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Mild polarization electric field in ultra-thin BN-Fe-graphene sandwich structure for efficient nitrogen reduction
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作者 Ziyuan Xiu Wei Mu +1 位作者 Xin Zhou Xiaojun Han 《Chinese Journal of Catalysis》 SCIE CAS CSCD 2024年第10期126-137,共12页
The electrocatalytic N_(2)reduction reaction(NRR)is expected to supersede the traditional Haber-Bosch technology for NH3 production under ambient conditions.The activity and selectivity of electrochemical NRR are rest... The electrocatalytic N_(2)reduction reaction(NRR)is expected to supersede the traditional Haber-Bosch technology for NH3 production under ambient conditions.The activity and selectivity of electrochemical NRR are restricted to a strong polarized electric field induced by the catalyst,correct electron transfer direction,and electron tunneling distance between bare electrode and active sites.By coupling the chemical vapor deposition method with the poly(methyl methacylate)-transfer method,an ultrathin sandwich catalyst,i.e.,Fe atoms(polarized electric field layer)sandwiched between ultrathin(within electron tunneling distance)BN(catalyst layer)and graphene film(conducting layer),is fabricated for electrocatalytic NRR.The sandwich catalyst not only controls the transfer of electrons to the BN surface in the correct direction under applied voltage but also suppresses hydrogen evolution reaction by constructing a neutral polarization electric field without metal exposure.The sandwich electrocatalyst NRR system achieve NH3 yield of 8.9μg h^(−1)cm^(−2)and Faradaic Efficiency of 21.7%.The N_(2)adsorption,activation,and polarization electric field changes of three sandwich catalysts(BN-Fe-G,BN-Fe-BN,and G-Fe-G)during the electrocatalytic NRR are investigated by experiments and density functional theory simulations.Driven by applied voltage,the neutral polarized electric field induced by BN-Fe-G leads to the high activity of electrocatalytic NRR. 展开更多
关键词 Ultra-thin BN fe doping BN-fe-graphene Mild polarization electric field Nitrogen reduction reaction
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Atomically dispersed Fe sites on hierarchically porous carbon nanoplates for oxygen reduction reaction
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作者 Ruixue Zheng Qinglei Meng +9 位作者 Hao Zhang Teng Li Di Yang Li Zhang Xiaolong Jia Changpeng Liu Jianbing Zhu Xiaozheng Duan Meiling Xiao Wei Xing 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第3期7-15,I0002,共10页
