The exploration of sustainable energy utilization requires the imple-mentation of advanced electrochemical devices for efficient energy conversion and storage,which are enabled by the usage of cost-effective,high-perf...The exploration of sustainable energy utilization requires the imple-mentation of advanced electrochemical devices for efficient energy conversion and storage,which are enabled by the usage of cost-effective,high-performance electro-catalysts.Currently,heterogeneous atomically dispersed catalysts are considered as potential candidates for a wide range of applications.Compared to conventional cata-lysts,atomically dispersed metal atoms in carbon-based catalysts have more unsatu-rated coordination sites,quantum size effect,and strong metal-support interactions,resulting in exceptional catalytic activity.Of these,dual-atomic catalysts(DACs)have attracted extensive attention due to the additional synergistic effect between two adja-cent metal atoms.DACs have the advantages of full active site exposure,high selectiv-ity,theoretical 100%atom utilization,and the ability to break the scaling relationship of adsorption free energy on active sites.In this review,we summarize recent research advancement of DACs,which includes(1)the comprehensive understanding of the synergy between atomic pairs;(2)the synthesis of DACs;(3)characterization meth-ods,especially aberration-corrected scanning transmission electron microscopy and synchrotron spectroscopy;and(4)electrochemical energy-related applications.The last part focuses on great potential for the electrochemical catalysis of energy-related small molecules,such as oxygen reduction reaction,CO_(2) reduction reaction,hydrogen evolution reaction,and N_(2) reduction reaction.The future research challenges and opportunities are also raised in prospective section.展开更多
Nitrogen(N)-doped carbon materials as metal catalyst supports have attracted signifi cant attention,but the eff ect of N dopants on catalytic performance remains unclear,especially for complex reaction processes such ...Nitrogen(N)-doped carbon materials as metal catalyst supports have attracted signifi cant attention,but the eff ect of N dopants on catalytic performance remains unclear,especially for complex reaction processes such as Fischer-Tropsch synthesis(FTS).Herein,we engineered ruthenium(Ru)FTS catalysts supported on N-doped carbon overlayers on TiO_(2)nanoparticles.By regulating the carbonization temperatures,we successfully controlled the types and contents of N dopants to identify their impacts on metal-support interactions(MSI).Our fi ndings revealed that N dopants establish a favorable surface environment for electron transfer from the support to the Ru species.Moreover,pyridinic N demonstrates the highest electron-donating ability,followed by pyrrolic N and graphitic N.In addition to realizing excellent catalytic stability,strengthening the interaction between Ru sites and N dopants increases the Ru^(0)/Ru^(δ+)ratios to enlarge the active site numbers and surface electron density of Ru species to enhance the strength of adsorbed CO.Consequently,it improves the catalyst’s overall performance,encompassing intrinsic and apparent activities,as well as its ability for carbon chain growth.Accordingly,the as-synthesized Ru/TiO_(2)@CN-700 catalyst with abundant pyridine N dopants exhibits a superhigh C_(5+)time yield of 219.4 mol CO/(mol Ru·h)and C_(5+)selectivity of 85.5%.展开更多
