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Construction of sintering-resistant gold catalysts via ascorbic-acid inducing strong metal-support interactions
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作者 Yunxia Liu Guandong Wu +4 位作者 Lin Li Yiming Niu Bingsen Zhang Botao Qiao Junhu Wang 《Chinese Chemical Letters》 2025年第4期256-263,共8页
Maintaining high metal dispersion of supported metal catalysts to achieve superior reactivity under harsh conditions poses one of the main challenges for their practical applications.Constructing and regulating the st... Maintaining high metal dispersion of supported metal catalysts to achieve superior reactivity under harsh conditions poses one of the main challenges for their practical applications.Constructing and regulating the strong metal-support interactions(SMSI)by diverse methodologies has emerged as one of the promising approaches to fabricating robust supported metal catalysts.In this study,we report an L-ascorbic acid(AA)-inducing strategy to generate SMSI on a titania-supported gold(Au)catalyst after high-temperature treatment in an inert atmosphere(600℃,N_(2)).The AA-induced SMSI can efficiently stabilize Au nanoparticles(NPs)and preserve their catalytic performance.The detailed study reveals that the key to realizing this SMSI is the generation of oxygen vacancies within the TiO_(2) support induced by the adsorbed AA,which drives the formation of the Ti Oxpermeable layer onto the Au NPs.The strategy could be extended to TiO_(2)-supported Au catalysts with different crystal phases and platinum group metals,such as Pt,Pd,and Rh.This work offers a promising novel route to design stable and efficient supported noble metal catalysts by constructing SMSI using simple reducing organic adsorbent. 展开更多
关键词 Supported metal catalyst ADSORBATE L-Ascorbic acid Oxygen vacancy Strong metal-support interaction
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Engineering spin polarization of encaging Co nanoparticles in atomic CoN_(x) sites evoke high valent Co species for boosting organic compound oxidation
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作者 Liang Zhang Jialiang Rui +4 位作者 Yiqian Li Zhizhi Yang Shiro Kubuki Junhu Wang Bofan Zhang 《Chinese Journal of Catalysis》 2025年第10期184-198,共15页
Precise manipulation of the catalytic spin configuration and delineation of the relationship between spin related properties and oxidation pathways remain significant challenges in Fenton-like processes.Herein,encapsu... Precise manipulation of the catalytic spin configuration and delineation of the relationship between spin related properties and oxidation pathways remain significant challenges in Fenton-like processes.Herein,encapsulated cobalt nanoparticles and cobalt-nitrogen-doped carbon moieties,endowed with confinement effects and variations in shell curvature were constructed via straightforward pyrolysis strategies,inducing alterations in magnetic anisotropy,electronic energy levels and spin polarization.The enhanced spin polarization at cobalt sites leads to a reduction in crystal field splitting energy and an increase in electronic spin density.This phenomenon facilitated electron transfer from