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Ni掺杂Mo_(2)C/C双功能催化剂的制备及其电解水性能的研究 被引量:1
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作者 陈鸿明 范胜琪 +4 位作者 宋琪 蒋玲 陈拥军 李建保 张雪艳 《人工晶体学报》 北大核心 2025年第1期158-164,共7页
随着全球环境问题的日益突出,化石燃料的日益枯竭,寻找可再生能源成为了一项艰巨的任务。电解水制氢通过析氢反应(HER)和析氧反应(OER)同时产生氢气和氧气,是一种高效、绿色的制氢方法,吸引了越来越多的科研人员的兴趣。但是,目前商用... 随着全球环境问题的日益突出,化石燃料的日益枯竭,寻找可再生能源成为了一项艰巨的任务。电解水制氢通过析氢反应(HER)和析氧反应(OER)同时产生氢气和氧气,是一种高效、绿色的制氢方法,吸引了越来越多的科研人员的兴趣。但是,目前商用贵金属催化剂(Pt/C和RuO_(2)/IrO_(2))价格贵且储量少,因此,开发具有高性能、低成本、高稳定性的非贵金属电催化剂成为了研究热点。本文通过简单的盐模板热解法成功制备了具有三维(3D)纳米片结构的Ni@Mo_(2)C/C催化剂。通过X射线衍射(XRD)、扫描电子显微镜(SEM)和透射电子显微镜(TEM)对Ni@Mo_(2)C/C的组成、形貌及结构进行了表征,通过X射线光电子衍射仪(XPS)对元素组成及元素价态进行了分析,并考察了Ni@Mo_(2)C/C的电化学性能。结果表明,在电流密度为10 mA·cm^(-2)时,Ni@Mo_(2)C/C催化剂的HER和OER的过电位分别为47和232 mV。在全解水测试中,仅需要1.61 V即可驱动10 mA·cm^(-2)的电流密度,且可持续稳定工作100 h。 展开更多
关键词 Mo_(2)c Ni掺杂 析氢反应 析氧反应 全解水 双功能催化剂
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Au-CuO/Cu_(2)O串联催化增强电催化CO_(2)还原制乙醇
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作者 董家彤 单梦晴 王华 《化工进展》 北大核心 2025年第1期277-285,共9页
利用可再生的电能将CO_(2)转化为高价值产品乙醇是解决燃料的储存和减少碳排放的一种重要途径。合成Cu基双活性位点电催化剂实现催化CO_(2)还原制C_(2)产物是当前的研究热点,在此将Au纳米粒子负载在海胆状CuO/Cu_(2)O上,合成出不同Au负... 利用可再生的电能将CO_(2)转化为高价值产品乙醇是解决燃料的储存和减少碳排放的一种重要途径。合成Cu基双活性位点电催化剂实现催化CO_(2)还原制C_(2)产物是当前的研究热点,在此将Au纳米粒子负载在海胆状CuO/Cu_(2)O上,合成出不同Au负载量的Aux-CuO/Cu_(2)O催化剂,以提高电催化CO_(2)还原为乙醇的选择性。在以1mol/L KOH为电解液的流动池中进行电催化CO_(2)还原性能评价,Au5-CuO/Cu_(2)O在150m A/cm^(2)的电流密度下,二碳产物(C_(2))的总法拉第效率达到了73.4%,其中乙醇法拉第效率达到40.0%,分别是Au2-CuO/Cu_(2)O和Au8-CuO/Cu_(2)O的4.2倍和2.2倍,并且乙烯和乙醇法拉第效率的比值为1.35,分别是另外两种催化剂的1.6倍和3.46倍。Au5-CuO/Cu_(2)O对电催化CO_(2)还原为C_(2)和乙醇选择性的显著提高归因于CuO/Cu_(2)O表面上适宜的Au载量,实现了有效的串联催化过程,即Au活性位点促进CO中间体生成,Cu活性位点加速CO分子的C—C偶联反应生成C_(2)产物,这为设计和制备具有高乙醇选择性的电催化CO_(2)还原反应的催化剂提供了重要参考。 展开更多
关键词 电催化二氧化碳还原 串联催化 cc偶联 乙醇 铜基催化剂
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铜基催化剂电催化还原CO_(2)生成C_(3)产物研究进展
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作者 周倩楠 宋潇飞 +1 位作者 任宇 赵震 《工业催化》 2025年第7期9-17,共9页
二氧化碳的过量排放已造成严重的环境问题,特别是全球变暖和海洋酸化现象。电催化CO_(2)还原反应(CO_(2) RR)是将CO_(2)转化为高能量密度燃料或高价值化学品最具应用前景的方法之一。铜基催化剂能够有效的将二氧化碳电催化还原为多碳产... 二氧化碳的过量排放已造成严重的环境问题,特别是全球变暖和海洋酸化现象。电催化CO_(2)还原反应(CO_(2) RR)是将CO_(2)转化为高能量密度燃料或高价值化学品最具应用前景的方法之一。铜基催化剂能够有效的将二氧化碳电催化还原为多碳产物,因其低廉的成本和对C_(3)产物的高选择性受到广泛关注。总结近年来铜基催化剂用于CO_(2) RR生成C_(3)产物的研究进展,包括CO_(2) RR生成C_(3)产物的反应机理,以及通过结构调控、表面调控、双金属等策略提高铜基催化剂电还原性能。最后,概述该领域的关键挑战和未来的研究方向,为进一步开发高活性CO_(2) RR生成C_(3)产物的催化剂提供思路。 展开更多
关键词 电化学 二氧化碳电催化还原 铜基催化剂 反应机理 c 3产物
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Mo_(2)C修饰ZnCdS材料的制备及光催化产氢性能研究
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作者 樊明昂 谢潇琪 +2 位作者 冯丽 杜红莉 刘超 《材料导报》 北大核心 2025年第17期8-13,共6页
通过原位沉积法合成了Mo_(2)C修饰的ZnCdS光催化材料,对其结构、组成和性能进行了表征,并进行了光催化产氢性能测试。结果表明,ZnCdS在Mo_(2)C颗粒表面原位生成并与之形成Schottky界面。Mo_(2)C/ZnCdS产氢速率为5.26 mmol·g^(-1)&#... 通过原位沉积法合成了Mo_(2)C修饰的ZnCdS光催化材料,对其结构、组成和性能进行了表征,并进行了光催化产氢性能测试。结果表明,ZnCdS在Mo_(2)C颗粒表面原位生成并与之形成Schottky界面。Mo_(2)C/ZnCdS产氢速率为5.26 mmol·g^(-1)·h^(-1),是纯ZnCdS的4.35倍。Mo_(2)C/ZnCdS可能的光催化机理为:作为助催化剂的Mo_(2)C具有d带电子结构,表现出典型的类金属特性和高的表面功函,在Mo_(2)C和ZnCdS界面处形成指向Mo_(2)C的内建电场;内建电场能够加速电子由ZnCdS向Mo_(2)C的定向转移,并在Mo_(2)C表面富集,从而提高光生电荷分离效率;同时,Mo_(2)C因表面析氢过电位较低而成为光催化H+还原反应的活性中心,可进一步加快光催化产氢。 展开更多
