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(CH_3)_2N和(CH_3)_2NH^+的密度泛函理论计算 被引量:1
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作者 陈波珍 黄明宝 颜达予 《物理化学学报》 SCIE CAS CSCD 北大核心 1999年第6期495-499,共5页
用密度泛函理论UB3LYP/6-31G(d,p)方法研究了二甲胺自由基(CH3)2N及其质子化离子(CH3)2NH+的构象和超精细结构.在由构象研究得到的两种自由基的最稳定结构上,用密度泛函的UB3LYP和UB3PW91方法及从头计算的UHF、UMP2(FULL)... 用密度泛函理论UB3LYP/6-31G(d,p)方法研究了二甲胺自由基(CH3)2N及其质子化离子(CH3)2NH+的构象和超精细结构.在由构象研究得到的两种自由基的最稳定结构上,用密度泛函的UB3LYP和UB3PW91方法及从头计算的UHF、UMP2(FULL)方法计算了α-质子、β-质子和N核上的超精细偶合常数A(Hα)、A(Hβ)和A(N)结果表明:两种自由基中甲基内旋转的位垒均很低,分别为0.46kJ·mol-1((CH3)2NH+)和2.6kJ·mol-1((CH3)2N).UB3LYP/6-31G(d,p)和UB3PW91/6-31G(d,p)计算的A(Hα)、A(Hβ)和A(N)与ESR实验结果符合得很好,UMP2/6-31G(d,p)方法的计算值与实验值符合得也较好. 展开更多
关键词 自由 密度泛函理论 二甲胺自由基 质子化离子
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Mixed hetero-/homogeneous TiO_(2)/N-hydroxyimide photocatalysis in visible-light-induced controllable benzylic oxidation by molecular oxygen 被引量:3
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作者 Igor B.Krylov Elena R.Lopat'eva +3 位作者 Irina R.Subbotina Gennady I.Nikishin Bing Yu Alexander O.Terent'ev 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 2021年第10期1700-1711,共12页
Homogeneous and heterogeneous types of catalysis are frequently considered as separate disciplines or even opposed to each other.In the present work,a new type of mixed het-ero-/homogeneous catalysis was demonstrated ... Homogeneous and heterogeneous types of catalysis are frequently considered as separate disciplines or even opposed to each other.In the present work,a new type of mixed het-ero-/homogeneous catalysis was demonstrated for the case of selective alkylarene oxidation by molecular oxygen.The proposed catalytic system consists of two widely available components:N-hydroxyphthalimide(NHPI,a homogeneous organocatalyst for free-radical chain reactions)and nanosized TiO_(2)(heterogeneous UV-active photoredox catalyst).The interaction of NHPI with TiO_(2) allows for a shift from UV to visible light photoredox activity and generation of phthalimide-N-oxyl(PINO)radicals that diffuse into the solution where NHPI/PINO-catalyzed free-radical chain reaction can proceed without the additional light input providing a fundamental increase in energy efficiency.The NHPI/TiO_(2) ratio controls the selectivity of oxidation affording preferential formation of hydroperoxide or ketone from alkylarene. 展开更多
关键词 TiO_(2) Photoredox catalysis N-HYDROXYPHTHALIMIDE N-oxyl radicals Aerobic oxidation
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Selective aerobic oxidation promoted by highly efficient multi-nitroxy organocatalysts 被引量:1
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作者 Kexian Chen Haiying Xie 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2017年第4期625-635,共11页
Selective oxidation with molecular oxygen as the sole oxidant under mild conditions is of crucialimportance for the long‐term sustainable exploitation of available feedstocks and the formation ofrequired intermediate... Selective oxidation with molecular oxygen as the sole oxidant under mild conditions is of crucialimportance for the long‐term sustainable exploitation of available feedstocks and the formation ofrequired intermediates for organic synthesis and industrial processes.Among the developed oxidationprotocols,innovative strategies using hydroxyimide organocatalysts in combination with metallicor metal‐free cocatalysts have attracted much attention because of the good activities andselectivities of such catalysts in the oxo functionalization of hydrocarbons.This method is based onthe reaction using N‐hydroxyphthalimide,which was first reported by Ishii’s group in the1990s.Although the important and wide‐ranging applications of such catalysts have been summarizedrecently,there are no reviews that focus solely on oxidation strategies using multi‐nitroxy organocatalysts,which have interesting properties and high reactivities.This review covers the concisesynthetic methods and mechanistic profiles of known multi‐nitroxy organocatalysts and summarizessignificant advances in their use in efficient aerobic oxidation.Based on a combination of experimentaland theoretical results,guidelines for the future rational design of multi‐nitroxy organocatalystsare proposed,and the properties of various model multi‐nitroxy organocatalysts are predicted.The present overview of the advantages,limitations,and potential applications of multi‐nitroxyorganocatalysts can provide useful tools for researchers in the field of selective oxidation. 展开更多
关键词 Molecular oxygen N‐hydroxyphthalimide ORGANOCATALYSIS Oxidation RADICAL
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