TY - JOUR
T1 - Solution-processed bulk-heterojunction photovoltaic cells based on dendritic and star-shaped D-p-A organic dyes
AU - Wang, Jin Liang
AU - He, Zhicai
AU - Wu, Hongbin
AU - Cui, Haibo
AU - Li, Yan
AU - Gong, Qihuang
AU - Cao, Yong
AU - Pei, Jian
PY - 2010/6/1
Y1 - 2010/6/1
N2 - A series of D-p-A organic dendritic and star-shaped molecules based on three various chromophores (i.e., the truxene nodes, triphenylamine moieties as the donor, and benzothia- diazole chromophore as the acceptor) and their corresponding model compounds are facilely developed. Their photophysical and electrochemical properties are investigated in detail by UV/Vis absorption and photolumines- cent spectroscopy, and cyclic voltam- metry. By changing the various conjugated spacers (i.e. , single bond, double bond, and triple bond) among the three chromophores of dendritic series, their photophysical properties (that is, the one-photon absorption range and two-photon absorption cross-section values) are effectively modulated. All D-p-A conjugated oligomers show a broad and strong absorption band from 250 to 700 nm in thin films. Solution- processed bulk-heterojunction photovoltaic devices using our oligomer as donor and PCBM as acceptor are fabricated and measured. The power conversion efficiency of the devices based on our oligomers continuously increases from DBTTr to TrTD2A as a result of an increasing relative absorption intensity in longer wavelength region by changing the donor-acceptor ratio and conjugated spacers between the donor and acceptor. The power conversion efficiency of the devices based on TrTD2A was 0.54% under the illumination of AM 1.5 and 100 mW cm-2, which is the highest value recorded based on D-φ-A conjugated oligomers containing triphenylamine moieties and benzothiadiazole chromophores with truxene to date.
AB - A series of D-p-A organic dendritic and star-shaped molecules based on three various chromophores (i.e., the truxene nodes, triphenylamine moieties as the donor, and benzothia- diazole chromophore as the acceptor) and their corresponding model compounds are facilely developed. Their photophysical and electrochemical properties are investigated in detail by UV/Vis absorption and photolumines- cent spectroscopy, and cyclic voltam- metry. By changing the various conjugated spacers (i.e. , single bond, double bond, and triple bond) among the three chromophores of dendritic series, their photophysical properties (that is, the one-photon absorption range and two-photon absorption cross-section values) are effectively modulated. All D-p-A conjugated oligomers show a broad and strong absorption band from 250 to 700 nm in thin films. Solution- processed bulk-heterojunction photovoltaic devices using our oligomer as donor and PCBM as acceptor are fabricated and measured. The power conversion efficiency of the devices based on our oligomers continuously increases from DBTTr to TrTD2A as a result of an increasing relative absorption intensity in longer wavelength region by changing the donor-acceptor ratio and conjugated spacers between the donor and acceptor. The power conversion efficiency of the devices based on TrTD2A was 0.54% under the illumination of AM 1.5 and 100 mW cm-2, which is the highest value recorded based on D-φ-A conjugated oligomers containing triphenylamine moieties and benzothiadiazole chromophores with truxene to date.
KW - Conducting materials
KW - Dendrimers
KW - Molecular devices
KW - Molecular electronics
KW - Photophysics
UR - http://www.scopus.com/inward/record.url?scp=77952935250&partnerID=8YFLogxK
U2 - 10.1002/asia.200900686
DO - 10.1002/asia.200900686
M3 - Article
AN - SCOPUS:77952935250
SN - 1861-4728
VL - 5
SP - 1455
EP - 1465
JO - Chemistry - An Asian Journal
JF - Chemistry - An Asian Journal
IS - 6
ER -