关键词 Mo_(2)c 助催化剂 ZncdS 原位复合 光催化产氢
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High-yield pentanes-plus production via hydrogenation of carbon dioxide:Revealing new roles of zirconia as promoter of iron catalyst with long-term stability
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作者 Sheraz Ahmed Junjung Rohmat Sugiarto +6 位作者 Wonjoong Yoon Muhammad Irshad Heuntae Jo Syeda Sidra Bibi Soek Ki Kim Muhammad Kashif Khan Jaehoon Kim 《Journal of Energy Chemistry》 2025年第3期431-442,共12页
The metal oxide promoter decisively influences the overall performance of Fe catalysts in the direct hydrogenation of CO_(2)to C_(5+)hydrocarbons.However,the roles of metal oxide promoter for Fe catalysts,particularly... The metal oxide promoter decisively influences the overall performance of Fe catalysts in the direct hydrogenation of CO_(2)to C_(5+)hydrocarbons.However,the roles of metal oxide promoter for Fe catalysts,particularly ZrO_(2),have rarely been investigated.To plug this knowledge gap,a new Fe catalyst promoted with Na and partially reduced ZrO_(x)(Na-FeZrO_(x-9))was developed in this study;the catalyst helped produce C_(5+)hydrocarbons in remarkably high yield(26.3%at 360℃).In contrast to ZrO_(x)-free Fe-oxide,NaFeZrO_(x)-9 exhibited long-term stability for CO_(2)hydrogenation(750 h on-stream).The findings revealed multiple roles of ZrO_(x).Notably,ZrO_(x)decorated the Fe-oxide particles after calcination,thereby suppressing excess particle aggregation during the reaction,and acted as a"coke remover"to eliminate the carbon deposited on the catalyst surface.Additionally,oxygen vacancy(O_(v))sites in ZrO_(x)and electron transfer from ZrO_(x)to Fe sites facilitated the adsorption of CO_(2)at the Zr-Fe interface. 展开更多
关键词 cO_(2)hydrogenation c5+hydrocarbons Fe catalysts ZrO_(2)promoter Fischer Tropsch synthesis catalyst deactivation
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N掺杂C包覆FeNi/Mo_(2)C复合纳米材料析氧性能
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作者 陈京帅 陈环宇 陈超 《当代化工》 2025年第6期1261-1270,共10页
为提升析氧反应(OER)电催化剂的活性,在惰性气氛下热解合成N掺杂碳纳米片(NC)以及N掺杂C包覆FeNi合金、Mo_(2)C和FeNi/Mo_(2)C复合材料(NC@FeNi、NC@Mo_(2)C、NC@FeNi-Mo_(2)C)。XRD证实了3种复合材料的成功合成。拉曼光谱显示NC@FeNi-M... 为提升析氧反应(OER)电催化剂的活性,在惰性气氛下热解合成N掺杂碳纳米片(NC)以及N掺杂C包覆FeNi合金、Mo_(2)C和FeNi/Mo_(2)C复合材料(NC@FeNi、NC@Mo_(2)C、NC@FeNi-Mo_(2)C)。XRD证实了3种复合材料的成功合成。拉曼光谱显示NC@FeNi-Mo_(2)C的I_(D)/I_(G)值为2.75,显著高于其他3种材料,表明该材料具有更多结构缺陷,有助于加速离子转移,提高电化学性能。BET显示NC@FeNi-Mo_(2)C比表面积达到70.41 m^(2)·g^(-1),能更好促进电解质渗透,提升电催化性能。SEM和TEM电镜可观察到FeNi、Mo_(2)C和FeNi-Mo_(2)C被均匀封装在氮掺杂纳米碳材料中。利用XPS确定催化剂合金化引起的表面化学和电子结构变化。电化学析氧性能表征结果表明,相较于NC、NC@FeNi和NC@Mo_(2)C,NC@FeNi-Mo_(2)C杂化物具有较低的超电势(188 mV)、较小的Tafel斜率(18.551 mV·dec^(-1))、较高的稳定性14 h,其对OER表现出高效的电催化活性。 展开更多
关键词 析氧反应 氮掺杂纳米碳 FeNi Mo_(2)c 催化剂 电解质 动力学
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Ca_(2)Fe_(2)O_(5)催化剂对半焦基DC-SOFC性能的影响
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作者 刘国阳 周安宁 +1 位作者 刘倩 王俊哲 《煤炭学报》 EI CAS CSCD 北大核心 2024年第3期1647-1656,共10页
