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Tuning Structural and Electronic Configuration of FeN_(4) via External S for Enhanced Oxygen Reduction Reaction
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作者 Shidong Li Lixue Xia +9 位作者 Jiantao Li Zhuo Chen Wei Zhang Jiexin Zhu Ruohan Yu Fang Liu Sungsik Lee Yan Zhao Liang Zhou Liqiang Mai 《Energy & Environmental Materials》 SCIE EI CAS CSCD 2024年第2期93-101,共9页
The Fe-N-C material represents an attractive oxygen reduction reaction electrocatalyst,and the FeN_(4)moiety has been identified as a very competitive catalytic active site.Fine tuning of the coordination structure of... The Fe-N-C material represents an attractive oxygen reduction reaction electrocatalyst,and the FeN_(4)moiety has been identified as a very competitive catalytic active site.Fine tuning of the coordination structure of FeN_(4)has an essential impact on the catalytic performance.Herein,we construct a sulfur-modified Fe-N-C catalyst with controllable local coordination environment,where the Fe is coordinated with four in-plane N and an axial external S.The external S atom affects not only the electron distribution but also the spin state of Fe in the FeN_(4)active site.The appearance of higher valence states and spin states for Fe demonstrates the increase in unpaired electrons.With the above characteristics,the adsorption and desorption of the reactants at FeN_(4)active sites are optimized,thus promoting the oxygen reduction reaction activity.This work explores the key point in electronic configuration and coordination environment tuning of FeN_(4)through S doping and provides new insight into the construction of M-N-C-based oxygen reduction reaction catalysts. 展开更多
关键词 coordination structure electronic configuration FeN_(4)moiety oxygen reduction reaction sulfur doping
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Pre-reduction of WO_(3)-Co_(3)O_(4)by H_(2)-C_(2)H_4 in a fluidized bed
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作者 Huijun Shang Hengli Li +2 位作者 Weijun Li Feng Pan Zhan Du 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2024年第2期273-284,共12页
In order to avoid the formation ofηphase(W_(6)Co_(6)C or W_(3)Co_(3)C)that adversely affects the sintering process and its products in the preparation process of ultra-fine WC-Co powder,a technical route of prereduct... In order to avoid the formation ofηphase(W_(6)Co_(6)C or W_(3)Co_(3)C)that adversely affects the sintering process and its products in the preparation process of ultra-fine WC-Co powder,a technical route of prereduction of WO_(3)-Co_(3)O_(4)to WO_(2)-Co and then deep reduction carbonization to WC-Co powder has been proposed.This study mainly investigates the influence of gas partial pressure on the pre-reduction process of WO_(3)-Co_(3)O_(4)under a mixed atmosphere of H_(2)-C_(2)H_(4)-Ar at 600℃and establishes the kinetic equations of pre-reduction and carbon evolution.The results indicate that increasing the partial pressure of hydrogen is conducive to the rapid and complete conversion of WO_(3) to WO_(2).High carbon content can be