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Management of synchronized network activity by highly active neurons
Physical Biology, 2008 Increasing evidence supports the idea that spontaneous brain activity may have an important functional role. Cultured neuronal networks provide a suitable model system to search for the mechanisms by which neuronal spontaneous activity is maintained and regulated.Mark, Shein, Vladislav, Volman, Nadav, Raichman, Yael, Hanein, Eshel, Ben-Jacob +4 moreopenaire +2 more sourcesStructural transformation of highly active metal–organic framework electrocatalysts during the oxygen evolution reaction
Nature Energy, 2020 Shenlong Zhao, C. Tan, Chun He, P. An, Feng Xie, Shuai Jiang, Yanfei Zhu, Kuang‐Hsu Wu, Binwei Zhang, Haijing Li, Jing Zhang, Yuan Chen, Shaoqin Liu, Juncai Dong, Zhiyong Tang +14 moresemanticscholar +1 more sourceA highly active and stable IrOx/SrIrO3 catalyst for the oxygen evolution reaction
Science, 2016 L. Seitz, Colin F. Dickens, K. Nishio, Y. Hikita, Joseph H. Montoya, Andrew D. Doyle, Charlotte S. Kirk, A. Vojvodić, H. Hwang, J. Nørskov, T. Jaramillo +10 moresemanticscholar +1 more sourceHighly active and stable stepped Cu surface for enhanced electrochemical CO2 reduction to C2H4
Nature Catalysis, 2020 Chungseok Choi, Soonho Kwon, T. Cheng, Mingjie Xu, Peter Tieu, Changsoo Lee, Jindi Cai, Hyuck-Mo Lee, Xiaoqing Pan, X. Duan, W. Goddard, Yu Huang +11 moresemanticscholar +1 more sourceTailoring the d-Band Centers Enables Co4 N Nanosheets To Be Highly Active for Hydrogen Evolution Catalysis.
Angewandte Chemie, 2018 Zhi-Yan Chen, Yao Song, Jinyan Cai, Xusheng Zheng, Dongdong Han, Yishang Wu, Y. Zang, Shuwen Niu, Yun Liu, Junfa Zhu, Xiaojing Liu, Gongming Wang +11 moresemanticscholar +1 more sourceIdentification of a reservoir for HIV-1 in patients on highly active antiretroviral therapy.
Science, 1997 D. Finzi, M. Heřmánková, T. Pierson, L. Carruth, C. Buck, R. Chaisson, T. Quinn, K. Chadwick, J. Margolick, R. Brookmeyer, J. Gallant, M. Markowitz, D. Ho, D. Richman, R. Siliciano +14 moresemanticscholar +1 more sourceDynamic surface self-reconstruction is the key of highly active perovskite nano-electrocatalysts for water splitting.
Nature Materials, 2017 E. Fabbri, M. Nachtegaal, Tobias Binninger, Xi Cheng, B. Kim, J. Durst, F. Bozza, T. Graule, R. Schäublin, Luke Wiles, Morgan Pertoso, N. Danilović, K. Ayers, T. Schmidt +13 moresemanticscholar +1 more source