张宁

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[9] Modern organic transformations: heterogeneous thermocatalysis or photocatalysis? Chemical Society Reviews 2025, 54(11), 5189-5223. Link
[8] Highly efficient, selective and stable photocatalytic methane coupling to ethane enabled by lattice oxygen looping. Science Advances 2024, 10(26), eado4390. Link
[7] Synergizing inter and intraband transitions in defective tungsten oxide for efficient photocatalytic alcohol dehydration to alkene. JACS Au 2022, 2(5), 1160-1168. Link
[6] Lattice oxygen redox chemistry in solid-state electrocatalysts for water oxidation. Energy & Environmental Science 2021, 14(9), 4647-4671. (ESI Highly Cited Paper) Link
[5] Lattice oxygen activation enabled by high-valence metal sites for enhanced water oxidation. Nature Communications 2020, 11, 4066. (ESI Highly Cited Paper, Editor's Highlight) Link
[4] Refining defect states in W18O49 by Mo doping: a strategy for tuning N2 activation towards solar-driven nitrogen fixation. Journal of the American Chemical Society 2018, 140(30), 9434-9443. (ESI Highly Cited Paper) Link
[3] Oxide defect engineering enables to couple solar energy into oxygen activation. Journal of the American Chemical Society 2016, 138(28), 8928-8935. (ESI Highly Cited Paper) Link
[2] Governing interlayer strain in bismuth nanocrystals for efficient ammonia electrosynthesis from nitrate reduction. ACS Nano 2022, 16(3), 4795-4804. (ESI Highly Cited Paper) Link
[1] Metal substitution steering electron correlations in pyrochlore ruthenates for efficient acidic water oxidation. ACS Nano 2021, 15(5), 8537-8548. Link