Simultaneous detection of multiple DNA targets by integrating dual-color graphene quantum dot nanoprobes and carbon nanotubes.
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Summary
Simultaneous detection of multiple DNA targets was achieved based on a biocompatible graphene quantum dots (GQDs) and carbon nanotubes (CNTs) platform through spontaneous assembly between dual-color GQD-based probes and CNTs and subsequently self-recognition between DNA probes and targets.
- Type
- article
- Published
- 2014-12-01
- Cited by
- 36
- References
- 27
- OpenAlex
- https://openalex.org/W1967063661
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:42731775
Keywords
Graphene, Quantum dot, Carbon nanotube, Nanotechnology, Materials science
References
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- Developing luminescent silver nanodots for biological applications.
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- Photoluminescent graphene oxide ink to print sensors onto microporous membranes for versatile visualization bioassays.
- A universal fluorescence sensing strategy based on biocompatible graphene quantum dots and graphene oxide for the detection of DNA.
- Graphene quantum dots derived from carbon fibers.
Cited by
- Spectrofluorometric genotyping of single nucleotide polymorphisms using carbon dots as fluorophores.
- Ultrasensitive electrochemical detection of dual DNA targets based on G-quadruplex-mediated amplification
- A novel fluorescence assay for inorganic pyrophosphatase based on modulated aggregation of graphene quantum dots.
- Facile synthesis of S, N co-doped carbon dots and investigation of their photoluminescence properties.
- DNA-modified graphene quantum dots as a sensing platform for detection of Hg2+ in living cells
- Functionalized Carbon Quantum Dots with Dopamine for Tyrosinase Activity Monitoring and Inhibitor Screening: In Vitro and Intracellular Investigation.
- Synthesis of Blue‐, Green‐, Yellow‐, and Red‐Emitting Graphene‐Quantum‐Dot‐Based Nanomaterials with Excitation‐Independent Emission
- Quantum dots based potential-resolution dual-targets electrochemiluminescent immunosensor for subtype of tumor marker and its serological evaluation.
- Label-free and ratiometric detection of nuclei acids based on graphene quantum dots utilizing cascade amplification by nicking endonuclease and catalytic G-quadruplex DNAzyme.
- Graphene quantum dots as smart probes for biosensing
- Reversible Fluorescent Nanoswitch Based on Carbon Quantum Dots Nanoassembly for Real-Time Acid Phosphatase Activity Monitoring.
- Single-transfer method for fabrication of linear array of graphene-based nanodevices
- Graphene and graphene-like two-denominational materials based fluorescence resonance energy transfer (FRET) assays for biological applications.
- One-pot synthesis of strongly fluorescent DNA-CuInS2 quantum dots for label-free and ultrasensitive detection of anthrax lethal factor DNA.
- Graphene quantum dots: recent progress in preparation and fluorescence sensing applications
- Black phosphorus nanoparticles as a novel fluorescent sensing platform for nucleic acid detection
- Functional Carbon Quantum Dots: A Versatile Platform for Chemosensing and Biosensing.
- Tuning the optical properties of graphene quantum dots for biosensing and bioimaging.
- A novel fluorescent aptasensor for the highly sensitive and selective detection of cardiac troponin I based on a graphene oxide platform
- In situ assembly of sulfur-doped carbon quantum dots surrounded iron(III) oxide nanocomposite; a novel electrocatalyst for highly sensitive detection of antipsychotic drug olanzapine
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