Synthesis and characterisation of neodymium-based MOFs for application in carbon dioxide reduction to syngas†

IF 2.7 3区 化学 Q2 CHEMISTRY, MULTIDISCIPLINARY New Journal of Chemistry Pub Date : 2024-07-31 DOI:10.1039/D4NJ01420K
Linia Gedi Marazani, Maureen Gumbo, Lendly Moyo, Banothile C. E. Makhubela and Gift Mehlana
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Abstract

Two new neodymium-based metal–organic frameworks, JMS-10 and JMS-11, were synthesised using a 2,2′-bipypridine-5,5′-dicarboxylic acid (bpdc) linker. Both MOFs were solvothermally synthesised in DMF under different conditions. JMS-10 was synthesised at 120 °C while JMS-11 was synthesised at 100 °C in the presence of a modulator. Both the MOFs possessed very similar crystallographic parameters but were found to be structurally diverse. Their structures were built by secondary building units (SBUs) made up of carboxylates binding in sets of four and two to the straight rod, thus forming two types of alternating nodes that are 6- and 4-connected. Both JMS-10 and JMS-11 were functionalized using the ruthenium p-cymene complex. The functionalized MOFs were applied in the photocatalytic reduction of carbon dioxide to syngas where they produced both hydrogen and carbon monoxide (CO : H2) in the ratio of 1 : 2. The amount of CO to H2 produced varied depending on the additives used in the reaction medium, highlighting the importance of water, triethanolamine and acetonitrile in tuning the syngas ratio for different industrial applications.

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用于将二氧化碳还原为合成气的钕基 MOFs 的合成与表征
使用 2,2'- 联吡啶-5,5'-二甲酸(bpdc)连接剂合成了两种新的钕基金属有机框架 JMS-10 和 JMS-11。这两种 MOF 都是在 DMF 中溶解热合成的,但合成条件不同。JMS-10 是在 120 ℃ 下合成的,而 JMS-11 则是在 100 ℃ 下并在调制器的存在下制成的。这两种 MOF 的晶体学参数非常相似,但结构却各不相同。它们的结构是由羧酸盐组成的二级构建单元(SBU)以四组和两组的形式结合到直杆上,从而形成两种类型的交替节点,即 6 连接和 4 连接。JMS-10 和 JMS-11 都使用对伞花烃钌络合物进行了功能化。这些功能化的 MOFs 被应用于将二氧化碳光催化还原为合成气,在此过程中,它们分别以 1:2 的比例产生氢气和一氧化碳(CO:H2)。产生的一氧化碳和氢气的数量随反应介质中添加剂的不同而变化,这突出表明了水、三乙醇胺和乙腈在调整不同工业应用的合成气比例方面的重要性。
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来源期刊
New Journal of Chemistry
New Journal of Chemistry 化学-化学综合
CiteScore
5.30
自引率
6.10%
发文量
1832
审稿时长
2 months
期刊介绍: A journal for new directions in chemistry
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