半焦与CO_(2)的气化反应速率是影响半焦燃料基DC-SOFC电池性能的关键。为提高半焦的CO_(2)气化反应性,采用柠檬酸溶胶-凝胶法制备了具有钙钛矿结构的Ca_(2)Fe_(2)O_(5)催化剂,用SEM、XRD、XPS、低温氮气吸脱附等分析手段研究了Ca_(2)Fe_... 半焦与CO_(2)的气化反应速率是影响半焦燃料基DC-SOFC电池性能的关键。为提高半焦的CO_(2)气化反应性,采用柠檬酸溶胶-凝胶法制备了具有钙钛矿结构的Ca_(2)Fe_(2)O_(5)催化剂,用SEM、XRD、XPS、低温氮气吸脱附等分析手段研究了Ca_(2)Fe_(2)O_(5)催化剂的形貌和结构,采用热重分析实验研究Ca_(2)Fe_(2)O_(5)催化剂对半焦燃料的CO_(2)气化反应催化活性;在Ag-GDC|YSZ|GDC-Ag电解质支撑电池系统上,研究了添加Ca_(2)Fe_(2)O_(5)催化剂对半焦燃料基DC-SOFC输出性能的影响。结果表明,随着催化剂焙烧温度的提高,Ca_(2)Fe_(2)O_(5)催化剂晶粒尺寸逐渐增大、比表面积降低,750℃焙烧的催化剂具有良好的分散性、颗粒尺寸约为0.1μm,在半焦的CO_(2)气化反应中催化作用最好;相较于CaO和Fe2O3,Ca_(2)Fe_(2)O_(5)催化剂结构中吸附氧浓度更高,在半焦的CO_(2)气化反应中表现出更为优异的催化活性;Ca_(2)Fe_(2)O_(5)催化剂的循环稳定性取决于催化剂结构的热稳定性,其循环使用时活性降低主要归因于半焦燃料中无机灰分的包裹。催化剂对DC-SOFC输出性能影响表明,当半焦中添加10%的Ca_(2)Fe_(2)O_(5)催化剂时,电池的峰值功率密度从15.3 mW/cm^(2)增大到23.7 mW/cm^(2);EIS分析表明阳极传质阻力是影响DC-SOFC输出性能和燃料利用率的主要因素,降低灰分、催化剂累积带来的传质阻力可有效提高电池寿命和燃料利用率。 展开更多
关键词 直接碳固体氧化物燃料电池 钙钛矿 催化剂 c-cO_(2)气化反应
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PtSn@S-1&β-Mo_(2)C串联催化剂CO_(2)氧化丙烷脱氢制丙烯性能研究 被引量:4
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作者 夏瑶靓 边凯 +3 位作者 刘思蕊 王志群 张光辉 郭新闻 《低碳化学与化工》 CAS 北大核心 2024年第7期96-103,共8页
PtSn双金属催化剂因具有高活性和高选择性被广泛应用于丙烷脱氢制丙烯反应中。然而在高温下,催化剂易产生积炭从而导致稳定性降低。二氧化碳氧化丙烷脱氢(CO_(2)-PDH)因其有望在转化丙烷的同时兼具消除积炭和推动脱氢反应正向移动的特点... PtSn双金属催化剂因具有高活性和高选择性被广泛应用于丙烷脱氢制丙烯反应中。然而在高温下,催化剂易产生积炭从而导致稳定性降低。二氧化碳氧化丙烷脱氢(CO_(2)-PDH)因其有望在转化丙烷的同时兼具消除积炭和推动脱氢反应正向移动的特点,已成为新的研究热点。将逆水煤气催化剂β-Mo_(2)C与丙烷脱氢催化剂PtSn@S-1串联用于CO_(2)-PDH反应中,开发高活性、高选择性和高稳定性的催化剂,并结合XRD、CO_(2)-TPD、C3H6-TPD及热重等方法对催化剂进行了表征。结果表明,在CO_(2)-PDH反应中,PtSn@S-1串联加入β-Mo_(2)C后,粉末混合的串联催化剂PtSn@S-1&β-Mo_(2)C的稳定性明显提升,并在连续运转1440min内未出现失活现象,催化剂的高稳定性归因于反应过程中CO_(2)消除了部分积炭。对反应条件进行了优化,发现在n(CO_(2)):n(C3H8)为1.0、m(PtSn@S-1):m(β-Mo_(2)C)为1.0:0.4时,粉末混合的串联催化剂PtSn@S-1&β-Mo_(2)C在CO_(2)-PDH反应中表现出最佳性能,丙烷转化率在反应500min后稳定在43.0%以上,丙烯选择性超过99%。 展开更多
关键词 PtSn@S-1 β-Mo_(2)c 串联催化剂 二氧化碳氧化丙烷脱氢
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气氛条件对Pt-Mo_2C催化剂脱硝性能的影响 被引量:1
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作者 仇思敏 陶亚秋 +2 位作者 严维涛 夏忠怀 潘志刚 《南京工业大学学报(自然科学版)》 CAS 北大核心 2018年第3期12-17,共6页
采用程序升温碳化、等体积浸渍等方法制备不同的Pt-Mo_2C催化剂,考察催化剂的催化脱硝性能。采用X线衍射仪(XRD)、比表面积测试仪、扫描电子显微镜(SEM)、X线光电子能谱仪(XPS)等手段表征催化剂的物理化学性能。以H_2作为催化反应还原剂... 采用程序升温碳化、等体积浸渍等方法制备不同的Pt-Mo_2C催化剂,考察催化剂的催化脱硝性能。采用X线衍射仪(XRD)、比表面积测试仪、扫描电子显微镜(SEM)、X线光电子能谱仪(XPS)等手段表征催化剂的物理化学性能。以H_2作为催化反应还原剂,在不同n(H_2)/n(NO)及无氧或富氧条件下测试Pt-Mo_2C的催化脱硝性能。结果表明:相比于掺杂Pt元素的Mo_2C催化剂,直接负载氯铂酸钾的Mo_2C催化剂效果最好,在无氧条件下n(H_2)/n(NO)=1和5时,NO的转化率最高分别可达到60.3%和100%,富氧条件下NO的转化率最高分别可达到40.1%和92.1%。富氧条件降低了催化剂的催化性能,而较高的n(H_2)/n(NO)有利于提升NO的转化率并拓宽反应温度区间。 展开更多
关键词 pt-mo2c催化剂 脱硝 H2 PT Mo2c
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硝基苯催化加氢Pt-MoS_2/C催化剂的制备及使用寿命的研究 被引量:1
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作者 储杨 李广学 《应用化工》 CAS CSCD 2014年第4期677-679,共3页
采用浸渍法制备Pt/C和Pt-MoS2/C催化剂,用于催化硝基苯加氢反应。采用BET、压汞仪等测试方法测定新鲜催化剂和重复使用后的催化剂的比表面积和孔容。结果表明,比表面积下降27.3%,微孔孔容下降13.2%,总孔容下降5.8%。催化剂失活的主要原... 采用浸渍法制备Pt/C和Pt-MoS2/C催化剂,用于催化硝基苯加氢反应。采用BET、压汞仪等测试方法测定新鲜催化剂和重复使用后的催化剂的比表面积和孔容。结果表明,比表面积下降27.3%,微孔孔容下降13.2%,总孔容下降5.8%。催化剂失活的主要原因为有机物覆盖在催化剂表面,造成表面积下降和孔堵塞。负载MoS2可使Pt/C催化剂延缓比表面积下降和孔堵塞,寿命显著提高,可循环使用14次左右。 展开更多
关键词 硝基苯 催化加氢 pt-moS2/c催化剂 寿命
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高效Li-CO_(2)电池用富缺陷Co-N-C纳米片电极的制备
