4962 |
31 |
FeS2 NPs |
quantitative detection of H2O2 or GSH |
GSH |
Color |
0.20-3.5 |
μM |
0.15 |
μM |
|
|
4963 |
31 |
FeS2 NPs |
quantitative detection of H2O2 or GSH |
H2O2 |
Color |
2-80 |
μM |
0.91 |
μM |
|
|
5107 |
198 |
TPyP-CuS |
detect H2O2 |
H2O2 |
Color |
1.0-8.0 |
mM |
121.8 |
μM |
|
|
5108 |
198 |
TPyP-CuS |
ascorbic acid (AA) |
Ascorbic acid (AA) |
Color |
1-30 |
μM |
0.419 |
μM |
|
|
5159 |
269 |
CMS NPs |
in vitro and in vivo treatment of MDR Bacterial Infections |
|
|
|
|
|
|
|
|
5173 |
280 |
MoS2 NSs |
biosensing |
|
|
|
|
|
|
|
|
5180 |
289 |
WS2 |
Pb detection |
Pb |
Color |
5-80 |
μg/L |
4 |
μg/L |
|
|
5273 |
367 |
FeS2 NSs |
Simultaneously, the FeS2 NSs were applied to rapidly detect H2O2 concentrations in actual samples, such as lens solution, beer and disinfectant (all bought from supermarkets). |
H2O2 |
Color |
0.02–4.00 |
μM |
0.00760 |
μM |
|
|
5281 |
376 |
ND nanozymes |
multifunctional antibacterial agents |
|
|
|
|
|
|
|
|
5301 |
391 |
CuS HNSs. |
a portable and cost-effective Hg2+ nanosensor has been developed based on a desorption-free enrichmentdetection integration strategy. The core of the nanosensor is the employment of CuS HNSs, which play three roles including recognition unit for Hg2+ sensing, enrichment carrier for Hg2+ preconcentration, and mimetic peroxidase for signal amplification and readout. The customizable enrichmentdetection integration strategy gives the nanosensor a high selectivity, a wide detection range (50 ppt to 400 ppb), and a high sensitivity with a minimum detectable Hg2+ concentration of 50 ppt. In addition, the as-developed nanosensor is feasible for analysis of Hg2+ in real-world environmental and food samples with moderate accuracy (deviation <10%) and reproducibility (recovery ∼82%). |
Hg2+ |
Color |
|
|
0.05 |
ppb |
82 |
|
5330 |
425 |
AgBiS2 |
Multimodal Tumor Therapy |
|
|
|
|
|
|
|
|
5397 |
468 |
Ag2-xCuxS NPs |
Colorimetric urine glucose detection |
glucose |
Color |
0-30 |
mM |
0.37 |
mM |
|
The obtained glucose concentrations are mostly consistent with that tested by GOD-PAP biochemical analyzer in hospital (Table S2, SI). |
5398 |
468 |
Ag2-xCuxS NPs |
Colorimetric urine glucose detection |
glucose |
Color |
0-30 |
mM |
0.37 |
mM |
|
|
5441 |
497 |
CuS NPs |
Antibacterial treatment |
|
|
|
|
|
|
|
|
5488 |
544 |
CuCo2S4 NPs |
For combating burn infections |
|
|
|
|
|
|
|
|
5572 |
639 |
WS2 QDs |
For Antibacterial and Anti-biofilm Therapie |
|
|
|
|
|
|
|
|
5578 |
651 |
FeS2/SiO2 |
Detection |
H2O2 |
Color |
/L |
μM |
0.00420 |
μM |
|
|
5579 |
651 |
FeS2/SiO2 |
Detection |
TMB |
Color |
1-4- |
μM |
0.16 |
μM |
|
|
5581 |
654 |
FeS2/SiO2 |
Detection |
H2O2 |
Color |
/L |
μM |
0.00420 |
μM |
|
|
5582 |
654 |
FeS2/SiO2 |
Detection |
TMB |
Color |
1-4- |
μM |
0.16 |
μM |
|
|
5600 |
670 |
Fe3S4 |
detection of glucose |
glucose |
Color |
0.5-150 |
μM |
0.1 |
μM |
93.7-101.4% |
|
5602 |
672 |
MoS2-Lys NSs |
antibacteria |
|
|
|
|
|
|
|
|
5607 |
677 |
HyPEI-supported ZnS NC |
The catalyst, however, could be easily adapted to apply broadly to different protoenzymatic systems. |
|
|
|
|
|
|
|
|
5614 |
687 |
CuSNPs |
determination of o,o-dimethyl-o-2,2-dichlorovinyl phosphate (DDVP) |
DDVP |
Fluor |
0.0001 to 0.1 |
μg/mL |
0.1 |
ng/mL |
|
|
5774 |
847 |
MoS2 NSs |
detection of toxic chemicals in the environment and/or for following enzymatic chromogenic reactions. |
|
|
|
|
|
|
|
|
5904 |
997 |
MoS2 |
determination of D-penicillamine |
D-penicillamine |
Color |
7.0-60 |
μg/mL |
0.63 |
μg/mL |
|
|
5964 |
1056 |
WS2 nanosheets |
Detection of Kanamycin |
Kanamycin |
Color |
0.1-0.5 |
μM |
0.06 |
μM |
|
|
5988 |
1077 |
WS2 nanosheets |
detect acetone |
acetone |
Color |
10-125 |
mg/L |
3.08 |
mg/L |
85.8-107.5% |
|
6158 |
1305 |
MoS2 |
Salmonella typhimurium |
Salmonella typhimurium |
Color |
|
|
10*3 |
CFU/mL |
|
|
6277 |
1428 |
WBLCS-TA |
For detecting cysteine |
Cystein |
Fluor |
0.03 to 125 |
μM |
1 |
nM |
|
|
6278 |
1428 |
WBLCS-TA-Cys |
For detecting Ag+ |
Ag+ |
Fluor |
50-75000 |
nM |
5 |
nM |
|
|
6282 |
1433 |
Casein-CuS |
Glucose sensing |
Glucose |
Color |
0.083 to 750 |
μM |
0.005 |
μM |
|
|