generated by the deposition of C_(2)H_(4),and it hinders the diffusion of the reducing gas;WO_(3)still cannot be completely reduced to WO_(2)as the partial pressure of C_(2)H_(4) increases to 60%.For the carbon evolution of C_(2)H_(4),the carbon amount is positively related to the H_(2)partial pressure,but it shows the highest amount and evolution rate when the ethylene partial pressure is 20%.Based on the reduction rate curves of WO_(3) and carbon evolution rate curves of C_(2)H_(4),the rate equations of pre-reduction and carbon evolution of WO_(3)-Co_(3)O_(4)system at 600℃are established.The pre-reduction reaction belongs to the first-order reaction,and its equation is expressed as follows:r=-(dw_(WO_(3)))/dt=(9±0.15)×10^(-2)×P_(H_(2))^(0.44)P_(C_(2)H_(4))&(0.57)The carbon deposition rate equation of C_(2)H_(4) can be expressed as follows:r=-(dc_C)/dt=r_f-r_b≌7.35×10^(-2)×P_(C_(2)H_(4))^(0.31) 展开更多
关键词 FLUIDIZATION WO_(3)-Co_(3)O_(4) reduction Carbon deposition Rate equation
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Healing the structural defects of spinel MnFe_(2)O_(4) to enhance the electrocatalytic activity for oxygen reduction reaction
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作者 Manting Tang Yue Zou +5 位作者 Zhiyong Jiang Peiyu Ma Zhiyou Zhou Xiaodi Zhu Jun Bao Shi-Gang Sun 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第10期12-19,I0001,共9页
Spinel metal oxides containing Mn,Co,or Fe(AB_(2)O_(4),A/B=Mn/Fe/Co)are one of the most promising nonPt electrocatalysts for oxygen reduction reaction(ORR)in alkaline conditions.However,the low conductivity of metal o... Spinel metal oxides containing Mn,Co,or Fe(AB_(2)O_(4),A/B=Mn/Fe/Co)are one of the most promising nonPt electrocatalysts for oxygen reduction reaction(ORR)in alkaline conditions.However,the low conductivity of metal oxides and the poor intrinsic activities of transition metal sites lead to unsatisfactory ORR performance.In this study,eutectic molten salt(EMS)treatment is employed to reconstruct the atomic arrangement of MnFe_(2)O_(4)electrocatalyst as a prototype for enhancing ORR performance.Comprehensive analyses by using XAFS,soft XAS,XPS,and electrochemical methods reveal that the EMS treatment reduces the oxygen vacancies and spinel inverse in MnFe_(2)O_(4)effectively,which improves the electric conductivity and increases the population of more catalytically active Mn^(2+)sites with tetrahedral coordination.Moreover,the enhanced Mn-O interaction after EMS treatment is conducive to the adsorption and activation of O_(2),which promotes the first electron transfer step(generally considered as the ratedetermining step)of the ORR process.As a result,the EMS treated MnFe_(2)O_(4)catalyst delivers a positive shift of 40 mV in the ORR half-wave potential and a two-fold enhanced mass/specific activity.This work provides a convenient approach to manipulate the atomic architecture and local electronic structure of spinel oxides as ORR electrocatalysts and a comprehensive understanding of the structureperformance relationship from the molecular/atomic scale. 展开更多
