相关文献:
1. Teng Wang, Yun Zhao*, Brian P. Setzler, Reza Abbasi, Shimshon Gottesfeld, Yushan Yan, A High Performance 75 W Direct Ammonia Fuel Cells Stack, Cell Reports Physical Science, doi.org/10.1016/j.xcrp.2022.100829.
2. Lin Shi#, Yun Zhao#, Stephanie Matz, Shimshon Gottesfeld, Brian P. Setzler*, Yushan Yan*, A Shorted Membrane Electrochemical Cell Powered by Hydrogen to Remove CO2 from the Air Feed of Hydroxide Exchange Membrane Fuel Cells. Nature Energy, 2022, 7, 238-247.
3. Meiling Wu#, Xin Zhang#, Yun Zhao#, Chunpeng Yang, Shuangshuang Jing, Qisheng Wu, Jeffrey T. Miller, Nicole LiBretto, Tianpin Wu, Sahana Das Bhattacharyya, Mounesha Garaga, Yue Qi, Steven G. Greenbaum, Robert M. Briber, Yushan Yan, Liangbing Hu*, A High-performance Hydroxide Exchange Membrane Enabled by Cu2+-crosslinked Chitosan, Nature Nanotechnology, 2022, 17, 629-636.
4. Yun Zhao#, Teng Wang#, Brian P. Setzler*, Reza Abbasi, Junhua Wang, Yushan Yan, A High-Performance Gas-Fed Direct Ammonia Hydroxide Exchange Membrane Fuel Cell, ACS Energy Letters, 2021, 6, 1996-2002.
5. Yun Zhao#, Brian P. Setzler#, Junhua Wang#, Jared Nash, Teng Wang, Yushan Yan*, An Efficient Direct Ammonia Fuel Cell for Affordable Carbon-Neutral Transportation. Joule, 2019, 3(10), 2472-2484.
6. Junhua Wang#, Yun Zhao#, Brian P. Setzler, Santiago Rojas-Carbonell, Lan Wang, Keda Hu, Chaya Ben Yehuda, Alina Amel, Miles Page, Lin Shi, Bingjun Xu*, Yushan Yan*, Poly (aryl piperidinium) Membranes and Ionomers for Hydroxide Exchange Membrane Fuel Cells. Nature Energy, 2019, 4, 392-398.
7.Yun Zhao, Shuang Gu, Ke Gong, Jie Zheng, Junhua Wang, Yushan Yan*, Low-Voltage Gaseous HCl Electrolysis with Iron Redox-Mediated Cathode for Chlorine Regeneration, Angewandte Chemie International Edition, 2017, 56,10735-10739.
论文著作:
1. A Naphthalimide-Based Glyoxal Hydrazone for Selective Fluorescence Turn-On Sensing of Cys and Hcy
Pi Wang; Jing Liu; Xin Lv; Yunlong Liu; Yun Zhao; Wei Guo
ORGANIC LETTERS, 2012
2. A Naphthalimide–rhodamine Ratiometric Fluorescent Probe for Hg2+ Based on Fluorescence Resonance Energy Transfer
Yunlong Liu; Xin Lv; Yun Zhao; Maliang Chen; Jing Liu; Pi Wang; Wei Guo
Dyes and Pigments, 2011
3. Rhodamine-based Chemosensor for Hg2+ in Aqueous Solution with a Broad Ph Range and Its Application in Live Cell Imaging
Yun Zhao; Yue Sun; Xin Lv; Yunlong Liu; Maliang Chen; Wei Guo
ORGANIC & BIOMOLECULAR CHEMISTRY, 2010
4. A Cu(II)-based Chemosensing Ensemble Bearing Rhodamine B Fluorophore for Fluorescence Turn-on Detection of Cyanide
Yunlong Liu; Xin Lv; Yun Zhao; Jing Liu; Yuan-Qiang Sun; Pi Wang; Wei Guo
Journal of Materials Chemistry, 2011
5. Rhodafluor-based chromo- and fluorogenic probe for cyanide anion
Xin Lv; Jing Liu; Yunlong Liu; Yun Zhao; Maliang Chen; Pi Wang; Wei Guo
Sensors and Actuators B: Chemical, 2011
6. Through-bond Energy Transfer Cassettes Based on Coumarin–bodipy/distyryl Bodipy Dyads with Efficient Energy Efficiences and Large Pseudo-Stokes' Shifts
Yun Zhao; Yan Zhang; Xin Lv; Yunlong Liu; Maliang Chen; Pi Wang; Jing Liu; Wei Guo
Journal of materials chemistry, 2011
7. The Emission Enhancement of the NIR Distyryl Bodipy Dyes by the Indirect S0 → S2 Excitation and Their Application Towards a Hg2+ Probe
Yun Zhao; Xin Lv; Yunlong Liu; Jing Liu; Yan Zhang; Heping Shi; Wei Guo
JOURNAL OF MATERIALS CHEMISTRY, 2012
8. Rhodaminderivate Als Nahinfrarotfarbstoffe Und Ihre Anwendung in Fluoreszenzsonden
Yuan‐Qiang Sun; Jing Liu; Xin Lv; Yunlong Liu; Yun Zhao; Wei Guo
Angewandte Chemie, 2012
9. A New Red Fluorescent Probe Based on Rosamine–phenothiazine for the Highly Selective and Rapid Detection of Hypochlorite and Its Bioimaging in Live Cells
Yun Zhao; Yuanyuan Xue; Juanjuan Sun; Hongli Xuan; Yunli Xu; Yapeng Cui; Jinlong Dong
NEW JOURNAL OF CHEMISTRY, 2020
10. A New Fluorescent Probe for Hypochlorous Acid Based on Chlorinium Ions Recognition Mechanism and Its Bioimaging Research in Living Cells
Yun Zhao; Yanfang Li; Rongxiao Li; Yaqing Wang; Xiaoxia Fan
CHINESE JOURNAL OF ORGANIC CHEMISTRY, 2021