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Layered mesoporous Mg(OH)2/GO nanosheet composite for efficient removal of water contaminants

机译:分层介孔Mg(OH)2 / Go Nanosheet复合材料,以有效去除水污染物

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A layered magnesium hydroxide (Mg(OH) _(2) ) nanosheet/graphene oxide (GO) composite was synthesized through laser ablation of the Mg target in an aqueous solution with GO. Its mesoporous structure and application as an adsorbent for the removal of methylene blue (MB) and heavy metal ions from water were investigated. Mg(OH) _(2) nanosheets were organized in situ from the strong reaction between the laser-ablated Mg species and water molecules. The GO nanosheet served as a heterogeneous nucleation and growth site for sheet-like Mg(OH) _(2) nanocrystals. The resulting porous Mg(OH) _(2) /GO nanosheet composite had a high specific surface area of 310.8 m ~(2) g ~(?1) and a pore volume of 1.031 cm ~(3) g ~(?1) . These characteristics show that the composite could be an excellent adsorbent. The composite exhibited a maximum adsorption capacity of 532 mg g ~(?1) at 298 K for typical contaminants of MB, and over 300 mg g ~(?1) for heavy metal ions Zn ~(2+) and Pb ~(2+) .
机译:通过在水溶液中的Mg靶标在水溶液中的激光烧蚀,合成了层状氢氧化镁(Mg(OH)_(2))纳米晶/石墨烯氧化物(GO)复合材料。研究了其介孔的结构和作为除去亚甲基蓝(MB)和来自水的重金属离子的吸附剂的应用。 Mg(OH)_(2)纳米片原位从激光烧蚀Mg物种和水分子之间的强反应中组织。 Go nanosheet用作异质成核和生长位点,用于片状Mg(OH)_(2)纳米晶体。得到的多孔mg(OH)_(2)/ Go纳米片复合物具有310.8m〜(2)g〜(α1)的高比表面积和1.031cm〜(3)g〜(?1的孔体积)。这些特性表明复合材料可以是优异的吸附剂。复合材料在298K上表现出532mg g〜(α1)的最大吸附容量,用于Mb的典型污染物,重金属离子Zn〜(2+)和Pb〜(2)超过300mg g〜(α1)〜(2 +)。

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