关键词 Spinel MnFe_(2)O_(4) Oxygen reduction reaction Spinel inverse Oxygen vacancies Eutectic molten salt
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Highly selective photocatalytic reduction of CO_(2) to CH_(4) on electron-rich Fe species cocatalyst under visible light irradiation
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作者 Qianying Lin Jiwu Zhao +8 位作者 Pu Zhang Shuo Wang Ying Wang Zizhong Zhang Na Wen Zhengxin Ding Rusheng Yuan Xuxu Wang Jinlin Long 《Carbon Energy》 SCIE EI CAS CSCD 2024年第1期255-266,共12页
Efficient photocatalytic reduction of CO_(2) to high-calorific-value CH4,an ideal target product,is a blueprint for C_(1)industry relevance and carbon neutrality,but it also faces great challenges.Herein,we demonstrat... Efficient photocatalytic reduction of CO_(2) to high-calorific-value CH4,an ideal target product,is a blueprint for C_(1)industry relevance and carbon neutrality,but it also faces great challenges.Herein,we demonstrate unprecedented hybrid SiC photocatalysts modified by Fe-based cocatalyst,which are prepared via a facile impregnation-reduction method,featuring an optimized local electronic structure.It exhibits a superior photocatalytic carbon-based products yield of 30.0μmol g^(−1) h^(−1) and achieves a record CH_(4) selectivity of up to 94.3%,which highlights the effectiveness of electron-rich Fe cocatalyst for boosting photocatalytic performance and selectivity.Specifically,the synergistic effects of directional migration of photogenerated electrons and strongπ-back bonding on low-valence Fe effectively strengthen the adsorption and activation of reactants and intermediates in the CO_(2)→CH_(4) pathway.This study inspires an effective strategy for enhancing the multielectron reduction capacity of semiconductor photocatalysts with low-cost Fe instead of noble metals as cocatalysts. 展开更多
关键词 artificial synthesis of CH_(4) electronic structure optimization Fe species cocatalyst photocatalytic CO_(2) reduction SiC
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尖端Pt负载纳米Au棒的制备及其催化还原4-硝基苯酚 被引量:1
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作者 付云芝 陈笑霖 姚帅琪 《中国石油大学学报(自然科学版)》 EI CAS CSCD 北大核心 2024年第1期176-181,共6页
采用种子生长法制备了长径比约为4的金纳米棒(AuNRs),并将铂负载其两端制备出尖端Pt负载的纳米Au棒(Pt-AuNRs)。采用紫外-可见分光光度计、透射电子显微镜和X射线光电子能谱等一系列常规表征手段对AuNRs和Pt-AuNRs的物化性质进行表征及... 采用种子生长法制备了长径比约为4的金纳米棒(AuNRs),并将铂负载其两端制备出尖端Pt负载的纳米Au棒(Pt-AuNRs)。采用紫外-可见分光光度计、透射电子显微镜和X射线光电子能谱等一系列常规表征手段对AuNRs和Pt-AuNRs的物化性质进行表征及分析。研究AuNRs和Pt-AuNRs作为催化剂在NaBH4存在下催化还原4-硝基苯酚(4-NP)的性能。首次提出Pt-AuNRs催化还原4-NP机制。结果表明:500-Pt-AuNRs催化剂表现出最好的催化性能,速率常数Kapp=0.383 6 min^(-1),是AuNRs催化剂的4.7倍;Pt-AuNRs特殊的异质结构以及高表面活性和稳定性,有助于BH-4在其表面的高效吸附和电子转移。 展开更多
关键词 AuNRs Pt-AuNRs 4-硝基苯酚 催化还原
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Co(x)/ZRP催化剂的CH_(4)-SCR脱硝性能研究
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作者 林世静 王龙帅 +7 位作者 马宇彤 张丽芳 钟绍轩 汪澈 王轩 卢毅 卢学斌 王虹 《北京石油化工学院学报》 2024年第3期1-7,共7页
