Time | Paper ID | Title / Authors | Keywords | Topic code | Ack. number |
Day 1 9:00– 10:30 | PA101 | Facile synthesis of NiO-CuO/CP electrocatalysts with 3D architecture for Hydrogen Evolution Reaction
| Electrocatalyst Water splitting Hydrogen Evolution Reaction
| SY-64 | 122 |
Day 1 9:00– 10:30 | PA110 | Promotion effect of Ho doping on OMS-2 catalysts for toluene combustion at low temperatures
| Volatile organic compounds Toluene oxidation Ho-OMS-2 catalysts
| SY-64 | 15 |
Day 1 9:00– 10:30 | PA114 | Effect of F doping on the In-based catalysts for the promoting of electrochemical reduction of CO2 to formic acid
| CO2 reduction electrocatalysts In-based catalysts
| SY-64 | 127 |
Day 1 9:00– 10:30 | PA124 | In-situ catalytic upgrading of bio-oil over metal-doped hierarchical HZSM-5 catalyst
| Bio-oil hierarchical HZSM-5 Catalytic upgrading
| SY-64 | 121 |
Day 1 9:00– 10:30 | PA130 | Synthesis of MnOx dominated catalysts with cubic structure and its application in the catalytic combustion of volatile organic compounds
| volatile organic compounds Catalytic combustion MnOx/Co-Fe/NF catalysts
| SY-64 | 126 |
Day 1 12:40– 13:40 | PA101 | Facile synthesis of NiO-CuO/CP electrocatalysts with 3D architecture for Hydrogen Evolution Reaction
| Electrocatalyst Water splitting Hydrogen Evolution Reaction
| SY-64 | 122 |
Day 1 12:40– 13:40 | PA110 | Promotion effect of Ho doping on OMS-2 catalysts for toluene combustion at low temperatures
| Volatile organic compounds Toluene oxidation Ho-OMS-2 catalysts
| SY-64 | 15 |
Day 1 12:40– 13:40 | PA114 | Effect of F doping on the In-based catalysts for the promoting of electrochemical reduction of CO2 to formic acid
| CO2 reduction electrocatalysts In-based catalysts
| SY-64 | 127 |
Day 1 13:40– 14:40 | PA124 | In-situ catalytic upgrading of bio-oil over metal-doped hierarchical HZSM-5 catalyst
| Bio-oil hierarchical HZSM-5 Catalytic upgrading
| SY-64 | 121 |
Day 1 13:40– 14:40 | PA130 | Synthesis of MnOx dominated catalysts with cubic structure and its application in the catalytic combustion of volatile organic compounds
| volatile organic compounds Catalytic combustion MnOx/Co-Fe/NF catalysts
| SY-64 | 126 |
Day 1 14:00– 14:20 | L116 | A Study on Potential of Home energy systems for accelerating renewable energy deployment
| Home Energy Simulation Energy Conservation
| ST-23 | 70 |
Day 1 14:40– 15:40 | PB101 | Co-Ni@N doped carbon nanotubes: a promising cathode with excellent performance for lithium sulfur batteries
| cathode material Lithium Batteries Co-Ni@N doped carbon nanotubes
| ST-24 | 16 |
Day 1 14:40– 15:40 | PB102 | VMoS2 with expanded interlayer spacing for enhancing sodium storage capacity
| anode material Na ion Batteries VMoS2
| ST-24 | 17 |
Day 1 14:40– 15:40 | PB103 | Li-Al Layered Double Hydroxide filled Solid Electrolyte for Solid-State Lithium Batteries
| Solid-State Lithium Batteries Solid Electrolyte Li-Al Layered Double Hydroxide
| ST-24 | 124 |
Day 1 14:40– 15:40 | PB104 | Fluoropyridine as electrolyte solvent to achieve high-performance lithium metal batteries
| lithium metal batteries electrolyte solvent Fluoropyridine
| ST-24 | 125 |
Day 1 15:40– 16:40 | PB130 | Fabrication of defect-rich Cu nanowire@bimetallic oxides with core@shell structure as electrocatalysts for oxygen evolution reaction
| Electrocatalyst Water splitting oxygen evolution reaction
| ST-24 | 123 |
Day 1 16:40– 17:40 | PB148 | CO2-Recycling Biomass Gasification System for Hydrogen Production with Water Gas Shift and Membrane-based CO2 Capture
| Biomass Gasification System Hydrogen Production CO2 capture
| ST-24 | 128 |
Day 3 10:40– 11:00 | V306 | Sustainable and optimal utilization of regional waste biomass
| Biomass Biogas Utilization
| ST-26 | 69 |