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Cyclohexanone O-deuterio-oxime is a chemical compound derived from cyclohexanone, an organic compound commonly used as a solvent and in the production of nylon. The term "O-deuterio-oxime" indicates that one of the oxygen atoms in the oxime group has been replaced with a deuterium atom, an isotope of hydrogen with one neutron and one proton. This substitution results in a heavier version of the molecule, which can be useful in various applications, such as in chemical reactions, spectroscopy, and as a tracer in organic synthesis. The compound is characterized by its unique properties, including its molecular weight, reactivity, and potential use in studying reaction mechanisms and kinetic isotope effects.

696-56-0

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696-56-0 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 696-56-0 includes 6 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 3 digits, 6,9 and 6 respectively; the second part has 2 digits, 5 and 6 respectively.
Calculate Digit Verification of CAS Registry Number 696-56:
(5*6)+(4*9)+(3*6)+(2*5)+(1*6)=100
100 % 10 = 0
So 696-56-0 is a valid CAS Registry Number.

696-56-0Downstream Products

696-56-0Relevant academic research and scientific papers

Selective synthesis of primary anilines from cyclohexanone oximes by the concerted catalysis of a Mg-Al layered double hydroxide supported Pd catalyst

Jin, Xiongjie,Koizumi, Yu,Yamaguchi, Kazuya,Nozaki, Kyoko,Mizuno, Noritaka

, p. 13821 - 13829 (2017)

Although the selective conversion of cyclohexanone oximes to primary anilines would be a good complement to the classical synthetic methods for primary anilines, which utilize arenes as the starting materials, there have been no general and efficient methods for the conversion of cyclohexanone oximes to primary anilines until now. In this study, we have successfully realized the efficient conversion of cyclohexanone oximes to primary anilines by utilizing a Mg-Al layered double hydroxide supported Pd catalyst (Pd(OH)x/LDH) under ligand-, additive-, and hydrogen-acceptor-free conditions. The substrate scope was very broad with respect to both cyclohexanone oximes and cyclohexenone oximes, which gave the corresponding primary anilines in high yields with high selectivities (17 examples, 75% to >99% yields). The reaction could be scaled up (gram-scale) with a reduced amount of the catalyst (0.2 mol %). Furthermore, the one-pot synthesis of primary anilines directly from cyclohexanones and hydroxylamine was also successful (five examples, 66-99% yields). The catalysis was intrinsically heterogeneous, and the catalyst could be reused for the conversion of cyclohexanone oxime to aniline at least five times with keeping its high catalytic performance. Kinetic studies and several control experiments showed that the high activity and selectivity of the present catalyst system were attributed to the concerted catalysis of the basic LDH support and the active Pd species on LDH. The present transformation of cyclohexanone oximes to primary anilines proceeds through a dehydration/dehydrogenation sequence, and herein the plausible reaction mechanism is proposed on the basis of several pieces of experimental evidence.

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