期刊文献+
共找到6篇文章
< 1 >
每页显示 20 50 100
近常压X射线光电子能谱研究固-气和固-液界面 被引量:1
1
作者 刘崇静 夏雨健 +7 位作者 张鹏军 魏世强 曹登丰 圣蓓蓓 褚勇衡 陈双明 宋礼 刘啸嵩 《物理化学学报》 北大核心 2025年第2期14-31,共18页
材料表面是能量储存和转化反应发生的直接场所,因此,真实反应条件下材料的表面化学和结构在理解反应机理方面起着关键作用。X射线光电子能谱是一种表面敏感技术,已经成为研究材料表面复杂成分和电子结构的主要工具之一。传统的X射线光... 材料表面是能量储存和转化反应发生的直接场所,因此,真实反应条件下材料的表面化学和结构在理解反应机理方面起着关键作用。X射线光电子能谱是一种表面敏感技术,已经成为研究材料表面复杂成分和电子结构的主要工具之一。传统的X射线光电子能谱受限于真空条件,这限制了对原位条件下固-气和固-液界面的研究。但随着真空差分技术和静电透镜系统的引入,X射线光电子能谱不再局限于超高真空条件。结合同步辐射光源的优势,近常压X射线光电子能谱(NAP-XPS)展现出更先进的特点。在近年来,NAP-XPS迅速成为研究各种固-气和固-液界面的重要工具。通过NAP-XPS和一些先进的光谱学和显微镜技术,研究人员可以获得原子尺度的界面信息,这使得他们能够更深入地了解这些界面的性质。本文对近年来代表性的NAP-XPS研究进展进行了简要回顾,以阐明其在固-气和固-液界面研究领域中引发的新认识。最后,文章还讨论了关于NAP-XPS技术的挑战和前景,希望可以激发新的研究思路。 展开更多
关键词 近常压 X射线光电子能谱 同步辐射 能源材料 固-气界面 固-液界面
在线阅读 下载PDF
Motivating Ru-bri site of RuO_(2)by boron doping toward high performance acidic and neutral oxygen evolution 被引量:4
2
作者 Chongjing Liu beibei sheng +7 位作者 Quan Zhou Dengfeng Cao Honghe Ding Shuangming Chen Pengjun Zhang Yujian Xia Xiaojun Wu Li Song 《Nano Research》 SCIE EI CSCD 2022年第8期7008-7015,共8页
The electrocatalysis of oxygen evolution reaction(OER)plays a key role in clean energy storage and transfer.Nonetheless,the sluggish kinetics and poor durability under acidic and neutral conditions severely hinder pra... The electrocatalysis of oxygen evolution reaction(OER)plays a key role in clean energy storage and transfer.Nonetheless,the sluggish kinetics and poor durability under acidic and neutral conditions severely hinder practical applications such as electrolyzer compatible with the powerful proton exchange membrane and biohybrid fuel production.Here,we report a borondoped ruthenium dioxide electrocatalyst(B-RuO_(2))fabricated by a facile boric acid assisted strategy which demonstrates excellent acidic and neutral OER performances.Density functional theory calculations and advanced characterizations reveal that the boron species form an anomalous B–O covalent bonding with the oxygen atoms of RuO_(2)and expose the fully coordinately bridge ruthenium site(Ru-bri site),which seems like a switch that turns on the inactive Ru-bri site into OER-active,resulting in more exposed active sites,modified electronic structure,and optimized binding energy of intermediates.Thus,the B-RuO_(2)exhibits an ultralow overpotential of 200 mV at 10 mA/cm^(2)and maintains excellent stability compared to commercial RuO_(2)in 0.5 M sulfuric acid.Moreover,the superior performance is as well displayed in neutral electrolyte,surpassing most previously reported catalysts. 展开更多
关键词 acidic and neutral oxygen evolution reaction RuO_(2) boron doping the fully coordinately bridge ruthenium site(Ru-bri site) density functional theory
原文传递
Application of X-ray absorption spectroscopy in carbon-supported electrocatalysts 被引量:3
3
作者 beibei sheng Yongheng Chu +4 位作者 Dengfeng Cao Yujian Xia Chongjing Liu Shuangming Chen Li Song 《Nano Research》 SCIE EI CSCD 2023年第11期12438-12452,共15页
Breakthroughs in energy storage and conversion devices depend heavily on the exploration of low-cost and high-performance materials.Carbon-supported electrocatalysts with dimensional varieties have recently attracted ... Breakthroughs in energy storage and conversion devices depend heavily on the exploration of low-cost and high-performance materials.Carbon-supported electrocatalysts with dimensional varieties have recently attracted significant attention due to their strong structural flexibility and easy accessibility.Nevertheless,understanding the connection between their electronic,structural properties,and