form
solid
mol wt
average Mn 10,000-80,000
loss
0.5 wt. %, 300 °C
mp
493-498 °C
orbital energy
HOMO 5.39 eV
semiconductor properties
P-type (mobility=10−3 cm2/V·s)
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Application
PSiF-DBT can be used as a semiconducting polymer for the fabrication of polymeric solar cells (PSCs) and organic photovoltaic cells (OPVs).
General description
PSiF-DBT is a conductive polymer that can be used as an active layer with thermal stability and high degree of π-electron delocalization. It has a high mobility of charge carrier around 1×10-3cm2/(V s) which can be useful in organic electronics.
signalword
Warning
hcodes
Hazard Classifications
Eye Irrit. 2 - Skin Irrit. 2 - STOT SE 3
target_organs
Respiratory system
存储类别
11 - Combustible Solids
wgk
WGK 3
flash_point_f
Not applicable
flash_point_c
Not applicable
法规信息
新产品
此项目有
Electronic and structural properties in thermally annealed PSiF-DBT: PC71BM blends for organic photovoltaics
Borges BGAL, et al.
Thin Solid Films, 615(24), 165-170 (2016)
Annealing effect on donor-acceptor interface and its impact on the performance of organic photovoltaic devices based on PSiF-DBT copolymer and C60
Marchiori CFN, et al.
Applied Physics Letters, 106(13) (2015)
A direct route towards polymer/copper indium sulfide nanocomposite solar cells
Rath T, et al.
Advanced Energy Materials, 1(6), 1046-1050 (2011)
Toward high performance inverted polymer solar cells
Gong X, et al.
Polymer, 53(24), 5437-5448 (2012)
High-performance polymer heterojunction solar cells of a polysilafluorene derivative
Wang, E.; Wang, L.; Lan, L.; et al.
Applied Physics Letters, 92, 033307-033307 (2008)
商品
Thin, lightweight, and flexible electronic devices meet widespread demand for scalable, portable, and robust technology.
The development of high-performance conjugated organic molecules and polymers has received widespread attention in industrial and academic research.
Organic materials in optoelectronic devices like LEDs and solar cells are of significant academic and commercial interest.
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