TY - JOUR
T1 - Structure-property relationship of different electron donors
T2 - Novel organic sensitizers based on fused dithienothiophene π-conjugated linker for high efficiency dye-sensitized solar cells
AU - Akhtaruzzaman, Md
AU - Menggenbateer,
AU - Islam, Ashraful
AU - El-Shafei, Ahmed
AU - Asao, Naoki
AU - Jin, Tienan
AU - Han, Liyuan
AU - Alamry, Khalid A.
AU - Kosa, Samia A.
AU - Asiri, Abdullah Mohamed
AU - Yamamoto, Yoshinori
N1 - Funding Information:
This work was supported by World Premier International Research Center Initiative (WPI), MEXT (Japan), and by King Abdulaziz University (KAU) under grant No ( HiCi/28-3-1432 ).
PY - 2013/4/22
Y1 - 2013/4/22
N2 - Three novel organic dyes, coded Ba-01-03, based on D-π-A building blocks were synthesized and characterized for dye-sensitized solar cells (DSCs) to study the influence of different electron donors on photocurrent and photovoltage. The electron donor of Ba-01 was based on N-methoxyphenylcarbazole and the electron donors for Ba-02 and Ba-03 were based on different indoline analogs. The photovoltaic performance of these sensitizers was characterized using incident-photon-to-current conversion efficiency (IPCE), photovoltage measurements, and total solar-to-electric conversion efficiency (η). It was shown that photovoltage of indoline donor based dye Ba-03 showed the highest efficiency of 6.38% compared to carbazole donor based dye of Ba-01. DFT calculations were proven to be an effective tool in the prediction of the vertical electronic excitation, charge separation, and photovoltage as it effectively predicted the delocalization and coefficient size of the HOMO and LUMO for Ba-01-03.
AB - Three novel organic dyes, coded Ba-01-03, based on D-π-A building blocks were synthesized and characterized for dye-sensitized solar cells (DSCs) to study the influence of different electron donors on photocurrent and photovoltage. The electron donor of Ba-01 was based on N-methoxyphenylcarbazole and the electron donors for Ba-02 and Ba-03 were based on different indoline analogs. The photovoltaic performance of these sensitizers was characterized using incident-photon-to-current conversion efficiency (IPCE), photovoltage measurements, and total solar-to-electric conversion efficiency (η). It was shown that photovoltage of indoline donor based dye Ba-03 showed the highest efficiency of 6.38% compared to carbazole donor based dye of Ba-01. DFT calculations were proven to be an effective tool in the prediction of the vertical electronic excitation, charge separation, and photovoltage as it effectively predicted the delocalization and coefficient size of the HOMO and LUMO for Ba-01-03.
KW - Dithienothiophene
KW - Dye-sensitized solar cells
KW - IPCE (incident-photon-to-current conversion efficiency)
KW - Organic dye
KW - Photovoltaic performance
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U2 - 10.1016/j.tet.2013.02.058
DO - 10.1016/j.tet.2013.02.058
M3 - Article
AN - SCOPUS:84875232103
SN - 0040-4020
VL - 69
SP - 3444
EP - 3450
JO - Tetrahedron
JF - Tetrahedron
IS - 16
ER -