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Vacancy defect MoSeTe embedded in N and F co-doped carbon skeleton for high performance sodium ion batteries and hybrid capacitors
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作者 Dehui Yang Wentao Guo +6 位作者 Fei Guo Jiaming Zhu Gang Wang Hui Wang Guanghui Yuan Shenghua Ma Beibei Wang 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第3期652-664,I0014,共14页
Sodium-ion batteries(SIBs) and hybrid capacitors(SIHCs) have garnered significant attention in energy storage due to their inherent advantages,including high energy density,cost-effectiveness,and enhanced safety.Howev... Sodium-ion batteries(SIBs) and hybrid capacitors(SIHCs) have garnered significant attention in energy storage due to their inherent advantages,including high energy density,cost-effectiveness,and enhanced safety.However,developing high-performance anode materials to improve sodium storage performa nce still remains a major challenge.Here,a facile one-pot method has been developed to fabricate a hybrid of MoSeTe nanosheets implanted within the N,F co-doped honeycomb carbon skeleton(MoSeTe/N,F@C).Experimental results demonstrate that the incorporation of large-sized Te atoms into MoSeTe nanosheets enlarges the layer spacing and creates abundant anion vacancies,which effectively facilitate the insertion/extraction of Na^(+) and provide numerous ion adsorption sites for rapid surface capacitive behavior.Additionally,the heteroatoms N,F co-doped honeycomb carbon skeleton with a highly conductive network can restrain the volume expansion and boost reaction kinetics within the electrode.As anticipated,the MoSeTe/N,F@C anode exhibits high reversible capacities along with exceptional cycle stability.When coupled with Na_(3)V_(2)(PO_(4))_(3)@C(NVPF@C) to form SIB full cells,the anode delivers a reversible specific capacity of 126 mA h g^(-1) after 100 cycles at 0.1 A g^(-1).Furthermore,when combined with AC to form SIHC full cells,the anode demonstrates excellent cycling stability with a reversible specific capacity of50 mA h g^(-1) keeping over 3700 cycles at 1.0 A g^(-1).In situ XRD,ex situ TEM characterization,and theoretical calculations(DFT) further confirm the reversibility of sodium storage in MoSeTe/N,F@C anode materials during electrochemical reactions,highlighting their potential for widespread practical application.This work provides new insights into the promising utilization of advanced transition metal dichalcogenides as anode materials for Na^(+)-based energy storage devices. 展开更多
关键词 MoSeTe n F co-doped honeycomb carbon skeleton Sodium-ion batteries Sodium-ion hybrid capacitor
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Preparation, Characterization and Photocatalytic Activity of Fe, La Co-doped Nanometer Titanium Dioxide Photocatalysts 被引量:2
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作者 石中亮 郭满 +1 位作者 王林军 姚淑华 《Chinese Journal of Chemical Physics》 SCIE CAS CSCD 2016年第2期199-204,I0001,共7页
