Suxi Wang
10Patents
2h-index
18Co-inventors
47Inventor score
Filing activity: May 12, 2014 → Aug 3, 2023
Most-cited inventions
| Patent | Title | Area | Cited by | Status |
|---|---|---|---|---|
| US10941298B2 | Method for forming a titania-coated inorganic particle | Chemistry; Metallurgy | 2 | Active |
| US10998550B2 | Free-standing MOF-derived hybrid porous carbon nanofiber mats | Emerging Cross-Sectional Technologies | 2 | Active |
| US11767433B2 | Method for forming a titania-coated inorganic particle | Chemistry; Metallurgy | 1 | Active |
| US10128503B2 | Conductive fibrous materials | Emerging Cross-Sectional Technologies | 1 | Active |
| US11134707B2 | Nanostructured iron/carbon for scavenging oxygen | Performing Operations; Transporting | 0 | Active |
| US10181618B2 | Method of preparing a porous carbon material | Emerging Cross-Sectional Technologies | 0 | Active |
| US11320212B2 | Thermal control system | Emerging Cross-Sectional Technologies | 0 | Active |
| US11590476B2 | Free-standing porous carbon fibrous mats and applications thereof | Chemistry; Metallurgy | 0 | Active |
| US11646418B2 | Free-standing MOF-derived hybrid porous carbon nanofiber mats | Emerging Cross-Sectional Technologies | 0 | Active |
| US12398274B2 | Method for forming a titania-coated inorganic particle | Chemistry; Metallurgy | 0 | Active |
Source: USPTO / EPO open patent data. Inventor disambiguation is heuristic; counts are objective bibliographic measures.