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Keyword [Highly Sensitive Detection]
Result: 21 - 38 | Page: 2 of 2
21. Study On Highly Sensitive Detection Of Metal Elements By Liquid Cathode Glow Discharge
22. Localized Catalytic Hairpin Assembly For MiRNA-21 Highly Sensitive Detection In Living Cell
23. Highly Sensitive Detection Of Glutathione Based On Upconversion Materials
24. Design Of Nucleic Acid Sensor With Multiple Enzyme-assisted Signal Amplification And Highly Sensitive Detection Of Tumor Markers
25. Electrochemical Immunosensors Based On Non-precious Metal Catalysts For Highly Sensitive Detection Of Prostate-specific Antigen
26. Graphene Electronic Device Based Biosensors and Chemical Sensors
27. Shell-Isolated Nanoparticle-Enhanced Fluorescence (SHINEF) Coupled DNA Aptamers For Highly Sensitive Detection Of Tetracycline And Cholic Acid
28. The Research On UCNP-MOFs Fluorescent Aptamer Sensing Technology For Highly Sensitive Detection Of T-2 Toxin In Food
29. Research On Sample Pretreatment Method For Highly Sensitive Detection Of Foodborne Pathogenic Bacteria Based On Rti-LAMP
30. Construction Of Label-free Aptasensor And The Study Of Their Highly Sensitive Detection For Multiclass Contaminants In Complex Matrices
31. Highly Sensitive Detection Of Tetracycline By ZIF-67 Based Immunochromatographic Test Strip
32. A Study On Dual Recognition And Highly Sensitive Detection Method Of Listeria Monocytogenes Based On Fe3O4@ZIF-8 Magnetic Separation
33. Highly Sensitive Detection Of Bisphenol A By Using DNA Hybridization Induced Quenching Of Fluorescence With Biochar
34. Highly Sensitive Detection Of Microcystin-LR Under Visible Light Using A Self-powered Photoelectrochemical Aptasensor Based On A CoO/Au/g-C3N4 Z-scheme Heterojunction
35. Preparation Of MXene Based Iron Rich Nanocomposite Modified Electrode And Highly Sensitive Detection Of Arsenic(?) In Water
36. Preparation Of UCNPs@COFs Fluorescent Probe For Highly Sensitive Detection Of PFOS
37. Highly Sensitive Detection For Alpha-fetoprotein By Fluorescence Sensor Based On Aptamer
38. Preparation And Application Of LoC-SERS Chip With Tunable “Hot-Spots” Based On Induced Nanoparticle Aggregation Strategy
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