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作 者:程淑艳[1,2,3] 寇佳伟 程芳琴[3] CHENG Shu-Yan;KOU Jia-Wei;CHENG Fang-Qin(State Key Laboratory of Clean and Efficient Coal Utilization,Taiyuan University of Technology,Taiyuan 030024,China;College of Environmental&Resource Science,Shanxi University,Taiyuan 030013,China;Shanxi Laboratory for Yellow River,Shanxi University,Taiyuan 030013,China)
机构地区:[1]太原理工大学省部共建煤基能源清洁高效利用国家重点实验室,太原030024 [2]山西大学环境与资源学院,太原030013 [3]山西大学山西省黄河实验室,太原030013
出 处:《无机化学学报》2021年第11期2092-2100,共9页Chinese Journal of Inorganic Chemistry
基 金:国家自然科学基金(No.22108161);山西省青年科学基金(No.201901D211297)资助。
摘 要:合成了含硝酸根离子的脱水Ni-Fe类水滑石(Ni-Fe HTLCs)并将其应用于室温下的糠醛缩醛化反应。脱水Ni-Fe HTLCs对糠醛缩醛化反应显示出高选择性并基本实现糠醛的完全转化。作为耐水的路易斯酸和脱水剂,脱水Ni-Fe HTLCs被证明是适用于糠醛缩醛化反应的高效双功能催化剂。通过研究发现,脱除Ni-Fe HTLCs中水分导致颗粒收缩并增强层板间硝酸根离子间的电荷互斥,Ni-Fe HTLCs中弱酸性位点在糠醛缩醛化中发挥重要作用,脱水可改变酸性位点结构并增强其活性。脱水Ni-Fe HTLCs可吸收缩醛化反应中产生的大部分水分,但吸水后Ni-Fe HTLCs的结构并不能完全恢复,这可能是由扩散进入HTLCs层板间的有机分子导致。The dehydrated Ni-Fe hydrotalcite-like compounds(Ni-Fe HTLCs) containing nitrate anions were synthesized and applied in furfural acetalization at room temperature.The dehydrated Ni-Fe HTLCs showed good selectivity for furfural acetalization and achieved almost complete conversion of furfural.The dehydrated Ni-Fe HTLCs as water-tolerant Lewis acids and water scavengers was proved to be an efficient bifunctional catalyst for furfural acetalization.The removal of interlayer water leads to shrinkage of Ni-Fe HTLCs particles and increase in electronic repulsion among NO;ions in the interlayer.The weak acid sites in Ni-Fe HTLCs play an important role in furfural acetalization.The dehydration changes structure of the acid sites and thus improves activity of the weak acid sites.The dehydrated Ni-Fe HTLCs can absorb the most of the resulting water during furfural acetalization,but the structure of Ni-Fe HTLCs cannot completely recover after rehydration possibly due to hindering effect of organic molecules diffusing into interlayer space.
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