Developing cost-effective,robust and stable non-precious metal catalysts for oxygen reduction reaction(ORR) is of paramount importance for electrochemical energy conversion devices such as fuel cells and metal-air bat... Developing cost-effective,robust and stable non-precious metal catalysts for oxygen reduction reaction(ORR) is of paramount importance for electrochemical energy conversion devices such as fuel cells and metal-air batteries.Although Fe-N-C single atom catalysts(SACs) have been hailed as the most promising candidate due to the optimal binding strength of ORR intermediates on the Fe-N_(4) sites,they suffer from serious mass transport limitations as microporous templates/substrates,i.e.,zeolitic imidazolate frameworks(ZIFs),are usually employed to host the active sites.Motivated by this challenge,we herein develop a hydrogen-bonded organic framework(HOF)-assisted pyrolysis strategy to construct hierarchical micro/mesoporous carbon nanoplates for the deposition of atomically dispersed Fe-N_(4) sites.Such a design is accomplished by employing HOF nanoplates assembled from 2-aminoterephthalic acid(NH_(2)-BDC) and p-phenylenediamine(PDA) as both soft templates and C,N precursors.Benefitting from the structural merits inherited from HOF templates,the optimized catalyst(denoted as Fe-N-C SAC-950) displays outstanding ORR activity with a high half-wave potential of 0.895 V(vs.reversible hydrogen electrode(RHE)) and a small overpotential of 356 mV at 10 mA cm^(-2) for the oxygen evolution reaction(OER).More excitingly,its application potential is further verified by delivering superb rechargeability and cycling stability with a nearly unfading charge-discharge gap of 0.72 V after 160 h.Molecular dynamics(MD) simulations reveal that micro/mesoporous structure is conducive to the rapid mass transfer of O_(2),thus enhancing the ORR performance.In situ Raman results further indicate that the conversion of O_(2) to~*O_(2)-the rate-determining step(RDS) for Fe-N-C SAC-950.This work will provide a versatile strategy to construct single atom catalysts with desirable catalytic properties. 展开更多
关键词 fe single atom catalysts Oxygen reduction reaction Mesoporous structure Active sites Zinc-air battery
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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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Facet effects on bimetallic ZnSn hydroxide microcrystals for selective electrochemical CO_(2)reduction
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作者 Liu Han Cheng-wei Wang +3 位作者 Shan-shan Luo Ying-tang Zhou Bing Li Ming Liu 《Green Energy & Environment》 SCIE EI CAS CSCD 2024年第8期1314-1320,共7页
