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电子和空间位阻效应促进铱配合物催化1-丁醇经Guerbet反应选择制备2-乙基己醇 被引量:2
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作者 许占威 颜佩芳 +3 位作者 梁长慧 贾松岩 刘秀梅 张宗超 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 2021年第9期1586-1592,共7页
2-乙基己醇是一种增塑剂醇,可用于合成增塑剂、表面活性剂和溶剂等诸多化工领域.目前工业上2-乙基己醇的合成是以化石资源丙烯为原料,与氢气和一氧化碳通过氢甲酰化反应制备1-丁醛,后者经羟醛缩合和催化加氢反应生成2-乙基己醇.由生物... 2-乙基己醇是一种增塑剂醇,可用于合成增塑剂、表面活性剂和溶剂等诸多化工领域.目前工业上2-乙基己醇的合成是以化石资源丙烯为原料,与氢气和一氧化碳通过氢甲酰化反应制备1-丁醛,后者经羟醛缩合和催化加氢反应生成2-乙基己醇.由生物质发酵产生的1-丁醇为原料,只需要经Guerbet反应可一步直接生成2-乙基己醇.比较而言, Guerbet反应路线步骤更少,且1-丁醇原位脱氢产生的氢为氢源,无需额外氢,因此比化石资源丙烯路线对环境友好.目前,文献报道的非均相催化1-丁醇Guerbet反应条件苛刻(如温度> 170 ℃),副产物多(如烯烃、醚和高碳醇等),且均相催化剂的活性低.本文报道了一类Cp*Ir(Cp*为1,2,3,4,5-五甲基环戊二烯基)配合物用于该Guerbet反应.当Cp*Ir配合物的配体上修饰给电子基N,N-二甲基氨基和邻羟基时, Cp*Ir配合物的催化活性增强,催化剂的转化数最高达到了14047.当氢氧化钾和Cp*Ir配合物(配体上修饰了N,N-二甲基氨基和邻羟基官能团)在1-丁醇中的浓度分别为1.7mol%和0.04wt%时,在130 ℃反应48 h,产物2-乙基己醇收率为23.9%,选择性为89.5%.核磁(NMR)研究结果表明, Cp*Ir配合物配体上的邻羟基与氢氧化钾反应脱除质子,生成了羰基结构配体配位的Cp*Ir配合物,继续催化1-丁醇脱氢反应.机理研究表明,中间产物2-乙基己醛α-碳上乙基的位阻效应和2-乙基己烯醛本身的共轭效应抑制了其继续发生羟醛反应,从而提高了目标产物的选择性. 展开更多
关键词 2-乙基己醇 Guerbet反应 1-丁醇 加氢
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Insight into the role of ethylene glycol on thermodynamics and nucleation kinetics of dimethyl terephthalate in mixed solvent system
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作者 Yujin Zhang Chunyan Shi +5 位作者 Jing Tang Li Liu Dongxia Yan Qing Zhou Xingmei Lu songyan jia 《Particuology》 SCIE EI CAS CSCD 2024年第2期1-12,共12页
Dissolution and nucleation are two essential processes for industrial crystallization.This paper in-vestigates the effect of ethylene glycol addition on the crystallization behavior of dimethyl terephthalate(DMT)in so... Dissolution and nucleation are two essential processes for industrial crystallization.This paper in-vestigates the effect of ethylene glycol addition on the crystallization behavior of dimethyl terephthalate(DMT)in solution.The DMT solubility in mixed solvent system(methanol-ethylene glycol)was deter-mined by isothermal satiation approach,and the solubility was associated using seven models.The model fitting results were consistent with the experimental values.Based on the results,the metastable zone width(MSZW)of DMT was detected by the polythermal approach;the modified Sangwal's theory was used to investigate the nucleation behavior,which can provide a new way of thought for better analysis of the crystallization behavior.The results demonstrated that MSZW was associated with various elements,such as cooling rate,saturation temperature and mass fraction of ethylene glycol.The addition of ethylene glycol slowed down the nucleation rate as shown by the broadening of MSZW.We derive the solid-liquid interface energy,the nucleation driving force,the critical nucleation size and the critical Gibbs free energy according to the classical nucleation theory.It is demonstrated that the nucleation driving force and the solid-liquid interface energy are dependent and jointly influence the MSZW. 展开更多
关键词 DISSOLUTION NUCLEATION SOLUBILITY Apparent thermodynamic parameters Metastable zone width Solid-liquid interface energy
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