Publications List
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Origin and predictive principle for selective products of electrocatalytic carbon dioxide reduction
Gong L.; Wang X.; Daiyan R.; Zhu X.; Leverett J.; Duan Z.; Zhang L.; Amal R.; Dai L.; Xia Z.
Journal of Materials Chemistry A
11(28), 15359-15369, https://doi.org/10.1039/d3ta00336a
Molecular Copper Phthalocyanine and FeOOH Modified BiVO4 Photoanodes for Enhanced Photoelectrochemical Water Oxidation
Fan M.; Tao Z.; Zhao Q.; Li J.; Liu G.; Zhao C.
Advanced Materials Technologies
Adaptive Integrated Planning of Electricity Networks and Fast Charging Stations Under Electric Vehicle Diffusion
Tao Y.; Qiu J.; Lai S.; Sun X.; Zhao J.
IEEE Transactions on Power Systems
38(1), 499-513, https://doi.org/10.1109/TPWRS.2022.3167666
Synthesis of zeolites from low-cost feeds and its sustainable environmental applications
Gao S.; Peng H.; Song B.; Zhang J.; Wu W.; Vaughan J.; Zardo P.; Vogrin J.; Tulloch S.; Zhu Z.
Journal of Environmental Chemical Engineering
Cooperative Boron and Vanadium Doping of Nickel Phosphides for Hydrogen Evolution in Alkaline and Anion Exchange Membrane Water/Seawater Electrolyzers
Zhao T.; Wang S.; Jia C.; Rong C.; Su Z.; Dastafkan K.; Zhang Q.; Zhao C.
Small
Optimizing Surface Composition and Structure of FeWO4 Photoanodes for Enhanced Water Photooxidation
Ta X.M.C.; Nguyen T.K.A.; Bui A.D.; Nguyen H.T.; Daiyan R.; Amal R.; Tran-Phu T.; Tricoli A.
Advanced Materials Technologies
Metal-free carbon-based catalysts design for oxygen reduction reaction towards hydrogen peroxide: From 3D to 0D
Zhang D.; Mitchell E.; Lu X.; Chu D.; Shang L.; Zhang T.; Amal R.; Han Z.
Materials Today
63, 339-359, https://doi.org/10.1016/j.mattod.2023.02.004
Chemical compression and transport of hydrogen using sodium borohydride
Ibrahim A.; Paskevicius M.; Buckley C.E.
Sustainable Energy and Fuels
7(5), 1196-1203, https://doi.org/10.1039/d2se01334g
Towards Low-Carbon Collaborative Planning for Charging Stations and Distributed Renewable Resources
Zhang H.; Wang Y.; Qiu J.
2023 IEEE 7th Conference on Energy Internet and Energy System Integration, EI2 2023
Data-Driven Matching Protocol for Vehicle-to-Vehicle Energy Management Considering Privacy Preservation
Tao Y.; Qiu J.; Lai S.; Sun X.; Wang Y.; Zhao J.
IEEE Transactions on Transportation Electrification
9(1), 968-980, https://doi.org/10.1109/TTE.2022.3188766
Atomically Dispersed Cu Catalysts on Sulfide-Derived Defective Ag Nanowires for Electrochemical CO2 Reduction
Ma Z.; Wan T.; Zhang D.; Yuwono J.A.; Tsounis C.; Jiang J.; Chou Y.-H.; Lu X.; Kumar P.V.; Ng Y.H.; Chu D.; Toe C.Y.; Han Z.; Amal R.
ACS Nano
17(3), 2387-2398, https://doi.org/10.1021/acsnano.2c09473
Selective CO2 hydrogenation over zeolite-based catalysts for targeted high-value products
Yan P.; Peng H.; Vogrin J.; Rabiee H.; Zhu Z.
Journal of Materials Chemistry A
11(34), 17938-17960, https://doi.org/10.1039/d3ta03150k
Customer-Centered Pricing Strategy Based on Privacy-Preserving Load Disaggregation
Tao Y.; Qiu J.; Lai S.; Sun X.; Ma Y.; Zhao J.
IEEE Transactions on Smart Grid
14(5), 3401-3412, https://doi.org/10.1109/TSG.2023.3238029
Understanding the Role of (W, Mo, Sb) Dopants in the Catalyst Evolution and Activity Enhancement of Co3O4 during Water Electrolysis via In Situ Spectroelectrochemical Techniques
Tran-Phu T.; Chatti M.; Leverett J.; Nguyen T.K.A.; Simondson D.; Hoogeveen D.A.; Kiy A.; Duong T.; Johannessen B.; Meilak J.; Kluth P.; Amal R.; Simonov A.N.; Hocking R.K.; Daiyan R.; Tricoli A.
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Porous nanosheet composite with multi-type active centers as an efficient and stable oxygen electrocatalyst in alkaline and acid conditions; [碱性和酸性条件下均稳定的高效氧电催化剂: 具有多活性中心的多孔纳米片复合材料]
Xia Y.; Cheng Y.; Wang R.; Meng Z.; Meyer Q.; Zhao C.; Zhang H.; Luo R.; Li Y.; Tang H.
Science China Materials
66(4), 1407-1416, https://doi.org/10.1007/s40843-022-2272-2




