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1.
Biomacromolecules ; 18(12): 3881-3891, 2017 Dec 11.
Article in English | MEDLINE | ID: mdl-29064227

ABSTRACT

For the preparation of fully biobased unsaturated polyester resins (UPRs), the replacement of styrene with alternate nonpetroleum-based monomers turned out to be one of the most challenging tasks. Its complexity lies in the fact that reactive diluents (RD) have to have low viscosity and volatility, good compatibility with prepolymer, and capability to homopolymerize and copolymerize with its unsaturations. In this context, we directed our efforts to develop fully biobased UPRs using the dialkyl itaconates as an alternative to styrene. Therefore, a series of 100% biobased UPRs were prepared from itaconic acid and 1,2-propandiol and diluted by dialkyl itaconates. The resins were characterized by Fourier transform infrared spectroscopy, NMR, volatility, and viscosity measurements, while the cured samples were characterized by dynamic mechanical properties, thermomechanical analysis, thermogravimetric analysis data, and tensile tests. The influence of RD structure on the properties of cured samples was discussed in detail. It was shown that the prepared resins had evaporation rates of dialkyl itaconates of several orders of magnitude less compared to styrene. The cured resins with dimethyl itaconate showed comparable or even better thermal and mechanical properties compared to the one with styrene. This investigation showed that itaconic acid and dialkyl itaconates are promising bioresources for the preparation of fully biobased UPRs for mass consumption.


Subject(s)
Polyesters/chemistry , Resins, Synthetic/chemistry , Succinates/chemistry , Materials Testing/methods , Molecular Weight , Polymers/chemistry , Propylene Glycol/chemistry , Styrene/chemistry , Thermogravimetry/methods , Viscosity
2.
ACS Appl Mater Interfaces ; 7(46): 25865-74, 2015 Nov 25.
Article in English | MEDLINE | ID: mdl-26540316

ABSTRACT

Herein, the ability of gamma irradiation to enhance the photoluminescence properties of graphene quantum dots (GQDs) was investigated. Different doses of γ-irradiation were used on GQDs to examine the way in which their structure and optical properties can be affected. The photoluminescence quantum yield was increased six times for the GQDs irradiated with high doses compared to the nonirradiated material. Both photoluminescence lifetime and values of optical band gap were increased with the dose of applied gamma irradiation. In addition, the exploitation of the gamma-irradiated GQDs as photosensitizers was examined by monitoring the production of singlet oxygen under UV illumination. The main outcome was that the GQDs irradiated at lower doses act as better photoproducers than the ones irradiated at higher doses. These results corroborate that the structural changes caused by gamma irradiation have a direct impact on GQD ability to produce singlet oxygen and their photostability under prolonged UV illumination. This makes low-dose irradiated GQDs promising candidates for photodynamic therapy.


Subject(s)
Gamma Rays , Graphite/chemistry , Luminescence , Photochemotherapy/methods , Quantum Dots/chemistry , Electron Spin Resonance Spectroscopy , Microscopy, Atomic Force , Particle Size , Photosensitizing Agents/pharmacology , Singlet Oxygen/chemistry , Spectrophotometry, Ultraviolet , Spectroscopy, Fourier Transform Infrared
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