Employing crystal facets to regulate the catalytic properties in electrocatalytic carbon dioxide reduction reaction(eCO_(2)RR)has been well demonstrated on electrocatalysts containing single metals but rarely explored... Employing crystal facets to regulate the catalytic properties in electrocatalytic carbon dioxide reduction reaction(eCO_(2)RR)has been well demonstrated on electrocatalysts containing single metals but rarely explored for bimetallic systems.Here,we synthesize ZnSn(OH)_(6)(ZSO)microcrystals(MCs)with distinct facets and investigate the facet effects in eCO_(2)RR.Electrochemical studies and in situ Fourier Transform Infrared Spectroscopy(in situ-FTIR)reveal that ZSO MCs produce mainly C1 products of HCOOH and CO.The{111}facet of the ZSO MCS exhibits higher selectivity and faradaic efficiency(FE)than that of the{100}facet over a wide range of potentials(-0.9 V∼-1.3 V versus RHE).Density Functional Theory(DFT)calculations elucidate that the{111}facet is favorable to the adsorption/activation of CO_(2)molecules,the formation of intermediate in the rate-determining step,and the desorption of C1 products of CO and HCOOH molecules. 展开更多
关键词 ZnSn(OH)_(6) crystal facets Electrochemical carbon dioxide reduction c1 product Density functional theory
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Inducing Fe 3d Electron Delocalization and Spin‑State Transition of FeN_(4) Species Boosts Oxygen Reduction Reaction for Wearable Zinc–Air Battery 被引量:3
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作者 Shengmei Chen Xiongyi Liang +7 位作者 Sixia Hu Xinliang Li Guobin Zhang Shuyun Wang Longtao Ma Chi‑Man Lawrence Wu Chunyi Zhi Juan Antonio Zapien 《Nano-Micro Letters》 SCIE EI CAS CSCD 2023年第4期23-39,共17页
Transition metal-nitrogen-carbon materials(M-N-Cs),particularly Fe-N-Cs,have been found to be electroactive for accelerating oxygen reduction reaction(ORR)kinetics.Although substantial efforts have been devoted to des... Transition metal-nitrogen-carbon materials(M-N-Cs),particularly Fe-N-Cs,have been found to be electroactive for accelerating oxygen reduction reaction(ORR)kinetics.Although substantial efforts have been devoted to design Fe-N-Cs with increased active species content,surface area,and electronic conductivity,their performance is still far from satisfactory.Hitherto,there is limited research about regulation on the electronic spin states of Fe centers for Fe-N-Cs electrocatalysts to improve their catalytic performance.Here,we introduce Ti_(3)C_(2) MXene with sulfur terminals to regulate the electronic configuration of FeN_(4) species and dramatically enhance catalytic activity toward ORR.The MXene with sulfur terminals induce the spin-state transition of FeN_(4) species and Fe 3d electron delocalization with d band center upshift,enabling the Fe(II)ions to bind oxygen in the end-on adsorption mode favorable to initiate the reduction of oxygen and boosting oxygen-containing groups adsorption on FeN_(4) species and ORR kinetics.The resulting FeN_(4)-Ti_(3)C_(2)Sx exhibits comparable catalytic performance to those of commercial Pt-C.The developed wearable ZABs using FeN_(4)-Ti_(3)C_(2)Sx also exhibit fast kinetics and excellent stability.This study confirms that regulation of the electronic structure of active species via coupling with their support can be a major contributor to enhance their catalytic activity. 展开更多
