Recent Advances in Electrocatalytic Hydrogen Evolution Using Nanoparticles

Последние достижения в электрокаталитическом выделении водорода с использованием наночастиц
Jing Zhu, Kwok‐Yin Wong, Pengxiang Zhao, Liangsheng Hu, Lawrence Yoon Suk Lee
2019-10-28

catalyst activity–morphology–structure–composition relationshipselectrocatalytic hydrogen evolution reaction (HER)metal-free HER electrocatalystsnanoparticlesnoble and non-noble metal catalysts
Hydrogen fuel is considered as the cleanest renewable resource and the primary alternative to fossil fuels for future energy supply. Sustainable hydrogen generation is the major prerequisite to realize future hydrogen economy. The electrocatalytic hydrogen evolution reaction (HER), as the vital step of water electrolysis to H 2 production, has been the subject of extensive study over the past decades. In this comprehensive review, we first summarize the fundamentals of HER and review the recent state-of-the-art advances in the low-cost and high-performance catalysts based on noble and non-noble metals, as well as metal-free HER electrocatalysts. We systemically discuss the insights into the relationship among the catalytic activity, morphology, structure, composition, and synthetic method. Strategies for developing an effective catalyst, including increasing the intrinsic activity of active sites and/or increasing the number of active sites, are summarized and highlighted. Finally, the challenges, perspectives, and research directions of HER electrocatalysis are featured.
1
Catalytic activity depends on catalyst morphology, structure, composition, and synthetic method, with systematic relationships discussed.
2
Effective catalyst development strategies are (a) increasing intrinsic activity of active sites and (b) increasing the number of active sites.
3
Electrocatalytic hydrogen evolution reaction (HER) is crucial for sustainable hydrogen generation and the hydrogen economy.
4
Recent advances include low-cost, high-performance HER catalysts based on noble metals, non-noble metals, and metal-free materials.
5
The review identifies remaining challenges, perspectives, and future research directions in HER electrocatalysis.

Nanoparticle-based electrocatalysts for the hydrogen evolution reaction (HER)

Relationships between catalyst activity and morphology, structure, composition, and synthesis methods, and strategies to enhance HER performance by increasing intrinsic activity and/or number of active sites in nanoparticle electrocatalysts

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2019-10-28
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Jing Zhu
Kwok‐Yin Wong
Pengxiang Zhao
Liangsheng Hu
Lawrence Yoon Suk Lee
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