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Boost activation of peroxymonosulfate by iron doped K_(2-x)Mn_(8)O_(16):Mechanism and properties
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作者 Linlin Su Meijun Chen +6 位作者 Li Gong Hua Yang Chao Chen Jun Wu Ling Luo Gang Yang Lulu Long 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2023年第5期88-97,共10页
Among the numerous transition metal catalysts,manganese-based compounds are considered as promising peroxymonosulfate(PMS)catalysts due to their low cost and environmental friendliness,such as cryptomelane manganese o... Among the numerous transition metal catalysts,manganese-based compounds are considered as promising peroxymonosulfate(PMS)catalysts due to their low cost and environmental friendliness,such as cryptomelane manganese oxide(K_(2-x)Mn_(8)O_(16):abbreviation KMnO).However,the limited catalytic performance of KMnO limits its practical application.In this work,iron-doped KMnO(Fe-KMnO)was prepared by one-step hydrothermal method to optimize its catalytic performance.Compared with KMnO/PMS system,Fe-KMnO/PMS system possessed more excellent removal efficiency of tetracycline(TC).Meanwhile,the Fe-KMnO/PMS system also exhibited good practical application potential and excellent stability.The mechanism of Fe-KMnO activation of PMS was further analyzed in detail.It was found that Fe participated in the redox of high-valent Mn,which promoted the activation of PMS.Moreover,The Fe site as an adsorption site enhanced the TC enrichment ability of the catalyst,reducing the mass transfer resistance and further enhancing the TC removal ability of Fe-KMnO/PMS system.This work not only provides an excellent PMS catalyst,but also offers new insights into the mechanism of PMS activation by bimetallic manganese-based catalysts. 展开更多
关键词 Catalyst Environment Waste water PEROXYMONOSULFATE K_(2-x)Mn_(8)O_(16) iron doping
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In vitro study of iron doped hydroxyapatite
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作者 Khairy Mohamed Tohamy Ereiba A. G. Mostafa +1 位作者 G. A. Gamal A. H. Said 《Journal of Biophysical Chemistry》 2013年第4期122-130,共9页
The effect of iron substitution on the bioactivity of hydroxyapatite (HAp) under the physiological conditions was investigated. Five samples of iron doped hydroxyapatite (FeHAp) with different iron concentrations (0, ... The effect of iron substitution on the bioactivity of hydroxyapatite (HAp) under the physiological conditions was investigated. Five samples of iron doped hydroxyapatite (FeHAp) with different iron concentrations (0, 0.05, 0.1, 0.2, and 0.3 mol%) were synthesized by wet chemical method. The formation of bone-like apatite layer on the surface of the samples was detected using X-ray diffraction (XRD), Fourier transforms infrared (FTIR) and scanning electron microscope techniques. The changes of the pH of SBF medium were measured at pre-determined time intervals using a pH meter. The dissolution of calcium, phosphorus and iron ions in SBF medium was determined by single beam scanning spectrophotometer. XRD and FTIR results exhibit the formation of carbonate apatite layer on the surface of the immersed samples, which increase with the increase of iron content. SEM results showed agglomeration of small crystals on the surface of the immersed samples. The solubility and dissolution tests revealed that iron doped HAp samples had a higher solubility and dissolution rate than pure sample, which indicated that iron increased the bioactivity of HAp in vitro. 展开更多
关键词 HYDROXYAPATITE iron dopeD HYDROXYAPATITE Bioactivity Bone-Like APATITE SOLUBILITY
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Iron-Doped Titania Nanoparticles for the Photocatalytic Oxidative Degradation of Nitrite 被引量:1
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作者 XU An-wu ZHU Jing-yan +1 位作者 GAO Yuan LIU Han-qin 《Chemical Research in Chinese Universities》 SCIE CAS CSCD 2001年第3期281-286,共6页
Iron-doped titania nanoparticles exhibit a higher photocatalytic activity than pure TiO_2 for the degradation of nitrite. The optimum Fe-doped content in terms of activity is approximately 0.5%. The increase in photoa... Iron-doped titania nanoparticles exhibit a higher photocatalytic activity than pure TiO_2 for the degradation of nitrite. The optimum Fe-doped content in terms of activity is approximately 0.5%. The increase in photoactivity is probably due to the higher adsorption and the inhibition of electron-hole recombination. The photocatalytic oxidation reaction of nitrite over the Fe-doped TiO_2 catalyst follows zero-order kinetics, which is different from that over pure TiO_2. The reaction rate decreases linearly with the increase of the pH of the solution. 展开更多
关键词 Nitrite degradation Photocatalytic oxidation TITANIA iron doped
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Influence of process parameters on electrochemical and physical properties of sputtered iron-doped nickel oxide thin films