A series of photocatalysts of un-doped, single-doped and co-doped nanometer titanium diox- ide (TiO2) have been successfully prepared by template method using Fe(NO3)3.9H2O, La(NO3)3.6H2O, and tetrabutyl titanat... A series of photocatalysts of un-doped, single-doped and co-doped nanometer titanium diox- ide (TiO2) have been successfully prepared by template method using Fe(NO3)3.9H2O, La(NO3)3.6H2O, and tetrabutyl titanate as precursors and glucan as template. Scanning electron microscopy, X-ray diffraction, and N2 adsorption-desorption measurement were employed to characterize the morphology, crystal structure and surface structure of the samples. The photo-absorbance of the obtained catalysts was measured by UV-Vis absorption spectroscopy, and the photocatalytic activities of the prepared samples under UV and visible light were estimated by measuring the degradation rate of methyl orange in an aqueous solution. The characterizations indicated that the prepared photocatalysts consisted of anatase phase and possessed high surface area of ca. 163-176 m2/g. It was shown that the Fe and La co-doped nano-TiO2 could be activated by visible light and could thus be used as an effective catalyst in photo-oxidation reactions. The synergistic effect of Fe and La co-doping played an important role in improving the photocatalytic activity. In addition, the possibility of cyclic usage of co-doped nano-TiO2 was also confirmed, the photocatalytic activity of codoped nano-TiO2 remained above 89.6% of the fresh sample after being used four times. 展开更多
关键词 nanometer titanium dioxide fe and La co-doping Photocatalytic activity Template method Methyl orange
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MOFs衍生多孔TiO_(2)/C、N掺杂Fe_(2)O_(3)复合材料的制备及其光催化性能 被引量:1
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作者 谢倩祎 程爱华 《太阳能学报》 EI CAS CSCD 北大核心 2024年第1期47-55,共9页
将TiO_(2)加入NH_(2)-MIL-101(Fe)前驱体中,采用溶剂热法制备TiO_(2)/NH_(2)-MIL-101(Fe),进一步经高温热处理得到TiO_(2)/C、N掺杂Fe_(2)O_(3)复合材料(TiO_(2)/C、N-Fe_(2)O_(3))。采用X射线衍射(XRD)、扫描电子显微镜(SEM)、光电子能... 将TiO_(2)加入NH_(2)-MIL-101(Fe)前驱体中,采用溶剂热法制备TiO_(2)/NH_(2)-MIL-101(Fe),进一步经高温热处理得到TiO_(2)/C、N掺杂Fe_(2)O_(3)复合材料(TiO_(2)/C、N-Fe_(2)O_(3))。采用X射线衍射(XRD)、扫描电子显微镜(SEM)、光电子能谱(XPS)、紫外-可见分光漫反射(UV-Vis DRS)和荧光光谱(PL)等方法对所得样品的晶体结构、形貌特征、组成及光谱特性进行表征。在模拟太阳光照射下对罗丹明B(RhB)溶液进行降解,评价其光催化活性。结果表明,C、N均匀掺杂在Fe_(2)O_(3)中,TiO_(2)复合C、N掺杂Fe_(2)O_(3)后禁带宽度减小,模拟太阳光照射2.5 h后,在0.1 g/L TiO_(2)/C、N-Fe_(2)O_(3)复合材料的光催化作用下,10 mg/L罗丹明B的去除率达到95%,速率常速为0.0192 min^(-1),效果较TiO_(2)和C、N-Fe_(2)O_(3)有明显提高。所得复合材料稳定性好、可重复利用。MOFs衍生多孔C、N掺杂Fe_(2)O_(3)与TiO_(2)的复合缩短了带隙,强化了空穴与电子的分离从而提高可见光催化活性。 展开更多
关键词 fe基-MOFs 光催化 TiO_(2)/C、n掺杂fe_(2)O_(3) 罗丹明B
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Fe/N/C材料在质子交换膜燃料电池中阴极催化剂的研究进展
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作者 李宬志 冯骞 +1 位作者 李超 刘伟京 《应用化工》 CAS CSCD 北大核心 2024年第4期991-995,共5页
从ORR反应的机理出发,结合Fe/N/C材料的制备方式,从活性位点角度分析了Fe/N/C材料高效氧还原电催化的机制,并针对在高性能Fe/N/C材料开发过程中存在的各种稳定性问题进行阐述。对于Fe/N/C催化剂在燃料电池中的应用前景提出建议和展望,... 从ORR反应的机理出发,结合Fe/N/C材料的制备方式,从活性位点角度分析了Fe/N/C材料高效氧还原电催化的机制,并针对在高性能Fe/N/C材料开发过程中存在的各种稳定性问题进行阐述。对于Fe/N/C催化剂在燃料电池中的应用前景提出建议和展望,为今后Fe/N/C材料的发展提供了参考。 展开更多
关键词 fe/n/C材料 氧还原反应 质子交换膜燃料电池 活性位点 电催化
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Tuning interface mechanism of FeCo alloy embedded N,S-codoped carbon substrate for rechargeable Zn-air battery 被引量:1
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作者 Hui Chang Lulu Zhao +4 位作者 Shan Zhao Zong-Lin Liu Peng-Fei Wang Ying Xie Ting-Feng Yi 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第6期400-410,I0010,共12页
