ref | title | DOI | material type | comment | |
---|---|---|---|---|---|
4352 | 1167 | A Facile Strategy for Synthesis of Porous Cu2O Nanosphere and Application as Nanozymes in Colorimetric Biosensing | https://doi.org/10.1039/D0TB03005H | Metal oxide | porous Cu2O nanospheres(Cu2O NPs) |
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 | |
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
8213 | 1167 | Cu2O NPs | 195 | 45 | nm | TEM | The particle size distribution from the TEM analysis is given in Fig. S1a. It shows that the particles exhibited a distribution with the diameter varying from 150 to 240 nm and mainly concentrated on 200 nm. Meanwhile, the NPs prepared using the precursor in a molar ratio of CuCl2 : MgCl2 = 5 : 1, Cu2O-(5 : 1-Mg) NPs, show a BET surface area of 21.32 m2 g−1 and an average pore diameter of 12.01 nm. These results clearly indicate that introduction of Mg2+ ions into the Cu-precursor has an influence on the porous structure evolution of Cu2O NPs. | 22.16 | The BET surface area and the average pore size of Cu2O-(sole CuCl2) are calculated to be 13.03 m2 g−1 and 7.29 nm. Meanwhile, the NPs prepared using the precursor in a molar ratio of CuCl2 : MgCl2 = 5 : 1, Cu2O-(5 : 1-Mg) NPs, show a BET surface area of 21.32 m2 g−1 and an average pore diameter of 12.01 nm. These results clearly indicate that introduction of Mg2+ ions into the Cu-precursor has an influence on the porous structure evolution of Cu2O NPs. |
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 | |
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
7131 | 1167 | Cu2O NPs | POD | TMB | 0.128 | mM | 1.11 | -8 | M/s | 1167 | ||||||||||||
7130 | 1167 | Cu2O NPs | POD | H2O2 | 0.729 | mM | 2.68 | -8 | M/s | 1167 |
ref | material | application | target | method | linear range | linear ran unit | LOD | lod unit | recovery | comment | |
---|---|---|---|---|---|---|---|---|---|---|---|
6062 | 1167 | Cu2O NPs | colorimetric biosensing for glucose and l-cysteine | l-cysteine | Color | 0-10 | μM | 0.81 | μM | ||
6061 | 1167 | Cu2O NPs | colorimetric biosensing for glucose and l-cysteine | glucose | Color | 1-1000 | μM | 2.19 | μM |