cobalt orbitals to pz orbitals of oxygen species within peroxymonosulfate molecules,thereby promoting the formation of high-valent cobalt species.The encapsulation effectively stabilized cobalt nanoparticles,mitigating their dissolution or deactivation during reactions,which in turn enhances stability and durability in continuous flow processes.The high-valent cobalt species within the shell exhibit increased exposure and generate localized high concentrations,thereby intensifying interactions with migrating pollutants and enabling efficient and selective oxidation of emerging compounds with elevated redox potentials.This work underscores the profound impact of confined encapsulation curvature and spin polarization characteristics of metal sites on catalytic oxidation pathways and performance,opening novel avenues for spin engineering in practical environmental catalysis. 展开更多
关键词 Spin crossover Spin polarization Confined microstructure Oxidation pathway modulation Fenton-like reaction
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Solid phase microwave-assisted fabrication of Fe-doped ZIF-8 for single-atom Fe-N-C electrocatalysts on oxygen reduction 被引量:4
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作者 Xinlong Xu Xiaoming Zhang +6 位作者 Zhangxun Xia Ruili Sun Huanqiao Li Junhu Wang Shansheng Yu Suli Wang Gongquan Sun 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2021年第3期579-586,共8页
Fe-N-C endowed with inexpensiveness,high activity,and excellent anti-poisoning power have emerged as promising candidate catalysts for oxygen reduction reaction(ORR).Single-atom Fe-N-C electrocatalysts derived from Fe... Fe-N-C endowed with inexpensiveness,high activity,and excellent anti-poisoning power have emerged as promising candidate catalysts for oxygen reduction reaction(ORR).Single-atom Fe-N-C electrocatalysts derived from Fe-doped ZIF-8 represent the top-level ORR performance.However,the current fabrication of Fe-doped ZIF-8 relies on heavy consumption of time,energy,cost and organic solvents.Herein,we develop a rapid and solvent-free method to produce Fe-doped ZIF-8 under microwave irradiation,which can be easily amplified in combination with ball-milling.After rational pyrolysis,Fe-N-C catalysts with atomic FeN4 sites well dispersed on the hierarchically porous carbon matrix are obtained,which exhibit exceptional ORR performance with a half-wave potential of 0.782 V(vs.reversible hydrogen electrode(RHE))and brilliant methanol tolerance.The assembled direct methanol fuel cells(DMFCs)endow a peak power density of 61 mW cm^(-2) and extraordinary stability,highlighting the application perspective of this strategy. 展开更多
关键词 Microwave-assistant Zeolitic imidazolate framework-8 Fe single atoms ELECTROCATALYSTS Oxygen reduction reaction
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Catalytic upgrading of ethanol to butanol over a binary catalytic system of FeNiO_x and LiOH 被引量:1
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作者 Jifeng Pang Mingyuan Zheng +5 位作者 Zhinuo Wang Shimin Liu Xinsheng Li Xianquan Li Junhu Wang Tao Zhang 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2020年第4期672-678,共7页