The interface mechanism between catalyst and carbon substrate has been the focus of research.In this paper,the FeCo alloy embedded N,S co-doped carbon substrate bifunctional catalyst(FeCo/S-NC)is obtained by a simple ... The interface mechanism between catalyst and carbon substrate has been the focus of research.In this paper,the FeCo alloy embedded N,S co-doped carbon substrate bifunctional catalyst(FeCo/S-NC)is obtained by a simple one-step pyrolysis strategy.The experimental results and density functional theory(DFT)calculation show that the formation of FeCo alloy is conducive to promoting electron transfer,and the introduction of S atom can enhance the interaction between FeCo alloy and carbon substrate,thus inhibiting the migration and agglomeration of particles on the surface of carbon material.The FeCo/SNC catalysts show outstanding performance for oxygen reduction reaction(ORR)and oxygen evolution reaction(OER).FeCo/S-NC shows a high half-wave potential(E_(1/2)=0.8823 V)for ORR and a low overpotential at 10 mA cm^(-2)(E_(j=10)=299 mV)for OER.In addition,compared with Pt/C+RuO_(2) assembled Zn-air battery(ZAB),the FeCo/S-NC assembled ZAB exhibits a larger power density(198.8 mW cm^(-2)),a higher specific capacity(786.1 mA h g_(zn)~(-1)),and ultra-stable cycle performance.These results confirm that the optimized composition and the interfacial interaction between catalyst and carbon substrate synergistically enhance the electrochemical performance. 展开更多
关键词 feCo alloy n S co-doped carbon DFT calculation Zn-air batteries Interfacial interaction
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利用Fe-P-N-H_(2)O体系E-pH图对硝磷酸体系合成磷酸铁的热力学分析研究
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作者 谷任权 吴俊虎 +3 位作者 杨秀山 张志业 许德华 钟本和 《现代化工》 CAS CSCD 北大核心 2024年第S02期290-295,302,共7页
硝磷酸法合成磷酸铁新工艺因生产流程简单、磷源成本低、设备投资小、能耗较低、绿色环保而具有很强的竞争力。利用FactSage和HSC等热力学软件中已有的热力学数据并运用E-pH图的绘制原理,得到Fe-P-N-H_(2)O体系不同浓度、298~473 K的E-p... 硝磷酸法合成磷酸铁新工艺因生产流程简单、磷源成本低、设备投资小、能耗较低、绿色环保而具有很强的竞争力。利用FactSage和HSC等热力学软件中已有的热力学数据并运用E-pH图的绘制原理,得到Fe-P-N-H_(2)O体系不同浓度、298~473 K的E-pH关系图。研究表明,在水溶液中,磷酸铁具有较大的热力学稳定区域,能够很好地解释现有的液相沉淀法制备磷酸铁的实际操作条件。此外,从E-pH图中获得了共沉淀法合成磷酸铁的合适条件:温度为363 K左右、高氧化还原电位为0.5 V、适宜pH为1~3、浓度为0.01 mol/L,该工艺为硝磷酸体系共沉淀法合成磷酸铁提供了热力学理论依据。 展开更多
关键词 fe-P-n-H_(2)O体系 磷酸铁 热力学
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铋牺牲法制备石墨烯负载Fe-N单原子位点增效氧还原催化和锌-空气电池性能
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作者 杨志远 张燕 +2 位作者 肖娟定 王俊英 王俊中 《Chinese Journal of Catalysis》 SCIE CAS CSCD 2024年第4期272-281,共10页
催化氧反应(ORR)是锌空电池和氢燃料电池能量转化的关键过程,然而其反应速率往往较低,因此开发高活性且耐久的催化材料至关重要.当前,研发低成本、高效率且稳定的氧还原催化剂已成为国内外的研究热点.其中,富含金属-氮-碳活性位点的低成... 催化氧反应(ORR)是锌空电池和氢燃料电池能量转化的关键过程,然而其反应速率往往较低,因此开发高活性且耐久的催化材料至关重要.当前,研发低成本、高效率且稳定的氧还原催化剂已成为国内外的研究热点.其中,富含金属-氮-碳活性位点的低成本ORR催化材料,因其具有替代贵金属的潜力,成为重要的候选材料.然而,在制备这类催化剂时,所用分子前驱体在热解过程中易团聚形成金属基硬颗粒,如何减少热解过程中金属成分的自发聚集和不良副产物的生成,提高活性单原子的利用率,特别是在使用廉价分子前驱体(如三聚氰胺和铁盐)时,仍面临挑战.本研究旨在探索有效的制备策略,以优化催化剂性能,推动其在能源转换领域的应用.本文报道了一种以硝酸铋为牺牲剂,石墨烯为导电载体,通过热解廉价的三聚氰胺和铁盐,合成石墨烯负载丰富Fe-N-C活性位点催化剂的新方法.该方法中硝酸铋前驱体高温热解生成的铋铁合金或氧化铋因表面没有碳层,而容易被热酸除去,形成更多的可接近的FeNx活性位点,从而有效地抑制铁基颗粒和管状碳结构的形成,实现了催化剂的高效合成.双球差矫正电镜、X-射线光电子能谱和X-射线吸收结构光谱等表征证明,铋化合物去除后留下空位被铁原子取代,增加了Fe-N-C位点密度,并且铁以单原子活性位形式存在.实验结果表明,所制备的催化剂表现出高氧还原性能,在碱性和酸性条件下的半波电位分别为0.916和0.784 V.石墨烯基催化剂的动力学电流密度(0.9 V vs.RHE)达到10.41 mA cm^(-2),是不加铋化合物样品的6倍,贵金属Pt/C催化剂的4倍.此外,催化剂的塔菲尔斜率为59 mV dec^(-1),低于不加铋化合物样品(80 mV dec^(-1))、不加石墨烯样品(93 mV dec^(-1))、无金属样品(88 mV dec^(-1))和Pt/C(80 mV dec^(-1)).在0.1 mol L^(-1) KOH条件下,催化剂循环10000圈后,半波电位仅衰减15 mV,低于Pt/C(36 mV)和无铋对照样(20 mV),表明催化剂具有较好的稳定性.由于电化学法制备的石墨烯比热解法制备的非晶碳具有更好的耐腐蚀性,从而可以提高阴极氧还原的稳定性.另外,所制备的催化剂应用在锌-空气电池中时,最大功率密度可达201.4 mW cm-2,且循环1000次后电池电压几乎没有衰减.综上,本研究通过引入铋化合物,显著提升了廉价前驱物铁-三聚氰胺的金属单原子化效率.利用电化学法合成了石墨烯负载的Fe-N-C催化活性位,制备出高活性、高稳定的催化剂.将该低成本催化剂应用于锌-空气电池的阴极,其表现出良好的长循环性能.本研究为制备低成本、高性能的金属-氮-碳基电催化剂提供了新思路. 展开更多
关键词 氧还原反应 石墨烯 锌-空气电池 fe-n-C
