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2-Chloro-1,1-dideuterio-ethene, also known as 2-chloro-1,1-dideuterio-ethylene, is an organic compound with the chemical formula C2D2ClH2. It is a halogenated derivative of ethene (ethylene), where one hydrogen atom is replaced by a chlorine atom, and two hydrogen atoms are replaced by deuterium atoms. Deuterium is a stable isotope of hydrogen with one neutron and one proton, making it heavier than the common hydrogen isotope. 2-chloro-1,1-dideuterio-ethene is of interest in various chemical and physical studies due to its unique isotopic composition, which can affect its reactivity and physical properties compared to the parent ethene molecule. It is used in research to understand the effects of isotopic substitution on chemical reactions and as a tracer in various chemical processes.

6745-37-5

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6745-37-5 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 6745-37-5 includes 7 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 4 digits, 6,7,4 and 5 respectively; the second part has 2 digits, 3 and 7 respectively.
Calculate Digit Verification of CAS Registry Number 6745-37:
(6*6)+(5*7)+(4*4)+(3*5)+(2*3)+(1*7)=115
115 % 10 = 5
So 6745-37-5 is a valid CAS Registry Number.

6745-37-5Downstream Products

6745-37-5Relevant academic research and scientific papers

Unimolecular reactions of CH2BrCH2Br, CH 2BrCH2Cl, and CH2BrCD2Cl: Identification of the Cl-Br interchange reaction

Friederich, Laura,Duncan, Juliana R.,Heard, George L.,Setser,Holmes, Bert E.

experimental part, p. 4138 - 4147 (2010/09/04)

The recombination reactions of CH2Br and CH2Cl radicals have been used to generate vibrationally excited CH 2BrCH2Br and CH2BrCH2Cl molecules with 91 kcal mol-1 of energy in a room-temperature bath gas. The experimental unimolecular rate constants for elimination of HBr and HCl were compared to calculated statistical rate constants to assign threshold energies of 58 kcal mol-1 for HBr elimination from C2H 4Br2 and 58 and 60 kcal mol-1, respectively, for HBr and HCl elimination from C2H4BrCl. The Br-Cl interchange reaction was demonstrated and characterized by studying the CH 2BrCD2Cl system generated by the recombination of CH 2Br and CD2Cl radicals. The interchange reaction was identified from the elimination of HBr and DCl from CH2ClCD 2Br. The interchange reaction rate is much faster than the rates of either DBr or HCl elimination from CH2BrCD2Cl, and a threshold energy of ?43 kcal mol-1 was assigned to the interchange reaction. The statistical rate constants were calculated from models of the transition states that were obtained from density functional theory using the B3PW91 method with the 6-31G(d′,p′) basis set. The model for HBr elimination was tested versus published thermal and chemical activation data for C2H5Br. A comparison of Br-Cl interchange with the Cl-F and Br-F interchange reactions in 1,2-haloalkanes is presented.

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