关键词 fe 3d electron delocalization Spin-state transition Oxygen reduction reaction Wearable zinc-air batteries
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Fe改性Pt/C催化剂催化混合硝基氯苯氨解产物加氢的研究
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作者 张健 丁军委 张效磊 《青岛科技大学学报(自然科学版)》 CAS 2024年第5期22-31,共10页
使用浸渍-还原法分别制备了3%Pd/C、3%Pt/C和3%Pt-Fe/C催化剂,通过ICP、TEM、XPS等方法对催化剂的金属含量、表面形态、电子状态进行了表征。将制备的催化剂用于以混合硝基氯苯氨解后产物邻、对硝基苯胺和间硝基氯苯为原料,催化加氢合... 使用浸渍-还原法分别制备了3%Pd/C、3%Pt/C和3%Pt-Fe/C催化剂,通过ICP、TEM、XPS等方法对催化剂的金属含量、表面形态、电子状态进行了表征。将制备的催化剂用于以混合硝基氯苯氨解后产物邻、对硝基苯胺和间硝基氯苯为原料,催化加氢合成邻、对苯二胺和间氯苯胺反应。通过对比3种催化剂,得到3%Pt-Fe/C催化剂催化效果最好。以3%Pt-Fe/C为催化剂,考察了各因素对混合硝基氯苯氨解产物加氢反应的影响,确定了反应的最优条件:起始催化剂用量0.8%(以反应原料的质量分数计),m(甲醇)∶m(水)=50∶50为溶剂,温度85℃,压力2 MPa,搅拌转速600 r·min^(-1)。在此条件下,反应物转化率为100%,邻、对苯二胺和间氯苯胺的总收率可以达到99%以上,催化剂可重复使用19次。对新鲜和失活的Pt-Fe/C催化剂进行BET、CO化学吸附、TEM等表征,发现失活后催化剂的比表面积大幅下降,判定催化剂孔道堵塞是导致催化剂失活的主要原因。 展开更多
关键词 Pt-fe/c 苯二胺 间氯苯胺 催化加氢
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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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等离子弧熔覆Fe-C-B-V系耐磨堆焊层的组织及性能研究 被引量:1
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作者 刘畅 饶嘉威 +3 位作者 蒋凤琦 沈毅锋 吴磊 浦娟 《热加工工艺》 北大核心 2024年第2期145-148,共4页
以硼铁、高碳铬铁、钒铁为原料,采用等离子弧熔覆技术在Q345钢表面堆焊Fe-C-B-V系铁基合金。使用金相显微镜、扫描电镜和X射线衍射仪等研究了堆焊层的显微组织;分别使用维氏硬度计和冲击试验机测量堆焊层的显微硬度和冲击韧性。结果表明... 以硼铁、高碳铬铁、钒铁为原料,采用等离子弧熔覆技术在Q345钢表面堆焊Fe-C-B-V系铁基合金。使用金相显微镜、扫描电镜和X射线衍射仪等研究了堆焊层的显微组织;分别使用维氏硬度计和冲击试验机测量堆焊层的显微硬度和冲击韧性。结果表明,堆焊层显微组织主要由马氏体、网格状Fe_(3)(C,B)和Fe_(2)B、弥散分布的碳化物及硼化物等(如VB_(2)、VC、Cr_(2)B)硬质相构成;堆焊层的平均硬度高达904.58 HV10、冲击功为68.5 J。堆焊过程中形成的硼化物、碳化物作为硬质相提高了堆焊层的硬度和耐磨性,形成的碳化钒使组织从鱼骨状变成网格状,细化了晶粒,提高了堆焊层的冲击韧性。 展开更多
关键词 等离子熔覆 fe-c-B-V堆焊层 显微组织 显微硬度 冲击韧性
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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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Non-isothermal reduction kinetics of Fe_2O_3-NiO composites for formation of Fe-Ni alloy using carbon monoxide 被引量:3
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作者 李博 魏永刚 王华 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2014年第11期3710-3715,共6页