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Interconnected carbon nanocapsules with high N/S co-doping as stable and high-capacity potassium-ion battery anode 被引量:6
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作者 Honghui Bi Xiaojun He +3 位作者 Lei Yang Hongqiang Li Biyu Jin Jieshan Qiu 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2022年第3期195-204,I0007,共11页
Carbonaceous materials have drawn much attention in potassium-ion batteries (PIBs) due to their low price and superior physicochemical properties. However, the application of carbonaceous materials in PIB anodes is hi... Carbonaceous materials have drawn much attention in potassium-ion batteries (PIBs) due to their low price and superior physicochemical properties. However, the application of carbonaceous materials in PIB anodes is hindered by sluggish kinetics and large volume expansion. Herein, N/S co-doped carbon nanocapsule (NSCN) is constructed for superior K+ storage. The NSCN possesses 3D nanocapsule framework with abundant meso/macropores, which guarantees structural robustness and accelerates ions/electrons transportation. The high-level N/S co-doping in carbon matrix not only generates ample defects and active sites for K+ adsorption, but also expands interlayer distance for facile K+ intercalation/deintercalation. As a result, the NSCN electrode delivers a high reversible capacity (408 mAh g^(−1) at 0.05 A g^(−1)), outstanding rate capability (149 mAh g^(−1) at 5 A g^(−1)) and favorable cycle stability (150m Ah g^(−1) at 2 A g^(−1) after 2000 cycles). Ex situ TEM, Raman and XPS measurements demonstrate the excellent stability and reversibility of NSCN electrode during potassiation/depotassiation process. This work provides inspiration for the optimization of energy storage materials by structure and doping engineering. 展开更多
关键词 3D Carbon nanocapsules n/S co-doping Carbon anode Potassium-ion battery
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MOF衍生的Fe-N-C电催化剂,用于高效氧还原反应
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作者 张景涛 王奎 +3 位作者 刘乐 任杰 杨浩伟 闫晓丽 《功能材料》 CAS CSCD 北大核心 2024年第8期8103-8110,8127,共9页
由于传统能源的大量消耗与环境污染等问题,探索高效清洁的新型能源显的越来越重要。锌空电池作为一种绿色清洁能源受到了广泛的关注,然而其阴极氧还原(ORR)反应较为缓慢限制了其大规模应用。因此开发一种高效、绿色经济的非贵金属催化... 由于传统能源的大量消耗与环境污染等问题,探索高效清洁的新型能源显的越来越重要。锌空电池作为一种绿色清洁能源受到了广泛的关注,然而其阴极氧还原(ORR)反应较为缓慢限制了其大规模应用。因此开发一种高效、绿色经济的非贵金属催化剂对氧还原反应至关重要。以金属-有机骨架(MOF)作为前驱体,通过高温热解合成了铁基氮掺杂碳电催化剂(Fe-N-C)。Fe-N-C催化剂由于其较强的金属-氮配位结构可以避免金属原子的聚集和溶解,使金属原子均匀分散在氮掺杂的碳载体上,实现较高的ORR性能。制备的Fe-N-C-2催化剂具有丰富的孔隙结构和大量的Fe-N X活性位点。其在碱性电解质中半波电位为0.91 V,在酸性电解质中半波电位为0.75 V。同时将其应用于锌空电池具有高达1.47 V的开路电压和163.1 mW/cm^(2)的功率密度。该策略为设计二维结构以构建高性能电催化剂提供了一种有前途的方法。 展开更多
关键词 非贵金属催化剂 金属-有机框架 fe-n-C 氧还原反应 锌空气电池
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Multiple-dimensioned defect engineering for graphite felt electrode of vanadium redox flow battery
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作者 Yingqiao Jiang Yinhui Wang +7 位作者 Gang Cheng Yuehua Li Lei Dai Jing Zhu Wei Meng Jingyu Xi Ling Wang Zhangxing He 《Carbon Energy》 SCIE EI CAS CSCD 2024年第2期143-153,共11页
