Matches in SemOpenAlex for { <https://semopenalex.org/work/W2782567982> ?p ?o ?g. }
- W2782567982 endingPage "2838" @default.
- W2782567982 startingPage "2833" @default.
- W2782567982 abstract "Conventional magnetic sensors usually employ Fe-based magnetic materials as signal probes. In this work, we find that Cu(II) is also a useful longitudinal relaxation time (T1) signal-based magnetic probe. We adopt bathocuproinedisulfonic acid disodium salt hydrate (BCS) to chelate Cu(I) and form a stable Cu(I)–BCS complex in aqueous solution and find the significant difference in the T1 value of water protons between Cu(II) aqueous solution and Cu(I)–BCS complex aqueous solution. Redox reaction can convert Cu(II) to Cu(I) followed by the complexation of BCS, which results in apparent change of T1 that can serve as magnetic signal readout, which is the basis of this Cu-T1 sensor. Many redox reactions between Cu(II) and Cu(I) allow this Cu-T1 sensor to not only realize “one-step mode” assay such as ascorbic acid, protein, and alkaline phosphatase but also enable “multi-step mode” immunoassay, such as biomacromolecules and small molecules. This Cu-T1 sensor employs Cu ion as signal readout, providing an alternative tool for biochemical analysis." @default.
- W2782567982 created "2018-01-26" @default.
- W2782567982 creator A5011094931 @default.
- W2782567982 creator A5025816379 @default.
- W2782567982 creator A5035099734 @default.
- W2782567982 creator A5052366448 @default.
- W2782567982 creator A5075755018 @default.
- W2782567982 creator A5089208861 @default.
- W2782567982 date "2018-01-30" @default.
- W2782567982 modified "2023-10-18" @default.
- W2782567982 title "Cu-T<sub>1</sub> Sensor for Versatile Analysis" @default.
- W2782567982 cites W1968408447 @default.
- W2782567982 cites W1971748722 @default.
- W2782567982 cites W1975927777 @default.
- W2782567982 cites W1978876482 @default.
- W2782567982 cites W1980361959 @default.
- W2782567982 cites W1981587803 @default.
- W2782567982 cites W1984661639 @default.
- W2782567982 cites W1985161649 @default.
- W2782567982 cites W1995422709 @default.
- W2782567982 cites W1995976462 @default.
- W2782567982 cites W1997529464 @default.
- W2782567982 cites W2002125116 @default.
- W2782567982 cites W2002272577 @default.
- W2782567982 cites W2003851359 @default.
- W2782567982 cites W2010939247 @default.
- W2782567982 cites W2020067089 @default.
- W2782567982 cites W2026980625 @default.
- W2782567982 cites W2040238167 @default.
- W2782567982 cites W2083447077 @default.
- W2782567982 cites W2089696756 @default.
- W2782567982 cites W2090539609 @default.
- W2782567982 cites W2091189156 @default.
- W2782567982 cites W2091631408 @default.
- W2782567982 cites W2130220947 @default.
- W2782567982 cites W2144466990 @default.
- W2782567982 cites W2157572240 @default.
- W2782567982 cites W2194345979 @default.
- W2782567982 cites W2210403156 @default.
- W2782567982 cites W2291336353 @default.
- W2782567982 cites W2338371037 @default.
- W2782567982 cites W2411106588 @default.
- W2782567982 cites W2474699694 @default.
- W2782567982 cites W2509711613 @default.
- W2782567982 cites W2567925929 @default.
- W2782567982 cites W2572372473 @default.
- W2782567982 cites W2608300873 @default.
- W2782567982 cites W2611246257 @default.
- W2782567982 cites W2779413122 @default.
- W2782567982 cites W4237553634 @default.
- W2782567982 doi "https://doi.org/10.1021/acs.analchem.7b04971" @default.
- W2782567982 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/29343057" @default.
- W2782567982 hasPublicationYear "2018" @default.
- W2782567982 type Work @default.
- W2782567982 sameAs 2782567982 @default.
- W2782567982 citedByCount "18" @default.
- W2782567982 countsByYear W27825679822018 @default.
- W2782567982 countsByYear W27825679822019 @default.
- W2782567982 countsByYear W27825679822020 @default.
- W2782567982 countsByYear W27825679822021 @default.
- W2782567982 countsByYear W27825679822022 @default.
- W2782567982 countsByYear W27825679822023 @default.
- W2782567982 crossrefType "journal-article" @default.
- W2782567982 hasAuthorship W2782567982A5011094931 @default.
- W2782567982 hasAuthorship W2782567982A5025816379 @default.
- W2782567982 hasAuthorship W2782567982A5035099734 @default.
- W2782567982 hasAuthorship W2782567982A5052366448 @default.
- W2782567982 hasAuthorship W2782567982A5075755018 @default.
- W2782567982 hasAuthorship W2782567982A5089208861 @default.
- W2782567982 hasConcept C113196181 @default.
- W2782567982 hasConcept C115260700 @default.
- W2782567982 hasConcept C121332964 @default.
- W2782567982 hasConcept C145148216 @default.
- W2782567982 hasConcept C147789679 @default.
- W2782567982 hasConcept C178790620 @default.
- W2782567982 hasConcept C179104552 @default.
- W2782567982 hasConcept C184651966 @default.
- W2782567982 hasConcept C185592680 @default.
- W2782567982 hasConcept C199360897 @default.
- W2782567982 hasConcept C2779843651 @default.
- W2782567982 hasConcept C2986117127 @default.
- W2782567982 hasConcept C2986274086 @default.
- W2782567982 hasConcept C31903555 @default.
- W2782567982 hasConcept C32546565 @default.
- W2782567982 hasConcept C41008148 @default.
- W2782567982 hasConcept C43617362 @default.
- W2782567982 hasConcept C55904794 @default.
- W2782567982 hasConcept C62520636 @default.
- W2782567982 hasConceptScore W2782567982C113196181 @default.
- W2782567982 hasConceptScore W2782567982C115260700 @default.
- W2782567982 hasConceptScore W2782567982C121332964 @default.
- W2782567982 hasConceptScore W2782567982C145148216 @default.
- W2782567982 hasConceptScore W2782567982C147789679 @default.
- W2782567982 hasConceptScore W2782567982C178790620 @default.
- W2782567982 hasConceptScore W2782567982C179104552 @default.
- W2782567982 hasConceptScore W2782567982C184651966 @default.
- W2782567982 hasConceptScore W2782567982C185592680 @default.
- W2782567982 hasConceptScore W2782567982C199360897 @default.