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作者 雷普英 李雪莲 +4 位作者 王璇 郭文奇 侯凯 齐凯 高丽丽 《现代化工》 CAS CSCD 北大核心 2024年第S02期116-122,129,共8页
采用原位生长-模板保护-裂解组装策略,对双金属类沸石咪唑骨架材料(ZIFs)前驱体进行结构调控,成功制备Co-N_(x)、N-C活性位点及缺陷共存的二维钴-氮-碳纳米片(Co-N-C NFs)催化剂。Co-N-C NFs耦合了内在的Co-N-C的电子结构和外在的富缺... 采用原位生长-模板保护-裂解组装策略,对双金属类沸石咪唑骨架材料(ZIFs)前驱体进行结构调控,成功制备Co-N_(x)、N-C活性位点及缺陷共存的二维钴-氮-碳纳米片(Co-N-C NFs)催化剂。Co-N-C NFs耦合了内在的Co-N-C的电子结构和外在的富缺陷的二维片层结构,为锂-二氧化碳电池(LCB)提供了有利的气-液-固三相反应界面;纳米薄片彼此交互,构建出有利于CO_(2)吸脱附、锂离子和电子迁移输运路径以及便于产物寄宿的空间结构。基于Co-N-C NFs催化剂正极构筑LCB电池,电池表现出优异的电化学性能,放电容量达到2880μAh/cm^(2),在100μA/cm^(2)的大电流密度下,放-充电平台维持在2.60 V和4.40 V,且能稳定工作超1480 h。 展开更多
关键词 锂-二氧化碳电池 co-N-c催化剂 富缺陷 金属-有机骨架材料 双模板
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Nb_(2)O_(5)/Nb_(2)C催化剂的制备及其光催化NO转化的性能 被引量:1
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作者 王静 李喜兰 +2 位作者 丘宇锴 刘续兴 陈成志 《当代化工》 CAS 2024年第5期1148-1152,共5页
采用焙烧法原位构建Nb_(2)O_(5)/Nb_(2)C异质样品,通过XRD、Raman、SEM、BET、UV-Vis DRS、MottSchottky及EIS等技术对样品的结构及性质进行分析,以NO为目标污染物评价其光催化活性。结果表明:Nb_(2)O_(5)/Nb_(2)C异质样品能够提供较多... 采用焙烧法原位构建Nb_(2)O_(5)/Nb_(2)C异质样品,通过XRD、Raman、SEM、BET、UV-Vis DRS、MottSchottky及EIS等技术对样品的结构及性质进行分析,以NO为目标污染物评价其光催化活性。结果表明:Nb_(2)O_(5)/Nb_(2)C异质样品能够提供较多的反应活性位点、提高光的利用率及光生电子和空穴的分离效率,进而提高其光催化活性;在模拟太阳光照射下,其对NO的转化率达到了50.5%,分别为Nb_(2)O_(5)和Nb_(2)C样品的2.4倍和14.4倍,且在NO转化过程中,NO_(2)选择性转化率仅为0.75%。 展开更多
关键词 Nb_(2)O_(5)/Nb_(2)c 光催化 NO转化 复合材料 环境 催化剂
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Unlocking the decomposition limitations of the Li2C2O4 for highly efficient cathode preliathiations 被引量:2
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作者 Hongqiang Zhang Tiansheng Bai +13 位作者 Jun Cheng Fengjun Ji Zhen Zeng Yuanyuan Li Chenwu Zhang Jiaxian Wang Weihao Xia Naixuan Ci Yixuan Guo Dandan Gao Wei Zhai Jingyu Lu Lijie Ci Deping Li 《Advanced Powder Materials》 2024年第5期58-68,共11页
The development of high-energy-density Li-ion batteries is hindered by the irreversible capacity loss during the initial charge-discharge process.Therefore,pre-lithiation technology has emerged in the past few decades... The development of high-energy-density Li-ion batteries is hindered by the irreversible capacity loss during the initial charge-discharge process.Therefore,pre-lithiation technology has emerged in the past few decades as a powerful method to supplement the undesired lithium loss,thereby maximizing the energy utilization of LIBs and extending their cycle life.Lithium oxalate(Li_(2)C_(2)O_(4)),with a high lithium content and excellent air stability,has been considered one of the most promising materials for lithium compensation.However,the sluggish electrochemical decomposition kinetics of the material severely hinders its further commercial application.Here,we introduce a recrystallization strategy combined with atomic Ni catalysts to modulate the mass transport and decomposition reaction kinetics.The decomposition potential of Li_(2)C_(2)O_(4)is significantly decreased from~4.90V to~4.30V with a high compatibility with the current battery systems.In compared to the bare NCM//Li cell,the Ni/N-rGO and Li_(2)C_(2)O_(4)composite(Ni-LCO)modified cell releases an extra capacity of~11.7%.Moreover,this ratio can be magnified in the NCM//SiOx full cell,resulting in a 30.4%higher reversible capacity.Overall,this work brings the catalytic paradigm into the pre-lithiation technology,which opens another window for the development of high-energy-density battery systems. 展开更多
