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Merck

901074

Ir(MDQ)2(acac)

sublimed

別名:

Bis(2-methyldibenzo[f,h]quinoxaline)(acetylacetonate)iridium(III)

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この商品について

実験式(ヒル表記法):
C39H29N4O2Ir
CAS番号:
分子量:
777.89
MDL number:
UNSPSC Code:
12352103
NACRES:
NA.23
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description

Emissive Layer

Quality Level

assay

≥99% (sublimed, HPLC)

form

powder

color

red

SMILES string

CC1=NC(C(C=CC=C2)=C2C3=C4C5=CC=C3)=C4[N]([Ir]56OC(C)C=C(C)O6)=C1

InChI

1S/C17H11N2.C5H9O2.Ir/c1-11-10-18-16-14-8-4-2-6-12(14)13-7-3-5-9-15(13)17(16)19-11;1-4(6)3-5(2)7;/h2-7,9-10H,1H3;3-4,7H,1-2H3;/q;-1;+2/p-1/b;5-3-;

InChI key

FQHZITKUOOFGDL-FMFSYIAASA-M

General description

Ir(MDQ)2(acac) is a high-purity iridium complex widely used in the development of organic light-emitting diodes (OLEDs). This compound is known for its excellent emissive properties, making it ideal for applications in advanced electronic materials. With a robust molecular structure, it ensures stability and efficiency in light emission.

Features and Benefits

  • High Purity: With an assay of 99%, this product guarantees minimal impurities, enhancing the reliability of your research outcomes.
  • Scalable Research Applications: Suitable for various applications in OLED technology, making it ideal for both small-scale experiments and large-scale production.
  • Robust Emissive Properties: Exhibits strong light emission characteristics, contributing to the efficiency of devices such as OLEDs and PLEDs.
  • Versatile Use: Applicable in diverse fields such as material science and organic electronics, providing flexibility in research and development.

Preparation Note

Storage Conditions: Store in a cool, dry place away from light to maintain product integrity.

Handling Precautions: Use appropriate personal protective equipment (PPE) when handling this compound. Ensure proper ventilation in the working area.


保管分類

11 - Combustible Solids

wgk

WGK 3

flash_point_f

Not applicable

flash_point_c

Not applicable



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資料

Shinar教授は、医療用途のための有機およびハイブリッド型エレクトロニクスにおける低コストで使い捨て可能なセンサー構成に注目しています。

Professor Shinar highlights low-cost, disposable sensor configurations in organic and hybrid electronics for healthcare applications.

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The development of white organic light-emitting diodes (OLEDs) holds great promise for the production of highly efficient large-area light sources. High internal quantum efficiencies for the conversion of electrical energy to light have been realized. Nevertheless, the overall device power
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Controlling the alignment of the emitting molecules used as dopants in organic light-emitting diodes is an effective strategy to improve the outcoupling efficiency of these devices. To explore the mechanism behind the orientation of dopants in films of organic host