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探究Cu/ZnO相互作用对CO_(2)加氢制甲醇反应性能的影响 被引量:5
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作者 李聪明 陈阔 +2 位作者 王晓月 薛楠 杨恒权 《物理化学学报》 SCIE CAS CSCD 北大核心 2021年第5期201-212,共12页
利用可再生绿氢和二氧化碳生产甲醇是未来解决二氧化碳排放的根本途径之一,而研发高效稳定的甲醇合成催化剂是决定整个合成工艺的关键因素之一。负载型催化剂(金属纳米颗粒负载在载体表面)在甲醇合成反应中占有重要地位,而金属-载体相... 利用可再生绿氢和二氧化碳生产甲醇是未来解决二氧化碳排放的根本途径之一,而研发高效稳定的甲醇合成催化剂是决定整个合成工艺的关键因素之一。负载型催化剂(金属纳米颗粒负载在载体表面)在甲醇合成反应中占有重要地位,而金属-载体相互作用常被用来稳定金属颗粒,调控催化剂活性、选择性和稳定性。尽管对金属–载体相互作用进行了大量研究,但是关于不同强度金属–载体相互作用对催化剂的结构和性能影响的理解仍然是匮乏的。本工作合成了三种具有不同强度金属–载体相互作用的Cu/ZnO-SiO_(2)催化剂,探究了其对CO_(2)加氢制甲醇反应性能的影响。H2-TPR和XPS表征结果表明,通过改变沉淀顺序可以调变Cu/ZnO-SiO_(2)催化剂中金属–载体相互作用,FT-IR结果证实了Cu物种均以CuO的形式存在。TEM、XRD和N2O化学吸附结果表明Cu/ZnO强的相互作用促进了Cu物种的分散,提高了CO_(2)转化率和催化剂的稳定性。正如预期,Re-CZS催化剂实现了最高的CO_(2)转化率(12.4%),而Co-CZS催化剂与Nor-CZS催化剂的CO_(2)转化率分别为12.1%和9.8%。反应相同时间后,标准化的CO_(2)转化率降低顺序是:Re-CZS(75%)>Co-CZS(70%)>Nor-CZS(65%)。与Co-CZS和Nor-CZS催化剂不同,Re-CZS催化剂的甲醇选择性随着反应进行逐步增加而后趋于稳定。对该催化剂在反应过程中的结构演变进行表征,结果显示,Re-CZS催化剂Cu/ZnO间强的相互作用引起了催化剂结构重构,促使体相中的ZnO物种向催化剂表面Cu物种迁移,形成了更多的Cu/ZnO界面,有利于甲醇的生成。本工作为合理设计有效催化剂提供一个可行策略。 展开更多
关键词 Cu/ZnO-SiO_(2)催化剂 金属–载体相互作用 CO_(2)加氢 甲醇
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Pt-MOx/CeO_(2)水相重整催化剂上氧化物助剂对于水气变换反应的促进作用研究 被引量:2
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作者 张伟杰 田志鹏 +6 位作者 黄嘉豪 王珺瑶 罗向龙 王超 舒日洋 刘建平 陈颖 《燃料化学学报(中英文)》 EI CAS CSCD 北大核心 2023年第12期1791-1804,共14页
甲醇水相重整是一种在相对温和条件下的有效产氢路径。采用分步浸渍法制备Pt/CeO_(2)和Pt-MO_(x)/CeO_(2)(M=Fe、Cr、Mg、Mn)系列催化剂,并对其反应性能进行了研究。采用XPS、XRD、TEM、CO-TPD、NH_(3)-TPD、CO_(2)-TPD等表征手段对催... 甲醇水相重整是一种在相对温和条件下的有效产氢路径。采用分步浸渍法制备Pt/CeO_(2)和Pt-MO_(x)/CeO_(2)(M=Fe、Cr、Mg、Mn)系列催化剂,并对其反应性能进行了研究。采用XPS、XRD、TEM、CO-TPD、NH_(3)-TPD、CO_(2)-TPD等表征手段对催化剂的金属价态、氧空位数量、金属粒子分布、CO吸附性能和催化剂的酸/碱性等性质进行表征和分析。通过关联结果表明,MO_(x)的加入削弱了Pt-CeO_(2)间的相互作用,促进了价态较低的Ptδ+的生成,这有助于C–H键的裂解,促进甲醇的转化。Pt-MgO/CeO_(2)上的产氢量最高(164.78 mmol),CO和CH_(4)选择性相对较低,而Pt-CrO_(x)/CeO_(2)上的CH_(4)选择性最高(2.21%)。对于Pt/CeO_(2)和Pt-MO_(x)/CeO_(2)(M=Fe、Cr、Mg、Mn)催化剂的产物选择性而言,CO_(2)/CH_(4)比与催化剂碱度相关性较好,说明碱度促进了水分子的解离吸附和水气变换反应活性,降低了甲烷化活性。 展开更多
关键词 WGS反应 碱度 液相重整 金属–载体相互作用
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Research progress on metal-support interactions over Ni-based catalysts for CH_(4)-CO_(2)reforming reaction
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作者 SUN Kai JIANG Jianfei +4 位作者 LIU Zixuan GENG Shiqi LIU Zhenmin YANG Jiaqian LI Shasha 《燃料化学学报(中英文)》 北大核心 2025年第4期434-451,共18页
With ongoing global warming and increasing energy demands,the CH_(4)-CO_(2)reforming reaction(dry reforming of methane,DRM)has garnered significant attention as a promising carbon capture and utilization technology.Ni... With ongoing global warming and increasing energy demands,the CH_(4)-CO_(2)reforming reaction(dry reforming of methane,DRM)has garnered significant attention as a promising carbon capture and utilization technology.Nickel-based catalysts are renowned for their outstanding activity and selectivity in this process.The impact of metal-support interaction(MSI),on Ni-based catalyst performance has been extensively researched and debated recently.This paper reviews the recent research progress of MSI on Ni-based catalysts and their characterization and modulation strategies in catalytic reactions.From the perspective of MSI,the effects of different carriers(metal oxides,carbon materials and molecular sieves,etc.)are introduced on the dispersion and surface structure of Ni active metal particles,and the effect of MSI on the activity and stability of DRM reactions on Ni-based catalysts is discussed in detail.Future research should focus on better understanding and controlling MSI to improve the performance and durability of nickel-based catalysts in CH_(4)-CO_(2)reforming,advancing cleaner energy technologies. 展开更多