It is urgent to develop catalysts with application potential for oxidative coupling of methane(OCM)at relatively lower temperature.Herein,three-dimensional ordered macro porous(3 DOM)La_(2-x)Sr_(x)Ce_(2-y)CayO_(7-δ)(...It is urgent to develop catalysts with application potential for oxidative coupling of methane(OCM)at relatively lower temperature.Herein,three-dimensional ordered macro porous(3 DOM)La_(2-x)Sr_(x)Ce_(2-y)CayO_(7-δ)(A_(2)B_(2)O_(7)-type)catalysts with disordered defective cubic fluorite phased structure were successfully prepared by a colloidal crystal template method.3DOM structure promotes the accessibility of the gaseous reactants(O2and CH4)to the active sites.The co-doping of Ca and Sr ions in La_(2-x)Sr_(x)Ce_(2-y)CayO_(7-δ)catalysts improved the formation of oxygen vacancies,thereby leading to increased density of surface-active oxygen species(O_(2)^(-))for the activation of CH4and the formation of C2products(C2H6and C2H4).3DOM La_(2-x)Sr_(x)Ce_(2-y)CayO_(7-δ)catalysts exhibit high catalytic activity for OCM at low temperature.3DOM La1.7Sr0.3Ce1.7Ca0.3O7-δcatalyst with the highest density of O_(2)^(-)species exhibited the highest catalytic activity for low-temperature OCM,i.e.,its CH4conversion,selectivity and yield of C2products at 650℃are 32.2%,66.1%and 21.3%,respectively.The mechanism was proposed that the increase in surface oxygen vacancies induced by the co-doping of Ca and Sr ions boosts the key step of C-H bond breaking and C-C bond coupling in catalyzing low-temperature OCM.It is meaningful for the development of the low-temperature and high-efficient catalysts for OCM reaction in practical application.展开更多
Platinum/cerium-zirconium-sulfate(Pt/Ce-Zr-SO_4^(2-)) catalysts were prepared by wetness impregnation.Catalytic activities were evaluated from the combustion of propene and CO.Sulfate(SO_4^(2-))addition improv...Platinum/cerium-zirconium-sulfate(Pt/Ce-Zr-SO_4^(2-)) catalysts were prepared by wetness impregnation.Catalytic activities were evaluated from the combustion of propene and CO.Sulfate(SO_4^(2-))addition improved the catalytic activity significantly.When using Pt/Ce-Zr-SO_4^(2-) with 10 wt%SO_4^(2-),the temperature for 90%conversion of propene and CO decreased by 75℃ compared with Pt/Ce-Zr.The conversion exceeded 95%at 240℃ even after 0.02%sulfur dioxide poisoning for 20 h.Temperature-programmed desorption of CO and X-ray photoelectron spectroscopy analyses revealed an improvement in Pt dispersion onto the Ce-Zr-SO_4^(2-) support,and the increased number of Pt particles built up more Pt^(-)-(SO_4^(2-))^(-) couples,which resulted in excellent activity.The increased total acidity and new Bronsted acid sites on the surface provided the Pt/Ce-Zr-SO_4^(2-) with good sulfur resistance.展开更多
目的探讨并分析急性非ST段抬高心肌梗死(NSTEMI)患者经皮冠状动脉介入治疗(PCI)术后血清纤维蛋白原/白蛋白值(FAR)、γ-谷氨酰转肽酶(γ-GGT),N端脑钠肽前体(NT-proBNP)水平对预后的预测价值。方法回顾性分析2020年2月至2023年2月邯郸...目的探讨并分析急性非ST段抬高心肌梗死(NSTEMI)患者经皮冠状动脉介入治疗(PCI)术后血清纤维蛋白原/白蛋白值(FAR)、γ-谷氨酰转肽酶(γ-GGT),N端脑钠肽前体(NT-proBNP)水平对预后的预测价值。方法回顾性分析2020年2月至2023年2月邯郸市中心医院收治的实施PCI的急性NSTEMI患者93例,根据术后30 d主要不良心血管事件(MACE)发生情况将其分为MACE组(n=21)及无MACE组(n=72)。比较术前、术后30 d MACE组及无MACE组血清FAR、γ-GGT、NT-proBNP水平,采用单因素和多因素Logistic回归分析对影响急性NSTEMI患者术后30 d MACE发生的危险因素进行分析,采用受试者操作特征(ROC)曲线分析血清FAR、γ-GGT、NT-proBNP水平对急性NSTEMI患者术后MACE发生的预测价值。结果MACE组年龄为(65.37±3.46)岁;Killip分级为Ⅰ级2例,Ⅱ级3例,Ⅲ级5例,Ⅳ级11例;病变支数双支5例,3支16例;术后30 d血清FAR、γ-GGT、NT-proBNP水平分别为(2.87±0.55)%、(53.27±3.06)U/L、(914.35±84.35)ng/mL。无MACE组的年龄为(58.71±2.86)岁;Killip分级为Ⅰ级32例,Ⅱ级27例,Ⅲ级7例,Ⅳ级6例;病变支数为双支53例,3支19例;术后30 d血清FAR、γ-GGT、NT-proBNP水平分别为(2.12±0.51)%、(44.33±3.35)U/L、(656.82±75.63)ng/mL。MACE组和无MACE组的年龄、Killip分级、病变支数及术后30 d血清FAR、γ-GGT、NT-proBNP水平比较,差异均有统计学意义(P<0.05),两组性别、吸烟史、高血压史、高血脂史、糖尿病史及术前1 d血清FAR、γ-GGT、NT-proBNP水平比较差异无统计学意义(P>0.05)。多因素Logistic回归分析结果显示,血清FAR、γ-GGT、NT-proBNP升高均为影响急性期NSTEMI患者术后MACE发生的独立危险因素(OR=3.074、2.686、3.340,P均<0.05)。ROC结果显示血清FAR、γ-GGT、NT-proBNP及其联合检测预测急性NSTEMI患者术后MACE发生的曲线下面积(AUC)分别为0.681、0.690、0.733和0.790,联合检测的AUC更高(P<0.05)。结论血清FAR、γ-GGT、NT-proBNP水平升高增加了急性NSTEMI患者PCI术后MACE的发生风险,三者联合检测对患者术后不良预后有一定预测价值。展开更多
基金This work was financially supported by the National Key Research and Development Program of China(2018YFA0702002)the Beijing Natural Science Foundation(Z210016)+1 种基金the National Natural Science Foundation of China(51967020,21935001)Shanxi Energy Internet Research Institute(SXEI 2023A004).
