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用于增强水电解的准金属锑功能化石墨纳米片上的铂纳米颗粒

Platinum Nanoparticles on Metalloid Antimony Functionalized Graphitic Nanoplatelets for Enhanced Water Electrolysis.

作者信息

Kweon Do Hyung, Baek Jae-Hoon, Park Sung O, Noh Hyuk-Jun, Jeon Jong-Pil, Lee Jeong Hyeon, Shin Tae Joo, Kwak Sang Kyu, Jeon In-Yup, Baek Jong-Beom

机构信息

School of Energy and Chemical Engineering/Center for Dimension-Controllable Organic Frameworks, Ulsan National Institute of Science and Technology (UNIST), Ulsan, 44919, South Korea.

Hydrogen Fuel Cell Research Center, Korea Institute of Science and Technology (KIST), Seoul, 02792, Republic of Korea.

出版信息

Small. 2025 Jun;21(25):e2501408. doi: 10.1002/smll.202501408. Epub 2025 May 9.

Abstract

Platinum (Pt) nanoparticles are considered to be the most efficient catalyst for acidic hydrogen evolution reaction (HER). However, they are expensive and unstable, because of agglomeration and Ostwald ripening. It is critically necessary for developing a better catalytic support to stabilize the Pt nanoparticles at low loading amounts. One efficient route to improving both catalytic activity and durability is metal catalysts stably anchored on heteroatom functionalized carbon supports via their strong interactions. Nevertheless, the interactions between "metallic" catalysts and "nonmetallic" heteroatom functionalized carbon supports are still unsatisfactory. Here, "metalloid" antimony (Sb) functionalized graphitic nanoplatelets (SbGnP) are reported to stably anchor Pt nanoparticles. The resulting Pt@SbGnP catalyst shows a record high acidic HER performance, attributable to the unique nature of Sb functional groups on SbGnP. Unlike typical low-period nonmetallic heteroatoms on carbon supports, high-period metalloid Sb with various oxidation states of SbO provided strong binding sites to stably anchor Pt nanoparticles, suppressing particle aggregation, and thus sustaining catalytic activity and stability.

摘要

铂(Pt)纳米颗粒被认为是酸性析氢反应(HER)中最有效的催化剂。然而,由于团聚和奥斯特瓦尔德熟化,它们价格昂贵且不稳定。开发一种更好的催化载体以在低负载量下稳定Pt纳米颗粒至关重要。提高催化活性和耐久性的一条有效途径是通过强相互作用将金属催化剂稳定地锚定在杂原子功能化的碳载体上。然而,“金属”催化剂与“非金属”杂原子功能化碳载体之间的相互作用仍不尽人意。在此,据报道“类金属”锑(Sb)功能化的石墨纳米片(SbGnP)能稳定地锚定Pt纳米颗粒。所得的Pt@SbGnP催化剂展现出创纪录的高酸性HER性能,这归因于SbGnP上Sb官能团的独特性质。与碳载体上典型的低周期非金属杂原子不同,具有各种氧化态SbO的高周期类金属Sb提供了强结合位点,以稳定地锚定Pt纳米颗粒,抑制颗粒聚集,从而维持催化活性和稳定性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6c18/12199127/e86ac49bd1e3/SMLL-21-2501408-g005.jpg

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