cited By 0International audienceThe geometric and electronic structure of [3-(4-Octylphenyl)]Thiophenes (POPT) and [3-(4-octylphenoxy)thiophenes] (POPOT) oligomers, ranging in size up to the octamer (240 atoms), have been calculated with density functional theory (B3LYP/6-31G*). The knowledge of the geometries for these polymers is of utmost importance in order to understand their optical properties in different phase (solution and condensed phase). The calculations indicate that, in opposition to the first polymer where the introduction of the pendant phenyl disturb the planarity for the backbone of the conjugated segment, the second polymer has a nice organisation where the conjugated chain still planar even the presence of octylphenyl gr...
There is a remarkable level of interest in the development of π-conjugated polymers (ICPs) which hav...
International audienceAmong the numerous reduced bandgap polymers currently being developed, poly[3-...
Poly(3-alkythiophenes) (P3AT) are one of the most promising classes of electroactive polymers and r...
The electric properties of a large number of different complex composed systems (with particular foc...
Poly(3-alkylthiophenes) are one of the most widely used polymers for organic photovoltaics. The scar...
Solar cells based on conjugated polymers have been gaining attention in the recent decades due to it...
In this work, a series of eight thiophene-based polymers (exploited as “donors” in bulk heterojuncti...
We present the results of a molecular modeling study of several thiophene-based oligomers and polyme...
The widespread use of poly(3-hexylthiophene) (P3HT) in the active layers of organic solar cells indi...
Electronic structures and photophysical properties of new organic materials based on thiophene and p...
Organic solar cells employing fullerenes blended with conjugated polymers as the main light-absorbin...
The structural, electronic, and optical properties of PBDTTBT are comprehensively studied by density...
Exciton binding energies (E-b) in promising organic photovoltaic (OPV) materials, specifically in po...
Recently, conjugated polymers have attracted much attention because of the organic solar cell (OSC) ...
There is a remarkable level of interest in the development of π-conjugated polymers (ICPs) which hav...
International audienceAmong the numerous reduced bandgap polymers currently being developed, poly[3-...
Poly(3-alkythiophenes) (P3AT) are one of the most promising classes of electroactive polymers and r...
The electric properties of a large number of different complex composed systems (with particular foc...
Poly(3-alkylthiophenes) are one of the most widely used polymers for organic photovoltaics. The scar...
Solar cells based on conjugated polymers have been gaining attention in the recent decades due to it...
In this work, a series of eight thiophene-based polymers (exploited as “donors” in bulk heterojuncti...
We present the results of a molecular modeling study of several thiophene-based oligomers and polyme...
The widespread use of poly(3-hexylthiophene) (P3HT) in the active layers of organic solar cells indi...
Electronic structures and photophysical properties of new organic materials based on thiophene and p...
Organic solar cells employing fullerenes blended with conjugated polymers as the main light-absorbin...
The structural, electronic, and optical properties of PBDTTBT are comprehensively studied by density...
Exciton binding energies (E-b) in promising organic photovoltaic (OPV) materials, specifically in po...
Recently, conjugated polymers have attracted much attention because of the organic solar cell (OSC) ...
There is a remarkable level of interest in the development of π-conjugated polymers (ICPs) which hav...
International audienceAmong the numerous reduced bandgap polymers currently being developed, poly[3-...
Poly(3-alkythiophenes) (P3AT) are one of the most promising classes of electroactive polymers and r...