为消除氮氧化物对人类健康和生态环境的危害,以甲烷为还原剂进行选择性催化脱硝(CH_(4)-SCR)得到了普遍的关注。研发高活性的CH_(4)-SCR脱硝催化剂成为该技术的研究重点。采用浸渍法制备了Co(x)/ZRP催化剂,考察了钴负载量对Co(x)/ZRP催... 为消除氮氧化物对人类健康和生态环境的危害,以甲烷为还原剂进行选择性催化脱硝(CH_(4)-SCR)得到了普遍的关注。研发高活性的CH_(4)-SCR脱硝催化剂成为该技术的研究重点。采用浸渍法制备了Co(x)/ZRP催化剂,考察了钴负载量对Co(x)/ZRP催化剂CH_(4)-SCR脱硝性能的影响。利用X射线衍射仪(XRD)、H_(2)程序升温还原(H_(2)-TPR)、吡啶吸附红外光谱(Py-IR)、NH_(3)程序升温脱附(NH_(3)-TPD)和NO程序升温脱附(NO-TPD)等对Co(x)/ZRP催化剂的理化性质进行了表征,在常压固定床微型反应器上评价了Co(x)/ZRP催化剂的CH_(4)-SCR脱硝性能。结果表明:Co(x)/ZRP催化剂中钴物种为Co_(3)O_(4),钴负载量增加,Co_(3)O_(4)晶粒变大,催化剂的氧化还原能力和NO的吸脱附性能均得到改善。随着钴负载量的增加,Co(x)/ZRP催化剂的CH_(4)-SCR脱硝活性先增强后降低,与催化剂中的中强酸量在总酸中的变化规律基本一致。其中Co(20)/ZRP催化剂的中强酸量较多,CH_(4)-SCR脱硝性能较好,T_(m)为342℃,X_(No)^(max)为39.2%。催化剂表面的L酸位以及中强酸量对催化剂的CH_(4)-SCR催化脱硝活性具有重要作用。 展开更多
关键词 Co_(3)O_(4) NO ZRP分子筛 甲烷 选择性催化还原
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SRB还原SO_(4)^(2-)影响因素的广义灰色关联分析
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作者 邓奇根 姚萌萌 +2 位作者 李帅 刘朝思 张哲铖 《中国安全生产科学技术》 CAS CSCD 北大核心 2024年第1期127-132,共6页
为探究影响硫酸盐还原菌(sulfate-reducing bacteria,SRB)降解污泥还原SO_(4)^(2-)的主要因素,构建广义灰色关联度评价模型,并对变量的重要度进行排序。研究结果表明:在一定条件下,SO_(4)^(2-)还原率随温度及初始pH值的上升呈现先增长... 为探究影响硫酸盐还原菌(sulfate-reducing bacteria,SRB)降解污泥还原SO_(4)^(2-)的主要因素,构建广义灰色关联度评价模型,并对变量的重要度进行排序。研究结果表明:在一定条件下,SO_(4)^(2-)还原率随温度及初始pH值的上升呈现先增长后降低的趋势,随氧化还原电位的上升呈现不断降低的趋势;温度,初始pH,氧化还原电位的综合关联度分别为0.690,0.755,0.537,影响SO_(4)^(2-)还原率因素大小顺序为初始pH>温度>氧化还原电位。研究结果可为污泥处理过程中控制硫化氢的释放提供理论支持,并为避免或减少污泥产硫化氢导致的人员伤亡和财产损失提供思路。 展开更多
关键词 降解 污泥 SO_(4)^(2-)还原率 硫化氢
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基于PHREEQC模拟分析Na_(2)S_(2)O_(4)对退役铀矿山采区地下水生态的修复
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作者 王晓玭 《有色金属(冶炼部分)》 CAS 北大核心 2024年第4期94-101,共8页
酸法原位地浸采铀作为回收铀资源首选工艺,不可避免会存在部分铀进入地下水污染生态环境,而采用还原剂Na_(2)S_(2)O_(4)将游离的铀还原固定可高效解决此类问题。为此,针对某酸法地浸采铀退役铀矿山地下水铀污染,采用PHREEQC模拟分析Na_(... 酸法原位地浸采铀作为回收铀资源首选工艺,不可避免会存在部分铀进入地下水污染生态环境,而采用还原剂Na_(2)S_(2)O_(4)将游离的铀还原固定可高效解决此类问题。为此,针对某酸法地浸采铀退役铀矿山地下水铀污染,采用PHREEQC模拟分析Na_(2)S_(2)O_(4)还原固定地下水中可溶性铀的机制,讨论NaHCO_(3)在Na_(2)S_(2)O_(4)还原固定可溶性铀的影响。模拟结果表明:1)该区域地下水中铀以U(Ⅵ)为主,其中UO_(2)SO_(4)、UO_(2)^(2+)和UO_(2)(SO_(4))_(2)^(2-)为优势物种,分别占63.60%、32.35%和3.89%;2)Na_(2)S_(2)O_(4)还原固定可溶性铀时,会降低地下水Eh值和Fe(Ⅲ)浓度,增强地下水还原性,促进沥青铀矿和黄铁矿沉淀,但会造成地下水酸化和高SO_(3)^(2-)浓度;3)NaHCO_(3)+Na_(2)S_(2)O_(4)在还原固定可溶性铀时,减轻了地下水酸化,增强了对U(Ⅵ)和SO_(3)^(2-)的去除,对Na_(2)S_(2)O_(4)还原固定可溶性铀的影响较小,在Na_(2)S_(2)O_(4)和NaHCO_(3)浓度比为1∶1至1∶1.5时修复效果最佳。 展开更多
关键词 退役铀矿山 Na_(2)S_(2)O_(4) 还原固定铀 PHREEQC 反应路径模拟
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Recent advances in solar-driven CO_(2) reduction over g-C_(3)N_(4)-based photocatalysts 被引量:7
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作者 Quanlong Xu Zhihua Xia +8 位作者 Jingmei Zhang Zhiyi Wei Qin Guo Huile Jin Hua Tang Shouzhu Li Xuecong Pan Zhi Su Shun Wang 《Carbon Energy》 SCIE CSCD 2023年第2期94-136,共43页
The persistent increase of CO_(2) levels in the atmosphere,already exceeding 400 ppm,urges the exploration of CO_(2) emission reduction and recycling technologies.Ideally,photocatalytic conversion of CO_(2) into valua... The persistent increase of CO_(2) levels in the atmosphere,already exceeding 400 ppm,urges the exploration of CO_(2) emission reduction and recycling technologies.Ideally,photocatalytic conversion of CO_(2) into valuable hydrocarbons realizes solar-to-chemical energy conversion,which is a desirable“kill two birds with one stone”strategy;namely,CO_(2) photoreduction can simultaneously tackle