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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Novel carbon-based separation membranes composed of integrated zero- and one-dimensional nanomaterials
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Novel carbon-based separation membranes composed of integrated zero- and one-dimensional nanomaterials

机译:由集成的零和一维纳米材料组成的新型碳的分离膜

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The separation membrane structure to a large extent is determined by the membrane building block materials. To explore a new membrane structure, novel materials, including zero- (0D) and one-dimensional (1D) carbon-based materials, were studied in this work as the basic building blocks to fabricate ultrathin, compact separation membranes. Due to the intrinsic difficulty in assembling 0D graphene oxide quantum dots (GOQDs) on porous substrates with much larger pores than the size of the GOQDs and thus low transport resistance, we report for the first time a smart strategy of depositing 1D single-walled carbon nanotubes (SWCNT) as an ultrathin (50 nm) "skeleton" layer to facilitate the assembly/"growth" of 0D nitrogen doped GOQDs to form a densely packed 0D/1D carbon based membrane. This strategy allows evaluation of this new membrane structure composed of 0D and 1D materials as a new membrane configuration for separation applications. The 0D/1D carbon-based membranes were prepared on both hollow fiber and flat sheet substrates (pore size >= 25 nm) and characterized to understand the membrane structure, morphology and chemical composition. Carbon capture as a gas separation example and dye removal and desalination as water treatment examples were evaluated to demonstrate the separation potential of the 0D/1D composite carbon membranes. This new membrane structure, along with the facile strategy to form ultrathin, compact coatings, may significantly expand the separation membrane technology field.
机译:分离膜结构在很大程度上由膜构建块材料确定。为了探索新的膜结构,在这项工作中研究了新的材料,包括零(0d)和一维(1D)碳材料,作为制造超薄,紧凑的分离膜的基本构建块。由于在多孔基板上组装0d石墨烯氧化物量子点(GOQDS)的内在困难,具有比GOQDS的尺寸大得多,因此低传输电阻,我们报告了第一次沉积1D单壁碳的智能策略纳米管(SWCNT)作为超薄(50nm)“骨架”层,以促进0d氮掺杂Goqds的组装/“生长”形成密集填充的0d / 1d碳基膜。该策略允许评估由0D和1D材料组成的新膜结构,作为用于分离应用的新膜配置。在中空纤维和平板基材(孔径> = 25nm)上制备0d / 1d碳基膜,并表征了理解膜结构,形态和化学组成。评价作为水处理实施例的气体分离例和染料除去作为水处理实例的碳捕获,以证明0d / 1d复合碳膜的分离电位。这种新的膜结构以及容易形成超薄紧凑件涂层的体策略可以显着扩展分离膜技术领域。

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