Apolo Nambo Data-verified
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Biography and Research Information
OverviewAI-generated summary
Apolo Nambo's research investigates the application of plasma catalysis for environmental remediation and chemical synthesis. His work includes the development of cold plasma systems for atmospheric remediation, utilizing Metal Organic Frameworks (MOFs) and silico alumino phosphate (SAPO) zeolites. Nambo has explored plasma catalytic conversion of nitrogen and hydrogen to ammonia, as well as CO2 and high-density polyethylene (HDPE) upcycling. He also studies the green synthesis of titanium dioxide (TiO2) for furfural production from waste materials and the use of nanowire-based materials as catalyst supports for dry methane reforming. Nambo's research extends to materials science, with publications on screen printable copper pastes for silicon solar cells and the performance enhancement of SAPO-34 membranes using cold plasma for CO2 and CH4 mixtures. He has published 27 papers, with 389 citations, and holds an h-index of 11. Nambo collaborates with researchers including Fnu Gorky, Maria L. Carreon, Grace Jones, and Levi Pile, all affiliated with the University of Arkansas at Fayetteville or the Arkansas Agricultural Experiment Station.
Metrics
- h-index: 11
- Publications: 27
- Citations: 389
Selected Publications
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Leveraging oxygen mobility with zirconia in low-temperature plasma for enhanced methane reforming to syngas (2025)
Collaboration Network
Top Collaborators
- Cold plasma-Metal Organic Framework (MOF)-177 breathable system for atmospheric remediation
- Plasma Catalytic Conversion of Nitrogen and Hydrogen to Ammonia Over Silico Alumino Phosphate (SAPO) Zeolites
- CO<sub>2</sub> and HDPE Upcycling: A Plasma Catalysis Alternative
- Performance and Enhanced Efficiency Induced by Cold Plasma on SAPO-34 Membranes for CO2 and CH4 Mixtures
- Plasma Catalytic Conversion of Nitrogen and Hydrogen to Ammonia over Silico Alumino Phosphate (SAPO) zeolites
Showing 5 of 6 shared publications
- Screen printable copper pastes for silicon solar cells
- Screen Printable Copper Pastes for Silicon Solar Cells
- Exploring the performance and reliability of screen-printable fire-through copper paste on PERC solar cells
- High Efficiency Screen-Printed Ag-Free PERC Solar Cell With Cu Paste and Laser-Enhanced Contact Optimization
- Copper Pastes for TOPCon Solar Cells Processed Using LECO
Showing 5 of 6 shared publications
- Screen printable copper pastes for silicon solar cells
- Screen Printable Copper Pastes for Silicon Solar Cells
- Exploring the performance and reliability of screen-printable fire-through copper paste on PERC solar cells
- High Efficiency Screen-Printed Ag-Free PERC Solar Cell With Cu Paste and Laser-Enhanced Contact Optimization
- Copper Pastes for TOPCon Solar Cells Processed Using LECO
Showing 5 of 6 shared publications
- Cold plasma-Metal Organic Framework (MOF)-177 breathable system for atmospheric remediation
- Plasma Catalytic Conversion of Nitrogen and Hydrogen to Ammonia Over Silico Alumino Phosphate (SAPO) Zeolites
- CO<sub>2</sub> and HDPE Upcycling: A Plasma Catalysis Alternative
- Plasma Catalytic Conversion of Nitrogen and Hydrogen to Ammonia over Silico Alumino Phosphate (SAPO) zeolites
- Leveraging oxygen mobility with zirconia in low-temperature plasma for enhanced methane reforming to syngas
- Screen printable copper pastes for silicon solar cells
- Exploring the performance and reliability of screen-printable fire-through copper paste on PERC solar cells
- High Efficiency Screen-Printed Ag-Free PERC Solar Cell With Cu Paste and Laser-Enhanced Contact Optimization
- Copper Pastes for TOPCon Solar Cells Processed Using LECO
- Efficiency Enhancement and Characterization of Copper Contacted PERC Solar Cells with Screen Printable Copper Pastes
- Evaluation of pectin extractions and their application in the alkaline Maillard reaction
- Green synthesis of TiO2 for furfural production by photohydrolysis of tortilla manufacturing waste
- Evaluation of pectins extraction and their application in the alkaline Maillard reaction
- Green synthesis of TiO2 nanoparticles for furfural production by photohydrolysis of unexplored residual biomass: the nejayote
- Evaluation of pectin extractions and their application in the alkaline Maillard reaction
- Green synthesis of TiO2 for furfural production by photohydrolysis of tortilla manufacturing waste
- Evaluation of pectins extraction and their application in the alkaline Maillard reaction
- Green synthesis of TiO2 nanoparticles for furfural production by photohydrolysis of unexplored residual biomass: the nejayote
- Nanowire-Based Materials as Coke-Resistant Catalyst Supports for Dry Methane Reforming
- Performance and Enhanced Efficiency Induced by Cold Plasma on SAPO-34 Membranes for CO2 and CH4 Mixtures
- Evaluation of pectin extractions and their application in the alkaline Maillard reaction
- Evaluation of pectins extraction and their application in the alkaline Maillard reaction
- Evaluation of pectin extractions and their application in the alkaline Maillard reaction
- Evaluation of pectins extraction and their application in the alkaline Maillard reaction
- Evaluation of pectin extractions and their application in the alkaline Maillard reaction
- Evaluation of pectins extraction and their application in the alkaline Maillard reaction
- Evaluation of pectin extractions and their application in the alkaline Maillard reaction
- Evaluation of pectins extraction and their application in the alkaline Maillard reaction
- Green synthesis of TiO2 for furfural production by photohydrolysis of tortilla manufacturing waste
- Green synthesis of TiO2 nanoparticles for furfural production by photohydrolysis of unexplored residual biomass: the nejayote
- Green synthesis of TiO2 for furfural production by photohydrolysis of tortilla manufacturing waste
- Green synthesis of TiO2 nanoparticles for furfural production by photohydrolysis of unexplored residual biomass: the nejayote
- Green synthesis of TiO2 for furfural production by photohydrolysis of tortilla manufacturing waste
- Green synthesis of TiO2 nanoparticles for furfural production by photohydrolysis of unexplored residual biomass: the nejayote
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