Defect‐Rich Adhesive Molybdenum Disulfide/rGO Vertical Heterostructures with Enhanced Nanozyme Activity for Smart Bacterial Killing Application

References

ref title DOI material type comment
3549 356 Defect‐Rich Adhesive Molybdenum Disulfide/rGO Vertical Heterostructures with Enhanced Nanozyme Activity for Smart Bacterial Killing Application https://doi.org/10.1002/adma.202005423 Composite a facile synthesis of a defect-rich adhesive molybdenum disulfide (MoS2)/rGO ver

Materials

ref material size size err size unit size type size comment BET b nanozyme b 10n b unit specific act sa 10n sa unit comment
7594 356 MoS2/rGO VHS 100 nm SEM MoS2 nanosheets with an average diameter of 100 nm are vertically decorated on rGO sheets.the thickness of the nanosheet is about 10 nm

Kinetics

ref material enzyme type substrate pH T km km err km 10n km unit vmax vmax err vmax 10n vmax unit kcat kcat err kcat 10n kcat unit kcat/km kcat/km 10n kcat/km unit comment
6235 356 MoS2/rGO VHS POD H2O2 0.26 mM 25.6 -8 M/s 356

Applications

ref material application target method linear range linear ran unit LOD lod unit recovery comment
5258 356 MoS2/rGO VHS excellent antibacterial effect in situ
5257 356 MoS2/rGO VHS excellent antibacterial effect in situ not only develops a new protocol to construct efficient nanozymes with capturing ability, as alternative antibiotics, but also provides new insight into the smart biomaterials design by defecting chemistry, integrating nanotopology, and catalytic performance