文摘The exploration of sustainable energy utilization requires the imple-mentation of advanced electrochemical devices for efficient energy conversion and storage,which are enabled by the usage of cost-effective,high-performance electro-catalysts.Currently,heterogeneous atomically dispersed catalysts are considered as potential candidates for a wide range of applications.Compared to conventional cata-lysts,atomically dispersed metal atoms in carbon-based catalysts have more unsatu-rated coordination sites,quantum size effect,and strong metal-support interactions,resulting in exceptional catalytic activity.Of these,dual-atomic catalysts(DACs)have attracted extensive attention due to the additional synergistic effect between two adja-cent metal atoms.DACs have the advantages of full active site exposure,high selectiv-ity,theoretical 100%atom utilization,and the ability to break the scaling relationship of adsorption free energy on active sites.In this review,we summarize recent research advancement of DACs,which includes(1)the comprehensive understanding of the synergy between atomic pairs;(2)the synthesis of DACs;(3)characterization meth-ods,especially aberration-corrected scanning transmission electron microscopy and synchrotron spectroscopy;and(4)electrochemical energy-related applications.The last part focuses on great potential for the electrochemical catalysis of energy-related small molecules,such as oxygen reduction reaction,CO_(2) reduction reaction,hydrogen evolution reaction,and N_(2) reduction reaction.The future research challenges and opportunities are also raised in prospective section.
基金the financial support from by the National Key Research and Development Program of China(No.2022YFB4101800)National Natural Science Foundation of China(No.22278298)Program for Introducing Talents of Discipline to Universities of China(No.BP0618007).
文摘Nitrogen(N)-doped carbon materials as metal catalyst supports have attracted signifi cant attention,but the eff ect of N dopants on catalytic performance remains unclear,especially for complex reaction processes such as Fischer-Tropsch synthesis(FTS).Herein,we engineered ruthenium(Ru)FTS catalysts supported on N-doped carbon overlayers on TiO_(2)nanoparticles.By regulating the carbonization temperatures,we successfully controlled the types and contents of N dopants to identify their impacts on metal-support interactions(MSI).Our fi ndings revealed that N dopants establish a favorable surface environment for electron transfer from the support to the Ru species.Moreover,pyridinic N demonstrates the highest electron-donating ability,followed by pyrrolic N and graphitic N.In addition to realizing excellent catalytic stability,strengthening the interaction between Ru sites and N dopants increases the Ru^(0)/Ru^(δ+)ratios to enlarge the active site numbers and surface electron density of Ru species to enhance the strength of adsorbed CO.Consequently,it improves the catalyst’s overall performance,encompassing intrinsic and apparent activities,as well as its ability for carbon chain growth.Accordingly,the as-synthesized Ru/TiO_(2)@CN-700 catalyst with abundant pyridine N dopants exhibits a superhigh C_(5+)time yield of 219.4 mol CO/(mol Ru·h)and C_(5+)selectivity of 85.5%.
基金supported by the National Key Research and Development Program of China(Nos.2022YFB3504100,2022YFB3506200)the National Natural Science Foundation of China(Nos.22208373,22376217)+1 种基金the Beijing Nova Program(No.20220484215)the Science Foundation of China University of Petroleum,Beijing(No.2462023YJRC030)。
文摘It is urgent to develop catalysts with application potential for oxidative coupling of methane(OCM)at relatively lower temperature.Herein,three-dimensional ordered macro porous(3 DOM)La_(2-x)Sr_(x)Ce_(2-y)CayO_(7-δ)(A_(2)B_(2)O_(7)-type)catalysts with disordered defective cubic fluorite phased structure were successfully prepared by a colloidal crystal template method.3DOM structure promotes the accessibility of the gaseous reactants(O2and CH4)to the active sites.The co-doping of Ca and Sr ions in La_(2-x)Sr_(x)Ce_(2-y)CayO_(7-δ)catalysts improved the formation of oxygen vacancies,thereby leading to increased density of surface-active oxygen species(O_(2)^(-))for the activation of CH4and the formation of C2products(C2H6and C2H4).3DOM La_(2-x)Sr_(x)Ce_(2-y)CayO_(7-δ)catalysts exhibit high catalytic activity for OCM at low temperature.3DOM La1.7Sr0.3Ce1.7Ca0.3O7-δcatalyst with the highest density of O_(2)^(-)species exhibited the highest catalytic activity for low-temperature OCM,i.e.,its CH4conversion,selectivity and yield of C2products at 650℃are 32.2%,66.1%and 21.3%,respectively.The mechanism was proposed that the increase in surface oxygen vacancies induced by the co-doping of Ca and Sr ions boosts the key step of C-H bond breaking and C-C bond coupling in catalyzing low-temperature OCM.It is meaningful for the development of the low-temperature and high-efficient catalysts for OCM reaction in practical application.
