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Merck
CN

768677

Sigma-Aldrich

萘并[1,2-b:5,6-b′]二噻吩

97%

别名:

NDT

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About This Item

经验公式(希尔记法):
C14H8S2
CAS号:
分子量:
240.34
MDL编号:
UNSPSC代码:
12352103
PubChem化学物质编号:
NACRES:
NA.23

方案

97%

表单

solid

mp

153-160 °C

半导体性质

P-type (mobility>0.5 cm2/V·s)

SMILES字符串

C1(C=CS2)=C2C(C=CC3=C4SC=C3)=C4C=C1

InChI

1S/C14H8S2/c1-3-11-12(13-9(1)5-7-15-13)4-2-10-6-8-16-14(10)11/h1-8H

InChI key

MOZTVOICZIVCFC-UHFFFAOYSA-N

一般描述

Naphtho[1,2-b:5,6-b′]dithiophene (NDT) is a π-conjugated naphthodithiophene derivative that has symmetrical planar structures. It is mainly utilized in the development of semiconductors due to its high charge mobility and high current on/off ratios.

应用

NDT has donor-acceptor copolymers which can be used in the fabrication of organic electronic devices such as organic light emitting diodes (OLEDs), organic solar cells (OSCs) and organic field effect transistors (OFETs).
This semiconducting material has been used in the synthesis of copolymers that show the highest mobility (>0.5 cm2 /Vs) in an NDT-based OFET device to date.

象形图

Exclamation mark

警示用语:

Warning

危险声明

危险分类

Acute Tox. 4 Oral - Eye Irrit. 2

储存分类代码

11 - Combustible Solids

WGK

WGK 3

闪点(°F)

Not applicable

闪点(°C)

Not applicable


历史批次信息供参考:

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The mechanistic details of most disease-causing mutations remain poorly explored within the context of regulatory networks. We present a high-resolution three-dimensional integrated regulatory network (iRegNet3D) in the form of a web tool, where we resolve the interfaces of all known
Quinoidal Naphtho (1, 2-b: 5, 6-b?) dithiophenes for Solution-Processed n-Channel Organic Field-Effect Transistors
Mori T, et al.
Organic Letters, 16(5), 1334-1337 (2014)
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The Science of the total environment, 657, 1382-1388 (2019-01-27)
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Shi S, et al.
Macromolecules, 46(9), 3358-3366 (2013)

商品

Intrinsically stretchable active layers for organic field-effect transistors (OFET) are discussed. Polymer structural modification & post-polymerization modifications are 2 methods to achieve this.

Solution-processed organic photovoltaic devices (OPVs) have emerged as a promising clean energy generating technology due to their ease of fabrication, potential to enable low-cost manufacturing via printing or coating techniques, and ability to be incorporated onto light weight, flexible substrates.

Thin, lightweight, and flexible electronic devices meet widespread demand for scalable, portable, and robust technology.

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