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An Excellent Gas Chromatographic Stationary Phase for Separation of Phenol and Cresol Isomers--Heptakis(2,6-di-O-pentyl-3-O-allyl)-β-Cyclodextrin
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作者 Yue Qin ZHANG, Xue Yan SHI, Ruo Nong FU (School of Chemical Engineering and Materials Science. Beijing Institute of Technology, Beijing 10008) 《Chinese Chemical Letters》 SCIE CAS CSCD 2000年第3期265-266,共2页
Heptakis(2.6-di-O-pentyl-3-O-ally)-β-cyclodextrin as an excellent gas chromatographic stationary phase separating phenol and cresol isomers is described.
关键词 Gas chromatographic stationary phase phenol and cresol isomers heptakis(2.6-di-Opentyl-3-O-allyl)-β-cyclodextrin.
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Quantum Mechanical Study on the π-π Stacking Interaction and Change in Conformation of Phenolic Systems with Different Intermolecular Rotations
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作者 Ibrahim Ali Shruti Sharma Bipul Bezbaruah 《Computational Chemistry》 2018年第4期71-86,共16页
Aromatic systems like phenol, diphenol, cyano benzene, chloro benzene, aniline etc shows effective π-π stacking interactions, long range van der Waals forces;ion-π interactions etc. and these forces of interactions... Aromatic systems like phenol, diphenol, cyano benzene, chloro benzene, aniline etc shows effective π-π stacking interactions, long range van der Waals forces;ion-π interactions etc. and these forces of interactions play an crucial role in the stability of stacked π-dimeric system. On the other hand, substituents and conformational change in the stacked dimmers of aromatic system may also change the stability of different stacked dimers. In this current study, stacked phenolic dimmers (both phenol and diphenol) have been taken for investigation of the stacking π-π interaction. But, the stacking interactions are also greatly affected by the conformational change with internal rotation (i.e. dihedral angle, φ) between the stacked dimers. It is generally accepted that larger basis sets are required for the highly accurate calculation of interaction energies for any stacked aromatic models. But, it has recently been reported that M062X/6-311++G(d,p) basis set is effectively better than that of B3LYP/6-311++G(d,p) for determining the interaction energies for any kind of long range interaction in aromatic systems. Therefore, all the calculations were carried out by using M062X/6-311++G(d,p) basis set. However, in most of the cases the calculated π-π stacking interaction energies show almost same result for both DFT and ab initio methods. 展开更多
关键词 phenolIC System π-π STACKING B3LYP M062X
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N,N-二正丁基间氨基苯酚的合成工艺优化 被引量:1
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作者 袁晋亭 蔺黎明 +1 位作者 高令峰 张书廷 《精细化工》 EI CAS CSCD 北大核心 2020年第2期397-402,共6页
以间氨基苯酚和氯代正丁烷为原料,水为溶剂,设计了制备N,N-二正丁基间氨基苯酚的工艺路线。优化后得到的反应条件为:n(间氨基苯酚)∶n(氯代正丁烷)∶n(碘化亚铜)=1∶2∶0.06,反应温度为105~110℃,反应压力为0.2~0.5 MPa,pH为6.5~6.8,反... 以间氨基苯酚和氯代正丁烷为原料,水为溶剂,设计了制备N,N-二正丁基间氨基苯酚的工艺路线。优化后得到的反应条件为:n(间氨基苯酚)∶n(氯代正丁烷)∶n(碘化亚铜)=1∶2∶0.06,反应温度为105~110℃,反应压力为0.2~0.5 MPa,pH为6.5~6.8,反应时间为6.0~6.5 h,N,N-二正丁基间氨基苯酚收率达到96.7%,产品液相色谱纯度≥99%。该工艺通过缓冲溶液反应体系设计,并结合反应压力控制,实现蒸馏后N,N-二正丁基间氨基苯酚的选择性达98.5%,有效抑制了氮单烷基化和酚羟基烷基化两种副产物的生成。 展开更多
关键词 N N-二正丁基间氨基苯酚 热敏染料 控压 控pH 特种染料与颜料
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