The scarcity of wettability,insufficient active sites,and low surface area of graphite felt(GF)have long been suppressing the performance of vanadium redox flow batteries(VRFBs).Herein,an ultra-homogeneous multipledim... The scarcity of wettability,insufficient active sites,and low surface area of graphite felt(GF)have long been suppressing the performance of vanadium redox flow batteries(VRFBs).Herein,an ultra-homogeneous multipledimensioned defect,including nano-scale etching and atomic-scale N,O codoping,was used to modify GF by the molten salt system.NH_(4)Cl and KClO_(3) were added simultaneously to the system to obtain porous N/O co-doped electrode(GF/ON),where KClO_(3) was used to ultra-homogeneously etch,and O-functionalize electrode,and NH4Cl was used as N dopant,respectively.GF/ON presents better electrochemical catalysis for VO_(2)+/VO_(2)+ and V3+/V2+ reactions than only O-functionalized electrodes(GF/O)and GF.The enhanced electrochemical properties are attributed to an increase in active sites,surface area,and wettability,as well as the synergistic effect of N and O,which is also supported by the density functional theory calculations.Further,the cell using GF/ON shows higher discharge capacity,energy efficiency,and stability for cycling performance than the pristine cell at 140 mA cm^(−2) for 200 cycles.Moreover,the energy efficiency of the modified cell is increased by 9.7% from 55.2% for the pristine cell at 260 mA cm^(−2).Such an ultra-homogeneous etching with N and O co-doping through“boiling”molten salt medium provides an effective and practical application potential way to prepare superior electrodes for VRFB. 展开更多
关键词 graphite felt molten salt n O co-doping ultra-homogeneous etching vanadium redox flow battery
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First-principles study of metallic carbon nanotubes with boron/nitrogen co-doping 被引量:1
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作者 陈灵娜 马松山 +2 位作者 欧阳芳平 肖金 徐慧 《Chinese Physics B》 SCIE EI CAS CSCD 2011年第1期541-547,共7页
Using the first-principles calculations, we investigate the electronic band structure and the quantum transport properties of metallic carbon nanotubes (MCNTs) with B/N pair co-doping. The results about formation en... Using the first-principles calculations, we investigate the electronic band structure and the quantum transport properties of metallic carbon nanotubes (MCNTs) with B/N pair co-doping. The results about formation energy show that the B/N pair co-doping configuration is a most stable structure. We find that the electronic structure and the transport properties are very sensitive to the doping concentration of the B/N pairs in MCNTs, where the energy gaps increase with doping concentration increasing both along the tube axis and around the tube, because the mirror symmetry of MCNT is broken by doping B/N pairs. In addition, we discuss conductance dips of the transmission spectrum of doped MCNTs. These unconventional doping effects could be used to design novel nanoelectronic devices. 展开更多
关键词 metallic carbon nanotube B/n pairs co-doping energy gap FIRST-PRInCIPLES
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Inherent mass transfer engineering of a Co,N co-doped carbon material towards oxygen reduction reaction 被引量:1
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作者 Yanzhi Wang Bin Wang +6 位作者 Haitao Yuan Zuozhong Liang Zhehao Huang Yuye Zhou Wei Zhang Haoquan Zheng Rui Cao 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2021年第7期391-396,共6页
