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The solar cells based on these polymers displayed PCEs of 2.12%, 2.85%, 1.89% and 2.74%.
However, LSC devices based on these polymers still present limited lifetimes resulting from the intrinsic poor photostability of the polymeric carrier.
Preliminary study exhibits the best power conversion efficiency of 1.28% for PSCs based on these polymers with a relatively high Voc of 0.84 V.
Bulk heterojunction type polymer solar cells based on these polymers as the electron donor materials, with PC71BM as the acceptor, showed maximum power conversion efficiency (PCE) of 0.9% for PONDPP and 1.1% for PTADPP under AM 1.5 illumination.
In particular, films based on these polymers have been contacted with a mucin solution at pH 7 and, the interfacial interaction and interpenetration between the glycoprotein and PHEA or PAHy have been studied by analysing the ATR FTIR spectra.
These polymers and membranes based on these polymers showed good LOI values and indicate an improvement of the safety of lithium batteries.
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Transparent free-standing films could be readily fabricated based on these polymer brushes and used for dielectric property studies.
As a result, power conversion efficiencies (PCEs) of 4.84% and 5.11% were obtained for inverted polymer solar cells based on these new polymers.
All-polymer solar cells based on these PTAC-based polymers as acceptor and P3HT as donor have been fabricated.
Polymer solar cells (PSC) based on these new random polymers were fabricated with device structures of ITO/PEDOT: PSS/random polymers: PC71BM (1:2, w/w)/Ca/Al.
Proton exchange membranes (PEM) based on these hybrid inorganic organic polymers and H3PO4 exhibit high proton conductivity and high thermal stability in an atmosphere of low relative humidity.
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