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 | |
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
7537 | 291 | RuTeNRs | 130 | 13 | nm | TEM | As shown in the SEM and TEM images (Fig. 2a and 2b), the calcined sample shows inherited nanorod shape from its precursor, but a slight shrink in size (within 200-400 nm in width and 1.0-2.0 μm in length) is observed due to the decomposition of organic ligand. | 44.4 | |||||||
7538 | 291 | RuTeNRs | 14 | 2 | nm | TEM | |||||||||
7539 | 292 | RuTeNRs | TEM | According to transmission electron microscopy (TEM) images, hollow nanorods with lengths of 130 ± 13 nm and widths of 14 ± 2 nm (n = 30) were synthesized with a relatively monodisperse distribution (Figure 2a; left) |
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 | |
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
6175 | 292 | RuTeNRs | SOD | 18.78 | 3.58 | -3 | mM | 58.90 | 3.37 | -6 | μM/min | 292 | ||||||||||
6174 | 292 | RuTeNRs | POD | H2O2 | 208.85 | 51.86 | mM | 2.66 | 0.32 | -8 | M/s | 292 | 292 |
ref | material | application | target | method | linear range | linear ran unit | LOD | lod unit | recovery | comment | |
---|---|---|---|---|---|---|---|---|---|---|---|
5182 | 292 | RuTeNRs | cancer treatment |
ref | title | DOI | material type | comment | |
---|---|---|---|---|---|
3496 | 292 | Nonrecurring Circuit Nanozymatic Enhancement of Hypoxic Pancreatic Cancer Phototherapy Using Speckled Ru–Te Hollow Nanorods | https://doi.org/10.1021/acsnano.9b09974 | Metal | speckled RuTe hollow nanorods (RuTeNRs) |
3495 | 291 | Controlled formation of porous CuCo2O4 nanorods with enhanced oxidase and catalase catalytic activities using bimetal-organic frameworks as templates | https://doi.org/10.1016/j.colsurfb.2019.110764 | Metal oxide | CuCo2O4 nanorods |