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Synthesis of Nitrogen-Doped Carbon Nanocoils with Adjustable Morphology Using Ni—Fe Layered Double Hydroxides as Catalyst Precursors

机译:Ni-Fe层状双金属氢氧化物作为催化剂前体合成形态可调的氮掺杂碳纳米线圈

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Nitrogen-doped carbon nanocoils (CNCs) with adjusted morphologies were synthesized in a one-step catalytic chemical vapour deposition (CVD) process using acetonitrile as the carbon and nitrogen source. The nickel iron oxideickel oxide nanocomposites, which were derived from nickel–iron layered double hydroxide (LDH) precursors, were employed as catalysts for the synthesis of CNCs. In this method, precursor-to-catalyst transformation, catalyst activation, formation of CNCs, and nitrogen doping were all performed in situ in a single process. The morphology (coil diameter, coil pitch, and fibre diameter) and nitrogen content of the synthesized CNCs was individually adjusted by modulation of the catalyst composition and CVD reaction temperature, respectively. The adjustable ranges of the coil diameter, coil pitch, fibre diameter, and nitrogen content were confirmed to be approximately 500±100 nm, 600±100 nm, 100±20 nm, and 1.1±0.3 atom%, respectively.
机译:使用乙腈作为碳源和氮源,通过一步催化化学气相沉积(CVD)工艺合成了形态经过调整的氮掺杂碳纳米线圈(CNC)。由镍-铁层状双氢氧化物(LDH)前体衍生的氧化镍铁/氧化镍纳米复合材料被用作合成CNC的催化剂。在这种方法中,前体到催化剂的转化,催化剂的活化,CNC的形成以及氮的掺杂均在一个过程中就地进行。分别通过调节催化剂组成和CVD反应温度分别调节合成CNC的形态(线圈直径,线圈节距和纤维直径)和氮含量。线圈直径,线圈节距,纤维直径和氮含量的可调节范围被证实分别为约500±100nm,600±100nm,100±20nm和1.1±0.3原子%。

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