energy shortage and keep global carbon balance.Graphitic carbon nitride(g-C_(3)N_(4))working on CO_(2) reduction reaction deserves a highlight not only for the metal-free feature that endows it with low cost,tunable electronic structure,and easy fabrication properties but also because of its strong reduction ability.The present review concisely summarizes the latest advances of g-C_(3)N_(4)-based photocatalysts toward CO_(2) reduction.It starts with the discussion of thermodynamics and dynamics aspects of the CO_(2) reduction process.Then the modification strategies to promote g-C_(3)N_(4)-based photocatalysts in CO_(2) photoreduction have been discussed in detail,including surface functionalization,molecule structure engineering,crystallization,morphology engineering,loading cocatalyst,and constructing heterojunction.Meanwhile,the intrinsic factors affecting CO_(2) reduction activity and selectivity are analyzed and summarized.In the end,the challenges and prospects for the future development of highly g-C_(3)N_(4)-based photocatalysts in CO_(2) reduction are also presented. 展开更多
关键词 CO_(2)reduction g-C_(3)N_(4) PHOTOCATALYSIS solar-to-fuel conversion
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In situ growth of cobalt on ultrathin Ti_(3)C_(2)T_(x)as an efficient cocatalyst of g-C_(3)N_(4)for enhanced photocatalytic CO_(2)reduction 被引量:1
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作者 Tongming Su Jundong Meng +3 位作者 Ya Xiao Liuyun Chen Hongbing Ji Zuzeng Qin 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2023年第12期76-86,共11页
Photocatalytic CO_(2)reduction to valuable product exhibit promising prospect for solving the energy crisis and the greenhouse effect.Herein,Co-Ti_(3)C_(2)T_(x)/g-C_(3)N_(4)(Co-TC/CN)composite with enhanced photocatal... Photocatalytic CO_(2)reduction to valuable product exhibit promising prospect for solving the energy crisis and the greenhouse effect.Herein,Co-Ti_(3)C_(2)T_(x)/g-C_(3)N_(4)(Co-TC/CN)composite with enhanced photocatalytic performance for converting CO_(2)to CO and CH_(4)was constructed by electrostatic self-assembly method.The close contact interface between Co-Ti_(3)C_(2)T_(x)and g-C_(3)N_(4)nanosheets can be used as fast transport channels of photogenerated electrons and effectively promote the separation of photogenerated electrons and holes,and the interface between the Co and Ti_(3)C_(2)T_(x)might be the active sites for CO_(2)adsorption and activation.The optimized Co-Ti_(3)C_(2)T_(x)/g-C_(3)N_(4)composite exhibited the highest photocatalytic performance with the CO and CH_(4)production of 55.04 μmol·g^(-1)and 2.29 μmol·g^(-1),respectively,which were 7.5 times and 5.8 times than those of g-C_(3)N_(4).Furthermore,the stability of g-C_(3)N_(4)was improved after coupling with Co-Ti_(3)C_(2)T_(x). 展开更多
关键词 g-C_(3)N_(4) MXene COBALT PHOTOCATALYTIC CO_(2)reduction
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MXene Ti_(3)C_(2) decorated g-C_(3)N_(4)/ZnO photocatalysts with improved photocatalytic performance for CO_(2) reduction 被引量:2
