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About the Cover:Qiao, Zhiwei et al. on page 8-19: An AI-driven robotic hand interacts with metal-organic framework (MOF) structures, symbolizing the integration of machine learning and materials design. The MOFid chip represents data-driven discovery of high-performance adsorbents for the capture of chemical warfare agents. Binary code and digital networks highlight computational intelligence in materials science, illustrating that artificial intelligence accelerates the rational design of functional MOFs. -
About the Cover:Liu, Jinbiao et al. on page 1-7: This study developed a rhodamine B-based photocatalytic desulfurization-cyclization strategy, successfully achieving efficient synthesis of 2-amino-1,3-benzoxa- zines. The reaction proceeds at room temperature using molecular oxygen as the oxidant, mediated by superoxide radicals generated via photocatalysis to drive the desulfurization-cyclization process of the thiourea intermediate, achieving the target product in up to 90% yield. This provides a novel approach for the green synthesis of benzoxazine compounds. -
About the Cover:Sun, Kai et al. on page 135-159: Easily prepared α-trifluoromethyl olefins are universal structural units for the synthesis of various fluoro-containing molecules. In this paper, the diverse transformation of α-trifluoromethyl olefins, mainly including difunctionalization of α-trifluoromethyl olefins, defluorination functionalization to gem-difluoroalkenes, as well as other types (non-defluorination conversion, controllable defluorination conversion and cyclization reaction), are described. -
About the Cover:Yu, Feng & Pan, Dahai et al. on page 20-29: The electrostatic interaction between chloroplatinic acid molecules and Ib type Al-OH species existing on the surface of mesoporous γ-Al2O3 enables a highly homogeneous dispersion of Pt active sites. The resulting catalyst thus exhibits a superior activity with a maximum hydrogen evolution rate of 2112 mmol·gPt-1·min-1 in comparison with the state-of-the-art alumina supported Pt catalysts.
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