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Date of Employment:2008-10-10
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[1] 王泽翔. Boosting photocatalytic reduction of low-concentration CO2 to CO via hydrophilic/CO2-philic interface microenvironment engineering in Ag/TiO2-x Schottky junctions. Applied Catalysis B: Environmental, 2026.
[2] 王静. High-throughput screening of MIMII-PC6 dual-atom electrocatalysts for efficient and selective electrocatalytic reduction of CO2 to C1 and C2 products. MATERIALS TODAY PHYSICS, 50, 2024.
[3] 王泽翔. Dual-S-scheme 0D/2D heterojunction of CsPbBr3/Agi-TiO2 for improved photocatalytic CO2 reduction: Enabling ultrafast interfacial charge transfer and product selective regulation. Journal of Catalysis, 2025.
[4] 王静. High-throughput screening of MIMII-PC6 dual-atom electrocatalysts for efficient and selective electrocatalytic reduction of CO2 to C1 and C2 products. MATERIALS TODAY PHYSICS, 2025.
[5] 相峰. Labdane diterpenoids and highly methoxylated bibenzyls from the liverwort Frullania inouei. Phytochemistry, 2010.
[6] 相峰. Dracotanosides A-D, Spermidine Glycosides from Dracocephalum tanguticum: Structure and Amide Rotational Barrier. Journal of Natural Products, 2009.
[7] 相峰 , 娄红祥 and 娄红祥. Dracotanosides A-D, Spermidine Glycosides from Dracocephalum tanguticum: Structure and Amide Rotational Barrier. Journal of Natural Products, 72, 1006,
[8] Shuqi Wang , 任冬梅 , 相峰 , 王小宁 , 苑辉卿 , 娄红祥 and 娄红祥. Dracotanosides A-D, spermidine glycosides from Dracocephalum tanguticum: structure and amid rotational barrier. Journal of Natural Products, 72, 1006, 2009.
[9] 于文涛 , 娄红祥 , 相峰 , 王小宁 , 苑辉卿 and 娄红祥. Labdane diterpenoids and highly methoxylated bibenzyls from the liverwort Frullania inouei. Phytochemistry, 71, 1573, 2010.
[10] 相峰 and 娄红祥. Dracotanosides A-D, Spermidine Glycosides from Dracocephalum tanguticum: Structure and Amide Rotational Barrier. Journal of Natural Products, 72, 1006,
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