Synthesis and Characterization of Conjugated Oligoelectrolytes Based on Fluorene and Carbazole Derivative and Application of Polymer Solar Cell as a Cathode Buffer Layer
Synthesis and Characterization of Conjugated Oligoelectrolytes Based on Fluorene and Carbazole Derivative and Application of Polymer Solar Cell as a Cathode Buffer Layer
Thu Trang Do(Department of Polymer Engineering, Pukyong National University); 김주현(부경대학교); 홍희섭(부경대학교); 하예은(부경대학교); 유성일(부경대학교); 원용선(부경대학교); 문명준(부경대학교)
23권 4호, 367~376쪽
초록
It has been previously reported that the performances of bulk heterojunction polymer solar cells (PSCs)can be improved by incorporation of alcohol/water-soluble conjugated polyelectrolytes as cathode interlayers. Herein, we investigate the effect of three π-conjugated oliogoelectrolytes based on fluorene and carbazole derivatives withquaternary ammonium bromide called 6,6',6'',6''',6'''',6'''''-(9H,9'H,9''H-[2,3':6',2''-terfluorene]-9,9,9',9',9'',9''-hexayl)hexakis(N,N,N-trimethylhexan-1-aminium) bromide (FFiF), 6,6',6'',6'''-((9-(6-(trimethylammonio)hexyl)-9Hcarbazole-3,6-diyl)bis(9H-fluorene-9,9,2-triyl))tetrakis (N,N,N-trimethylhexan-1-aminium) bromide (FCiF), and6,6',6'',6'''-((9-hexyl-9H-carbazole-3,6-diyl)bis(9H-fluorene-9,9,2-triyl))tetrakis(N,N,N-trimethylhexan-1-aminium)bromide (FCF) as a cathode buffer layer between the active layer and the Al electrode on the photovoltaicproperties of conventional type PSCs. The best power conversion efficiency (PCE) of PSCs with the FCF layer is3.25%, which increases by 24% compared to that of PSCs without any cathode buffer layer (2.62%). The PCEimprovement is due to enhancement of the short circuit current, the fill factor, and the open circuit voltage, simultaneously. Interface dipole formation between the active layer and the Al cathode was proposed to explain theimproved performances.
Abstract
It has been previously reported that the performances of bulk heterojunction polymer solar cells (PSCs)can be improved by incorporation of alcohol/water-soluble conjugated polyelectrolytes as cathode interlayers. Herein, we investigate the effect of three π-conjugated oliogoelectrolytes based on fluorene and carbazole derivatives withquaternary ammonium bromide called 6,6',6'',6''',6'''',6'''''-(9H,9'H,9''H-[2,3':6',2''-terfluorene]-9,9,9',9',9'',9''-hexayl)hexakis(N,N,N-trimethylhexan-1-aminium) bromide (FFiF), 6,6',6'',6'''-((9-(6-(trimethylammonio)hexyl)-9Hcarbazole-3,6-diyl)bis(9H-fluorene-9,9,2-triyl))tetrakis (N,N,N-trimethylhexan-1-aminium) bromide (FCiF), and6,6',6'',6'''-((9-hexyl-9H-carbazole-3,6-diyl)bis(9H-fluorene-9,9,2-triyl))tetrakis(N,N,N-trimethylhexan-1-aminium)bromide (FCF) as a cathode buffer layer between the active layer and the Al electrode on the photovoltaicproperties of conventional type PSCs. The best power conversion efficiency (PCE) of PSCs with the FCF layer is3.25%, which increases by 24% compared to that of PSCs without any cathode buffer layer (2.62%). The PCEimprovement is due to enhancement of the short circuit current, the fill factor, and the open circuit voltage, simultaneously. Interface dipole formation between the active layer and the Al cathode was proposed to explain theimproved performances.
- 발행기관:
- 한국고분자학회
- 분류:
- 고분자공학