Periodic

Materials
  • ALL
  • Enzyme-like Activity
  • ALL
  • Sulfide
    ref material application target method linear range linear range unit LOD LOD unit recovery comment
    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