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Surface coating of MOF layers on the nanocrystals of other MOFs using nanoparticle mediated nucleation for the efficient removal of formaldehyde

机译:使用纳米粒子介导的成核作用将MOF层表面涂覆在其他MOF的纳米晶体上,以有效去除甲醛

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The coating of metal-organic frameworks (MOFs) has been desired to control the surrounding environment of the substrate and the pathway for the guest molecules approaching. Especially, the MOF layer coating on the other MOF nanoparticles has been challenging because of lattice mismatch and undesired homogeneous nucleation. In this report, we coated MOF layers on other nanocrystalline MOFs (nMOFs) using metal nanoparticle mediated nucleation method, and showed how this coating can be used for unique sorption behavior of H2O and efficient removal of trace formaldehyde existing in ppm level in air. Specifically, the layers of MOF-801 and UiO-66 were grown from the N nanoparticles attached on the particles of nUiO-66 and nMOF-801 to result final products of nMOF-801 subset of UiO-66 and nUiO-66 subset of MOF-801, respectively. We found that these samples of nUiO-66 subset of MOF-801 and nMOF-801 subset of UiO-66 present unusual H2O uptake behaviors originated from the sequence of condensation between inner and outer MOFs. These samples also captured 7 times higher amount of formaldehyde than an activated carbon and had high affinity to release less amount of formaldehyde even when its concentration outside is low.
机译:期望金属有机骨架(MOF)的涂层以控制基材的周围环境和客体分子接近的途径。尤其是,由于晶格失配和不希望的均匀成核,在其他MOF纳米颗粒上涂覆MOF层一直具有挑战性。在本报告中,我们使用金属纳米粒子介导的成核方法在其他纳米晶体MOF(nMOF)上涂覆了MOF层,并展示了该涂层如何用于H2O的独特吸附行为以及有效去除空气中ppm级存在的痕量甲醛。具体而言,从附着在nUiO-66和nMOF-801粒子上的N个纳米粒子生长MOF-801和UiO-66的层,以生成UiO-66的nMOF-801子集和MOF的nUiO-66子集的最终产品-801。我们发现,MOF-801的nUiO-66子集和UiO-66的nMOF-801子集的这些样本呈现出异常的H2O吸收行为,这些行为源自内部和外部MOF之间的缩合序列。这些样品还捕获了比活性炭高7倍的甲醛,并且即使当其外部浓度低时也具有较高的亲和力以释放较少量的甲醛。

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