, Siyu Sonia, Xiao, Yurou Celine, Bao, Bo, Xu, Zhi and Sinton, David (2025). Rapid screening of CO 2 capture fluids. Lab on a Chip, 25 (12), 2918-2925. doi: 10.1039/d4lc00772g |
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2025 Journal Article Carbon- and energy-efficient ethanol electrosynthesis via interfacial cation enrichmentShayesteh Zeraati, Ali, Li, Feng, Alkayyali, Tartela, Dorakhan, Roham, Shirzadi, Erfan, Arabyarmohammadi, Fatemeh, O’Brien, Colin P., Gabardo, Christine M., Kong, Jonathan, Ozden, Adnan, Zargartalebi, Mohammad, Zhao, Yong, Fan, Lizhou, Papangelakis, Panagiotis, Kim, Dongha, Park, Sungjin, Miao, Rui Kai, Edwards, Jonathan P., Young, Daniel, Ip, Alexander H., Sargent, Edward H. and Sinton, David (2025). Carbon- and energy-efficient ethanol electrosynthesis via interfacial cation enrichment. Nature Synthesis, 4 (1) 2101334, 75-83. doi: 10.1038/s44160-024-00662-x |
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2024 Journal Article Reactive capture of CO2 via amino acidXiao, Yurou Celine, Sun, Siyu Sonia, Zhao, Yong, Miao, Rui Kai, Fan, Mengyang, Lee, Geonhui, Chen, Yuanjun, Gabardo, Christine M., Yu, Yan, Qiu, Chenyue, Guo, Zunmin, Wang, Xinyue, Papangelakis, Panagiotis, Huang, Jianan Erick, Li, Feng, O’Brien, Colin P., Kim, Jiheon, Han, Kai, Corbett, Paul J., Howe, Jane Y., Sargent, Edward H. and Sinton, David (2024). Reactive capture of CO2 via amino acid. Nature Communications , 15 (1) 7849. doi: 10.1038/s41467-024-51908-3 |
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2024 Journal Article Site-selective protonation enables efficient carbon monoxide electroreduction to acetateWang, Xinyue, Chen, Yuanjun, Li, Feng, Miao, Rui Kai, Huang, Jianan Erick, Zhao, Zilin, Li, Xiao-Yan, Dorakhan, Roham, Chu, Senlin, Wu, Jinhong, Zheng, Sixing, Ni, Weiyan, Kim, Dongha, Park, Sungjin, Liang, Yongxiang, Ozden, Adnan, Ou, Pengfei, Hou, Yang, Sinton, David and Sargent, Edward H. (2024). Site-selective protonation enables efficient carbon monoxide electroreduction to acetate. Nature Communications, 15 (1) 616. doi: 10.1038/s41467-024-44727-z |
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2024 Journal Article Acid-Stable Cu Cluster Precatalysts Enable High Energy and Carbon Efficiency in CO2 ElectroreductionKim, Dongha, Park, Sungjin, Lee, Junwoo, Chen, Yiqing, Li, Feng, Kim, Jiheon, Bai, Yang, Huang, Jianan Erick, Liu, Shijie, Jung, Eui Dae, Lee, Byoung-Hoon, Papangelakis, Panagiotis, Ni, Weiyan, Alkayyali, Tartela, Miao, Rui Kai, Li, Peihao, Liang, Yongxiang, Shayesteh Zeraati, Ali, Dorakhan, Roham, Meira, Debora Motta, Chen, Yanna, Sinton, David, Zhong, Mingjiang and Sargent, Edward H. (2024). Acid-Stable Cu Cluster Precatalysts Enable High Energy and Carbon Efficiency in CO2 Electroreduction. Journal of the American Chemical Society, 146 (40), 27701-27712. doi: 10.1021/jacs.4c09230 |
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2024 Journal Article Efficient ethylene electrosynthesis through C–O cleavage promoted by water dissociationLiang, Yongxiang, Li, Feng, Miao, Rui Kai, Hu, Sunpei, Ni, Weiyan, Zhang, Shuzhen, Liu, Yanjiang, Bai, Yang, Wan, Haoyue, Ou, Pengfei, Li, Xiao-Yan, Wang, Ning, Park, Sungjin, Li, Fengwang, Zeng, Jie, Sinton, David and Sargent, Edward H. (2024). Efficient ethylene electrosynthesis through C–O cleavage promoted by water dissociation. Nature Synthesis, 3 (9), 1104-1112. doi: 10.1038/s44160-024-00568-8 |
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2024 Journal Article Improving the SO2 tolerance of CO2 reduction electrocatalysts using a polymer/catalyst/ionomer heterojunction designPapangelakis, Panagiotis, Miao, Rui Kai, Lu, Ruihu, Liu, Hanqi, Wang, Xi, Ozden, Adnan, Liu, Shijie, Sun, Ning, O’Brien, Colin P., Hu, Yongfeng, Shakouri, Mohsen, Xiao, Qunfeng, Li, Mengsha, Khatir, Behrooz, Huang, Jianan Erick, Wang, Yakun, Xiao, Yurou Celine, Li, Feng, Zeraati, Ali Shayesteh, Zhang, Qiang, Liu, Pengyu, Golovin, Kevin, Howe, Jane Y., Liang, Hongyan, Wang, Ziyun, Li, Jun, Sargent, Edward H. and Sinton, David (2024). Improving the SO2 tolerance of CO2 reduction electrocatalysts using a polymer/catalyst/ionomer heterojunction design. Nature Energy, 9 (8), 1011-1020. doi: 10.1038/s41560-024-01577-9 |