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作者 Jianxin Li Yuhua Wang +9 位作者 Yitong Wang Yao Guo Shiding Zhang Haixiang Song Xianchang Li Qianqian Gao Wanyu Shang Shuaishuai Hu Huibin Zheng Xifei Li 《Nano Materials Science》 EI CAS CSCD 2023年第2期237-245,共9页
Photocatalytic reduction of CO_(2) is considered as a kind of promising technologies for solving the greenhouse effect.Herein,a novel hybrid structure of g-C_(3)N_(4)/ZnO/Ti_(3)C_(2) photocatalysts was designed and fa... Photocatalytic reduction of CO_(2) is considered as a kind of promising technologies for solving the greenhouse effect.Herein,a novel hybrid structure of g-C_(3)N_(4)/ZnO/Ti_(3)C_(2) photocatalysts was designed and fabricated to investigate their abilities for CO_(2) reduction.As demonstration,heterojunction of g-C_(3)N_(4)/ZnO can improve photogenerated carriers’separation,the addition of Ti_(3)C_(2) fragments can further facilitate the photocatalytic performance from CO_(2) to CO.Hence,g-C_(3)N_(4)/ZnO/Ti_(3)C_(2) has efficiently increased CO production by 8 and 12 times than pristine g-C_(3)N_(4) and ZnO,respectively.Which is ascribed to the photogenerated charge migration promoted by metallic Ti_(3)C_(2).This work provides a guideline for designing efficient hybrid catalysts on other applications in the renewable energy fields. 展开更多
关键词 Ti_(3)C_(2)fragments ZNO G-C_(3)N_(4) CO_(2)reduction
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Achieving highly selective electrochemical CO_(2) reduction to C_(2)H_(4) on Cu nanosheets 被引量:1
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作者 Huan Xie Ruikuan Xie +6 位作者 Zhiyuan Zhang Yongyu Pang Yuting Luo Jiong Li Bilu Liu Maria-Magdalena Titirici Guoliang Chai 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2023年第4期312-320,共9页
The conversion of CO_(2)into value-added chemicals coupled with the storage of intermittent renewable electricity is attractive.CuO nanosheets with an average size and thickness of~30 and~20 nm have been developed,whi... The conversion of CO_(2)into value-added chemicals coupled with the storage of intermittent renewable electricity is attractive.CuO nanosheets with an average size and thickness of~30 and~20 nm have been developed,which are in situ reduced into Cu nanosheets during electrochemical CO_(2)reduction reaction(ECO_(2)RR).The derived Cu nanosheets demonstrate much higher selectivity for C2H4production than commercial CuO derived Cu powder,with an optimum Faradaic efficiency of 56.2%and a partial current density of C_(2)H_(4)as large as 171.0 mA cm^(-2)in a gas diffusion flow cell.The operando attenuated total reflectance-Fourier transform infrared spectra measurements and density functional theory simulations illustrate that the high activity and selectivity of Cu nanosheets originate from the edge sites on Cu nanosheets with a coordinate number around 5(4–6),which facilitates the formation of^(*)CHO rather than^(*)COH intermediate,meanwhile boosting the C-C coupling reaction of^(*)CO and^(*)CHO intermediates,which are the critical steps for C_(2)H_(4)formation. 展开更多
关键词 Electrochemical CO_(2)reduction Cu nanosheets C_(2)H_(4) High selectivity Coordination number
