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Oxygen-Sensing Difluoroboron Thienyl Phenyl β-Diketonate Polylactides
Christopher A. DeRosa
, Milena Kolpaczynska
, Caroline Kerr
, Margaret L. Daly
, William A. Morris
, Cassandra L. Fraser
Research output
:
Contribution to journal
›
Article
›
peer-review
27
Scopus citations
Overview
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Dive into the research topics of 'Oxygen-Sensing Difluoroboron Thienyl Phenyl β-Diketonate Polylactides'. Together they form a unique fingerprint.
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Keyphrases
Polylactic Acid
100%
Polylactide
100%
Phenyl
100%
Thienyl
100%
Oxygen Sensing
100%
Diketonates
100%
Difluoroboron
100%
Phosphorescence
66%
Oxygen Sensitivity
66%
Boron
33%
Fluorophore
33%
Nanoparticles
33%
Sensing Applications
33%
Heavy Atoms
33%
Halides
33%
Single Component
33%
Conjugated Polymers
33%
Large Gap
33%
Sensing Materials
33%
Fluorescence Peak
33%
Blue Fluorescence
33%
Monomer Emission
33%
Room-temperature Phosphorescence
33%
F-sensitive
33%
Thiophene Dye
33%
Ratiometric Sensing
33%
Orange Fluorescence
33%
Ring-opening Copolymerization (ROCOP)
33%
Substituted Thiophenes
33%
Thienyl Derivatives
33%
Engineering
Diketonates
100%
Nanoparticles
33%
Fluorophore
33%
Sensing Application
33%
Single Component
33%
Sensor Material
33%
Room Temperature
33%
Monomer
33%
Ring Opening Polymerization
33%
Oxygen-Sensitivity
33%
Ratiometric Sensing
33%
Physics
Nanoparticle
100%
Ratiometric
100%
Room-Temperature Phosphorescence
100%
Chemistry
Polylactide
100%
Ring Opening Polymerisation
20%
Ambient Reaction Temperature
20%
Fluorescence Peak
20%
Conjugated Polymer
20%
Monomer
20%
Halide
20%
Nanoparticle
20%
Sweet Orange
20%
Thiophene
20%
Chemical Engineering
Lactic Acid
100%
Ring Opening Polymerization
33%
Conjugated Polymer
33%
Nanoparticle
33%
Thiophene
33%
Material Science
Polylactide
100%
Halide
20%
Boron
20%
Conjugated Polymer
20%
Ring Opening Polymerization
20%
Nanoparticle
20%
Ratiometric Sensing
20%