以第一作者及通讯作者在CCS Chem.; Angew. Chem.;Energy Environ. Sci.; AIChE J.;Chem. Sci.;ACS Nano; Chem. Eng. J.;Adv. Funct. Mater.;Energy Storage Mater.; Ind. Eng. Chem. Res.;等学术期刊上共发表研究论文30余篇。 1.Hong Zhang, et. al. Quasi-Solid Sulfur Conversion for Energetic All-Solid-State Na-S Battery, Angew. Chem. Int. Ed. 2024, e202402274. 2.Hong Zhang*, et. al. Confined Tandem Catalytic Quasi-Solid Sulfur Reversible Conversion for All-Solid-State Na-S Batteries, Energy Environ. Sci. 2024, 10.1039/D4EE01750A. 3.Hong Zhang, et. al. Bidirectional Tandem Electrocatalysis Manipulated Sulfur Speciation Pathway for High-Capacity and Stable Na-S Battery, Angew. Chem. Int. Ed. 2023, 135, e202217009. 4.Hong Zhang, et. al. Atomic Manganese Manipulating Polysulfide Speciation Pathway for Room-Temperature Na-S Batteries, CCS Chem. 2024, 1-6. 5.Hong Zhang*, et. al. Binary Atomic Sites enable a confined bidirectional tandem electrocatalytic sulfur conversion for low temperature all-solid-state Na-S batteries, Angew. Chem. Int. Ed. 2024, e202317776. 6.Hong Zhang*, et. al. Continuous and Scalable Synthesis of Prussian Blue Analogues with Tunable Structure and Composition in Surfactant-Free Microreactor for Stable Zinc-Ion Storage, ChemSusChem, 2024, e20240055. 7.Hong Zhang, et. al. A bifunctional electrocatalytic graphite felt for stable aqueous zinc-polyiodide flow batteries, J. Power Sources 2024, 612, 234798. 8.Hong Zhang*, et. al. Regulating the electrolyte network to accelerate reversible I−/I2Br− conversion and suppress zinc dendrite formation in advanced zinc–iodine flow batteries, J. Mater. Chem. A 2024, DOI: 10.1039/D4TA03881A. 9.Hong Zhang*, et. al. Anqiang Pan, Ke Lu, Unleashing the High Energy Potential of Zinc-Iodide Batteries: High-Loaded Thick Electrodes Designed with Zinc Iodide as the Cathode, Chem. Sci., 2024, 10.1039/D4SC00276H. |