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2024 Journal Article Pathways to reduce the energy cost of carbon monoxide electroreduction to ethyleneAlkayyali, Tartela, Zargartalebi, Mohammad, Ozden, Adnan, Arabyarmohammadi, Fatemeh, Dorakhan, Roham, Edwards, Jonathan P., Li, Feng, Shayesteh Zeraati, Ali, Fan, Mengyang, Bazylak, Aimy, Sargent, Edward H. and Sinton, David (2024). Pathways to reduce the energy cost of carbon monoxide electroreduction to ethylene. Joule, 8 (5), 1478-1500. doi: 10.1016/j.joule.2024.02.014 |
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2024 Journal Article Direct air capture of CO2via cyclic viologen electrocatalysisLiu, Shijie, Zhang, Jinqiang, Li, Feng, Edwards, Jonathan P., Xiao, Yurou Celine, Kim, Dongha, Papangelakis, Panagiotis, Kim, Jiheon, Elder, David, De Luna, Phil, Fan, Mengyang, Lee, Geonhui, Miao, Rui Kai, Ghosh, Tanushree, Yan, Yu, Chen, Yuanjun, Zhao, Yong, Guo, Zunmin, Tian, Cong, Li, Peihao, Xu, Yi, Sargent, Edward H. and Sinton, David (2024). Direct air capture of CO2via cyclic viologen electrocatalysis. Energy and Environmental Science, 17 (3), 1266-1278. doi: 10.1039/d3ee03024e |
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2023 Journal Article Cationic-group-functionalized electrocatalysts enable stable acidic CO2 electrolysisFan, Mengyang, Huang, Jianan Erick, Miao, Rui Kai, Mao, Yu, Ou, Pengfei, Li, Feng, Li, Xiao-Yan, Cao, Yufei, Zhang, Zishuai, Zhang, Jinqiang, Yan, Yu, Ozden, Adnan, Ni, Weiyan, Wang, Ying, Zhao, Yong, Chen, Zhu, Khatir, Behrooz, O’Brien, Colin P., Xu, Yi, Xiao, Yurou Celine, Waterhouse, Geoffrey I. N., Golovin, Kevin, Wang, Ziyun, Sargent, Edward H. and Sinton, David (2023). Cationic-group-functionalized electrocatalysts enable stable acidic CO2 electrolysis. Nature Catalysis, 6 (9), 763-772. doi: 10.1038/s41929-023-01003-5 |
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2022 Journal Article Nickel-Catalyzed Urea Electrolysis: From Nitrite and Cyanate as Major Products to Nitrogen EvolutionTatarchuk, Stephen W., Medvedev, Jury J., Li, Feng, Tobolovskaya, Yulia and Klinkova, Anna (2022). Nickel-Catalyzed Urea Electrolysis: From Nitrite and Cyanate as Major Products to Nitrogen Evolution. Angewandte Chemie - International Edition, 61 (39) e202209839. doi: 10.1002/anie.202209839 |
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2022 Journal Article Interparticle gap geometry effects on chiroptical properties of plasmonic nanoparticle assembliesLi, Feng, Chandrasekar, Skandan, Ahmed, Aftab and Klinkova, Anna (2022). Interparticle gap geometry effects on chiroptical properties of plasmonic nanoparticle assemblies. Nanotechnology, 33 (12) 125203. doi: 10.1088/1361-6528/ac3f12 |
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2021 Journal Article Interplay of electrochemical and electrical effects induces structural transformations in electrocatalystsLi, Feng, Medvedeva, Xenia V., Medvedev, Jury J., Khairullina, Evgeniia, Engelhardt, Helen, Chandrasekar, Skandan, Guo, Yinzhou, Jin, Jian, Lee, Anna, Thérien-Aubin, Héloïse, Ahmed, Aftab, Pang, Yuanjie and Klinkova, Anna (2021). Interplay of electrochemical and electrical effects induces structural transformations in electrocatalysts. Nature Catalysis, 4 (6), 479-487. doi: 10.1038/s41929-021-00624-y |
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2019 Journal Article Reductive and coordinative effects of hydrazine in structural transformations of copper hydroxide nanoparticlesMedvedeva, Xenia, Vidyakina, Aleksandra, Li, Feng, Mereshchenko, Andrey and Klinkova, Anna (2019). Reductive and coordinative effects of hydrazine in structural transformations of copper hydroxide nanoparticles. Nanomaterials, 9 (10) 1445. doi: 10.3390/nano9101445 |
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2019 Journal Article Pd-CNT-SiO2 nanoskein: Composite structure design for formic acid dehydrogenationSousa-Castillo, Ana, Li, Feng, Carbó-Argibay, Enrique, Correa-Duarte, Miguel A. and Klinkova, Anna (2019). Pd-CNT-SiO2 nanoskein: Composite structure design for formic acid dehydrogenation. Chemical Communications, 55 (72). doi: 10.1039/c9cc04593g |