The non-isothermal reduction kinetics and mechanism of Fe2O3-NiO composites with different Fe2O3-NiO compacts using carbon monoxide as reductant were investigated. The results show that the reduction degree increases ... The non-isothermal reduction kinetics and mechanism of Fe2O3-NiO composites with different Fe2O3-NiO compacts using carbon monoxide as reductant were investigated. The results show that the reduction degree increases rapidly with increasing the content of NiO, and the presence of NiO also improves the reduction rate of iron oxides. It is found that NiO is preferentially reduced at the beginning of the reactions, and then the metallic Ni acts as a catalyst promoting the reduction rate of iron oxides. It is also observed that the increase of the Ni O content enhances the formation of awaruite(FeNi3) but decreases the percentage of kamacite(Fe,Ni) and taenite(Fe,Ni). The particle size of the materials tends to be uniform during the reduction process due to the presence of metallic nickel, metallic iron and the formation of Fe-Ni alloy. The concentration of CO in the product gas is greater than that of CO2 at the beginning of the reaction and then slows down. The fastest reduction rate of Fe2O3-NiO composites with CO appears at 400-500 °C, and nucleation growth model can be used to elucidate the reduction mechanism. Nucleation growth process is found to be the rate controlling step when the temperature is lower than 1000 °C. 展开更多
关键词 reduction kinetics fe2O3 NIO fe-Ni alloy carbon monoxide
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Fe-Beta zeolite for selective catalytic reduction of NO_x with NH_3:Influence of Fe content 被引量:11
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作者 夏岩 詹望成 +2 位作者 郭耘 郭杨龙 卢冠忠 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2016年第12期2069-2078,共10页
Fe doped Beta zeolite with different Fe contents were prepared by ion exchange by changing the volume or the concentration of a Fe salt solution. For a particular mass of Fe salt precursor, the concentration of the me... Fe doped Beta zeolite with different Fe contents were prepared by ion exchange by changing the volume or the concentration of a Fe salt solution. For a particular mass of Fe salt precursor, the concentration of the metal salt solution during ion exchange influenced the ion exchange capacity of Fe, and resulted in different activities of the Fe-Beta catalyst. Fe-Beta catalysts with the Fe contents of (2.6, 6.3 and 9) wt% were synthesized using different amounts of 0.02 mol/L Fe salt solution. These catalysts were studied by various characterization techniques and their NH3-SCR activities were evaluated. The Fe-Beta catalyst with the Fe content of 6.3 wt% exhibited the highest activity, with a temperature range of 202-616℃ where the NOx conversion was 〉 80%. The Fe content in Beta zeolite did not influence the structure of Beta zeolite and valence state of Fe. Compared with the Fe-Beta catalysts with low Fe content (2.6 wt%), Fe-Beta