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As a journalist, you can create a free Muck Rack account to customize your profile, list your contact preferences, and upload a portfolio of your best work.Articles
Enhancing Atomic Layer Deposition Efficiency of the Classical Medium-Pore ZSM-5 Zeolite by an Artful Alkali-Etching Technique for Boosting NH3-SCR Behaviors
Physico-Chemical Treatment and Resource RecoveryJanuary 7, 2026 Xiaonan Guo State Key Laboratory of Chemical Resource Engineering, Beijing Key Laboratory of Energy Environmental Catalysis, Beijing University of Chemical Technology, Beijing 100029, China * Runduo Zhang State Key Laboratory of Chemical Resource Engineering, Beijing Key Laboratory of Energy Environmental Catalysis, Beijing University of Chemical Technology, Beijing 100029, China *Email: zhangrd@mail.buct.edu.cn.
Insight of Co and N statuses in the MOFs-derived porous carbonaceous materials on the catalytic ozonolysis at room temperature
Insight of Co and N statuses in the MOFs-derived porous carbonaceous materials on the catalytic ozonolysis at room temperature The ozone is one of the classical atmospheric pollutants that adversely affect human health and ecological environment. In this paper, the carbonaceous catalysts derived from MOFs with different structural topologies and organic ligands were systematically investigated for ozone elimination.
Morphological impact of 1-dimensional to 3-dimensional manganese dioxides on catalytic ozone decomposition correlated with crystal facets and lattice oxygen mobilities
Morphological impact of 1-dimensional to 3-dimensional manganese dioxides on catalytic ozone decomposition correlated with crystal facets and lattice oxygen mobilities† Ozone is a pollutant that has received widespread attention in recent years, and manganese dioxide (MnO2) has been widely used for catalytic ozone decomposition. However, few studies have described the structure–activity correlation of different morphological types of MnO2.
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