collimated monochromatic led light m660l4 (Thorlabs)
90
Structured Review
Thorlabs
collimated monochromatic led light m660l4
Collimated Monochromatic Led Light M660l4, supplied by Thorlabs, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/monochromatic+collimated+led/led+thorlabs+m660l4/pm40359044-269-6-11
Average 90 stars, based on 1 article reviews
Collimated Monochromatic Led Light M660l4, supplied by Thorlabs, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/monochromatic+collimated+led/led+thorlabs+m660l4/pm40359044-269-6-11
Average 90 stars, based on 1 article reviews
collimated monochromatic led light m660l4 - by Bioz Stars,
2026-10
90/100 stars
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Sedimentation:Article Title: Detection of Sulfonamide Antibiotics Using an Elastic Hydrogel Microparticles-Based Optical Biosensor. Article Snippet: Hydrogel microparticle contact areas resulting from sedimentation and competitive binding to DHPS immobilized on the biochip surface were documented using an inverted Olympus IX73 microscope (Olympus, Germany) with a 60×/1.35 UPlanSApo objective (Olympus, Germany), a monochromatic 530 nm collimated LED (M530L2-C1, Thorlabs, Germany) and a 50/50 beam splitter (Olympus) in the incident beam, enabling reflection interference contrast microscopy. Article Title: Detection of Sulfonamide Antibiotics Using an Elastic Hydrogel Microparticles-Based Optical Biosensor Article Snippet: Hydrogel microparticle contact areas resulting from sedimentation and competitive binding to DHPS immobilized on the biochip surface were documented using an inverted Olympus IX73 microscope (Olympus, Germany) with a 60×/1.35 UPlanSApo objective (Olympus, Germany), a monochromatic 530 nm collimated LED (M530L2-C1, Thorlabs, Germany) and a 50/50 beam splitter (Olympus) in the incident beam, enabling reflection interference contrast microscopy. Binding Assay:Article Title: Detection of Sulfonamide Antibiotics Using an Elastic Hydrogel Microparticles-Based Optical Biosensor. Article Snippet: Hydrogel microparticle contact areas resulting from sedimentation and competitive binding to DHPS immobilized on the biochip surface were documented using an inverted Olympus IX73 microscope (Olympus, Germany) with a 60×/1.35 UPlanSApo objective (Olympus, Germany), a monochromatic 530 nm collimated LED (M530L2-C1, Thorlabs, Germany) and a 50/50 beam splitter (Olympus) in the incident beam, enabling reflection interference contrast microscopy. Article Title: Detection of Sulfonamide Antibiotics Using an Elastic Hydrogel Microparticles-Based Optical Biosensor Article Snippet: Hydrogel microparticle contact areas resulting from sedimentation and competitive binding to DHPS immobilized on the biochip surface were documented using an inverted Olympus IX73 microscope (Olympus, Germany) with a 60×/1.35 UPlanSApo objective (Olympus, Germany), a monochromatic 530 nm collimated LED (M530L2-C1, Thorlabs, Germany) and a 50/50 beam splitter (Olympus) in the incident beam, enabling reflection interference contrast microscopy. Microscopy:Article Title: Detection of Sulfonamide Antibiotics Using an Elastic Hydrogel Microparticles-Based Optical Biosensor. Article Snippet: Hydrogel microparticle contact areas resulting from sedimentation and competitive binding to DHPS immobilized on the biochip surface were documented using an inverted Olympus IX73 microscope (Olympus, Germany) with a 60×/1.35 UPlanSApo objective (Olympus, Germany), a monochromatic 530 nm collimated LED (M530L2-C1, Thorlabs, Germany) and a 50/50 beam splitter (Olympus) in the incident beam, enabling reflection interference contrast microscopy. Article Title: Detection of Sulfonamide Antibiotics Using an Elastic Hydrogel Microparticles-Based Optical Biosensor Article Snippet: Hydrogel microparticle contact areas resulting from sedimentation and competitive binding to DHPS immobilized on the biochip surface were documented using an inverted Olympus IX73 microscope (Olympus, Germany) with a 60×/1.35 UPlanSApo objective (Olympus, Germany), a monochromatic 530 nm collimated LED (M530L2-C1, Thorlabs, Germany) and a 50/50 beam splitter (Olympus) in the incident beam, enabling reflection interference contrast microscopy. |