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1-Deutero-2,4,6-trifluorobenzene is an organic compound with the molecular formula C6D3F3. It is a derivative of benzene, where one hydrogen atom is replaced by a deuterium atom (an isotope of hydrogen with one neutron and one proton), and three hydrogen atoms are replaced by fluorine atoms. 1-deutero-2,4,6-trifluorobenzene is characterized by its unique structure, with the deuterium atom at the 1-position, and fluorine atoms at the 2, 4, and 6 positions on the benzene ring. Due to the presence of fluorine atoms, 1-deutero-2,4,6-trifluorobenzene exhibits interesting chemical and physical properties, such as increased stability, reactivity, and unique spectroscopic characteristics. It is commonly used in various chemical reactions, as a building block for more complex molecules, and in the synthesis of pharmaceuticals and agrochemicals.

767-78-2

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767-78-2 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 767-78-2 includes 6 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 3 digits, 7,6 and 7 respectively; the second part has 2 digits, 7 and 8 respectively.
Calculate Digit Verification of CAS Registry Number 767-78:
(5*7)+(4*6)+(3*7)+(2*7)+(1*8)=102
102 % 10 = 2
So 767-78-2 is a valid CAS Registry Number.

767-78-2Downstream Products

767-78-2Relevant academic research and scientific papers

Deuterium Exchange between Arenes and Deuterated Solvents in the Absence of a Transition Metal: Synthesis of D-Labeled Fluoroarenes

Salamanca, Vanesa,Albéniz, Ana C.

supporting information, p. 3206 - 3212 (2020/04/15)

Fluoroarenes can be selectively deuterated by H/D exchange with common deuterated solvents in the presence of a catalytic amount of an alkali metal carbonate or, for the less acidic arenes, stoichiometric quantities of potassium phosphate. This is a susta

Ag(I)-Catalyzed C-H Activation: The Role of the Ag(I) Salt in Pd/Ag-Mediated C-H Arylation of Electron-Deficient Arenes

Whitaker, Daniel,Burés, Jordi,Larrosa, Igor

supporting information, p. 8384 - 8387 (2016/07/27)

The use of stoichiometric Ag(I)-salts as additives in Pd-catalyzed C-H functionalization reactions is widespread. It is commonly proposed that this additive acts as an oxidant or as a halide scavenger promoting Pd-catalyst turnover. We demonstrate that, contrary to current proposals, phosphine ligated Ag(I)-carboxylates can efficiently carry out C-H activation on electron-deficient arenes. We show through a combination of stoichiometric and kinetic studies that a (PPh3)Ag-carboxylate is responsible for the C-H activation step in the Pd-catalyzed arylation of Cr(CO)3-complexed fluorobenzene. Furthermore, the reaction rate is controlled by the rate of Ag(I)-C-H activation, leading to an order zero on the Pd-catalyst. H/D scrambling studies indicate that this Ag(I) complex can carry out C-H activation on a variety of aromatic compounds traditionally used in Pd/Ag-mediated C-H functionalization methodologies.

Metal-Free sp2-C-H Borylation as a Common Reactivity Pattern of Frustrated 2-Aminophenylboranes

Chernichenko, Konstantin,Lindqvist, Markus,Kótai, Bianka,Nieger, Martin,Sorochkina, Kristina,Pápai, Imre,Repo, Timo

, p. 4860 - 4868 (2016/05/10)

C-H borylation is a powerful and atom-efficient method for converting affordable and abundant chemicals into versatile organic reagents used in the production of fine chemicals and functional materials. Herein we report a facile C-H borylation of aromatic and olefinic C-H bonds with 2-aminophenylboranes. Computational and experimental studies reveal that the metal-free C-H insertion proceeds via a frustrated Lewis pair mechanism involving heterolytic splitting of the C-H bond by cooperative action of the amine and boryl groups. The adapted geometry of the reactive B and N centers results in an unprecedentently low kinetic barrier for both insertion into the sp2-C-H bond and intramolecular protonation of the sp2-C-B bond in 2-ammoniophenyl(aryl)- or -(alkenyl)borates. This common reactivity pattern serves as a platform for various catalytic reactions such as C-H borylation and hydrogenation of alkynes. In particular, we demonstrate that simple 2-aminopyridinium salts efficiently catalyze the C-H borylation of hetarenes with catecholborane. This reaction is presumably mediated by a borenium species isoelectronic to 2-aminophenylboranes.

Base-promoted protodeboronation of 2,6-disubstituted arylboronic acids

Lozada, Jerome,Liu, Zhibo,Perrin, David M.

, p. 5365 - 5368 (2014/06/23)

Facile based promoted deboronation of electron-deficient arylboronate esters was observed for arylboronates containing two ortho electron-withdrawing group (EWG) substituents. Among 30 representative boronates, only the diortho-substituted species underwe

Polyfluoroorganoboron-oxygen compounds. 2 [1]: Base-catalysed hydrodeboration of polyfluorophenyl(dihydroxy)boranes

Frohn,Adonin,Bardin,Starichenko

, p. 2834 - 2838 (2008/10/08)

Polyfluorinated phenyl(dihydroxy)boranes C6H5-nFnB(OH)2 (n = 3 - 5) underwent hydrodeboration (formal replacement of the (dihydroxy)boryl group by hydrogen) in the presence of bases (MeOH, 33% H2O-MeO

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