关键词 High-energy-density batteries Pre-lithiation technologies Lithium oxalate(Li2c2O4) REcRYSTALLIZATION Single-atom catalyst
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Pt-Mo_2C/GC催化甲醇氧化的现场电化学-红外光谱研究
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作者 黄海萍 姚希宇 沈培康 《电化学》 CAS CSCD 北大核心 2013年第1期83-88,共6页
应用离子交换法制备了40%Pt在Mo2C/GC上的电催化剂.X射线衍射(XRD)显示,Pt在Mo2C载体上有较好的分散度,平均粒径为3 nm.循环伏安、计时电位测试表明,酸性溶液中,Pt-Mo2C/GC具有良好的甲醇氧化性能.其催化甲醇氧化的起始电位比Pt/C的负移... 应用离子交换法制备了40%Pt在Mo2C/GC上的电催化剂.X射线衍射(XRD)显示,Pt在Mo2C载体上有较好的分散度,平均粒径为3 nm.循环伏安、计时电位测试表明,酸性溶液中,Pt-Mo2C/GC具有良好的甲醇氧化性能.其催化甲醇氧化的起始电位比Pt/C的负移了90 mV.这一优异性能与Pt和载体Mo2C之间的协同作用有关.现场红外光谱电化学测量显示,甲醇在Pt/C电极氧化的中间产物是桥式吸附COB和线性吸附COL,而在Pt-Mo2C/GC电极则未检测到有害中间产物CO,其氧化终产物均为CO2. 展开更多
关键词 电催化 pt-mo2c Gc PT c 甲醇 现场电化学红外光谱
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Ultrafine Pt nanoparticles supported on double-shelled C/TiO2 hollow spheres material as highly efficient methanol oxidation catalysts 被引量:6
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作者 Xiaoyu Yue Yuguang Pu +2 位作者 Wen Zhang Ting Zhang Wei Gao 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2020年第10期275-282,共8页
Catalyst support is extremely important for future fuel cell devices.In this work,we developed doubleshelled C/TiO2(DSCT)hollow spheres as an excellent catalyst support via a template-directed method.The combination o... Catalyst support is extremely important for future fuel cell devices.In this work,we developed doubleshelled C/TiO2(DSCT)hollow spheres as an excellent catalyst support via a template-directed method.The combination of hollow structure,TiO2 shell and carbon layer results in excellent electron conductivity,electrocatalytic activity,and chemical stability.These uniformed DSCT hollow spheres are used as catalyst support to synthesize Pt/DSCT hollow spheres electrocatalyst.The resulting Pt/DSCT hollow spheres exhibited high catalytic performance with a current density of 462 mA mg^-1 for methanol oxidation reaction,which is 2.52 times higher than that of the commercial Pt/C.Furthermore,the increased tolerance to carbonaceous poisoning with a higher If/Ibratio and a better long-term stability in acid media suggests that the DSCT hollow sphere is a promising C/TiO2-based catalyst support for direct methanol fuel cells applications. 展开更多
关键词 catalyst support c/TiO2 hollow sphere Metal-support interactions Methanol oxidation reaction
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Construction of bifunctional single-atom catalysts on the optimized β-Mo_(2)C surface for highly selective hydrogenation of CO_(2) into ethanol 被引量:4
