Sample-averaged biexciton quantum yield measured by solution-phase photon correlation.
basic_science · Level V
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- Record sourced from PubMed, PMID 25409496.
- Also identified by DOI 10.1021/nl5027953 and PMC identifier 4346255.
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Abstract
The brightness of nanoscale optical materials such as semiconductor nanocrystals is currently limited in high excitation flux applications by inefficient multiexciton fluorescence. We have devised a solution-phase photon correlation measurement that can conveniently and reliably measure the average biexciton-to-exciton quantum yield ratio of an entire sample without user selection bias. This technique can be used to investigate the multiexciton recombination dynamics of a broad scope of synthetically underdeveloped materials, including those with low exciton quantum yields and poor fluorescence stability. Here, we have applied this method to measure weak biexciton fluorescence in samples of visible-emitting InP/ZnS and InAs/ZnS core/shell nanocrystals, and to demonstrate that a rapid CdS shell growth procedure can markedly increase the biexciton fluorescence of CdSe nanocrystals.
Medical subject headings
- Cadmium Compounds
- Photometry
- Selenium Compounds
- Spectrometry, Fluorescence