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Field Emission Lamps Prepared with Dip-Coated and Nickel Electroless Plated Carbon Nanotube Cathodes

机译:浸镀镍化学镀碳纳米管阴极制备的场发射灯

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Fabrication and efficiency enhancement of tubal field emission lamps (FELs) using multi-walled carbon nanotubes (MWNTs) as the cathode field emitters were studied. The cathode filaments were prepared by eletrolessly plating a nickel (Ni) film on the cathode made of a 304 stainless steel wire dip-coated with MWNTs. The 304 wire was dip-coated with MWNTs and nano-sized Pd catalyst in a solution, and then eletrolessly plated with Ni to form an MWNT-embedded composite film. The MWNTs embedded in Ni not only had better adhesion but also exhibited a higher FE threshold voltage, which is beneficial to our FEL system and can increase the luminous efficiency of the anode phosphor. Our results show that the FE cathode prepared by dipping three times in a solution containing 400 ppm Pd nano-catalysts and 0.2 wt.% MWNTs and then eletrolessly plating a Ni film at a deposition temperature of 60 degrees C, pH value of 5, and deposition time of 7 min has the best FE uniformity and efficiency. Its emission current can stay as low as 2.5 mA at a high applied voltage of 7 kV, which conforms to the high-voltage-and-low-current requirement of the P22 phosphor and can therefore maximize the luminous efficiency of our FEL. We found that the MWNT cathodes prepared by this approach are suitable for making high-efficiency FELs.
机译:研究了以多壁碳纳米管(MWNTs)为阴极场发射极的输卵管场发射灯(FEL)的制备和效率的提高。通过在浸有MWNT的304不锈钢丝制成的阴极上无电镀镍(Ni)膜来制备阴极丝。 304线在溶液中浸有MWNTs和纳米级Pd催化剂浸涂,然后无电电镀Ni以形成MWNT嵌入的复合膜。嵌入Ni中的MWNTs不仅具有更好的附着力,而且表现出更高的FE阈值电压,这对我们的FEL系统有利,并且可以提高阳极磷光体的发光效率。我们的结果表明,通过在含400 ppm Pd纳米催化剂和0.2 wt。%MWNTs的溶液中浸3次,然后在60℃的沉积温度,pH值为5的条件下无电镀镍膜,即可制得FE阴极。 7分钟的沉积时间具有最佳的FE均匀性和效率。在7 kV的高施加电压下,它的发射电流可以保持低至2.5 mA,这符合P22荧光粉的高电压和低电流要求,因此可以最大化我们FEL的发光效率。我们发现,通过这种方法制备的MWNT阴极适用于制造高效FEL。

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