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作者 Xue Ye Junguo Ma +5 位作者 Wenguang Yu Xiaoli Pan Chongya Yang Chang Wang Qinggang Liu Yanqiang Huang 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2022年第4期184-192,共9页
Green and economical CO_(2)utilization is significant for CO_(2)emission reduction and energy development.Here,the 1D Mo_(2)C nanowires with dominant(101)crystal surfaces were modified by the deposition of atomic func... Green and economical CO_(2)utilization is significant for CO_(2)emission reduction and energy development.Here,the 1D Mo_(2)C nanowires with dominant(101)crystal surfaces were modified by the deposition of atomic functional components Rh and K.While unmodifiedβMo_(2)C could only convert CO_(2)to methanol,the designed catalyst of K_(0.2)Rh_(0.2)/β-Mo_(2)C exhibited up to 72.1%of ethanol selectivity at 150℃.It was observed that the atomically dispersed Rh could form the bifunctional active centres with the active carrierβMo_(2)C with the synergistic effects to achieve highly specific controlled C–C coupling.By promoting the CO_(2)adsorption and activation,the introduction of an alkali metal(K)mainly regulated the balanced performance of the two active centres,which in turn improved the hydrogenation selectivity.Overall,the controlled modification ofβMo_(2)C provides a new design strategy for the highly efficient,lowtemperature hydrogenation of CO_(2)to ethanol with single-atom catalysts,which provides an excellent example for the rational design of the complex catalysts. 展开更多
关键词 cO_(2)hydrogenation cc coupling Single-atom catalyst Ethanol synthesis
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Screening of MgO- and CeO_2-Based Catalysts for Carbon Dioxide Oxidative Coupling of Methane to C_(2+) Hydrocarbons 被引量:5
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作者 Istadi Nor Aishah Saidina Amin 《Journal of Natural Gas Chemistry》 CAS CSCD 2004年第1期23-35,共13页
The catalyst screening tests for carbon dioxide oxidative coupling of methane (CO2-OCM) have been investigated over ternary and binary metal oxide catalysts. The catalysts are prepared by doping MgO- and CeO2-based so... The catalyst screening tests for carbon dioxide oxidative coupling of methane (CO2-OCM) have been investigated over ternary and binary metal oxide catalysts. The catalysts are prepared by doping MgO- and CeO2-based solids with oxides from alkali (Li2O), alkaline earth (CaO), and transition metal groups (WO3 or MnO). The presence of the peroxide (O2-2) active sites on the Li2O2, revealed by Raman spectroscopy, may be the key factor in the enhanced performance of some of the Li2O/MgO catalysts. The high reducibility of the CeO2 catalyst, an important factor in the CO2-OCM catalyst activity, may be enhanced by the presence of manganese oxide species. The manganese oxide species increases oxygen mobility and oxygen vacancies in the CeO2 catalyst. Raman and Fourier Transform Infra Red (FT-IR) spectroscopies revealed the presence of lattice vibrations of metal-oxygen bondings and active sites in which the peaks corresponding to the bulk crystalline structures of Li2O, CaO, WO3 and MnO are detected. The performance of 5%MnO/15%CaO/CeO2 catalyst is the most potential among the CeO2-based catalysts, although lower than the 2%Li2O/MgO catalyst. The 2%Li2O/MgO catalyst showed the most promising C2+ hydrocarbons selectivity and yield at 98.0% and 5.7%, respectively. 展开更多