catalytic performance must remain a top priority.Synchrotron radiation(SR)X-ray absorption spectroscopy(XAS)techniques,including hard XAS and soft XAS,are recognized as efficient and comprehensive platforms for probing the surface,interface,and bulk electronic structure of elements of interest in the materials community.In the past decade,the flourishing development of materials science and advanced characterization technologies have led to a deeper understanding at different temporal,longitudinal,and spatial scales.In this review,we briefly describe the concept of XAS techniques and summarize their recent progress in addressing scientific questions on carbon-supported electrocatalysts through the development of advanced instruments and experimental methods.We then discuss the remaining challenges and potential research directions in nextgeneration materials frontiers,and suggest challenges and perspectives for shedding light on the structure–activity relationship. 展开更多
关键词 synchrotron radiation hard X-ray absorption spectroscopy(XAS) soft XAS carbon-supported electrocatalysts
原文传递
Anomalous self-optimization of sulfate ions for boosted oxygen evolution reaction 被引量:2
4
作者 Dengfeng Cao Oyawale Adetunji Moses +16 位作者 beibei sheng Shuangming Chen Haibin Pan Lihui Wu Hongwei Shou Wenjie Xu Dongdong Li Lirong Zheng shengqi Chu Chuansheng Hu Daobin Liu Shiqiang Wei Xusheng Zheng Zeming Qi Xiaojun Wu Jing Zhang Li Song 《Science Bulletin》 SCIE EI CSCD 2021年第6期553-561,M0003,共10页
Broadly,the oxygen evolution reaction(OER)has been deeply understood as a significant part of energy conversion and storage.Nevertheless,the anions in the OER catalysts have been neglected for various reasons such as ... Broadly,the oxygen evolution reaction(OER)has been deeply understood as a significant part of energy conversion and storage.Nevertheless,the anions in the OER catalysts have been neglected for various reasons such as inactive sites,dissolution,and oxidation,amongst others.Herein,we applied a model catalyst s-Ni(OH)2 to track the anionic behavior in the catalyst during the electrochemical process to fill this gap.The advanced operando synchrotron radiation Fourier transform infrared(SR-FTIR)spectroscopy,synchrotron radiation photoelectron spectroscopy(SRPES)depth detection and differential X-ray absorption fine structure(D-XAFS)spectrum jointly point out that some oxidized sulfur species(SO_(4)^(2-))will selfoptimize new Ni–S bonds during OER process.Such amazing anionic self-optimization(ASO)behavior has never been observed in the OER process.Subsequently,the optimization-derived component shows a significantly improved electrocatalytic performance(activity,stability,etc.)compared to reference catalyst Ni(OH)_(2).Theoretical calculation further suggests that the ASO process indeed derives a thermodynamically stable structure of the OER catalyst,and then gives its superb catalytic performance by optimizing the thermodynamic and kinetic processes in the OER,respectively.This work demonstrates the vital role of anions in the electrochemical process,which will open up new perspectives for understanding OER and provide some new ideas in related fields(especially catalysis and chemistry). 展开更多
关键词 Oxygen evolution reaction(OER) Operando synchrotron radiation Fourier transform infrared(SR-FTIR)spectroscopy Synchrotron radiation photoelectron spectroscopy(SRPES)depth detection Differential X-ray absorption fine structure(D-XAFS)spectrum Anionic self-optimization(ASO)
原文传递
