B. Huang, H. Kobayashi, T. Yamamoto, S. Matsumura, Y. Nishida, K. Sato, K. Nagaoka, S. Kawaguchi, Y. Kubota, H. Kitagawa,* Solid-Solution Alloying of Immiscible Ru and Cu with Enhanced CO Oxidation Activity, J. Am. Chem. Soc. 2017, 139, 4643-4646.
B. Huang, H. Kobayashi,* T. Yamamoto, T. Toriyama, S. Matsumura, Y. Nishida, K. Sato, K. Nagaoka, M. Haneda, W. Xie, Y. Nanba, M. Koyama, F. Wang, S. Kawaguchi, Y. Kubota, H. Kitagawa,* A CO Adsorption Site Change Induced by Copper Substitution in a Ruthenium Catalyst for Enhanced CO Oxidation Activity, Angew. Chem. Int. Ed., 2019, 58, 2230-2235
B. Huang,* H. Kobayashi, T. Yamamoto, S. Matsumura, Y. Nishida, K. Sato, K. Nagaoka, M. Haneda, S. Kawaguchi, Y. Kubota, H. Kitagawa,* Coreduction Methodology for Immiscible Alloy of CuRu Solid-Solution Nanoparticles with High Thermal Stability and Versatile Exhaust Purification Ability, Chem. Sci., 2020, 11, 11413-11418.
Z. Tan, M. Haneda, H. Kitagawa, B. Huang,* Slow Synthesis Methodology-Directed Immiscible Octahedral PdxRh1-x Dual-Atom-Site Catalysts for Superior Three-Way Catalytic Activities over Rh, Angew. Chem. Int. Ed., 2022, 134, e202202588.
Z. Tan, M. Haneda, Y. Nishida, Q. Zhang, D. Wu, J. Cheng, H. Kitagawa, and B. Huang.* Discovering Linear Descriptors for Activation Energy and Direct Hydrocarbon Dissociations by Dual-Atom Sites in Immiscible PdxPt1–x Solid Solutions. Chem. Mater. 2024, 36, 524–532.
Z. Tan and B. Huang.* Independent Multiple-Atom-Site Functionality in Composition Adjustable Immiscible Ru-Rh-Pd-Pt Solid-Solution High-Entropy Alloys for NOx Reduction Outperforming Rh. Angew. Chem. Int. Ed., 2024, 63, e202400496.
Y. Liu,*,# W. Zhai,# P. Cui, L. Li, Z. Dai, B. Huang*, Energy-Induced Phase-Control Syntheses of Single-Phase NixRu1−x Solid Solutions and Active-Moderate-Sites Synergy in the Oxygen Evolution Reaction. Chem. Mater. 2024, 36, 8965–8975.
J. Gao, B. Huang,* One-Step Syntheses of Face-Centered Cubic OsxPt1-x/C with Near-Zero-Overpotential Hydrogen Evolution from Electronic-State Engineering. Adv. Sci., 2025, 2504161.
Y. Qin, J. Gao, B. Huang,* Nitric Oxide-to-Ammonia Synthesis with Nearly 100% Yield by Ambient-Pressure Thermocatalysis under Mild Temperature. J. Am. Chem. Soc., 2025, 147, 29673–29678.