The Experts below are selected from a list of 18009 Experts worldwide ranked by ideXlab platform
A. G. Skudin - One of the best experts on this subject based on the ideXlab platform.
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preparation of organozinc and organocadmium compounds from the Metals and alkyl halides in the presence of stimulating systems based on a Derivative a transition Metal and an organoMetallic compound
Russian Journal of General Chemistry, 2003Co-Authors: I. V. Eremeev, S. M. Danov, A. G. Skudin, V. R. SakhipovAbstract:Full and mixed alkyl Derivatives of zinc and cadmium were prepared from these Metals and organic halides in the presence of stimulating systems necessarily containing a transition Metal Derivative and an organoMetallic compound capable of reducing this Derivative under the process conditions. Such stimulating systems make it possible to introduce selectively organic halides (iodides, bromides, chlorides) into the reaction with zinc and cadmium to obtain the corresponding mixed organoMetallic compounds.
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Synthesis of zinc dialkyls from zinc and alkyl bromides
Russian Journal of Applied Chemistry, 2001Co-Authors: I. V. Eremeev, S. M. Danov, V. R. Sakhipov, A. G. SkudinAbstract:Zinc dialkyls with linear radicals were prepared from zinc and alkyl bromides in the presence of stimulating systems based on a transition Metal Derivative and an organoMetallic compound capable of reducing the transition Metal Derivative under the reaction conditions.
V. R. Sakhipov - One of the best experts on this subject based on the ideXlab platform.
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preparation of organozinc and organocadmium compounds from the Metals and alkyl halides in the presence of stimulating systems based on a Derivative a transition Metal and an organoMetallic compound
Russian Journal of General Chemistry, 2003Co-Authors: I. V. Eremeev, S. M. Danov, A. G. Skudin, V. R. SakhipovAbstract:Full and mixed alkyl Derivatives of zinc and cadmium were prepared from these Metals and organic halides in the presence of stimulating systems necessarily containing a transition Metal Derivative and an organoMetallic compound capable of reducing this Derivative under the process conditions. Such stimulating systems make it possible to introduce selectively organic halides (iodides, bromides, chlorides) into the reaction with zinc and cadmium to obtain the corresponding mixed organoMetallic compounds.
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Synthesis of zinc dialkyls from zinc and alkyl bromides
Russian Journal of Applied Chemistry, 2001Co-Authors: I. V. Eremeev, S. M. Danov, V. R. Sakhipov, A. G. SkudinAbstract:Zinc dialkyls with linear radicals were prepared from zinc and alkyl bromides in the presence of stimulating systems based on a transition Metal Derivative and an organoMetallic compound capable of reducing the transition Metal Derivative under the reaction conditions.
I. V. Eremeev - One of the best experts on this subject based on the ideXlab platform.
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preparation of organozinc and organocadmium compounds from the Metals and alkyl halides in the presence of stimulating systems based on a Derivative a transition Metal and an organoMetallic compound
Russian Journal of General Chemistry, 2003Co-Authors: I. V. Eremeev, S. M. Danov, A. G. Skudin, V. R. SakhipovAbstract:Full and mixed alkyl Derivatives of zinc and cadmium were prepared from these Metals and organic halides in the presence of stimulating systems necessarily containing a transition Metal Derivative and an organoMetallic compound capable of reducing this Derivative under the process conditions. Such stimulating systems make it possible to introduce selectively organic halides (iodides, bromides, chlorides) into the reaction with zinc and cadmium to obtain the corresponding mixed organoMetallic compounds.
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Synthesis of zinc dialkyls from zinc and alkyl bromides
Russian Journal of Applied Chemistry, 2001Co-Authors: I. V. Eremeev, S. M. Danov, V. R. Sakhipov, A. G. SkudinAbstract:Zinc dialkyls with linear radicals were prepared from zinc and alkyl bromides in the presence of stimulating systems based on a transition Metal Derivative and an organoMetallic compound capable of reducing the transition Metal Derivative under the reaction conditions.
S. M. Danov - One of the best experts on this subject based on the ideXlab platform.
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preparation of organozinc and organocadmium compounds from the Metals and alkyl halides in the presence of stimulating systems based on a Derivative a transition Metal and an organoMetallic compound
Russian Journal of General Chemistry, 2003Co-Authors: I. V. Eremeev, S. M. Danov, A. G. Skudin, V. R. SakhipovAbstract:Full and mixed alkyl Derivatives of zinc and cadmium were prepared from these Metals and organic halides in the presence of stimulating systems necessarily containing a transition Metal Derivative and an organoMetallic compound capable of reducing this Derivative under the process conditions. Such stimulating systems make it possible to introduce selectively organic halides (iodides, bromides, chlorides) into the reaction with zinc and cadmium to obtain the corresponding mixed organoMetallic compounds.
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Synthesis of zinc dialkyls from zinc and alkyl bromides
Russian Journal of Applied Chemistry, 2001Co-Authors: I. V. Eremeev, S. M. Danov, V. R. Sakhipov, A. G. SkudinAbstract:Zinc dialkyls with linear radicals were prepared from zinc and alkyl bromides in the presence of stimulating systems based on a transition Metal Derivative and an organoMetallic compound capable of reducing the transition Metal Derivative under the reaction conditions.
Haoran Li - One of the best experts on this subject based on the ideXlab platform.
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visible light induced Metal free allylic oxidation utilizing a coupled photocatalytic system of g c3n4 and n hydroxy compounds
Advanced Synthesis & Catalysis, 2011Co-Authors: Pengfei Zhang, Yong Wang, Congmin Wang, Markus Antonietti, Haoran LiAbstract:Graphitic carbon nitride (g-C 3 N 4 ) and N-hydroxy compounds can function as a non-Metal photocatalytic system to activate O 2 for the selective allylic oxidation under mild conditions, avoiding the employment of any Metal Derivative or organic oxidizing agents. Interestingly, the novel photocatalytic system affords a remarkably high selectivity towards the formation of aldehydes, especially in the oxidation of toluene. By combining the unique nature of g-C 3 N 4 (surface basicity, semiconductor features, high stability) and the remarkable catalytic oxidation reactivity of nitroxyl radicals, this photocatalytic system opens up a mild and efficent access for C―H bond activation.