关键词 CO_(2)utilization CH_(4)-CO_(2)reforming Ni-based catalysts metal-support interactions supports
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Strong electronic metal-support interactions for enhanced hydroformylation activity and stability over Rh single-atom catalysts through phosphorus doping
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作者 Boyang Fu Ping Ma +11 位作者 Xiaoyang Ding Kaifu Cai Limin Sun Yujin Zhu Qiwei Yin Yihao Sun Tianle Liu Yuzhen Li Yuxing Xu Jian Gu Haowen Ma Junling Lu 《中国科学技术大学学报》 北大核心 2025年第3期2-10,1,I0001,共11页
By simplifying catalyst-product separation and reducing phosphorus waste,heterogeneous hydroformylation offers a more sustainable alternative to homogeneous processes.However,heterogeneous hydroformylation catalysts d... By simplifying catalyst-product separation and reducing phosphorus waste,heterogeneous hydroformylation offers a more sustainable alternative to homogeneous processes.However,heterogeneous hydroformylation catalysts developed thus far still suffer from the issues of much lower activity and metal leaching,which severely hinder their practical application.Here,we demonstrate that incorporating phosphorus(P)atoms into graphitic carbon nitride(PCN)supports facilitates charge transfer from Rh to the PCN support,thus largely enhancing electronic metal-support interactions(EMSIs).In the styrene hydroformylation reaction,the activity of Rh_(1)/PCN single-atom catalysts(SACs)with varying P contents exhibited a volcano-shaped relationship with P doping,where the Rh_(1)/PCN SAC with optimal P doping showed exceptional activity,approximately 5.8-and 3.3-fold greater than that of the Rh_(1)/g-C_(3)N_(4)SAC without P doping and the industrial homogeneous catalyst HRh(CO)(PPh_(3))_(3),respectively.In addition,the optimal Rh_(1)/PCN SAC catalyst also demonstrated largely enhanced multicycle stability without any visible metal aggregation owing to the increased EMSIs,which sharply differed from the severe metal aggregation of large nanoparticles on the Rh_(1)/g-C_(3)N_(4)SAC.Mechan-istic studies revealed that the enhanced catalytic performance could be attributed to electron-deficient Rh species,which reduced CO adsorption while simultaneously promoting alkene adsorption through increased EMSIs.These findings suggest that tuning EMSIs is an effective way to achieve SACs with high activity and durability. 展开更多
关键词 heterogeneous hydroformylation Rh single-atom catalysts electronic metal-support interactions phosphorus doping
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Regulating crystal phase of TiO_(2) to enhance catalytic activity of Ni/TiO_(2) for solar-driven dry reforming of methane 被引量:2
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作者 HE Zhanjun GONG Kun +3 位作者 DAI Yuanyuan NIU Qiang LIN Tiejun ZHONG Liangshu 《燃料化学学报(中英文)》 EI CAS CSCD 北大核心 2024年第9期1203-1213,共11页