Oxygen reduction reaction (ORR) is an important process for the conversion and utilization of a wide range of renewable energy sources, and is critical for the shape of future energy scenario [1–10]. However, ORR is ... Oxygen reduction reaction (ORR) is an important process for the conversion and utilization of a wide range of renewable energy sources, and is critical for the shape of future energy scenario [1–10]. However, ORR is a complex four-electron transfer process and is kinetically sluggish. It is urgent to develop high-efficient electrocatalysts to solve this problem [11–15]. Up to now, precious metal-based catalysts such as Pt-based electrocatalysts have been widely studied and found to be one of the most efficient electrocatalysts for ORR. However, the high price and the small reserves limit their large-scale commercialization [10,16–23]. Therefore, in order to fulfill needs for the practical applications, it is necessary to develop low-cost electrocatalysts, also with high activity and great stability [19,24–28]. 展开更多
关键词 Co n co-doped porous carbon ELECTROCATALYSIS Oxygen reduction reaction Zn-air battery
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Fe-N-C单原子纳米酶用于比色-电化学法检测H_(2)O_(2) 被引量:1
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作者 胡丽君 李佳慧 翟艳玲 《聊城大学学报(自然科学版)》 2024年第2期62-68,共7页
具有类酶活性的纳米材料,即纳米酶,已经引起生物催化领域的广泛关注。以原子分散的Fe-N-C单原子催化剂,定义为Fe-N-C单原子纳米酶,具有与某些血红素酶相似的结构,因此具有模拟酶活性。采用二氧化硅模板法制备了Fe-N-C单原子纳米酶,分层... 具有类酶活性的纳米材料,即纳米酶,已经引起生物催化领域的广泛关注。以原子分散的Fe-N-C单原子催化剂,定义为Fe-N-C单原子纳米酶,具有与某些血红素酶相似的结构,因此具有模拟酶活性。采用二氧化硅模板法制备了Fe-N-C单原子纳米酶,分层多孔纳米结构加速了电子转移,进一步提高了反应动力学。由于其固有的理化性质,表现出高的过氧化物酶性能。此外,Fe-N-C纳米酶在较高温度和强酸强碱条件下仍保持较高活性,表明其具有良好的稳定性。以该Fe-N-C纳米酶构建了过氧化氢(H_(2)O_(2))比色传感器,其线性范围为0.05~100 mmol/L、检测限为0.039 mmol/L。此外,该Fe-N-C纳米酶还可应用于电化学检测H_(2)O_(2)。该基于Fe-N-C的H_(2)O_(2)比色体系在临床医学和食品环境分析中具有广阔的应用前景。 展开更多
关键词 fe-n-C 单原子纳米酶 过氧化氢 比色检测 电化学检测
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γ-Fe_(2)O_(3)空心球/Fe-N-C宽电位窗口选择性电催化还原CO_(2)为CO的研究
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作者 聂邓根 赵小杰 +1 位作者 胡唯唯 郭振国 《现代化工》 CAS CSCD 北大核心 2024年第3期124-129,共6页
Fe-N-C材料是一类重要的电催化还原CO_(2)为CO的催化剂,但其只能在较正的电位和较窄的电位窗口实现CO的高选择性,不能满足串联催化中CO被进一步还原的要求。因此,以高纯Fe(phen)_(3)Cl_(2)(phen=1,10-邻菲罗啉)晶体和ZIF-8为前驱体,通... Fe-N-C材料是一类重要的电催化还原CO_(2)为CO的催化剂,但其只能在较正的电位和较窄的电位窗口实现CO的高选择性,不能满足串联催化中CO被进一步还原的要求。因此,以高纯Fe(phen)_(3)Cl_(2)(phen=1,10-邻菲罗啉)晶体和ZIF-8为前驱体,通过热解得到新颖的Fe-N-C担载γ-Fe_(2)O_(3)空心球材料。利用SEM、HR-TEM、XRD、XPS等对催化剂进行表征,并对其电催化还原CO_(2)的性能进行测试。结果表明,该催化剂在-0.5~-1.1 V(相对于可逆氢电极)宽电位窗口表现出优异的CO选择性(CO的法拉第效率大于97%),且在-0.6 V连续电解2 h后电流密度和CO的法拉第效率均基本保持不变,表现出卓越的稳定性。 展开更多
关键词 fe-n-C 电催化 CO_(2)还原 配合物 电位窗口
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Integration of pore structure modulation and B,N co-doping for enhanced capacitance deionization of biomass-derived carbon
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作者 Yao Qiu Chunjie Zhang +7 位作者 Rui Zhang Zhiyuan Liu Huazeng Yang Shuai Qi Yongzhao Hou Guangwu Wen Jilei Liu Dong Wang 《Green Energy & Environment》 SCIE EI CAS CSCD 2023年第5期1488-1500,共13页
Biomass-derived carbon has demonstrated great potentials as advanced electrode for capacitive deionization(CDI),owing to good electroconductivity,easy availability,intrinsic pores/channels.However,conventional simple ... Biomass-derived carbon has demonstrated great potentials as advanced electrode for capacitive deionization(CDI),owing to good electroconductivity,easy availability,intrinsic pores/channels.However,conventional simple pyrolysis of biomass always generates inadequate porosity with limited surface area.Moreover,biomass-derived carbon also suffers from poor wettability and single physical adsorption of ions,resulting in limited desalination performance.Herein,pore structure optimization and element co-doping are integrated on banana