关键词 catalyst screening carbon dioxide oxidative coupling METHANE ternary metal oxide binary metal oxide MGO cEO2 c2+ hydrocarbons
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Efficient catalytic conversion of jatropha oil to high grade biofuel on Ni-Mo_(2)C/MCM-41 catalysts with tuned surface properties 被引量:3
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作者 Xiangze Du Keyao Zhou +4 位作者 Linyuan Zhou Xiaomei Lei Huiru Yang Dan Li Changwei Hu 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2021年第10期425-435,I0012,共12页
The activity of Mo_(2) C-based catalyst on vegetable oil conversion into biofuel could be greatedly promoted by tuning the carbon content,while its modification mechanism on the surface properties remained elusive.Her... The activity of Mo_(2) C-based catalyst on vegetable oil conversion into biofuel could be greatedly promoted by tuning the carbon content,while its modification mechanism on the surface properties remained elusive.Herein,the exposed active sites,the particle size and Lewis acid amount of Ni-Mo_(2) C/MCM-41 catalysts were regulated by varying CH_(4) content in carbonization gas.The activity of Ni-Mo_(2) C/MCM-41 catalysts in jatropha oil(JO)conversion showed a volcano-like trend over the catalysts with increasing CH_(4) content from 15%to 50%in the preparation process.The one prepared by 25%CH_(4) content(NiMo_(2) C(25)/MCM-41)exhibited the outstanding catalytic performance with 83.9 wt%biofuel yield and95.2%C_(15)-C_(18) selectivity.Such a variation of activity was ascribed to the most exposed active sites,the smallest particle size,and the lowest Lewis acid amount from Ni^(0) on the Ni-Mo_(2) C(25)/MCM-41 catalyst surface.Moreover,the Ni-Mo_(2) C(25)/MCM-41 catalyst could also effectively catalyze the conversion of crude waste cooking oil(WCO)into green diesel.This study offers an effective strategy to improve catalytic performance of molybdenum carbide catalyst on vegetable oil conversion. 展开更多
关键词 Ni-Mo_(2)c/McM-41 catalyst cARBONIZATION Jatropha oil crude waste cooking oil Green diesel
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Tuned selectivity and enhanced activity of CO_(2) methanation over Ru catalysts by modified metal-carbonate interfaces 被引量:2
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作者 Qiaojuan Wang Yating Gao +4 位作者 Chantsalmaa Tumurbaatar Tungalagtamir Bold Fei Wei Yihu Dai Yanhui Yang 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2022年第1期38-46,I0002,共10页