Catalytic conversion of ethanol to butanol is vital to bridge the gap between huge amounts of ethanol production,the limited blending ratio of ethanol in gasoline,and the outstanding performance of butanol.In this wor... Catalytic conversion of ethanol to butanol is vital to bridge the gap between huge amounts of ethanol production,the limited blending ratio of ethanol in gasoline,and the outstanding performance of butanol.In this work,a highly active binary catalytic system of FeNiOx and LiOH was developed for upgrading of ethanol to butanol.After 24 h reaction at 493 K,the selectivity to butanol reached 71% with>90% high carbon alcohols at 28% ethanol conversion,which was comparable to the performance of some noble metal homogeneous catalysts. 展开更多
关键词 ETHANOL CATALYSIS BUTANOL Hydrogen transfer CONDENSATION
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Toward a comprehensive hypothesis of oxygen-evolution reaction in the presence of iron and gold
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作者 Negah Hashemi Jafar Hussain Shah +8 位作者 Cejun Hu Subhajit Nandy Pavlo Aleshkevych Sumbal Farid Keun Hwa Chae Wei Xie Taifeng Liu Junhu Wang Mohammad Mahdi Najafpour 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第2期172-183,I0005,共13页
This study investigates the effects of Fe on the oxygen-evolution reaction(OER)in the presence of Au.Two distinct areas of OER were identified:the first associated with Fe sites at low overpotential(~330 mV),and the s... This study investigates the effects of Fe on the oxygen-evolution reaction(OER)in the presence of Au.Two distinct areas of OER were identified:the first associated with Fe sites at low overpotential(~330 mV),and the second with Au sites at high overpotential(~870 mV).Various factors such as surface Fe concentration,electrochemical method,scan rate,potential range,concentration,method of adding K_(2)Fe O_(4),nature of Fe,and temperature were varied to observe diverse behaviors during OER for Fe O_(x)H_(y)/Au.Trace amounts of Fe ions had a significant impact on OER,reaching a saturation point where the activity did not increase further.Strong electronic interaction between Fe and Au ions was indicated by X-ray photoelectron spectroscopy(XPS)and electron paramagnetic resonance(EPR)analyses.In situ visible spectroscopy confirmed the formation of Fe O_(4)^(2-)during OER.In situ Mossbauer and surfaceenhanced Raman spectroscopy(SERS)analyses suggest the involvement of Fe-based species as intermediates during the rate-determining step of OER.A lattice OER mechanism based on Fe O_(x)H_(y)was proposed for operation at low overpotentials.Density functional theory(DFT)calculations revealed that Fe oxide,Fe-oxide clusters,and Fe doping on the Au foil exhibited different activities and stabilities during OER.The study provides insights into the interplay between Fe and Au in OER,advancing the understanding of OER mechanisms and offering implications for the design of efficient electrocatalytic systems. 展开更多
关键词 DFT calculation Fe/Au electrocatalysis Mechanism Oxygen evolution Water oxidation
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镍铁层状双金属氢氧化物在不同pH电解液体系中的析氧反应 被引量:4
