Page last updated: 2024-08-22

gold and ascorbate-2-phosphate

gold has been researched along with ascorbate-2-phosphate in 7 studies

Research

Studies (7)

TimeframeStudies, this research(%)All Research%
pre-19900 (0.00)18.7374
1990's0 (0.00)18.2507
2000's0 (0.00)29.6817
2010's6 (85.71)24.3611
2020's1 (14.29)2.80

Authors

AuthorsStudies
Jiang, Z; Liang, A; Liu, G; Wu, M1
Deng, K; Gao, Z; Miró, M; Tang, D; Wang, XD1
Alonso-Lomillo, MA; Alvarado-Gámez, AL; Arcos-Martínez, MJ; Domínguez-Renedo, O1
Guo, Y; Ju, H; Li, J; Wu, J1
Li, H; Li, R; Liu, M; Liu, X; Lu, Q; Yang, L; Yao, S; Zhang, S; Zhang, Y1
Chen, C; Jiang, Y; Lu, Y; Lu, Z; Ni, P; Zhang, G1
Ge, S; Huang, C; Liu, Y; Sun, Y; Wang, F; Yu, J1

Other Studies

7 other study(ies) available for gold and ascorbate-2-phosphate

ArticleYear
A sensitive enzyme-catalytic nanogold-resonance scattering spectral assay for alkaline phosphate.
    Bioprocess and biosystems engineering, 2012, Volume: 35, Issue:5

    Topics: Alkaline Phosphatase; Ascorbic Acid; Biological Assay; Gold; Hydrogen-Ion Concentration; Metal Nanoparticles; Phosphates

2012
High-resolution colorimetric assay for rapid visual readout of phosphatase activity based on gold/silver core/shell nanorod.
    ACS applied materials & interfaces, 2014, Oct-22, Volume: 6, Issue:20

    Topics: Alkaline Phosphatase; Ascorbic Acid; Colorimetry; Gold; Humans; Immunoassay; Nanotubes; Reference Standards; Silver; Spectrophotometry, Ultraviolet

2014
A chronoamperometric screen printed carbon biosensor based on alkaline phosphatase inhibition for W(IV) determination in water, using 2-phospho-L-ascorbic acid trisodium salt as a substrate.
    Sensors (Basel, Switzerland), 2015, Jan-22, Volume: 15, Issue:2

    Topics: Alkaline Phosphatase; Ascorbic Acid; Biosensing Techniques; Carbon; Enzymes, Immobilized; Gold; Limit of Detection; Metal Nanoparticles; Solutions; Tungsten; Water

2015
A plasmonic colorimetric strategy for biosensing through enzyme guided growth of silver nanoparticles on gold nanostars.
    Biosensors & bioelectronics, 2016, Apr-15, Volume: 78

    Topics: Alkaline Phosphatase; Ascorbic Acid; Biosensing Techniques; Colorimetry; DNA; Gold; Limit of Detection; Metal Nanoparticles; Silver; Surface Plasmon Resonance

2016
A novel multiple signal amplifying immunosensor based on the strategy of in situ-produced electroactive substance by ALP and carbon-based Ag-Au bimetallic as the catalyst and signal enhancer.
    Biosensors & bioelectronics, 2017, Jun-15, Volume: 92

    Topics: Alkaline Phosphatase; Animals; Ascorbic Acid; Biosensing Techniques; Carbon; Catalysis; Goats; Gold; Humans; Immunoconjugates; Immunoenzyme Techniques; Limit of Detection; Metal Nanoparticles; Nanotubes, Carbon; Oligopeptides; Silver

2017
Fluorometric and colorimetric dual-readout alkaline phosphatase activity assay based on enzymatically induced formation of colored Au@Ag nanoparticles and an inner filter effect.
    Mikrochimica acta, 2019, 05-11, Volume: 186, Issue:6

    Topics: Adult; Alkaline Phosphatase; Ascorbic Acid; Colorimetry; Enzyme Assays; Gold; Graphite; Humans; Limit of Detection; Metal Nanoparticles; Oxidation-Reduction; Quantum Dots; Silver; Spectrometry, Fluorescence

2019
Cathode-Anode Spatial Division Photoelectrochemical Platform Based on a One-Step DNA Walker for Monitoring of miRNA-21.
    ACS applied materials & interfaces, 2021, Aug-04, Volume: 13, Issue:30

    Topics: Alkaline Phosphatase; Ascorbic Acid; Biosensing Techniques; DNA; Electrochemical Techniques; Electrodes; Enzymes, Immobilized; Gold; Humans; Indium; Lead; Light; Limit of Detection; Metal Nanoparticles; MicroRNAs; Photochemical Processes; Quantum Dots; Reproducibility of Results; Silver; Sulfides

2021