Organic semiconductor lasers are a sensitive biosensing platform that respond to specific biomolecule binding events. So far, such biosensors have utilized protein-based interactions for surface functionalization but a nucleic acid–based strategy would considerably widen their utility as a general biodiagnostic platform. This manuscript reports two important advances for DNA-based sensing using an organic semiconductor (OS) distributed feedback (DFB) laser. First, the immobilization of alkyne-tagged 12/18-mer oligodeoxyribonucleotide (ODN) probes by Cu-catalyzed azide alkyne cycloaddition (CuAAC) or “click-chemistry” onto an 80 nm thick OS laser film modified with an azide-presenting polyelectrolyte monolayer is presented. Second, sequence-...
The first example of an all-organic oligofluorene truxene based distributed feedback laser for the d...
Bio-functionalised luminescent organic semiconductors are attractive for biophotonics because they c...
Bio-functionalised luminescent organic semiconductors are attractive for biophotonics because they c...
Organic semiconductor lasers are a sensitive biosensing platform that respond to specific biomolecul...
Organic semiconductor lasers are a sensitive biosensing platform that responds to specific biomolecu...
Organic semiconductor lasers are a sensitive biosensing platform that responds to specific biomolecu...
Organic semiconductor lasers are a sensitive biosensing platform that responds to specific biomolecu...
Organic semiconductor lasers are a sensitive biosensing platform that respond to specific biomolecul...
Organic semiconductor lasers are a sensitive biosensing platform that respond to specific biomolecul...
Point of Care devices have helped extend the reach of medical services and improved turnaround times...
Organic distributed feedback lasers can detect nanoscale materials and are therefore an attractive s...
The selective amplification of DNA in the polymerase chain reaction is used to exponentially increas...
The advancement of biosensor research has been a primary driving force in the continuing progress of...
Organic distributed feedback (DFB) lasers are a class of evanescent wave technology that can be use...
Organic distributed feedback (DFB) lasers are a class of evanescent wave technology that can be use...
The first example of an all-organic oligofluorene truxene based distributed feedback laser for the d...
Bio-functionalised luminescent organic semiconductors are attractive for biophotonics because they c...
Bio-functionalised luminescent organic semiconductors are attractive for biophotonics because they c...
Organic semiconductor lasers are a sensitive biosensing platform that respond to specific biomolecul...
Organic semiconductor lasers are a sensitive biosensing platform that responds to specific biomolecu...
Organic semiconductor lasers are a sensitive biosensing platform that responds to specific biomolecu...
Organic semiconductor lasers are a sensitive biosensing platform that responds to specific biomolecu...
Organic semiconductor lasers are a sensitive biosensing platform that respond to specific biomolecul...
Organic semiconductor lasers are a sensitive biosensing platform that respond to specific biomolecul...
Point of Care devices have helped extend the reach of medical services and improved turnaround times...
Organic distributed feedback lasers can detect nanoscale materials and are therefore an attractive s...
The selective amplification of DNA in the polymerase chain reaction is used to exponentially increas...
The advancement of biosensor research has been a primary driving force in the continuing progress of...
Organic distributed feedback (DFB) lasers are a class of evanescent wave technology that can be use...
Organic distributed feedback (DFB) lasers are a class of evanescent wave technology that can be use...
The first example of an all-organic oligofluorene truxene based distributed feedback laser for the d...
Bio-functionalised luminescent organic semiconductors are attractive for biophotonics because they c...
Bio-functionalised luminescent organic semiconductors are attractive for biophotonics because they c...