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ITIC

CAT: 1139-1664293-06-4-01Size: 10 gDry Ice: NoHazardous: No
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CAT#:1139-1664293-06-4-01Size:10 g
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24/48H Stock Items & 2 to 6 Weeks non Stock Items.
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Description
ITIC (CAS: 1664293-06-4) is a high-performance indacenodithienothiophene-based non-fullerene electron acceptor small molecule. This chemical compound features a unique donor-acceptor molecular structure, excellent thermal stability with a glass transition temperature up to 180°C, and special low-temperature glass-crystal transition characteristics different from traditional fullerene acceptors. ITIC (CAS: 1664293-06-4) has broad light absorption spectrum and high electron transmission efficiency, which is a core raw material for new energy photovoltaic material research and industrial production.
Synonyms
Indacenodithienothiophene-based non-fullerene acceptor
HS Code
2934999001
Applications
1. Organic Photovoltaic Cell Preparation: ITIC (CAS: 1664293-06-4) acts as a non-fullerene acceptor material for organic solar cells, improving photoelectric conversion efficiency and thermal stability of photovoltaic device active layers, solving the poor thermal stability defect of traditional fullerene-based solar cells. 2. New Energy Material R&D: Used for laboratory research on novel organic semiconductor materials, exploring molecular structure optimization of non-fullerene acceptors to develop higher-efficiency photovoltaic raw materials based onITIC (CAS: 1664293-06-4) . 3. Organic Semiconductor Device Manufacturing: Applied to the production of organic photodetectors and thin-film semiconductor devices, relying on the excellent electron transport performance of ITIC (CAS: 1664293-06-4) to enhance the sensitivity and working stability of semiconductor devices. 4. Photovoltaic Material Performance Testing: Served as standard reference material for performance calibration of organic photovoltaic raw materials, supporting batch quality inspection and performance comparison of acceptor materials with ITIC (CAS: 1664293-06-4) as benchmark.
Purity
≥98%
Molecular Formula
C94H82N4O2S4
Molecular Weight
1427.94
Shelf Life
2 years under proper storage
Appearance
Dark purple solid powder
Grade
Electronic grade, Research grade
Density
1.36 g/cm3 (at 25 °C)
Melting Point
260-262 °C
EINECS
Not available