17 results on '"Ye, Baoxian"'
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2. Ratiometric fluorescence sensing of mercuric ion based on dye-doped lanthanide coordination polymer particles
3. Enzyme spheres as novel tracing tags coupled with target-induced DNAzyme assembly for ultrasensitive electrochemical microRNA assay
4. An ultrasensitive label-free photoelectrochemical aptasensor based on terminal deoxynucleotidyl transferase amplification and catalytic reaction of G-quadruplex/hemin
5. Sensitive electrochemical detection of oxytetracycline based on target triggered CHA and poly adenine assisted probe immobilization
6. Signal-off photoelectrochemical aptasensor for kanamycin: Strand displacement reaction combines p-n competition
7. Novel preparation method of bipedal DNA walker based on hybridization chain reaction for ultrasensitive DNA biosensing
8. Novel electrochemical biosensor based on Exo III-assisted digestion of dsDNA polymer from hybridization chain reaction in homogeneous solution for CYFRA 21-1 DNA assay
9. Ratiometric fluorescence sensing of glutathione by using the oxidase-mimicking activity of MnO2 nanosheet
10. Development of high-performance liquid chromatography and nonaqueous capillary electrophoresis methods for the separation of calixarene derivatives
11. A “signal-on” electrochemical biosensor based on DNAzyme-driven bipedal DNA walkers and TdT-mediated cascade signal amplification strategy
12. Molybdenum sulfide-based electrochemical platform for high sensitive detection of taxifolin in Chinese medicine
13. A label-free IFN-γ aptasensor based on target-triggered allosteric switching of aptamer beacon and streptavidin-inorganic hybrid composites
14. An enzyme-free and label-free signal-on aptasensor based on DNAzyme-driven DNA walker strategy
15. Graphene blended with SnO 2 and Pd-Pt nanocages for sensitive non-enzymatic electrochemical detection of H 2 O 2 released from living cells
16. Simultaneous determination of dopamine and ascorbic acid at poly(neutral red) modified electrodes
17. Ratiometric fluorescence sensing of glutathione by using the oxidase-mimicking activity of MnO 2 nanosheet.
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