catalysts with 6.3 wt% Fe content possessed more isolated Fe3. active sites which led to its higher NH3-SCR activity. A high capacity for NH3 and NO adsorption, and a high activity for NO oxidation also contributed to the high NH3-SCR activity of the Fe-Beta catalyst with 6.3 wt%. However, when the Fe content was further increased to 9.0 wt%, the amount of FexOy nanoparticles increased while the amount of isolated Fe3+ active sites was unchanged, which promoted NH3 oxidation and decreased the NH3-SCR activity at high temperature. 展开更多
关键词 Beta zeoliteSelective catalytic reduction fe contentfe species Ion exchange
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粉末锻造Al_(2)O_(3)颗粒增强Fe–Ni–Mo–C–Cu复合材料的组织与性能
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作者 张旭 史思阳 +5 位作者 张腾雨 田谨 吴亚科 王邃 赵振智 江峰 《粉末冶金技术》 CAS CSCD 北大核心 2024年第3期275-282,共8页
通过粉末锻造技术制备了不同含量微米级Al_(2)O_(3)颗粒强化的Fe–Ni–Mo–C–Cu(Q61)复合材料,并对调质态和淬火态复合材料的组织和性能进行了研究。结果表明:当Al_(2)O_(3)质量分数为0.15%时,增强颗粒在基体内分布均匀;相较于同种状... 通过粉末锻造技术制备了不同含量微米级Al_(2)O_(3)颗粒强化的Fe–Ni–Mo–C–Cu(Q61)复合材料,并对调质态和淬火态复合材料的组织和性能进行了研究。结果表明:当Al_(2)O_(3)质量分数为0.15%时,增强颗粒在基体内分布均匀;相较于同种状态下不添加增强颗粒的单一Q61,调质态复合材料的硬度从HRC 38增至HRC 39.8,屈服强度从1106 MPa增至1121 MPa,延伸率从12%降至6.5%;淬火态复合材料的硬度从HRC 61.5增至HRC 63.2,磨损率从5.27×10^(-6)mm^(3)·m^(-1)·N^(-1)降至3.08×10^(-6)mm^(3)·m^(-1)·N^(-1),低于对比试验用的典型齿轮材料40Cr的磨损率(3.34×10^(-6)mm^(3)·m^(-1)·N^(-1))。当Al_(2)O_(3)质量分数大于0.15%时,Al_(2)O_(3)颗粒逐渐偏聚,虽然调质态下复合材料屈服强度仍继续小幅增加,但塑性严重退化,且淬火态复合材料磨损率增加,耐磨性变差。综合来看,添加0.15%Al_(2)O_(3)颗粒强化Q61复合材料在调质态下具有较高的综合力学性能,而在淬火态下表现出良好的抗摩擦磨损能力。 展开更多
关键词 粉末锻造 fe–Ni–Mo–ccu复合材料 微观组织 力学性能 摩擦 磨损
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厌氧环境下黏土矿物结构Fe(Ⅲ)还原对Cd(Ⅱ)固持特性的影响
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作者 范小妹 董易坤 +4 位作者 吴聪 王帅 廖文娟 周卫军 崔浩杰 《农业环境科学学报》 CAS CSCD 北大核心 2024年第5期1045-1055,共11页
黏土矿物结构Fe(Ⅲ)是土壤铁元素主要赋存形态之一,稻田淹水环境下矿物结构Fe(Ⅲ)易发生还原反应,改变矿物晶体微结构和表面化学性质,为研究这种变化对矿物固持Cd(Ⅱ)特性的影响,以合成含铁黏土矿物绿脱石为研究对象,通过化学还原,探讨... 黏土矿物结构Fe(Ⅲ)是土壤铁元素主要赋存形态之一,稻田淹水环境下矿物结构Fe(Ⅲ)易发生还原反应,改变矿物晶体微结构和表面化学性质,为研究这种变化对矿物固持Cd(Ⅱ)特性的影响,以合成含铁黏土矿物绿脱石为研究对象,通过化学还原,探讨了厌氧条件下绿脱石结构态Fe(Ⅲ)还原对Cd(Ⅱ)吸附性能的影响及作用机制。结果表明:合成绿脱石中总铁含量为31.3%,结构态Fe(Ⅱ)和Fe(Ⅲ)的含量占总铁的98.6%。还原处理后,矿物结构中Fe(Ⅱ)含量由还原前的3.9%显著提高至67.4%。XRD、SEM、BET和XPS分析表明,还原后绿脱石矿物层间距增大,分散程度更高,比表面积由151.6 m^(2)·g^(-1)增加至184.0 m^(2)·g^(-1),矿物表面的羟基基团数量增加。结构Fe(Ⅲ)还原降低了矿物对Cd(Ⅱ)的吸附和固持性能,Langmuir模型拟合还原后矿物对Cd(Ⅱ)的最大吸附量为23.5 mg·g-1,明显低于还原前矿物对Cd(Ⅱ)的吸附量(33.4 mg·g-1)。还原前后矿物对Cd(Ⅱ)的吸附性能均随着离子强度增大而降低,但还原矿物吸附Cd(Ⅱ)的降幅明显低于未还原矿物。黏土矿物结构Fe(Ⅲ)还原后吸附Cd(Ⅱ)的性能降低主要是由于还原过程中结构Fe(Ⅱ)迁移进入层间,抑制了吸附过程中Cd(Ⅱ)进入矿物层间。研究表明,厌氧环境中黏土矿物结构Fe(Ⅲ)显著降低了矿物对Cd(Ⅱ)的固持特性。 展开更多
关键词 黏土矿物 结构态铁 还原 吸附
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S-Fe/C的制备及其对孔雀石绿和三氯乙烯的移除性能
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作者 杨春林 占敬敬 《应用化工》 CAS CSCD 北大核心 2024年第7期1505-1508,1514,共5页