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g-C_(3)N_(4)/生物炭/nZVI还原水中硝酸盐的性能
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作者 李厚芬 魏谦 +4 位作者 郭阳 刘鹏霄 李瑞 周爱娟 岳秀萍 《中国环境科学》 EI CAS CSCD 北大核心 2024年第3期1357-1365,共9页
通过在g-C_(3)N_(4)/生物炭(BC)材料表面还原沉积纳米零价铁(nZVI)制备了g-C_(3)N_(4)/BC/nZVI复合催化剂.利用SEM、TEM、XPS、XRD、UV-Vis DRS、光电流等对所制备的催化剂进行了物化性质和光电性能的表征,考察了g-C_(3)N_(4)/BC/nZVI... 通过在g-C_(3)N_(4)/生物炭(BC)材料表面还原沉积纳米零价铁(nZVI)制备了g-C_(3)N_(4)/BC/nZVI复合催化剂.利用SEM、TEM、XPS、XRD、UV-Vis DRS、光电流等对所制备的催化剂进行了物化性质和光电性能的表征,考察了g-C_(3)N_(4)/BC/nZVI在可见光照下对水中硝酸盐(NO_(3)^(-))的还原性能.结果表明,中性水体的最佳反应条件为g-C_(3)N_(4)/BC与nZVI的质量比为1:0.6,g-C_(3)N_(4)/BC/nZVI的投加量为2g/L,NO_(3)^(-)的初始浓度为20mg/L.与nZVI,BC/nZVI,g-C_(3)N_(4)/nZVI相比,g-C_(3)N_(4)/BC/nZVI表现出最快的NO_(3)^(-)还原速率(k=10.6×10^(-2)min^(-1))以及较高的脱氮性能(71.6%).实验进一步考察了g-C_(3)N_(4)/BC/nZVI还原NO_(3)^(-)过程中氮的变化规律.推测还原机理为:可见光照下,光生电子通过BC转移到n ZVI表面,提高了nZVI的反应活性和稳定性,同时,BC材料抑制光生空穴对nZVI的氧化作用;nZVI表面的活性电子将NO_(3)^(-)还原为N2和NH4+,而光生空穴则进一步将部分NH4+氧化为N2和其他气态产物. 展开更多
关键词 光催化 g-C_(3)N_(4) 生物炭 纳米零价铁 NO_(3)^(-)还原
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4-氯氯苄在CO_(2)下电还原为对氯苯乙酸机制研究
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作者 董文慧 金葆康 《安徽大学学报(自然科学版)》 CAS 北大核心 2024年第3期75-83,共9页
对氯苯乙酸在生活生产中有重要应用,到目前为止,大多数合成方法都有烦琐的步骤或使用各种重金属催化剂,成本高且有污染.笔者提出一种在CO_(2)存在下,电化学还原4-氯氯苄制备高价值对氯苯乙酸化合物的方法,同时实现温室气体CO_(2)的利用... 对氯苯乙酸在生活生产中有重要应用,到目前为止,大多数合成方法都有烦琐的步骤或使用各种重金属催化剂,成本高且有污染.笔者提出一种在CO_(2)存在下,电化学还原4-氯氯苄制备高价值对氯苯乙酸化合物的方法,同时实现温室气体CO_(2)的利用与转化.采用4-氯氯苄在含电解质四乙基四氟硼酸铵的乙腈溶剂中恒电位电解合成对氯苯乙酸,电解产物经过核磁、质谱等表征方式确认结构.结果表明,法拉第电解效率为94.0%,转化率为92.9%.利用循环伏安法和原位FT-IR光谱电化学相结合的方法,探究了电化学还原制备对氯苯乙酸的电子转移机制.发现银电极上,CO_(2)气氛下4-氯氯苄的还原过程机制为两电子的不可逆过程,生成的一价阴离子随后进攻CO_(2)生成对氯苯乙酸. 展开更多
关键词 4-氯氯苄 对氯苯乙酸 CO_(2)捕获 现场红外光谱电化学 循环伏安法 电化学还原
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氮掺杂碳纳米管负载Co_(3)O_(4)氧还原电催化剂的制备与性能
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作者 贾海浪 李红城 +2 位作者 吉鹏程 滕洋 关明云 《无机化学学报》 SCIE CAS CSCD 北大核心 2024年第4期693-700,共8页
以碳纳米管(CNT)为原料,通过负载维生素B12,简单热解得到了一种氮掺杂碳纳米管(N/CNT)负载低含量Co_(3)O_(4)纳米颗粒的氧还原电催化剂(Co_(3)O_(4)@N/CNT)。得益于均匀分散的Co_(3)O_(4)纳米颗粒以及氮掺杂,Co_(3)O_(4)@N/CNT表现出了... 以碳纳米管(CNT)为原料,通过负载维生素B12,简单热解得到了一种氮掺杂碳纳米管(N/CNT)负载低含量Co_(3)O_(4)纳米颗粒的氧还原电催化剂(Co_(3)O_(4)@N/CNT)。得益于均匀分散的Co_(3)O_(4)纳米颗粒以及氮掺杂,Co_(3)O_(4)@N/CNT表现出了优异的氧还原催化性能,其半波电位达到了0.844 V(vs RHE),超越了商业Pt/C(0.820 V(vs RHE))。与Pt/C相比,基于Co_(3)O_(4)@N/CNT组装的锌-空气电池表现出了更优的放电性能和循环稳定性。 展开更多
关键词 氧还原反应 碳纳米管 氮掺杂 Co_(3)O_(4)
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模板法制备多孔Bi_(0.5)La_(0.5)VO_(4)固溶体光催化还原CO_(2)
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作者 孙雨平 马洋博 +2 位作者 刘小强 高丽 陈威 《化学研究》 CAS 2024年第1期16-22,共7页
光催化还原CO_(2)为有价值的化学品为缓解温室效应提供了理想的途径。本工作中,采用纳米球形SiO_(2)模板剂抑制光催化剂颗粒的生长从而合成高比表面积的多孔Bi_(0.5)La_(0.5)VO_(4)(BLV)固溶体光催化材料。得益于纳米SiO_(2)的限域效应... 光催化还原CO_(2)为有价值的化学品为缓解温室效应提供了理想的途径。本工作中,采用纳米球形SiO_(2)模板剂抑制光催化剂颗粒的生长从而合成高比表面积的多孔Bi_(0.5)La_(0.5)VO_(4)(BLV)固溶体光催化材料。得益于纳米SiO_(2)的限域效应,硬模板法制备的固溶体的粒径明显小于固相法制备的体相固溶体。N_(2)吸脱附测试结果显示950℃焙烧下制备的多孔BLV的比表面积为固相法的11.9倍。光催化CO_(2)还原活性评价表明多孔BLV-950固溶体的CO析出速率达0.58μmol·g^(-1)·h^(-1),是体相BLV的3.9倍。这归因于多孔BLV较体相具有更高的载流子分离效率和更低的CO_(2)还原界面阻力。 展开更多
关键词 光催化CO_(2)还原 Bi_(0.5)La_(0.5)VO_(4)固溶体 模板法 电荷分离
