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Nature Communications|August 11, 2015
Hydride bridge in [NiFe]-hydrogenase observed by nuclear resonance vibrational spectroscopyHideaki Ogata, Tobias Krämer, Hongxin Wang, et al.Angewandte Chemie (International Ed. in English)|June 21, 2018
Terminal Hydride Species in [FeFe]-Hydrogenases Are Vibrationally Coupled to the Active Site EnvironmentCindy C Pham, David W Mulder, Vladimir Pelmenschikov, et al.Physical Review Letters|July 12, 2024
Broadband Quasielastic Scattering Spectroscopy Using a Multiline Frequency Comblike Spectrum in the Hard X-Ray RegionMakina Saito, Masashi Kobayashi, Haruki Nishino, et al.Chemical Science|June 24, 2021
Hydroxy-bridged resting states of a [NiFe]-hydrogenase unraveled by cryogenic vibrational spectroscopy and DFT computationsGiorgio Caserta, Vladimir Pelmenschikov, Christian Lorent, et al.Nature Communications|March 31, 2025
Nuclear phase retrieval spectroscopy using resonant x-ray scatteringZiyang Yuan, Hongxia Wang, Zhiwei Li, et al.Inorganic Chemistry|April 15, 2008
Characterization of the Fe site in iron-sulfur cluster-free hydrogenase (Hmd) and of a model compound via nuclear resonance vibrational spectroscopy (NRVS)Yisong Guo, Hongxin Wang, Yuming Xiao, et al.Nature Chemical Biology|January 26, 2023
Stepwise assembly of the active site of [NiFe]-hydrogenaseGiorgio Caserta, Sven Hartmann, Casey Van Stappen, et al.JACS Au|January 30, 2026
Disentangling First and Second Sphere Effects in Iron-Sulfur CubanesLiam Grunwald, Katja-Sophia Csizi, Daniel Klose, et al.Journal of the American Chemical Society|May 2, 2017
Peroxide Activation for Electrophilic Reactivity by the Binuclear Non-heme Iron Enzyme AurFKiyoung Park, Ning Li, Yeonju Kwak, et al.Journal of the American Chemical Society|October 26, 2020
Nuclear Resonance Vibrational Spectroscopic Definition of the Facial Triad Fe<sup>IV</sup>═O Intermediate in Taurine Dioxygenase: Evaluation of Structural Contributions to Hydrogen Atom AbstractionMartin Srnec, Shyam R Iyer, Laura M K Dassama, et al.Pageof 11