2014
DOI: 10.1021/ar4002284
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Poly(3,4-ethylenedioxyselenophene) and Its Derivatives: Novel Organic Electronic Materials

Abstract: Since the discovery of high conductivity in iodine-doped polyacetylene, many interesting conducting polymers have been developed. Of these, polythiophenes have been most studied as electronic materials, with poly(3,4-ethylenedioxythiophene) (PEDOT) and the water-soluble PEDOT-PSS being the most successful commercially used conducting polymers. The polyselenophene family together with poly(3,4-ethylenedioxyselenophene) (PEDOS) and its derivatives have been shown to have slightly different properties compared to… Show more

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Cited by 134 publications
(108 citation statements)
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“…16,[49][50][51][52] Our simulated results have also a nice correlation with the experimental data as can be seen from Table S4, so, that is why the current level of theory is employed for the rest of simulations.…”
Section: -48supporting
confidence: 65%
“…16,[49][50][51][52] Our simulated results have also a nice correlation with the experimental data as can be seen from Table S4, so, that is why the current level of theory is employed for the rest of simulations.…”
Section: -48supporting
confidence: 65%
“…The heavier the heteroatom, the more spread out the dihedral angle distribution appears to be. Interestingly, twisting angle calculations [15][16][17] at 0 K find the twisting stiffness to be slightly higher for PEDOS compared to PEDOT. To further quantify the dihedral angle distribution, we calculated the average planarity P ¼ ðjjhj À 90jÞ=90, where h is the dihedral angle in degrees.…”
Section: Resultsmentioning
confidence: 98%
“…has been successfully applied for this type of polymers and has been found to be superior over other functionals [35][36][37][38]. In the case of inter-molecular study of the proposed model, N3 was sandwiched between TiO2 and HTM and then optimized at B3LYP functional with LanL2DZ basis set.…”
Section: Methodsmentioning
confidence: 99%