Hydrogen evolution by tungsten carbonitride nanoelectrocatalysts synthesized by the formation of a tungsten acid/polymer hybrid in situ.

Hydrogen evolution by tungsten carbonitride nanoelectrocatalysts synthesized by the formation of a tungsten acid/polymer hybrid in situ.
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DOI:
10.1002/anie.201307527
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发表时间:
2013-12
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通讯作者:
Yong Zhao;K. Kamiya;K. Hashimoto;Shuji Nakanishi
Yong Zhao;K. Kamiya;K. Hashimoto;Shuji Nakanishi
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文献类型:
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作者:
Yong Zhao;K. Kamiya;K. Hashimoto;Shuji Nakanishi

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钨的一个进步:富氮碳化钨(WCN)纳米材料可以作为稳定高效的析氢电催化剂,其活性比传统的WCN材料高得多。聚合工艺的使用为H2 WO4纳米颗粒的合成提供了一条独特的途径,然后可以用于合成wcn衍生的催化剂。
A step forward for tungsten: Nitrogen-rich tungsten carbonitride (WCN) nanomaterials can act as stable and efficient hydrogen evolution electrocatalysts with a much higher activity than conventional WCN materials. The use of a polymerization process provides a unique synthetic route to H2 WO4 nanoparticles, which can then be used to synthesize the WCN-derived catalysts.