Support induced phase engineering toward superior electrocatalyst 被引量:1
5
作者 beibei sheng Dengfeng Cao +11 位作者 Hongwei Shou Oyawale Adetunji Moses Wenjie Xu Yujian Xia Yuzhu Zhou Huijuan Wang Ping Wan Shuang Zhu Wangsheng Chu Xiaojun Wu Shuangming Chen Li Song 《Nano Research》 SCIE EI CSCD 2022年第3期1831-1837,共7页
The phase transformation of catalysts has been extensively observed in heterogeneous catalytic reactions that hinder the long cycling catalysis,and it remains a big challenge to precisely control the active phase duri... The phase transformation of catalysts has been extensively observed in heterogeneous catalytic reactions that hinder the long cycling catalysis,and it remains a big challenge to precisely control the active phase during the complex conditions in electrochemical catalysis.Here,we theoretically predict that carbon-based support could achieve the phase engineering regulation of catalysts by suppressing specific phase transformation.Taken single-walled carbon nanotube(SWCNT)as typical support,combined with calculated E-pH(Pourbaix)diagram and advanced synchrotron-based characterizations technologies prove there are two different active phases source from cobalt selenide which demonstrate that the feasibility of using support effect regulating the potential advantageous catalysts.Moreover,it is worth noting that the phase engineering derived Co_(3)O_(4)-SWCNT exhibits a low overpotential of 201 mV for delivering the current density of 10 mA/cm^(2)in electrocatalytic oxygen evolution reaction(OER).Also,it reaches a record current density of 529 mA/cm^(2)at 1.63 V(vs.RHE)in the electrocatalytic urea oxidation reaction(UOR),overwhelming most previously reported catalysts. 展开更多
关键词 phase engineering SUPPORT synchrotron radiation characterization oxygen evolution reaction(OER) urea oxidation reaction(UOR)
原文传递
Probing self-optimization of carbon support in oxygen evolution reaction 被引量:1
6
作者 Wenjie Xu Dengfeng Cao +6 位作者 Oyawale Adetunji Moses beibei sheng Chuanqiang Wu Hongwei Shou Xiaojun Wu Shuangming Chen Li Song 《Nano Research》 SCIE EI CSCD 2021年第12期4534-4540,共7页
Despite acknowledgment of structural reconstruction of materials following oxygen evolution reaction (OER) reaction, the role of support during the reconstruction process has been ignored. Given this, we directly in s... Despite acknowledgment of structural reconstruction of materials following oxygen evolution reaction (OER) reaction, the role of support during the reconstruction process has been ignored. Given this, we directly in situ transform the residual iron present in raw single-walled carbon nanotubes (SWCNT) into Fe_(2)O_(3) and thus build Fe_(2)O_(3)-CNT as the model system. Intriguingly, an anomalous self-optimization occurred on SWCNT and the derived components show satisfactory electrochemical performance. Soft X-ray absorption spectroscopy (sXAS) analysis and theory calculation correspondingly indicate that self-optimization yields stronger interaction between SWCNT and Fe_(2)O_(3) nanoparticles, where the electrons migrate from Fe_(2)O_(3) to optimized SWCNT. Such polarization will generate a positive charge center and thus boost the OER activity. This finding directly observes the self-optimization of support effect, providing a new perspective for OER and related electrochemical reactions. 展开更多
关键词 self-optimization of support single-walled carbon nanotube(SWCNT) oxygen evolution reaction(OER) Fe_(2)O_(3) soft X-ray absorption spectroscopy(sXAS)
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部