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1-Deuterio-hex-1-yne is an organic compound with the molecular formula C5H9D, where D represents a deuterium atom, a stable isotope of hydrogen with one proton and one neutron. This alkyne features a carbon-carbon triple bond at the first position and a deuterium atom attached to the same carbon. The compound is a linear molecule with five carbon atoms and nine hydrogen atoms, one of which is replaced by a deuterium atom. It is used in various chemical reactions and studies, particularly in the field of isotope labeling and as a tracer in chemical kinetics. Due to the presence of deuterium, 1-deuterio-hex-1-yne has distinct physical and chemical properties compared to its non-deuterated counterpart, hex-1-yne, which can be useful in understanding reaction mechanisms and isotope effects.

7299-48-1

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7299-48-1 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 7299-48-1 includes 7 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 4 digits, 7,2,9 and 9 respectively; the second part has 2 digits, 4 and 8 respectively.
Calculate Digit Verification of CAS Registry Number 7299-48:
(6*7)+(5*2)+(4*9)+(3*9)+(2*4)+(1*8)=131
131 % 10 = 1
So 7299-48-1 is a valid CAS Registry Number.

7299-48-1Upstream product

7299-48-1Relevant academic research and scientific papers

Polylithiumorganic compounds. Part 28. The reaction of allene and alkyl substituted allenes with lithium metal

Maercker, Adalbert,Tatai, Andrea,Grebe, Burkhard,Girreser, Ulrich

, p. 1 - 8 (2007/10/03)

The reaction of allene (3a) and alkyl substituted allenes 1,2-hexadiene (3b), cyclopropylallene (3c), and vinylidene cyclopropane (3d) with lithium metal was investigated in order to access 2,3-dilithioalkenes 4a-d. These dilithioalkenes 4a-d are very reactive in polar solvents like THF and act as strong bases, either metalation of the starting allene 3a-d, the solvent, or sufficiently acidic intermediates like 8 a-d is observed. The metalation products 5-7 show follow-up reactions like 1,3-H shift to the corresponding 1-lithio-1-alkynes 8 and subsequent metalation to the dilithioalkynes 9. Additionally, lithium hydride elimination and ring-chain rearrangement (for 5c) are observed. 1,2-Hexadiene (3b) can be brought to reaction with lithium metal in the apolar solvent pentane, here the follow-up reactions are much slower due to the insolubility of 4b. In all cases the elucidation of the reaction pathways is hampered by the formation of complex mixtures of, amongst others, regio- and stereoisomeric products upon quenching with simple electrophiles.

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