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作者 谢起贤 任丹 +7 位作者 柏力晨 格日乐 周雯慧 白璐 谢微 王军虎 Michael Gratzel 罗景山 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 2023年第1期127-138,共12页
利用可再生电力驱动水分解提供了一种绿色和可持续的方式来生产氢气(H_(2)),而提高水分解效率的关键是开发高效的电催化剂.作为水分解反应的阴极,析氢反应(HER)仅需要两电子转移,目前的研究较为成熟.相比之下,析氧反应(OER)因涉及四个... 利用可再生电力驱动水分解提供了一种绿色和可持续的方式来生产氢气(H_(2)),而提高水分解效率的关键是开发高效的电催化剂.作为水分解反应的阴极,析氢反应(HER)仅需要两电子转移,目前的研究较为成熟.相比之下,析氧反应(OER)因涉及四个电子的转移,比HER过程更复杂.在众多析氧催化剂中,镍铁(NiFe)基电催化剂是碱性电解液体系中最佳的OER催化剂之一,然而其在中性及近中性体系中活性降低较多,从而限制了其在中性的海水电解及二氧化碳还原体系中的应用.目前,造成NiFe基催化剂在中性体系中性能较差的具体机制尚不清晰.文献报道,随着体系pH逐渐降低,NiFe基催化剂析氧性能也会随之变差;深入研究发现,碱性体系中更易于形成高价的Ni,Fe物质,但其是否对催化剂在水分解过程中有影响仍有待进一步研究.本文将电化学测试与原位光谱技术相结合,对镍铁层状双金属氢氧化物(NiFe LDH)在不同pH电解液体系中的析氧反应机理进行深入研究.电化学测试结果表明,随着pH值逐渐降低,NiFe LDH催化剂的析氧性能逐渐变差.原位表面增强拉曼光谱结果表明,不同pH电解液体系中NiOOH和“活性氧”物质的形成与施加的阳极电位有关,高价Ni物质在高pH电解液中更容易形成,而在中性及近中性体系中则需要较高的电位才可以形成.引入原位^(57)Fe穆斯堡尔谱以观察稳定阳极电位条件下Fe氧化态的变化,测试结果表明,高价的Fe^(4+)物质在碱性条件容易形成,而对于中性及近中性体系中,在高施加电位下仍旧难以形成Fe^(4+)物质.为探究高价态Ni,Fe是否影响NiFe基催化剂的析氧性能,利用电化学活化方法构筑了具有Ni^(3+)和Fe^(4+)物质的NiFe CVA_(500)(500圈CV循环)催化剂,保证其在不同的pH电解液体系中保持相同的初始反应状态.在对应pH体系中,电化学活化的NiFe CVA_(500)催化剂相较于原始的NiFe LDH性能有所提升,但在中性体系中的OER性能仍然低于碱性体系中的性能.基于电化学及原位光谱测量结果表明,Ni^(3+)和Fe^(4+)物质的形成并不是影响不同pH条件下OER性能的决定性因素.OER电化学性能、动力学研究和甲醇氧化实验结果发现,NiFe LDH在不同pH体系中的析氧反应决速步是不同的,在碱性电解液体系中,其决速步是从*O到*OOH,而中性体系中*OH的形成为决速步.综上,本文为阐明NiFe基催化剂在不同pH电解液体系中的OER反应机制提供了新的见解. 展开更多
关键词 镍铁层状双金属氢氧化物 析氧反应 原位表面增强拉曼光谱 原位57Fe穆斯堡尔光谱
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SnCl_(2)促进的Pt1/PS-PPh_(2)催化剂高选择性催化高碳烯烃氢甲酰化反应
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作者 虞周楠 张磊磊 +7 位作者 谈源龙 井日峥 曹宏晨 楼才溢 格日乐 王军虎 王爱琴 张涛 《Chinese Journal of Catalysis》 SCIE CAS CSCD 2024年第5期316-326,共11页
氢甲酰化作为工业上制备醛、醇等含氧化合物的重要反应,广泛应用于制备洗涤剂、增塑剂、表面活性剂和香料等.目前,氢甲酰化反应主要使用HCo(CO)_(4),HCo(CO)_(3)(PR_(3))和HRh(CO)(PPh_(3))_(2)等配合物作为催化剂.尽管Co基催化剂可以... 氢甲酰化作为工业上制备醛、醇等含氧化合物的重要反应,广泛应用于制备洗涤剂、增塑剂、表面活性剂和香料等.目前,氢甲酰化反应主要使用HCo(CO)_(4),HCo(CO)_(3)(PR_(3))和HRh(CO)(PPh_(3))_(2)等配合物作为催化剂.尽管Co基催化剂可以将高碳烯烃、内烯烃以及支链烯烃高选择性地转化为直链醛,但其反应条件(5-30 MPa,140-200℃)较苛刻,且容易发生烯烃加氢等副反应.相比之下,Rh催化剂的活性比Co基催化剂高1-2个数量级,且反应条件较为温和.但Rh储量稀少,价格昂贵,而且对于高碳烯烃氢甲酰化反应,Rh催化剂难以分离和循环使用.因此,研究者开展了其他金属催化剂的研究,其中Pt-Sn催化剂因其出色的区域选择性而备受关注.但目前Pt-Sn催化剂多局限于均相催化体系,而且Sn助剂的作用尚不明确.本文采用商业化三苯基膦嫁接的聚苯乙烯小球为载体,通过浸渍法制备了SnCl_(2)-Pt_(1)/PS-PPh_(2)单原子催化剂,考察了其在长链-烯烃氢甲酰化反应中的催化性能,并研究了Sn的促进作用.首先,以1-己烯氢甲酰化为探针反应,对催化剂的组成以及反应条件进行了优化.当Pt/P/Sn=1/2/5时,催化剂表现出最高的催化活性,在90-120℃和4-6 MPa合成气条件下,催化剂转化频率(TOF)为40 h^(-1),产物醛的正异比>42.随后,考察了催化剂的底物适用性.结果表明,C6-C12的高碳烯烃均可被高选择性地转化为相应的醛(正异比>20).然而,在循环使用实验中,由于SnCl_(2)不能稳定锚定在载体上,第二次循环时催化活性降低.但通过补加SnCl_(2),催化活性可以完全恢复.高压热过滤实验及元素检测结果表明,反应过程中Pt没有流失.X射线吸收光谱(XAFS)表征结果表明,反应后Pt仍以单原子形式存在,说明Pt1/PS-PPh_(2)具有良好的稳定性.通过准原位X-射线吸收谱、Mössbauer谱和红外光谱表征对反应过程中Pt和Sn的电子性质和配位结构进行了研究.结果表明,SnCl_(2)在反应过程中逐渐转化为Sn(dioxane)Cl3-物种(1,4-二氧六环为反应溶剂),并与Pt原子形成Pt-Sn键.当反应体系中没有Sn时,Pt(II)会被合成气过度还原并发生团聚.当没有膦配体时,Pt原子也会发生聚集,而且SnCl_(2)会在Pt(II)的催化作用下发生水解生成SnO.因此Sn(dioxane)Cl3-与膦配体共同抑制了Pt(I)在反应过程中的还原与聚集.最后,通过XAFS表征深入研究了反应机理.分析结果表明,CO在催化剂上具有较强的吸附作用,而H_(2)则可能以异裂的方式在催化剂上被活化.据此提出可能的反应机理:首先,H_(2)在催化剂上活化先形成Pt-H物种;随后,烯烃插入Pt-H,形成Pt-烷基物种;接着,CO迁移并插入,生成Pt-酰基物种;最后,经过还原消除步骤,得到最终的产物醛.综上,本文制备了一种对高碳烯烃氢甲酰化反应具有良好催化性能的SnCl_(2)-Pt1/PS-PPh_(2)单原子催化剂,为低成本非Rh基催化剂的开发提供借鉴.同时,揭示了催化体系中Sn的促进作用,为通过Lewis酸来调控催化剂的性能提供了参考. 展开更多
关键词 氢甲酰化反应 铂-锡催化剂 高碳烯烃 区域选择性 单原子催化剂
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