Ni/TiO_(2) catalyst is widely employed for photo-driven DRM reaction while the influence of crystal structure of TiO_(2) remains unclear.In this work,the rutile/anatase ratio in supports was successfully controlled by... Ni/TiO_(2) catalyst is widely employed for photo-driven DRM reaction while the influence of crystal structure of TiO_(2) remains unclear.In this work,the rutile/anatase ratio in supports was successfully controlled by varying the calcination temperature of anatase-TiO_(2).Structural characterizations revealed that a distinct TiO_(x) coating on the Ni nanoparticles(NPs)was evident for Ni/TiO_(2)-700 catalyst due to strong metal-support interaction.It is observed that the TiOx overlayer gradually disappeared as the ratio of rutile/anatase increased,thereby enhancing the exposure of Ni active sites.The exposed Ni sites enhanced visible light absorption and boosted the dissociation capability of CH4,which led to the much elevated catalytic activity for Ni/TiO_(2)-950 in which rutile dominated.Therefore,the catalytic activity of solar-driven DRM reaction was significantly influenced by the rutile/anatase ratio.Ni/TiO_(2)-950,characterized by a predominant rutile phase,exhibited the highest DRM reactivity,with remarkable H_(2) and CO production rates reaching as high as 87.4 and 220.2 mmol/(g·h),respectively.These rates were approximately 257 and 130 times higher,respectively,compared to those obtained on Ni/TiO_(2)-700 with anatase.This study suggests that the optimization of crystal structure of TiO_(2) support can effectively enhance the performance of photothermal DRM reaction. 展开更多
关键词 dry reforming of methane photothermal catalysis crystal phase TiO_(2) metal-support interaction
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Electrochemical-Method-Induced Strong Metal-Support Interaction in Pt-CNT@SnO_(2) for CO-Tolerant Hydrogen Oxidation Reaction
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作者 Shen-Zhou Li Zi-Jie Lin +2 位作者 Qi-An Chen Zhao Cai Qing Li 《电化学(中英文)》 北大核心 2024年第12期28-38,共11页
Inducing the classic strong metal-support interaction(SMSI)is an effective approach to enhance the performance of supported metal catalysts by encapsulating the metal nanoparticles(NPs)with supports.Conventional therm... Inducing the classic strong metal-support interaction(SMSI)is an effective approach to enhance the performance of supported metal catalysts by encapsulating the metal nanoparticles(NPs)with supports.Conventional thermal reduction method for inducing SMSI processes is often accompanied by undesirable structural evolution of metal NPs.In this study,a mild electrochemical method has been developed as a new approach to induce SMSI,using the cable structured core@shell CNT@SnO_(2) loaded Pt NPs as a proof of concept.The induced SnO_(x) encapsulation layer on the surface of Pt NPs can protect Pt NPs from the poisoned of CO impurity in hydrogen oxidation reaction(HOR),and the HOR current density could still maintain 85% for 2000 s with 10,000 ppm CO in H_(2),while the commercial Pt/C is completely inactivated.In addition,the electrons transfer from SnO_(x) to Pt NPs improved the HOR activity of the E-Pt-CNT@SnO_(2),achieving the excellent exchange current density of 1.55 A·mgPt^(-1).In situ Raman spectra and theoretical calculations show that the key to the electrochemical-method-induced SMSI is the formation of defects and the migration of SnO_(x) caused by the electrochemical redox operation,and the weakening the SneO bond strength by Pt NPs. 展开更多
关键词 Strong metal-support interaction Pt Supported metal catalyst Hydrogen oxidation reaction CO tolerance
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