910635
IDT-2Br
≥99%
別名:
5,5′-[[4,4,9,9-Tetrakis(4-hexylphenyl)-4,9-dihydro-s-indaceno[1,2-b:5,6-b′]dithiophene-2,7-diyl]bis(2,1,3-benzothiadiazole-7,4-diylmethylidyne)]bis[3-ethyl-2-thioxo-4-thiazolidinone], IDT-BT-R
About This Item
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詳細
Band gap: 1.83 eV
アッセイ
≥99%
フォーム
solid
分子量
1518.20 g/mol
色
dark
溶解性
chloroform: soluble
軌道エネルギー
HOMO -5.52 eV
LUMO -3.69 eV
SMILES記法
S1\C(=C/c2c3n[s]nc3c(cc2)c4[s]c5c(c4)C(c8c5cc9c(c8)c%10[s]c(cc%10C9(c%15ccc(cc%15)CCCCCC)c%14ccc(cc%14)CCCCCC)c%11c%12n[s]nc%12c(cc%11)\C=C%13/SC(=S)N(C/%13=O)CC)(c7ccc(cc7)CCCCCC)c6ccc(cc6)CCCCCC)\C(=O)N(C1=S)CC
InChI
1S/C88H88N6O2S8/c1-7-13-17-21-25-55-29-39-61(40-30-55)87(62-41-31-56(32-42-62)26-22-18-14-8-2)69-51-68-70(52-67(69)81-71(87)53-73(99-81)65-47-37-59(77-79(65)91-103-89-77)49-75-83(95)93(11-5)85(97)101-75)88(63-43-33-57(34-44-63)27-23-19-15-9-3,64-45-35-58(
InChI Key
MZMPYGNPOJDPIE-UJANMLRWSA-N
詳細
アプリケーション
Ternary blend organic solar cells (OSCs) with photoresponses beyond 1000 nm can be fabricated using PTB7-Th as donor and ultralow-bandgap F8IC and medium-high bandgap IDT-2BR as NFAs. A PCE of 12.1% has been achieved by such a ternary device with 20% IDT-2BR content in acceptors. In this work, IDT-2BR was found to contribute simultanously to the improvement of the open-circuit voltage (VOC), short-circuit (JSC) and fill factor (FF) of the PTB7-Th/F8IC blend, due to smaller energy offset for charge separation, suppressed charge recombination, and imporved light absorption. Improved packing due to the coexsitence of F8IC and IDT-2BR leads to higher mobilities and more balanced charge transport, which contribute to the improved FF as well.
Additionaly, blends with IDT-2BR have been found to be thermally stable at 150 Celsius.
A ternary blend using both IDT-2BR and fullerene based acceptor: PC71BM (Product No. 684465) has also reached a PCE over 12%.
保管分類コード
13 - Non Combustible Solids
WGK
WGK 3
引火点(°F)
Not applicable
引火点(℃)
Not applicable
適用法令
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Jan Code
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910635-100MG:
910635-BULK:
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資料
The emerging organic photovoltaic (OPV) technology is very promising for low-cost solar energy production. OPV devices can be produced using high-throughput, large-volume printing methods on lightweight and flexible plastic substrates, making them easy to deploy and use in innovative ways.
The emerging organic photovoltaic (OPV) technology is very promising for low-cost solar energy production.
Professor Chen (Nankai University, China) and his team explain the strategies behind their recent record-breaking organic solar cells, reaching a power conversion efficiency of 17.3%.
ライフサイエンス、有機合成、材料科学、クロマトグラフィー、分析など、あらゆる分野の研究に経験のあるメンバーがおります。.
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