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1)  cyclopropylcarbene
环丙基卡宾
1.
The structures, energies and frequencies of reactant, transition state and product in the rearrangement of cyclopropylcarbene to cyclobutene have been calculated by B3LYP method at the 6-311G(d) level.
采用 B3LYP 方法,用 6-311G(d)基组计算了环丙基卡宾重排为环丁烯的反应物、过渡态和产物的能量和振动频率,并用 IRC 计算验证了过渡态。
2)  heterocyclic carbene
杂环卡宾
3)  cyclo-C30 carbyne
C30卡宾环
4)  Cyclic carbene
环卡宾
5)  phenylcarbene
苯基卡宾
1.
CASSCF calculation on stability of phenylcarbene;
苯基卡宾稳定性的CASSCF计算
6)  N-heterocyclic carbene
N-杂环卡宾
1.
Properties and syntheses of N-heterocyclic carbenes and their metal complexes;
N-杂环卡宾及其金属络合物的性质和合成方法
2.
Investigation of Staudinger reaction catalyzed by N-heterocyclic carbenes;
对N-杂环卡宾催化的Staudinger反应的研究
3.
It was found that the palladium catalyst supported by phosphine-functionalized N-heterocyclic carbene derived from ferrocene exhibits better catalytic performance than those of supported by sulfoether-functionalized and un-functionalized N-heterocyclic carbenes in the cross-coupling of 4-bromotoluene with.
合成了硫醚官能化、膦官能化及未官能化的二茂铁咪唑盐,并研究了以其作为N-杂环卡宾配体前体对Pd催化的Suzuki-Miyaura偶联反应的影响,发现在4-甲基溴苯与苯硼酸偶联反应中以膦官能化的配体对催化性能提高有利,而硫醚官能化不利于催化性能提高。
补充资料:4-[反-4-(反-4-丙基环己基)环己基]甲苯
CAS:84656-75-7
中文名称:4-[反-4-(反-4-丙基环己基)环己基]甲苯
英文名称:4-[trans-4(trans-4-Propylcyclohexyl) cyclohexyl]toluene 4-[trans-4(trans-4-Propylcyclohexyl)cyclohexyl]toluene
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