为了提高纳米零价铁对污染物的吸附和还原性能,采用气溶胶辅助制得碳载纳米零价铁(Fe/C),并通过对Fe/C硫化改性制备得到改性材料(S-Fe/C),采用扫描电子显微镜(SEM)、透射电子显微镜(TEM)、X射线衍射分析(XRD)、X射线光电子能谱(XPS)等... 为了提高纳米零价铁对污染物的吸附和还原性能,采用气溶胶辅助制得碳载纳米零价铁(Fe/C),并通过对Fe/C硫化改性制备得到改性材料(S-Fe/C),采用扫描电子显微镜(SEM)、透射电子显微镜(TEM)、X射线衍射分析(XRD)、X射线光电子能谱(XPS)等多种方法对材料进行表征,考察了S-Fe/C的材料特征。探究了该材料对孔雀石绿(MG)的吸附性能以及对三氯乙烯(TCE)的还原性能。结果表明,S-Fe/C对MG的吸附量达到1663 mg/g,对TCE 10 h去除率为85.57%,表明S-Fe/C具有良好的吸附性能和还原性能。 展开更多
关键词 碳载硫化纳米零价铁 吸附 还原 孔雀石绿 三氯乙烯
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Modified carbothermal reduction method for synthesis of LiFePO_4/C composite 被引量:1
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作者 尹艳红 李少玉 +2 位作者 闫琳琳 张会双 杨书廷 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2012年第3期621-626,共6页
With LiAc-2H2O as Li precursor,pure olivine phase LiFePO4/C was synthesized at a relatively low temperature(650 ℃) and short sintering period(4 h) by molten salt carbothermal reduction method.Scanning electron mi... With LiAc-2H2O as Li precursor,pure olivine phase LiFePO4/C was synthesized at a relatively low temperature(650 ℃) and short sintering period(4 h) by molten salt carbothermal reduction method.Scanning electron micrograph shows that particle size of the product is about 1μm,smaller than that of the sample synthesized with Li2CO3 as Li precursor.Electrochemical measurements prove that LiFePO4/C obtained from LiAc-2H2O shows high capacity.The initial discharge capacities are 148 mA-h/g at 0.5C rate and 115 mA-h/g at 5C rate,respectively.After 50 cycles,the capacity retention ratios are 93% and 89% at 0.5C rate and 5C rate,respectively. 展开更多
关键词 LifePO4/c composite molten salt carbothermal reduction Β-cYcLODEXTRIN
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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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MCM-41/NH_(2)-MIL-101(Fe)复合材料的制备及其光催化还原CO_(2)性能
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作者 江雨婷 徐红 +2 位作者 钟毅 毛志平 张琳萍 《现代化工》 CAS CSCD 北大核心 2024年第S02期155-160,共6页
采用水热法将分子筛MCM-41与光催化剂NH_(2)-MIL-101(Fe)复合制备了MCM-41/NH_(2)-MIL-101(Fe)复合光催化剂(NMM),用于光催化还原CO_(2)。借助XRD、BET、SEM-EDS、UV-Vis DRS、PL、XPS等分析手段对催化剂的微观结构进行详细的分析和表征... 采用水热法将分子筛MCM-41与光催化剂NH_(2)-MIL-101(Fe)复合制备了MCM-41/NH_(2)-MIL-101(Fe)复合光催化剂(NMM),用于光催化还原CO_(2)。借助XRD、BET、SEM-EDS、UV-Vis DRS、PL、XPS等分析手段对催化剂的微观结构进行详细的分析和表征,解析了催化剂理化性质对催化活性的影响,明确了在NH_(2)-MIL-101(Fe)催化剂中掺杂MCM-41对CO_(2)还原为甲酸产量提升有积极作用。实验结果表明,在光照5 h后,在水溶液中未添加牺牲剂的条件下,10%MCM-41添加量的10%NMM将CO_(2)还原为甲酸的产量为109.11μmol/g,是纯NH_(2)-MIL-101(Fe)的5倍(21.78μmol/g);添加牺牲剂TEOA后10%NMM的甲酸产量为132.78μmol/g,是纯NH_(2)-MIL-101(Fe)的4倍(33.67μmol/g)。催化剂在2种溶液体系中重复使用3次后,仍保持很高的催化活性。 展开更多
关键词 McM-41/NH_(2)-MIL-101(fe) 光催化还原 cO_(2) 甲酸
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Fe和Cu分子筛催化剂同时催化NO_(x)还原和N_(2)O分解
