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Magnetically induced demulsification of water and castor oil dispersions stabilized by Fe3O4-coated cellulose nanocrystals

机译:通过Fe3O4涂层纤维素纳米晶体稳定的水和蓖麻油分散体的磁诱导的破乳

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摘要

Superparamagnetic iron oxide (Fe3O4) nanoparticle (NP) coated cellulose nanocrystals (CNCs) were synthesized and used to prepare emulsions with magnetically controlled stability. Magnetite NPs were deposited onto the surface of wood pulp CNCs (WCNCs) and bacterial CNCs (BCNCs) by a one-step coprecipitation method. The effect of the CNC to Fe3O4 mass ratio (1:1, 1:2, and 1:4) was varied to optimize the colloidal, magnetic and emulsifying properties of the hybrid NPs. TEM images showed that the 1:4 ratios lead to greater coverage of Fe3O4 than lower Fe3O4 loadings (1:1, and 1:2). The CNCs and Fe3O4 appeared to interact via hydrogen bonding between the hydroxyl groups on the surfaces of both particles. The hybrid NPs had high saturation magnetizations of 56 emu/g for WCNC/Fe3O4 (1:4) and 60 emu/g for BCNC/Fe3O4 (1:4). In addition, they were efficient stabilizers for castor oil and water emulsions. The magnetite lowered the colloidal stability of the CNCs while providing superparamagnetic properties which allowed stabilization of Pickering emulsions and the subsequent depletion of the Pickering effect by an external magnet. Water-in-oil emulsions, with oil contents of 70% and 90% V/V, were broken by an external magnet, while the CNC/ Fe3O4 NPs were recovered and recycled. The 30% and 50% V/V oil emulsions were oil-in-water and could not be broken by the magnet, probably due to higher emulsion stability. The fabricated magnetic CNCs have potential use in magnetically driven separations, drug delivery, and oil recovery. Graphic abstract
机译:合成了超顺磁性氧化铁(Fe3O4)纳米颗粒(NP)包覆的纤维素纳米晶体(CNC),并将其用于制备具有磁控稳定性的乳液。采用一步共沉淀法将磁铁矿纳米颗粒沉积在木浆CNC(WCNCs)和细菌CNC(BCNCs)表面。改变CNC与Fe3O4质量比(1:1、1:2和1:4)的影响,以优化混合NPs的胶体、磁性和乳化性能。TEM图像显示,与较低的Fe3O4负载(1:1和1:2)相比,1:4的比例导致Fe3O4的覆盖率更高。CNC和Fe3O4似乎通过两种粒子表面上的羟基之间的氢键相互作用。对于WCNC/Fe3O4(1:4)和BCNC/Fe3O4(1:4),混合NPs的饱和磁化强度分别为56 emu/g和60 emu/g。此外,它们还是蓖麻油和水乳剂的有效稳定剂。磁铁矿降低了CNC的胶体稳定性,同时提供了超顺磁性,从而使Pickering乳液稳定,随后通过外部磁铁耗尽Pickering效应。油包水型乳化液的油含量分别为70%和90%V/V,通过外部磁铁破碎,同时回收和回收CNC/Fe3O4 NPs。30%和50%V/V的油乳剂是水包油的,可能是由于更高的乳液稳定性,磁铁无法打破。所制备的磁性CNC在磁驱动分离、药物输送和石油回收方面具有潜在的用途。图形摘要

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