1-Bromo-4-nitrobenzene

1-Bromo-4-nitrobenzene Structure
1-Bromo-4-nitrobenzene structure
Common Name 1-Bromo-4-nitrobenzene
CAS Number 586-78-7 Molecular Weight 202.005
Density 1.7±0.1 g/cm3 Boiling Point 252.6±13.0 °C at 760 mmHg
Molecular Formula C6H4BrNO2 Melting Point 124-126 °C(lit.)
MSDS Chinese USA Flash Point 106.6±19.8 °C
Symbol GHS07
GHS07
Signal Word Warning

Tetragonal Cu2Se nanoflakes: synthesis using selenated propylamine as Se source and activation of Suzuki and Sonogashira cross coupling reactions.

Dalton Trans. 44(2) , 725-32, (2014)

The metastable tetragonal Cu2Se phase as nanoflakes has been synthesized for the first time by treating CuCl2 taken in a mixture (1:1) of 1-octadecene and oleylamine with H2N-(CH2)3-SePh dissolved in 1-octadecene. Powder X-ray diffraction (PXRD), HRTEM, SEM-E...

Precursor chemistry matters in boosting photoredox activity of graphene/semiconductor composites.

Nanoscale 7 , 18062-70, (2015)

Considerable effort has been made to fabricate graphene (GR)/semiconductor composite photocatalysts, by using graphene oxide (GO) as the most widely used precursor of GR, toward an improved efficacy of solar energy conversion. However, thus far, the role of G...

Synthesis of diaryl ethers using an easy-to-prepare, air-stable, soluble copper (I) catalyst. Gujadhur R and Venkataraman D.

Synth. Commun. 31(18) , 2865-79, (2001)

Efficient Stille cross-coupling reaction catalyzed by the Pd(OAc)2/Dabco catalytic system.

J. Org. Chem. 70(7) , 2832-4, (2005)

[reaction: see text] An efficient Pd(OAc)2/Dabco-catalyzed Stille cross-coupling reaction procedure has been developed. In the presence of Pd(OAc)2 and Dabco (triethylenediamine), various aryl halides including aryl iodides, aryl bromides, and activated aryl ...

The electrochemical reduction of 1-bromo-4-nitrobenzene at zinc electrodes in a room-temperature ionic liquid: a facile route for the formation of arylzinc compounds.

Phys. Chem. Chem. Phys. 16(10) , 4478-82, (2014)

The electrochemical reduction of 1-bromo-4-nitrobenzene (p-BrC6H4NO2) at zinc microelectrodes in the [C4mPyrr][NTf2] ionic liquid was investigated via cyclic voltammetry. The reduction was found to occur via an EC type mechanism, where p-BrC6H4NO2 is first re...