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作者 司庆宇 樊星 +2 位作者 张玮航 苗静文 刘若雯 《中国环境科学》 EI CAS CSCD 北大核心 2024年第9期4826-4834,共9页
采用离子交换法制备了Fe-Beta和Cu-SSZ-13催化剂并采用不同混合方式制备了复合催化剂,考察了催化剂同时催化NO_(x)还原和N_(2)O分解的性能.以实现NO_(x)和N_(2)O同时高效去除、拓宽活性温度窗口为目标,优选出了上Fe下Cu分层填充、Fe-Bet... 采用离子交换法制备了Fe-Beta和Cu-SSZ-13催化剂并采用不同混合方式制备了复合催化剂,考察了催化剂同时催化NO_(x)还原和N_(2)O分解的性能.以实现NO_(x)和N_(2)O同时高效去除、拓宽活性温度窗口为目标,优选出了上Fe下Cu分层填充、Fe-Beta和Cu-SSZ-13质量比为4:1的Fe_(0.4)Cu_(0.1)催化剂,进一步考察了进气组成对NO_(x)、N_(2)O和NH_(3)转化率的影响,并采用N_(2)吸脱附、XRD、NH_(3)-TPD、UV-Vis DRS和H_(2)-TPR等手段对催化剂理化特性进行了表征.结果表明,Cu-SSZ-13和Fe-Beta分别具有更优的催化NO_(x)还原和N_(2)O分解性能.采用Fe_(0.4)Cu_(0.1)催化剂、[NH_(3)]/[NO_(x)]为1时考察的温度范围内NH_(3)仅还原NO_(x),而N_(2)O通过分解去除,450℃时NO_(x)和N_(2)O转化率分别为93.4%和100%.高温(>350℃)下NH_(3)被O_(2)氧化导致NO_(x)转化率随温度升高而降低;高温(≥350℃)下N_(2)O分解形成的氧物种可使NO_(x)在进气中无O_(2)条件下实现高效还原.进气中含2%H_(2)O对高温(450℃)下Fe_(0.4)Cu_(0.1)表面NO_(x)的还原和NH_(3)的氧化无显著影响,但对N_(2)O的转化存在一定的可逆抑制作用.Cu-SSZ-13表面存在大量孤立的Cu^(2+)离子,可为NH_(3)-SCR反应提供充足的活性中心.Fe-Beta表面同时存在能够催化NO氧化的孤立Fe^(3+)离子和催化N_(2)O分解的Fe_(x)O_(y)物种.采用上Fe下Cu分层填充的混合方式时Fe-Beta表面NO氧化过程会消耗N_(2)O分解形成的氧物种,从而有利于低温(≤450℃)下N_(2)O的转化.但由于N_(2)O分解的温度范围内NO_(x)转化率本身较高,NO氧化对于脱硝的促进作用不显著. 展开更多
关键词 NO_(x)还原 N_(2)O分解 fe-Beta cu-SSZ-13 复合催化剂
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Fe-C-Mn-Si-Al双相钢两相区加热过程中的奥氏体相变行为研究
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作者 谢钊远 林关强 +1 位作者 王定峰 蓝慧芳 《热加工工艺》 北大核心 2024年第17期127-130,共4页
采用Dictra软件模拟与实验验证相结合,研究了不同加热条件下铁素体+渗碳体向奥氏体的相变过程,重点分析了渗碳体溶解规律及其对奥氏体相变动力学的影响规律,借助场发射电子探针对不同加热路径下的铁素体及马氏体组织形貌及元素分布进行... 采用Dictra软件模拟与实验验证相结合,研究了不同加热条件下铁素体+渗碳体向奥氏体的相变过程,重点分析了渗碳体溶解规律及其对奥氏体相变动力学的影响规律,借助场发射电子探针对不同加热路径下的铁素体及马氏体组织形貌及元素分布进行观测,使用透射电镜对渗碳体和残余奥氏体进行了表征。结果表明,慢速加热至740℃长时间等温与加热至780℃较短时间等温对比发现,虽然渗碳体刚溶解完全时的奥氏体分数相差不大,但在渗碳体溶解的过程中,奥氏体相变的方式不尽相同。在慢速加热条件下,铁素体晶界处为奥氏体优先形核地点;快速加热条件下,由于形核驱动力提高,铁素体晶粒内部的渗碳体处同样可以形核。740℃等温结合快速加热,获得了马氏体与残余奥氏体的“壳-核”组织结构。 展开更多
关键词 fe-c-Mn-Si-Al钢 渗碳体溶解 奥氏体相变 残余奥氏体
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B含量对Fe-Cr-C系堆焊合金组织结构及耐磨性的影响
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作者 刘一 刘奇聪 +2 位作者 闫玉东 韩卓芮 庄明辉 《材料保护》 CAS CSCD 2024年第7期207-213,共7页
为了进一步提高Fe-Cr-C系堆焊合金的耐磨性,采用等离子粉末堆焊技术,通过调整堆焊合金粉体中硼铁粉的添加量,在Q235钢表面制备不同B含量的Fe-Cr-C耐磨堆焊合金层,并采用X射线衍射(XRD)、扫描电镜(SEM)、能谱(EDS)及磨粒磨损试验等分析... 为了进一步提高Fe-Cr-C系堆焊合金的耐磨性,采用等离子粉末堆焊技术,通过调整堆焊合金粉体中硼铁粉的添加量,在Q235钢表面制备不同B含量的Fe-Cr-C耐磨堆焊合金层,并采用X射线衍射(XRD)、扫描电镜(SEM)、能谱(EDS)及磨粒磨损试验等分析测试方法,探究B添加量对Fe-Cr-C系堆焊合金组织结构、物相组成及耐磨性的影响。结果表明:当B添加量(以硼铁粉计,下同)为0时,堆焊合金的组织由树枝晶状Fe和菊花状(Fe,Cr)_(7)C_(3)+Fe共晶组织组成。随着B添加量的增加,堆焊层中(Fe,Cr)_(7)(C,B)_(3)硬质相的体积分数增加。(Fe,Cr)_(7)(C,B)_(3)相的析出量达到一定值后,初晶B_(0.7)Fe_(3)C_(0.3)相生成。当B添加量为20.0%时,(Fe,Cr)_(2)B硬质相大量析出。堆焊层的硬度整体呈现上升-陡降-上升的趋势,B-10试样的硬度达到63.1 HRC。磨粒磨损试验结果显示,堆焊合金层耐磨性呈现上升-平缓-上升的趋势,B-20试样的耐磨性增至B-0试样的2.8倍。 展开更多
关键词 fe-cr-c合金 等离子粉末堆焊 B添加量 组织结构 耐磨性能
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