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Fe改性分子筛催化剂CH_(4)选择性催化还原N_(2)O
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作者 温鹏 刘宁 +1 位作者 陈标华 代成娜 《化工环保》 CAS CSCD 北大核心 2024年第3期398-404,共7页
针对N_(2)O的CH_(4)选择性催化还原(CH_(4)-SCR),采用浸渍法制备了系列Fe改性分子筛(BEA、ZSM-5、SSZ-13)催化剂。实验结果表明:2%Fe-BEA(负载量2%(w))具有较高的催化活性,在进气(N_(2)O 40%(φ,下同),CH_(4)10%,N250%)总流量为50 mL/mi... 针对N_(2)O的CH_(4)选择性催化还原(CH_(4)-SCR),采用浸渍法制备了系列Fe改性分子筛(BEA、ZSM-5、SSZ-13)催化剂。实验结果表明:2%Fe-BEA(负载量2%(w))具有较高的催化活性,在进气(N_(2)O 40%(φ,下同),CH_(4)10%,N250%)总流量为50 mL/min、反应器气时空速为12000 h^(–1)的条件下,250℃时的N_(2)O转化率达99.5%,CH_(4)转化率达94.6%;反应器连续运行20 h,N_(2)O转化率基本保持不变,CH_(4)转化率仅略有下降。表征结果显示,2%Fe-BEA较高的催化活性与其易形成大量离子态Fe^(3+)活性物种密切相关,而2%Fe-SSZ-13更易形成大量FeOx物种,故在3种分子筛催化剂中催化活性最低。2%Fe-BEA上N_(2)O的CH_(4)-SCR遵循自由基反应机理,形成羟基自由基和甲氧基自由基,并可经进一步氧化,通过甲酸盐路径生成CO_(2)和H2O。 展开更多
关键词 N_(2)O CH_(4)选择性催化还原(CH_(4)-SCR) Fe-BEA分子筛 反应机理
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高效率BaAl_(4)Sb_(2)O_(12)∶Eu^(2+)荧光粉合成与发光性能
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作者 王凯旋 周雪莲 +5 位作者 张钰 王泽 苏日力格 哈拉木吉 田启旭 朝克夫 《发光学报》 EI CAS CSCD 北大核心 2024年第5期753-761,共9页
白光LED作为第四代照明光源已经广泛应用到人们生活的各个领域,其中荧光粉是获得高性能白光LED的关键材料之一。如何用简单的方法制备高性能的荧光粉是目前研究人员的一个挑战性工作。本文采用高温固相法,加入助熔剂H_(3)BO_(3)、NH_(4... 白光LED作为第四代照明光源已经广泛应用到人们生活的各个领域,其中荧光粉是获得高性能白光LED的关键材料之一。如何用简单的方法制备高性能的荧光粉是目前研究人员的一个挑战性工作。本文采用高温固相法,加入助熔剂H_(3)BO_(3)、NH_(4)Cl、SrF_(2)、LiF和BaF_(2),成功制备了BaAl_(4)Sb_(2)O_(12)∶Eu^(2+)(BASO∶Eu^(2+))荧光粉。通过晶体结构分析、发射光谱、X射线光电子能谱(XPS)以及荧光寿命分析,表明过量的Sb_(2)O_(3)能够有效地将Eu^(3+)还原成Eu^(2+),提高Eu^(2+)在563 nm处的荧光强度约12.5倍,内量子效率(IQE)可以达到96.14%。另外,还研究了不同助熔剂对荧光粉晶体结构、荧光强度以及内量子效率的影响。本实验采用的方法简单,避免使用具有一定危险的还原性气体烧结,易于工业化应用以及降低生产成本。 展开更多
关键词 BaAl_(4)Sb_(2)O_(12)∶Eu^(2+) 还原作用 助熔剂 白光LEDs
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g-C_(3)N_(4)/BiVO_(4)异质结的制备及其在环境治理中的应用 被引量:1
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作者 尹香琴 《化学工程师》 CAS 2024年第4期38-43,共6页
通过负载法成功制备了g-C_(3)N_(4)/BiVO_(4)异质结,采用XRD、SEM、BET、UV-Vis DRS、Mott Schottky、SPV等技术对样品的结构与性质进行分析,以光催化降解RhB和光催化还原CO_(2)评价其光催化活性。结果表明,g-C_(3)N_(4)和BiVO_(4)能带... 通过负载法成功制备了g-C_(3)N_(4)/BiVO_(4)异质结,采用XRD、SEM、BET、UV-Vis DRS、Mott Schottky、SPV等技术对样品的结构与性质进行分析,以光催化降解RhB和光催化还原CO_(2)评价其光催化活性。结果表明,g-C_(3)N_(4)和BiVO_(4)能带结构匹配,能够组成“Z”型异质结,并有效提高光生载流子的分离效率,同时保留g-C_(3)N_(4)导带电子较强的还原性和BiVO_(4)价带空穴较强的氧化性,最终提高光催化活性,其中当g-C_(3)N_(4)的负载量为3%时,样品展现了最佳的光催化活性,在光催化降解RhB实验中,经过180min光照后,降解率达到95.3%,反应速率常数达到0.0166min^(-1);而在光催化还原CO_(2)的实验中,经过4h光照后,CO和O_(2)的产量达到70.2μmol·g^(-1)和45.6μmol·g^(-1),较纯g-C_(3)N_(4)和BiVO_(4)均明显提高。 展开更多
关键词 g-C_(3)N_(4)/BiVO_(4)异质结 光催化 RhB降解 CO_(2)还原
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g-C_(3)N_(4)基金属复合材料光催化还原CO_(2)的研究进展
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作者 刘琦 王海北 +3 位作者 沈慧明 梁东东 崔静涛 孙贯永 《中国资源综合利用》 2024年第9期129-141,共13页
光催化还原CO_(2)是缓解温室效应和解决能源短缺问题的重要手段,因此制备工艺简单、稳定性高、催化性能优秀的光催化剂成为目前研究的重点。综述石墨相氮化碳(g-C_(3)N_(4))材料的基本特性、催化还原CO_(2)的基本原理、g-C_(3)N_(4)基... 光催化还原CO_(2)是缓解温室效应和解决能源短缺问题的重要手段,因此制备工艺简单、稳定性高、催化性能优秀的光催化剂成为目前研究的重点。综述石墨相氮化碳(g-C_(3)N_(4))材料的基本特性、催化还原CO_(2)的基本原理、g-C_(3)N_(4)基金属复合材料的发展现状,并阐述当前面临的挑战及未来发展方向,旨在为实现碳中和目标提供创新方向和理论支持。 展开更多
关键词 光催化 CO_(2) 还原 g-C_(3)N_(4) 金属
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