基金supported by the National Natural Science Foundation of China(21506194,21676255)the Provincial Natural Science Foundation of Zhejiang Province(LY16B070011)the Commission of Science and Technology of Zhejiang Province(2017C33106,2017C03007)~~
文摘Platinum/cerium-zirconium-sulfate(Pt/Ce-Zr-SO_4^(2-)) catalysts were prepared by wetness impregnation.Catalytic activities were evaluated from the combustion of propene and CO.Sulfate(SO_4^(2-))addition improved the catalytic activity significantly.When using Pt/Ce-Zr-SO_4^(2-) with 10 wt%SO_4^(2-),the temperature for 90%conversion of propene and CO decreased by 75℃ compared with Pt/Ce-Zr.The conversion exceeded 95%at 240℃ even after 0.02%sulfur dioxide poisoning for 20 h.Temperature-programmed desorption of CO and X-ray photoelectron spectroscopy analyses revealed an improvement in Pt dispersion onto the Ce-Zr-SO_4^(2-) support,and the increased number of Pt particles built up more Pt^(-)-(SO_4^(2-))^(-) couples,which resulted in excellent activity.The increased total acidity and new Bronsted acid sites on the surface provided the Pt/Ce-Zr-SO_4^(2-) with good sulfur resistance.
文摘目的探讨并分析急性非ST段抬高心肌梗死(NSTEMI)患者经皮冠状动脉介入治疗(PCI)术后血清纤维蛋白原/白蛋白值(FAR)、γ-谷氨酰转肽酶(γ-GGT),N端脑钠肽前体(NT-proBNP)水平对预后的预测价值。方法回顾性分析2020年2月至2023年2月邯郸市中心医院收治的实施PCI的急性NSTEMI患者93例,根据术后30 d主要不良心血管事件(MACE)发生情况将其分为MACE组(n=21)及无MACE组(n=72)。比较术前、术后30 d MACE组及无MACE组血清FAR、γ-GGT、NT-proBNP水平,采用单因素和多因素Logistic回归分析对影响急性NSTEMI患者术后30 d MACE发生的危险因素进行分析,采用受试者操作特征(ROC)曲线分析血清FAR、γ-GGT、NT-proBNP水平对急性NSTEMI患者术后MACE发生的预测价值。结果MACE组年龄为(65.37±3.46)岁;Killip分级为Ⅰ级2例,Ⅱ级3例,Ⅲ级5例,Ⅳ级11例;病变支数双支5例,3支16例;术后30 d血清FAR、γ-GGT、NT-proBNP水平分别为(2.87±0.55)%、(53.27±3.06)U/L、(914.35±84.35)ng/mL。无MACE组的年龄为(58.71±2.86)岁;Killip分级为Ⅰ级32例,Ⅱ级27例,Ⅲ级7例,Ⅳ级6例;病变支数为双支53例,3支19例;术后30 d血清FAR、γ-GGT、NT-proBNP水平分别为(2.12±0.51)%、(44.33±3.35)U/L、(656.82±75.63)ng/mL。MACE组和无MACE组的年龄、Killip分级、病变支数及术后30 d血清FAR、γ-GGT、NT-proBNP水平比较,差异均有统计学意义(P<0.05),两组性别、吸烟史、高血压史、高血脂史、糖尿病史及术前1 d血清FAR、γ-GGT、NT-proBNP水平比较差异无统计学意义(P>0.05)。多因素Logistic回归分析结果显示,血清FAR、γ-GGT、NT-proBNP升高均为影响急性期NSTEMI患者术后MACE发生的独立危险因素(OR=3.074、2.686、3.340,P均<0.05)。ROC结果显示血清FAR、γ-GGT、NT-proBNP及其联合检测预测急性NSTEMI患者术后MACE发生的曲线下面积(AUC)分别为0.681、0.690、0.733和0.790,联合检测的AUC更高(P<0.05)。结论血清FAR、γ-GGT、NT-proBNP水平升高增加了急性NSTEMI患者PCI术后MACE的发生风险,三者联合检测对患者术后不良预后有一定预测价值。