| # | Document title | Authors | Year | Source | Cited by |
| 1 | Production of biomaterials from seafood waste for application as vegetable wash disinfectant | Tongwanichniyom S., Kitjaruwankul S., Phornphisutthimas S. | 2022 | Heliyon, 8(5), e09357 | 11 |
| 2 | Production of calcium oxide from waste oyster shells for a value-added application of antibacteria | Tongwanichniyom S., Pattamapitoon T., Sangvichien N., Phornphisutthimas S. | 2021 | Ecology, Environment and Conservation, 27(2), pp. 539-547 | 11 |
| 3 | Green synthesis of silver nanoparticles using mature-pseudostem extracts of Alpinia nigra and their bioactivities | Tongwanichniyom S., Phewrat N., Rangsarikorn N., Leasen S., Luangkamin S., Chumnanvej N. | 2024 | Green Processing and Synthesis, 13(1), 20230226 | 7 |
| 4 | Experimental and Molecular Dynamics Simulation Insights into Adsorption of Co(II), Cr(III), and Cu(II) on Chitosan and Chitosan/Tripolyphosphate Nanoparticles | Promkatkaew M., Baiya S., Tongwanichniyom S., Kitjaruwankul S. | 2023 | ACS Omega | 6 |
| 5 | Growth of anatase TiO2 thin film for photokilling of bacteria by DC reactive magnetron sputtering technique | Tongwanichniyom S., Siriprom W., Siriprom W., Manop D., Buranawong A., Buranawong A., Kaewkhao J., Witit-Anun N., Witit-Anun N. | 2013 | Advanced Materials Research, 770, pp. 173-176 | 3 |
| 6 | Structural and optical properties of anatase-TiO2 sputtered nano-thin films | Tongwanichniyom S., Witit-Anun N., Witit-Anun N. | 2014 | Advanced Materials Research, 979, pp. 370-373 | 1 |
| 7 | A DFT-based Analysis of Metals Adsorption on Chitosan Monomer | Promkatkaew M., Kitjaruwankul S., Baiya S., Tongwanichniyom S., Boonsri P., Hannongbua S. | 2022 | Science Essence Journal, 38(2), pp. 37-47 | 1 |
| 8 | Antibacterial effects of biodegradable chitosan-Papia Undulata shell composite films | Siriprom W., Sangwaranatee N., Tongwanichniyom S., Aminah N., Teanchai K., Chamchoi N. | 2018 | Materials Today: Proceedings, 5(7), pp. 14799-14802 | 0 |