Photoinduced Smart, Self-Healing Polymer Sealant for Photovoltaics
Citations Over TimeTop 10% of 2014 papers
Abstract
Polyisobutylene (PIB)-based polymer networks potentially useful as smart coatings for photovoltaic devices have been developed. Low molecular weight coumarin functional triarm star PIB was synthesized via a single step SN2 reaction of bromoallyl functional triarm star PIB with 4-methylumbelliferone or umbelliferone in the presence of sodium hydride. Quantitative end functionality was confirmed by matrix-assisted laser desorption/ionization time-of-flight mass spectrometry. UVA (λmax = 365 nm) induced reversible photodimerization of the coumarin moieties resulted in cross-linked elastomeric films exhibiting self-healing behavior. The extent of photodimerization/photoscission was monitored by UV-vis spectroscopy. The low oxygen (1.9 × 10(-16) mol m m(-2) s(-1) Pa(-1)) and moisture (46 × 10(-16) mol m m(-2) s(-1) Pa(-1)) permeability of the cross-linked polymer films suggest excellent barrier properties of the cross-linked polymer films. The self-healing process was studied by atomic force microscopy (AFM). For this, mechanical cuts were introduced in the cross-linked PIB films through micromachining with an AFM tip and the rate of healing induced by UV, sunlight, or both was followed by taking AFM images of the film at different time intervals during the repair process.
Related Papers
- → Techno-economic potential and perspectives of floating photovoltaics in Europe(2022)72 cited
- → Nano Architectures in Silicon Photovoltaics(2014)3 cited
- → The status and prospects of photovoltaics in Poland(1999)9 cited
- Spotlight on Tomorrow's Photovoltaics 's Photovoltaics 's Photovoltaics 's Photovoltaics 's Photovoltaics Exploit the abundant power of the sun(2011)
- Recent progress in colloidal quantum dot photovoltaics(2015)