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Bottom-Up Formation of Carbon-Based Magnetic HoneycombMaterial from Metal–Organic Framework–Guest Polyhedrafor the Capture of Rhodamine B

机译:碳基磁性蜂窝的自下而上的形成金属-有机框架-客人多面体中的材料用于捕获罗丹明B

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摘要

Three-dimensional carbon-based porous materials have proven to be quite useful for tailoring material properties in the energy conservation and environmental protection applications. In view of the three-dimensional and well-defined structure of metal–organic frameworks (MOFs), a novel carbon-based magnetic porous material (HKUST–Fe3O4) has been designed and constructed by MOF–guest interactions of high-temperature pyrolysis. The obtained HKUST–Fe3O4 exhibited the unique features of superparamagnetism, a macro/mesoporous structure, environmental protection (inexistence of toxic heavy metal ions), and physicochemical stability and has shown high adsorption capacity and rapid adsorption for carcinogenic organic pollutants (for example, rhodamine B) with an environmentally friendly character and excellent reusability. We demonstrate that the unique/superior advantages of HKUST–Fe3O4 could meet the requirements of environment cleaning, especially for removing the targeted organic pollutant from water. Moreover, the specific HKUST–Fe3O4 and organic pollutant interaction mechanism has been analyzed in detail via parameter-free calculations. This study proposes a promising strategy for constructingnovel carbon-based magnetic nanomaterials for various applications,not limitated to pollutant removal.
机译:事实证明,三维碳基多孔材料对于在节能和环保应用中调整材料性能非常有用。鉴于金属-有机骨架(MOF)的三维结构和明确定义的结构,已经通过MOF-高温热解的客体相互作用设计并构建了一种新型的碳基磁性多孔材料(HKUST-Fe3O4)。所获得的HKUST–Fe3O4具有超顺磁性,宏观/中微结构,环境保护(不存在有毒重金属离子)和理化稳定性的独特特征,并且对致癌有机污染物(例如罗丹明)具有高吸附能力和快速吸附能力。 B)具有环保特性和出色的可重复使用性。我们证明了HKUST–Fe3O4的独特/优越性可以满足环境清洁的要求,尤其是从水中去除目标有机污染物时。此外,已经通过无参数计算详细分析了特定的HKUST-Fe3O4与有机污染物的相互作用机理。这项研究提出了一个有前途的建设战略用于各种应用的新型碳基磁性纳米材料,不限于去除污染物。

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