| # | Document title | Authors | Year | Source | Cited by |
| 1 | Novel three-Dimensional molecularly imprinted polymer-coated carbon nanotubes (3D-CNTs@MIP) for selective detection of profenofos in food | Amatatongchai M., Sroysee W., Sodkrathok P., Kesangam N., Chairam S., Jarujamrus P. | 2019 | Analytica Chimica Acta, 1076, pp. 64-72 | 131 |
| 2 | Highly sensitive and selective electrochemical paper-based device using a graphite screen-printed electrode modified with molecularly imprinted polymers coated Fe3O4@Au@SiO2 for serotonin determination | Amatatongchai M., Amatatongchai M., Sitanurak J., Sitanurak J., Sroysee W., Sodanat S., Chairam S., Jarujamrus P., Nacapricha D., Nacapricha D., Lieberzeit P.A. | 2019 | Analytica Chimica Acta, 1077, pp. 255-265 | 120 |
| 3 | Selective amperometric flow-injection analysis of carbofuran using a molecularly-imprinted polymer and gold-coated-magnetite modified carbon nanotube-paste electrode | Amatatongchai M., Sroysee W., Jarujamrus P., Nacapricha D., Lieberzeit P.A. | 2018 | Talanta, 179, pp. 700-709 | 68 |
| 4 | Simple flow injection for determination of sulfite by amperometric detection using glassy carbon electrode modified with carbon nanotubes-PDDA-gold nanoparticles | Amatatongchai M., Amatatongchai M., Sroysee W., Chairam S., Nacapricha D., Nacapricha D. | 2015 | Talanta, 133, pp. 134-141 | 58 |
| 5 | Molecularly imprinted polymers to detect profenofos and carbofuran selectively with QCM sensors | Sroysee W., Sroysee W., Chunta S., Chunta S., Amatatongchai M., Lieberzeit P.A. | 2019 | Physics in Medicine, 7, 100016 | 49 |
| 6 | Amperometric flow injection analysis of glucose using immobilized glucose oxidase on nano-composite carbon nanotubes-platinum nanoparticles carbon paste electrode | Amatatongchai M., Amatatongchai M., Sroysee W., Chairam S., Nacapricha D., Nacapricha D. | 2017 | Talanta, 166, pp. 420-427 | 48 |
| 7 | A sensitive and selective on-line amperometric sulfite biosensor using sulfite oxidase immobilized on a magnetite-gold-folate nanocomposite modified carbon-paste electrode | Sroysee W., Ponlakhet K., Chairam S., Jarujamrus P., Amatatongchai M. | 2016 | Talanta, 156-157, pp. 154-162 | 45 |
| 8 | Poly(m-ferrocenylaniline) modified carbon nanotubes-paste electrode encapsulated in nafion film for selective and sensitive determination of dopamine and uric acid in the presence of ascorbic acid | Sroysee W., Chairam S., Amatatongchai M., Jarujamrus P., Tamuang S., Pimmongkol S., Chaicharoenwimolkul L., Somsook E. | 2018 | Journal of Saudi Chemical Society, 22(2), pp. 173-182 | 29 |
| 9 | Rapid screening method for assessing total phenolic content using simple flow injection system with laccase based-biosensor | Amatatongchai M., Sroysee W., Laosing S., Chairam S. | 2013 | International Journal of Electrochemical Science, 8(8), pp. 10526-10539 | 24 |
| 10 | Development of sensitive and selective glucose colorimetric assay using glucose oxidase immobilized on magnetite-gold-folate nanoparticles | Ponlakhet K., Amatatongchai M., Sroysee W., Jarujamrus P., Chairam S. | 2016 | Analytical Methods, 8(47), pp. 8288-8298 | 22 |
| 11 | Enzyme-immobilized 3D silver nanoparticle/graphene aerogel composites towards biosensors | Sroysee W., Sroysee W., Kongsawatvoragul K., Phattharaphuti P., Kullawattanapokin P., Jangsan C., Tejangkura W., Sawangphruk M. | 2022 | Materials Chemistry and Physics, 277, 125572 | 20 |
| 12 | Nonenzymatic sensor for hydrogen peroxide using a carbon paste electrode modified with a composite consisting of silver nanoparticles, poly(o-aminobenzoic acid) and magnetite | Chairam S., Sroysee W., Boonchit C., Kaewprom C., Wangnoi T.G.N., Amatatongchai M., Jarujamrus P., Tamaung S., Somsook E., Somsook E. | 2015 | International Journal of Electrochemical Science, 10(6), pp. 4611-4625 | 13 |
| 13 | Graphene Aerogels with Ultrahigh Pore Volume for Organic Dye Adsorption and High-Energy Lithium Batteries | Sroysee W., Suktha P., Kongsawatvoragul K., Vadivel S., Sawangphruk M. | 2020 | Industrial and Engineering Chemistry Research, 59(47), pp. 20719-20729 | 7 |