張霄,研究員,博導(dǎo),入選浙江大學(xué)“百人計劃”。2012年本科畢業(yè)于清華大學(xué)化學(xué)系,師從邱勇院士。2017年博士畢業(yè)于美國杜克大學(xué)化學(xué)系,師從Jie Liu教授。后赴美國斯坦福大學(xué)化學(xué)系Hongjie Dai院士課題組開展博士后研究。2020年8月加入浙江大學(xué)能源工程學(xué)院,任“百人計劃”研究員。
研究方向為能源小分子的催化轉(zhuǎn)化與環(huán)境污染物的催化降解,開展了電催化/等離激元光催化二氧化碳還原、NOx轉(zhuǎn)化等反應(yīng)的催化劑設(shè)計、反應(yīng)機(jī)理揭示及反應(yīng)器優(yōu)化設(shè)計等研究。近年來,以第一作者或通訊作者在Nature Energy,Nature Communications,Journal of the American Chemical Society,Nano Letters,Nanoscale Horizons,Nano Research等國際期刊發(fā)表多篇論文,多次受邀在美國材料研究學(xué)會年會(MRS Meeting)等國際大會作報告,曾獲2017年國家優(yōu)秀自費(fèi)留學(xué)生獎學(xué)金。
研究成果
1. Xiao Zhang, Yang Wang, Meng Gu, Maoyu Wang, Zisheng Zhang, Weiying Pan, Zhan Jiang, Hongzhi Zheng, Marcos Lucero, Hailiang Wang, George E. Sterbinsky, Qing Ma, Yang-Gang Wang, Zhenxing Feng, Jun Li, Hongjie Dai, and Yongye Liang. Molecular engineering of dispersed nickel phthalocyanines on carbon nanotubes for selective CO2 reduction. Nature Energy, 2020, 5, 684-692.
2. Xiao Zhang, Xueqian Li, Du Zhang, Neil Qiang Su, Weitao Yang, Henry O. Everitt, and Jie Liu. Product selectivity in plasmonic photocatalysis for carbon dioxide hydrogenation. Nature Communications, 2017, 8, 14542.
3. Xiao Zhang, Jiachen Li; Yuan-Yao Li, Yunha Jung, Yun Kuang, Guanzhou Zhu, Yongye Liang, and Hongjie Dai. Selective and High Current CO2 Electro-Reduction to Multicarbon Products in Near-Neutral KCl Electrolytes. Journal of the American Chemical Society, 2021, 143, 3245-3255.
4. Xiao Zhang, Xueqian Li, Matthew E. Reish, Du Zhang, Neil Qiang Su, Yael Gutiérrez, Fernando Moreno, Weitao Yang, Henry O. Everitt, and Jie Liu. Plasmon-enhanced catalysis: distinguishing thermal and nonthermal effects. Nano Letters, 2018, 18, 1714-1723.
5. Xiao Zhang, Pan Li, ángela Barreda, Yael Gutiérrez, Francisco González, Fernando Moreno, Henry O. Everitt, and Jie Liu. Size-tunable rhodium nanostructures for wavelength-tunable ultraviolet plasmonics. Nanoscale Horizons, 2016, 1, 75-80.
6. Xiao Zhang, Pan Li, Hongbo Zhang, and Jie Liu. Understanding the discrepancy between the quality and yield in the synthesis of carbon nanotubes. Nano Research, 2015, 8, 296-302.
7. Yongtao Meng#, Xiao Zhang#, Wei-Hsuan Hung, Junkai He, Tsai Yi Sheng, Yun Kuang, Michael J. Kenney, Jing-Jong Shyue, Yijin Liu, Kevin H. Stone, Xueli Zheng, Steven L. Suib, Meng-Chang Lin, Yongye Liang, and Hongjie Dai. Highly active oxygen evolution integrated with efficient CO2 to CO electroreduction. PNAS, 2019, 116, 23915-23922 (#co-first author).