추천 제품
일반 설명
Poly(3-decylthiophene-2,5-diyl) (P3DT) is a conducting polymer with excellent electrical and optical properties. It is soluble in most of the organic solvents and can be used in a variety of electrochemical applications.
애플리케이션
P3DT is a conjugated polymer that can be used for a variety of applications, which include anticorrosive additives in paints, organic photovoltaic cells, polymeric solar cells, and field effect transistors.
Rechargeable battery electrodes, electrochromic devices, chemical and optical sensors, light-emitting diodes, microelectrical amplifiers, field-effect transistors and non-linear optical materials.
Conducting polymer. Rechargeable battery electrodes, electrochromic devices, chemical and optical sensors, light-emitting diodes, microelectrical amplifiers, field-effect transistors and non-linear optical materials.
포장
Packaged in glass bottles
법적 정보
Product of Rieke Metals, Inc.
Rieke is a registered trademark of Rieke Metals, Inc.
Rieke is a registered trademark of Rieke Metals, Inc.
Storage Class Code
11 - Combustible Solids
WGK
WGK 3
Flash Point (°F)
Not applicable
Flash Point (°C)
Not applicable
개인 보호 장비
Eyeshields, Gloves, type N95 (US)
이미 열람한 고객
The thermal behaviour of low-molecular-weight poly (3-decylthiophene)
Die Makromolekulare Chemie, 194(3), 817-827 (1993)
Field-effect mobility of charge carriers in blends of regioregular poly (3-alkylthiophene) s
The Journal of Physical Chemistry B, 107(8), 1749-1754 (2003)
Poly (3-alkylthiophene) s as anticorrosive additive for paints: Influence of the main chain stereoregularity
Journal of Applied Polymer Science, 108(5), 3291-3297 (2008)
Application of a polythiophene derivative as anticorrosive additive for paints
Progress in Organic Coatings, 53(3), 217-224 (2005)
Poly (3-decylthiophene) radical anions and cations in solution: Single and multiple polarons and their delocalization lengths in conjugated polymers
The Journal of Physical Chemistry B, 116(50), 14715-14723 (2012)
문서
The application of conducting polymers at the interface with biology is an exciting new trend in organic electronics research.
Intrinsically stretchable active layers for organic field-effect transistors (OFET) are discussed. Polymer structural modification & post-polymerization modifications are 2 methods to achieve this.
Novel Graphene‑Based Nanostructures Production, Functionalization, and Engineering
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