跳转至内容
Merck

932507

Sigma-Aldrich

N,N′-Bis(naphthalen-1-yl)-N,N′-bis(phenyl)-2,2′-dimethylbenzidine

≥99% (HPLC)

别名:

2,2′-Dimethyl-N,N′-di-[(1-naphthyl)-N,N′-diphenyl]-1,1′-biphenyl-4,4′-diamine, α-NPD, N,N′-Bis(naphthalen-1-yl)-N,N′-bis(phenyl)-2,2′-dimethylbenzidine

登录查看公司和协议定价

选择尺寸

250 MG
$150.00

$150.00


请联系客服了解存货情况

获取大包装报价

选择尺寸

变更视图
250 MG
$150.00

About This Item

经验公式(希尔记法):
C46H36N2
分子量:
616.79
MDL编号:
UNSPSC代码:
41106305
NACRES:
NA.23

$150.00


请联系客服了解存货情况

获取大包装报价

等级

sublimed grade

质量水平

方案

≥99% (HPLC)

缺失

0.5% TGA, > 310 °C (weight loss)

溶解性

THF: soluble
chlorobenzene: soluble
chloroform: soluble

荧光

λem 447 nm±20 nm in THF

轨道能量

HOMO 5.4 eV 
LUMO 2.3 eV 

λ

in THF

紫外吸收

λ: 307 nm±5 nm Amax

SMILES字符串

Cc1cc(ccc1-c2ccc(cc2C)N(c3ccccc3)c4cccc5ccccc45)N(c6ccccc6)c7cccc8ccccc78

InChI

1S/C46H36N2/c1-33-31-39(47(37-19-5-3-6-20-37)45-25-13-17-35-15-9-11-23-43(35)45)27-29-41(33)42-30-28-40(32-34(42)2)48(38-21-7-4-8-22-38)46-26-14-18-36-16-10-12-24-44(36)46/h3-32H,1-2H3

InChI key

ZJFKMIYGRJGWIB-UHFFFAOYSA-N

正在寻找类似产品? 访问 产品对比指南

应用

Hole Transport/Electron Blocking Layer (HTL/EBL) for Efficient Organic Light Emitting Diode (OLED).
N,N′-Bis(naphthalen-1-yl)-N,N′-bis(phenyl)-2,2′-dimethylbenzidine can be used in organic light-emitting diodes (OLEDs) as a hole transport material. It has a suitable energy level and molecular structure that allows for effective energy transfer to dopant molecules, leading to enhanced electroluminescence and color purity in OLED devices. Due to its excellent charge transport properties and sensitivity to light, it can be used in studies such as organic photodetectors. It can be used as an active layer or part of the photodetection device structure, enabling efficient charge generation and transport upon light exposure.

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:

分析证书(COA)

Lot/Batch Number

没有发现合适的版本?

如果您需要特殊版本,可通过批号或批次号查找具体证书。

已有该产品?

在文件库中查找您最近购买产品的文档。

访问文档库

Highly Efficient, Red Delayed Fluorescent Emitters with Exothermic Reverse Intersystem Crossing via Hot Excited Triplet States.
Wang R, et al.
The Journal of Physical Chemistry C, 124, 20816?20826-20816?20826 (2020)
Impedance Characterization of Organic Light-Emitting Structures with Thermally Activated Delayed Fluorescence.
Voitsekhovskii A V, et al.
Physica Status Solidi RRL: Rapid Research Letters, 217, 1900847-1900847 (2020)
Dual-acceptor thermally activated delayed fluorescence emitters: Achieving high efficiency and long lifetime in orange-red OLEDs.
Hu X, et al.
Chemical Engineering Journal, 434, 134728-134728 (2022)
Highly efficient white light-emitting diodes with a bi-component emitting layer based on blue and yellow thermally activated delayed fluorescence emitters.
Chen Y, et al.
Journal of Material Chemistry C, 6, 2951-2956 (2018)
Effect of Triplet Confinement on Triplet-Triplet Annihilation in Organic Phosphorescent Host-Guest Systems.
Ligthart A, et al.
Advanced Functional Materials , 28, 1804618-1804618 (2018)

Questions

Reviews

No rating value

Active Filters

我们的科学家团队拥有各种研究领域经验,包括生命科学、材料科学、化学合成、色谱、分析及许多其他领域.

联系客户支持