Literature DB >> 34145269

Platinum single-atom catalyst coupled with transition metal/metal oxide heterostructure for accelerating alkaline hydrogen evolution reaction.

Kai Ling Zhou1, Zelin Wang1, Chang Bao Han2, Xiaoxing Ke3, Changhao Wang1, Yuhong Jin1, Qianqian Zhang1, Jingbing Liu1, Hao Wang4, Hui Yan1.   

Abstract

Single-atom catalysts provide an effective approach to reduce the amount of precious metals meanwhile maintain their catalytic activity. However, the sluggish activity of the catalysts for alkaline water dissociation has hampered advances in highly efficient hydrogen production. Herein, we develop a single-atom platinum immobilized NiO/Ni heterostructure (PtSA-NiO/Ni) as an alkaline hydrogen evolution catalyst. It is found that Pt single atom coupled with NiO/Ni heterostructure enables the tunable binding abilities of hydroxyl ions (OH*) and hydrogen (H*), which efficiently tailors the water dissociation energy and promotes the H* conversion for accelerating alkaline hydrogen evolution reaction. A further enhancement is achieved by constructing PtSA-NiO/Ni nanosheets on Ag nanowires to form a hierarchical three-dimensional morphology. Consequently, the fabricated PtSA-NiO/Ni catalyst displays high alkaline hydrogen evolution performances with a quite high mass activity of 20.6 A mg-1 for Pt at the overpotential of 100 mV, significantly outperforming the reported catalysts.

Entities:  

Year:  2021        PMID: 34145269     DOI: 10.1038/s41467-021-24079-8

Source DB:  PubMed          Journal:  Nat Commun        ISSN: 2041-1723            Impact factor:   14.919


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1.  Low-temperature liquid platinum catalyst.

Authors:  Md Arifur Rahim; Jianbo Tang; Andrew J Christofferson; Priyank V Kumar; Nastaran Meftahi; Franco Centurion; Zhenbang Cao; Junma Tang; Mahroo Baharfar; Mohannad Mayyas; Francois-Marie Allioux; Pramod Koshy; Torben Daeneke; Christopher F McConville; Richard B Kaner; Salvy P Russo; Kourosh Kalantar-Zadeh
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2.  Subnanometric Ru clusters with upshifted D band center improve performance for alkaline hydrogen evolution reaction.

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Review 3.  Recent Application of Nanomaterials to Overcome Technological Challenges of Microbial Electrolysis Cells.

Authors:  Byeongcheol Kim; Euntae Yang; Bongkyu Kim; M Obaid; Jae Kyung Jang; Kyu-Jung Chae
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4.  Non-metal boron atoms on a CuB12 monolayer as efficient catalytic sites for urea production.

Authors:  Changyan Zhu; Chaoxia Wen; Miao Wang; Min Zhang; Yun Geng; Zhongmin Su
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5.  Interstitial boron-triggered electron-deficient Os aerogels for enhanced pH-universal hydrogen evolution.

Authors:  Yinghao Li; Chun-Kuo Peng; Huimin Hu; San-Yuan Chen; Jin-Ho Choi; Yan-Gu Lin; Jong-Min Lee
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6.  An electrochemical modification strategy to fabricate NiFeCuPt polymetallic carbon matrices on nickel foam as stable electrocatalysts for water splitting.

Authors:  Ziqi Zhang; Yiduo Li; Zhe Zhang; He Zheng; Yuxin Liu; Yuxing Yan; Chunguang Li; Haiyan Lu; Zhan Shi; Shouhua Feng
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Review 7.  Recent progress of Ga-based liquid metals in catalysis.

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8.  Rhodium nanocrystals on porous graphdiyne for electrocatalytic hydrogen evolution from saline water.

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9.  Rapid complete reconfiguration induced actual active species for industrial hydrogen evolution reaction.

Authors:  Luqi Wang; Yixin Hao; Liming Deng; Feng Hu; Sheng Zhao; Linlin Li; Shengjie Peng
Journal:  Nat Commun       Date:  2022-10-02       Impact factor: 17.694

10.  Selectively Growing a Highly Active Interface of Mixed Nb-Rh Oxide/2D Carbon for Electrocatalytic Hydrogen Production.

Authors:  Yang Gao; Lu Qi; Feng He; Yurui Xue; Yuliang Li
Journal:  Adv Sci (Weinh)       Date:  2022-02-01       Impact factor: 16.806

  10 in total

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