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Phytic acid-guided ultra-thin N,P co-doped carbon coated carbon nanotubes for efficient all-pH electrocatalytic hydrogen evolution

机译:植acid-guided超薄N, P co-doped碳包覆碳纳米管的有效的ph值electrocatalytic氢进化

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Nanostructure engineering of heteroatom-doped carbon catalysts can greatly enhance their electrocatalytic activity by increasing the accessible active sites and beneficial physical properties (e.g., surface area, conductivity, etc.). Herein, we successfully constructed ultra-thin N,P co-doped carbon (NPC) on the surface of multi-walled carbon nanotubes (CNT) by using phytic acid (PA) as a "guide". The rich phosphate groups in PA allow them to be covalently modified on the surface of CNT by the condensation reaction and to further attract large aniline monomers through acid-base interactions, resulting in the uniform and tight bonding between polyaniline and CNT after the polymerization process. During the subsequent thermal reaction, PA also serves as a self-sacrificial dopant for the formation of ultra-thin NPC and the doping amount of P in NPC can be easily adjusted by changing the amount of PA. Due to the abundance of active sites, large electrochemically active surface area and rapid electron transfer, the developed CNT@NPC presents remarkable electrocatalytic activities for the hydrogen evolution reaction (HER) with an overpotential of 167, 440 and 304 mV to reach a current density of 10 mA cm(-2) in acidic, neutral, and alkaline electrolytes, respectively. In particular, its acidic HER activity exceeds that of most reported metal-free electrocatalysts and is comparable to that of some excellent transition metal-based catalysts. The approach proposed here is of potential importance for the preparation of ideal heteroatom-doped carbon/nanocarbon composites for use in a variety of future energy conversion systems.
机译:纳米结构工程heteroatom-doped碳催化剂可以大大提高通过增加electrocatalytic活动访问活动网站和有益的物质属性(如表面积,电导率,等等)。超薄N, P co-doped碳(NPC)表面的多壁碳纳米管(CNT)使用植酸(PA)作为“指南”。磷酸基在PA允许他们共价改性表面上的问缩合反应,进一步吸引大型苯胺单体通过酸碱相互作用,导致制服和紧张之间的粘结聚苯胺和后问聚合过程。热的反应,爸爸也是自我牺牲掺杂物的形成超薄人大和人大的掺杂量的P可以很容易地通过改变调整的数量吗PA。电化学表面积和快速电子转移,发达CNT@NPC礼物非凡的electrocatalytic活动析氢反应(她)一个过电压的167、440和304 mV达成电流密度的马10厘米(2)在酸性,中性和碱性电解质,分别。特别是,其酸性超过她的活动多数非金属electrocatalysts报道并与一些优秀的过渡金属催化剂。这里提出的潜在重要性制备理想heteroatom-doped碳/ nanocarbon复合材料中使用的品种未来的能源转换系统。

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