Carbonate-modified metal-support interfaces allow Ru/MnCO_(3) catalyst to exhibit over 99% selectivity,great specific activity and long-term anti-CO poisoning stability in atmospheric CO_(2) methanation.As a contrast,... Carbonate-modified metal-support interfaces allow Ru/MnCO_(3) catalyst to exhibit over 99% selectivity,great specific activity and long-term anti-CO poisoning stability in atmospheric CO_(2) methanation.As a contrast,Ru/MnO catalyst with metal-oxide interfaces prefers reverse water-gas shift rather than methanation route,along with a remarkably lower activity and a less than 15% CH_(4) selectivity.The carbonatemodified interfaces are found to stabilize the Ru species and activate CO_(2) and H_(2) molecules.Ru-CO^(4) species are identified as the reaction intermediates steadily formed from CO_(2) dissociation,which show moderate adsorption strength and high reactivity in further hydrogenation to CH_(4),Furthermore,carbonates of Ru/MnCO_(3) are found to be consumed by hydrogenation to form CH_(4) and replenished by exchange with CO_(2),which are in a dynamic equilibrium during the reaction.Modification with surface carbonates is proved as an efficient strategy to endow metal-support interfaces of Ru-based catalysts with unique catalytic functions for selective CO_(2) hydrogenation. 展开更多
关键词 c0_(2)methanation Ru catalyst MNO cARBONATE Metal-support interface
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Effect of CO_2 on the structural variation of Na_2WO_4/Mn/SiO_2 catalyst for oxidative coupling of methane to ethylene 被引量:2
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作者 Jia Shi Lu Yao Changwei Hu 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2015年第4期394-400,共7页
In this work,the influence of CO2 on the structural variation and catalytic performance of Na2WO4/Mn/Si O2 for oxidative coupling of methane to ethylene was investigated. The catalyst was prepared by impregnation meth... In this work,the influence of CO2 on the structural variation and catalytic performance of Na2WO4/Mn/Si O2 for oxidative coupling of methane to ethylene was investigated. The catalyst was prepared by impregnation method and characterized by XRD,Raman and XPS techniques. Appropriate amount of CO2 in the reactant gases enhanced the formation of surface tetrahedral Na2WO4 species and promoted the migration of O in MOx,Na,W from the catalyst bulk to surface,which were favorable for oxidative coupling of methane. When the molar ratio of CH4/O2/CO2 was 3/1/2,enriched surface tetrahedral Na2WO4 species and high surface concentration of O in MOx,Na,W were detected,and then high CH4 conversion of 33.1% and high C2H4 selectivity of 56.2% were obtained. With further increase of CO2 in the reagent gases,the content of active surface tetrahedral Na2WO4 species and surface concentration of O in MOx,Na,W decreased,while that of inactive species(Mn WO4 and Mn2O3) increased dramatically,leading to low CH4 conversion and low C2H4 selectivity. It could be speculated that Na2WO4 crystal was transformed into Mn WO4 crystal with excessive CO2 added under the reaction conditions. Pretreatment of Na2WO4/Mn/Si O2 catalyst by moderate amount of CO2 before OCM also promoted the formation of Na2WO4 species. 展开更多
关键词 Oxidative coupling of methane cO2 c2H4 Na2WO4/Mn/SiO2catalyst Structural variation
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