Hong Yonghoon, Kim Da Jeong, Choi In Ae, Pal Mou, Lee Gaehang, Nam Ki Min, Seo Won Seok
Department of Chemistry, Sogang University Seoul 04107 Republic of Korea
Instituto de Física, BUAP, Ciudad Universitaria Av. San Claudio y Blvd. 18 Sur Col. San Manuel C.P. 72570 Puebla Mexico.
RSC Adv. 2018 Jan 3;8(2):1089-1097. doi: 10.1039/c7ra12240c. eCollection 2018 Jan 2.
Highly stable and magnetically separable mesoporous silica nanospheres (MSNs) embedded with 4.6 ± 0.8 nm FeCo/graphitic carbon shell nanocrystals (FeCo/GC NCs@MSNs) were synthesized by thermal decomposition of metal precursors in MSNs and subsequent methane CVD. The FeCo/GC NCs@MSNs had a high specific surface area (442 m g), large pore volume (0.65 cm g), and tunable size (65 nm, 130 nm, and 270 nm). Despite the low magnetic metal content (8.35 wt%), the FeCo/GC NCs@MSNs had a sufficiently high saturation magnetization (17.1 emu g). This is due to the superior magnetic properties of the FeCo/GC NCs, which also enable fast magnetic separation of the nanospheres. The graphitic carbon shell on the FeCo NCs not only protects the alloy core against oxidation and acid etching in 35% HCl, but also facilitates non-covalent, hydrophobic interactions with the hydrocarbon chains of organic dyes such as methyl orange and methylene blue. Surface functionalization of the FeCo/GC NCs@MSNs with thiol groups provides efficient capacity for binding with Hg ions. We have shown that the thiol-functionalized FeCo/GC NCs@MSNs (FeCo/GC NCs@MSNs-SH) work as multifunctional adsorbents for organic dyes (target organic pollutants) and Hg ions (target inorganic pollutant). We also demonstrated that the FeCo/GC NCs@MSNs-SH are excellent recyclable adsorbents for methyl orange.
通过在介孔二氧化硅纳米球(MSNs)中热分解金属前驱体并随后进行甲烷化学气相沉积,合成了嵌入4.6±0.8纳米FeCo/石墨碳壳纳米晶体(FeCo/GC NCs@MSNs)的高度稳定且可磁分离的介孔二氧化硅纳米球。FeCo/GC NCs@MSNs具有高比表面积(442平方米/克)、大孔体积(0.65立方厘米/克)和可调节的尺寸(65纳米、130纳米和270纳米)。尽管磁性金属含量低(8.35重量%),但FeCo/GC NCs@MSNs具有足够高的饱和磁化强度(17.1电磁单位/克)。这归因于FeCo/GC NCs优异的磁性,这也使得纳米球能够快速磁分离。FeCo纳米晶体上的石墨碳壳不仅保护合金核免受35%盐酸中的氧化和酸蚀刻,还促进与有机染料(如甲基橙和亚甲基蓝)的烃链的非共价疏水相互作用。用硫醇基团对FeCo/GC NCs@MSNs进行表面功能化提供了与汞离子结合的有效能力。我们已经表明,硫醇功能化的FeCo/GC NCs@MSNs(FeCo/GC NCs@MSNs-SH)作为有机染料(目标有机污染物)和汞离子(目标无机污染物)的多功能吸附剂。我们还证明了FeCo/GC NCs@MSNs-SH是甲基橙的优异可回收吸附剂。