peels(BP)-derived carbon to construct hierarchically porous and B,N co-doped carbon with large ions-accessible surface area.A unique expansionactivation(EA)strategy is proposed to modulate the porosity and specific surface area of carbon.Furthermore,B,N co-doping could increase the ions-accessible sites with improved hydrophilicity,and promote ions adsorption.Benefitting from the synergistic effect of hierarchical porosity and B,N co-doping,the resultant electrode manifest enhanced CDI performance for NaCl with large desalination capacity(29.5 mg g^(-1)),high salt adsorption rate(6.2 mg g^(-1)min^(-1)),and versatile adsorption ability for other salts.Density functional theory reveals the enhanced deionization mechanism by pore and B,N co-doping.This work proposes a facile EA strategy for pore structure modulation of biomass-derived carbon,and demonstrates great potentials of integrating pore and heteroatoms-doping on constructing high-performance CDI electrode. 展开更多
关键词 Capacitive deionization Biomass-derived carbon Pore structure B n co-doping Desalination performance
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Photocatalytic Activity of Mo+Fe Co-doped Titanium Dioxide Nanoparticles Prepared by Sol-Gel Method
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作者 刘海林 熊锐 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2013年第1期44-47,共4页
Mo+Fe co-doped TiO2 nano powders were synthesised by sol-gel method. X-ray diffraction and transmission electronic microscopy morphologies showed that the Mo+Fe co-doped TiO2 nano powders were pure anatase phase, wi... Mo+Fe co-doped TiO2 nano powders were synthesised by sol-gel method. X-ray diffraction and transmission electronic microscopy morphologies showed that the Mo+Fe co-doped TiO2 nano powders were pure anatase phase, with the average crystallite size around 20 nm. UV-Vis and photocatalic activity measurements show that this Mo+Fe co-doped TiO2 can absorb visible light, have higher separation efficiency of photoinduced electrons and holes, and possess higher photocatalytic activity compared with anatase TiO2. The enhanced photocatalytic activity of Mo+Fe co-doped TiO2 verified that doping by transition metal ions can also modify the energy band and reduce the recombination centers in TiO2. 展开更多
关键词 Mo+fe co-doped Ti02 anatase photocatalytic activity
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MnO_(2) nanosheet modified N, P co-doping carbon nanofibers on carbon cloth as lithiophilic host to construct high-performance anodes for Li metal batteries
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作者 Xiaoqiang Liu Qian Zhang +6 位作者 Yiru Ma Zhenzhen Chi Huixiang Yin Jie Liu Junfei Huang Ziyang Guo Lei Wang 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2022年第6期270-281,I0008,共13页
Lithium (Li) metal batteries have attracted much attention owing to its ultra-high energy density.However,as important part of Li metal batteries,Li anodes still face many challenges,mainly including uncontrolled dend... Lithium (Li) metal batteries have attracted much attention owing to its ultra-high energy density.However,as important part of Li metal batteries,Li anodes still face many challenges,mainly including uncontrolled dendritic Li formation,dramatical volume variation and serious pulverization.Herein,manganese dioxide (MnO_(2)) nanosheet modified nitrogen (N),phosphorus (P) co-doping carbon nanofibers(NPC) on carbon cloth (CC)(MnO_(2)@NPC-CC) is successfully fabricated through electrodeposition approach and further treated with Li by the molten-infusion method to prepare Li based Mn@NPC-CC(Li-Mn@NPC-CC) electrode.The synergy of MnO_(2) and NPC obviously increases the reaction rate between MnO_(2)@NPC-CC and Li and guides even Li distribution over infusion process.Additionally,theoretical calculation,simulation and experimental results further indicate that N,P,Mn multi-doping effectively improves the superior lithiophilicity of Li-Mn@NPC-CC,which induces uniform Li deposition/dissolution to suppress dendrite growth over cycles.Moreover,conductive and porous NPC matrix not only effectively improves the stability of Li-Mn@NPC-CC,but also provides abundant spaces to accelerate the transfer of ion/electron and buffer electrode dimension variation during cycling.Hence,Li-Mn@NPC-CC-based symmetric cells exhibit extra-long cycling life (over 2200 h) with small hysteresis of 20 mV.When the LiMn@NPC-CC anode couples with air,Li iron phosphate (LiFePO_(4)),or hard carbon (C) cathode,the assembled full cells exhibit outstanding performance with low hysteresis and stable cycling properties.Especially,the corresponding pouch-typed Li–air cells also exhibit good performance at different bending angles and even power a series of electronic devices. 展开更多
关键词 n P co-doped carbon nanofibers on carbon cloth MnO_(2)nanosheet coating Molten-infusion method Li metal anodes Li metal batteries
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Fe、N共掺杂TiO_2纳米管阵列的制备及可见光光催化活性 被引量:36
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作者 吴奇 苏钰丰 +3 位作者 孙岚 王梦晔 王莹莹 林昌健 《物理化学学报》 SCIE CAS CSCD 北大核心 2012年第3期635-640,共6页
应用电化学阳极氧化法结合浸渍和退火后处理制备了Fe和N共掺杂的TiO2纳米管阵列光催化剂,并用场发射扫描电镜(FESEM)、X射线衍射(XRD)、X射线光电子能谱(XPS)和俄歇电子能谱(AES)仪对其进行了表征.结果表明,Fe、N共掺杂对TiO2纳米管阵... 应用电化学阳极氧化法结合浸渍和退火后处理制备了Fe和N共掺杂的TiO2纳米管阵列光催化剂,并用场发射扫描电镜(FESEM)、X射线衍射(XRD)、X射线光电子能谱(XPS)和俄歇电子能谱(AES)仪对其进行了表征.结果表明,Fe、N共掺杂对TiO2纳米管阵列的形貌和结构没有明显影响,Fe和N均掺入了TiO2晶格.紫外-可见(UV-Vis)漫反射光谱显示Fe和N共掺杂TiO2纳米管阵列的吸收带边较纯TiO2纳米管阵列和单一掺杂TiO2纳米管阵列红移,可见光吸收增强.以可见光催化降解罗丹明B(RhB)考察了材料的光催化活性,Fe和N共掺杂TiO2纳米管阵列对RhB的降解速率较纯TiO2纳米管阵列和单一掺杂TiO2纳米管阵列明显提高,证明了Fe、N共掺杂产生的协同效应提高了TiO2纳米管阵列在可见光照射下的光催化活性. 展开更多
关键词 fen 共掺杂 TIO2纳米管阵列 罗丹明B 可见光
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N掺杂碳纳米管环吸附Fe原子的第一性原理研究 被引量:6
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作者 杨忠华 刘贵立 +1 位作者 曲迎东 李荣德 《计算物理》 CSCD 北大核心 2016年第3期374-378,共5页
采用基于密度泛函理论的CASTEP程序研究N掺杂碳纳米管环结构在变形作用下,外壁对Fe原子的吸附能力.结果表明,构造出的新型纳米结构的结合能为负值,具有稳定存在的可能性;N掺杂碳纳米管环显著提高外壁对Fe原子的吸附能力,这是因为掺杂体... 采用基于密度泛函理论的CASTEP程序研究N掺杂碳纳米管环结构在变形作用下,外壁对Fe原子的吸附能力.结果表明,构造出的新型纳米结构的结合能为负值,具有稳定存在的可能性;N掺杂碳纳米管环显著提高外壁对Fe原子的吸附能力,这是因为掺杂体系的活度增大,易与Fe原子间形成Fe-N共价结合键.线性增加拉伸和压缩变形幅度,结构外壁对Fe原子的吸附能呈抛物线式快速下降.相比之下,吸附能对拉伸变形更加敏感. 展开更多
关键词 碳纳米管 n掺杂 fe原子吸附 拉伸/压缩变形
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医用316L不锈钢支架表面沉积(Fe/Pd)_n薄膜的研究 被引量:3
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作者 胡涛 李争显 +3 位作者 麻西群 周廉 介万奇 王海昌 《稀有金属材料与工程》 SCIE EI CAS CSCD 北大核心 2009年第8期1437-1440,共4页
采用真空电弧离子镀技术,在医用316L不锈钢支架上沉积近等原子比的(Fe/Pd)n多层膜。用X射线衍射、扫描电镜、电子能谱研究(Fe/Pd)n多层膜的晶体结构、形貌和成分,分析相的转变。用CTCC-1数字磁通磁场测量仪测量样品的磁性。结果表明:医... 采用真空电弧离子镀技术,在医用316L不锈钢支架上沉积近等原子比的(Fe/Pd)n多层膜。用X射线衍射、扫描电镜、电子能谱研究(Fe/Pd)n多层膜的晶体结构、形貌和成分,分析相的转变。用CTCC-1数字磁通磁场测量仪测量样品的磁性。结果表明:医用316L不锈钢支架表面磁性膜的最佳结构为"Pd/Fe/Pd",经扩散热处理后,(Fe/Pd)n薄膜从fcc结构转变为fct结构,薄膜均匀、致密、结合强度良好,有效磁场强度可达5×10-4T以上,有效磁性可维持6个月。 展开更多
关键词 316L不锈钢 磁性薄膜 电弧离子镀 (fe/Pd)n薄膜
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