Controlled Construction of Supported Cu+ Sites and Their Stabilization in MIL-100(Fe): Efficient Adsorbents for Benzothiophene Capture

Controlled Construction of Supported Cu+ Sites and Their Stabilization in MIL-100(Fe): Efficient Adsorbents for Benzothiophene Capture
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MIL-100(Fe) 中负载铜位点的受控构建及其稳定性:苯并噻吩捕获的高效吸附剂

DOI:
10.1021/acsami.7b09300
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发表时间:
2017
影响因子:
9.5
通讯作者:
Sun Lin-Bing
Sun Lin-Bing
中科院分区:
材料科学2区
文献类型:
--
作者:
He Qiu-Xia;Jiang Yao;Tan Peng;Liu Xiao-Qin;Qin Ju-Xiang;Sun Lin-Bing

文献摘要

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含Cu+的材料由于其用途广泛、无毒、成本低廉而在各种应用中引起了广泛的关注。然而,选择性还原的困难和Cu+物种的稳定性差,现在几乎是议程。在此,通过蒸气还原策略(VRS)在温和条件(200 °C,5 h)下实现了MIL-100(Fe)中负载Cu+位点的受控构建。值得注意的是,Cu+的产率达到100%,这比传统的高温自还原方法高得多,即使在700 °C下12 h,产率也不到50%。更重要的是,在通过VRS处理期间,MIL-100(Fe)中的一些Fe 3+被还原为Fe 2+,这防止了由于Fe 2+的较高氧化电位而经常发生的Cu+的氧化。这些性质使得Cu+/MIL-100(Fe)在吸附容量和稳定性方面有效地捕获典型的芳香族硫,苯并噻吩。据我们所知,首次实现了利用载体的氧化倾向稳定Cu+,这可能为利用弱稳定性活性中心提供了新的思路。
Cu+-containing materials have drawn much attention in various applications because they are versatile, nontoxic, and low-cost. However, the difficulty of selective reduction and the poor stability of Cu+species are now pretty much the agendas. Here, controlled construction of supported Cu+sites in MIL-100(Fe) was realized under mild conditions (200 °C, 5 h) via a vapor-reduction strategy (VRS). Remarkably, the yield of Cu+reaches 100%, which is quite higher than the traditional high-temperature autoreduction method with a yield less than 50% even at 700 °C for 12 h. More importantly, during the treatment via VRS some Fe3+in MIL-100(Fe) are reduced to Fe2+, which prevent the frequently happened oxidation of Cu+due to the higher oxidation potential of Fe2+. These properties make Cu+/MIL-100(Fe) efficient in the capture of typical aromatic sulfur, benzothiophene, with regard to both adsorption capacity and stability. To our knowledge, the stabilization of Cu+using the oxidation tendency of supports is achieved for the first time, which may offer a new idea to utilize active sites with weak stability.