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作者 黄金昭 徐征 +2 位作者 李海玲 亢国虎 王文静 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2006年第6期1301-1306,共6页
The iron-doped nickel oxide films used as oxygen evolution catalysts in the photoelectrochemical production of hydrogen from solar energy were deposited by means of RF reactive magnetron sputtering from a Ni-Fe alloy ... The iron-doped nickel oxide films used as oxygen evolution catalysts in the photoelectrochemical production of hydrogen from solar energy were deposited by means of RF reactive magnetron sputtering from a Ni-Fe alloy target in oxygen and argon atmosphere.The effects of processing parameters on the film properties,such as overpotential,composition,surface morphology and preferred orientation,were investigated.The electrochemical experiment,structural and compositional measurements indicate that the relative lower substrate temperature,higher RF power,higher working pressure and oxygen content are necessary to gain lower overpotential.The lowest overpotential of 251 mV is obtained at a current density of 80 mA/cm2.The existence of iron,which acts as activity site,and Ni3+ ion is responsible for lowering overpotential.By analyzing SEM and XRD data,it is also noticed that an improvement in crystallinity,appropriate grain size and less crystalline phase contribute to an increased electrocatalytic activity in oxygen evolution reaction.These results mentioned above indicate that iron-doped nickel oxide is promising as an oxygen catalyst. 展开更多
关键词 iron-doped NICKEL OXIDE films OVERPOTENTIAL PHOTOELECTROCHEMICAL
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CRYSTAL GROWTH AND MAGNETO OPTICAL PROPERTIES OF Ce^(3 +) DOPED IRONG ARNET
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作者 M.Huang1) and S.Y.Zhang2) 1) Department of Physics,Zhejiang University , Hangzhou 310027 ,China 2) Department of Materials Science & Engineering and State Key Laboratory of Silicon Materials,Zhejiang Uni versity , Hangzhou 310027 ,China 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 1999年第4期353-356,共4页
Thispaperisconcerned withthe preparation ofcerium doped yttrium iron garnet which areknown to be an oxide withlarge magneto opticaleffect. Usingtheimproved flux method wesuccessfully grew the bulksinglecrystalsofiron... Thispaperisconcerned withthe preparation ofcerium doped yttrium iron garnet which areknown to be an oxide withlarge magneto opticaleffect. Usingtheimproved flux method wesuccessfully grew the bulksinglecrystalsofiron garnet doped by Ce 3 + ions with maximum substitution upto0 349. Here weinvestigatedthedifferentcomposition ofsolution for maxi mum Ce3 + substitution. Thespectra ofthe Faraday rotation andtheoptical absorption were measured inthenearinfrared region fordifferentCe3 + ionsdopediron garnets. The Cesub stitution prominentlyenhancesthe Faradayeffect,andthe Yb and Euionssubstitutefor Yinthe dodecahedralsitesof YIGcanincreasetheconcentration of Ce3 + ions, depresstheforma tion of nonmagnetic Ce4 + ionsbythechargecompensation. 展开更多
关键词 crystalgrowth Ce3 + doped iron Garnet magneto optical properties
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Preparation and visible-light photocatalytic property of nanostructured Fe-doped TiO_2 from titanium containing electric furnace molten slag 被引量:10
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作者 Yang Li Yi Yue +2 位作者 Zai-qing Que Mei Zhang Min Guo 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2013年第10期1012-1020,共9页
Nanostructured Fe-doped titanium dioxide was synthesized from titanium containing electric furnace molten slag (TCEFMS) by using an alkali fusion, followed by a hydrolyzation-acidolysis-cMcination route. The effects... Nanostructured Fe-doped titanium dioxide was synthesized from titanium containing electric furnace molten slag (TCEFMS) by using an alkali fusion, followed by a hydrolyzation-acidolysis-cMcination route. The effects of Mkali/slag mass ratio, calcinating temperature, calcinating time, and water/slag mass ratio on the extraction efficiency and purity of products were systematically studied in this paper. It is indicated that the best extraction efficiency of nanostructured Fe- doped titanium dioxide is 99.35%, when the molten slag is calcinated at 700℃ for 1 h with the mass ratio of alkali/molten slag of 1.5:1. The influence of alkali/slag mass ratio on the photocatalytic activity of final products was evaluated by the photodegradation of methyl blue under visible light irradiation. A maximum photodegradation efficiency of 88.12% over 30 min was achieved under the optimum conditions. 展开更多
关键词 nanostructured materials titanium dioxide iron DOPING PHOTOCATALYSTS SLAG extraction alkali fusion
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LiFePO_4 doped with magnesium prepared by hydrothermal reaction in glucose solution 被引量:10
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作者 Xiu Qin Ou Guang Chuan Liang Jin Sheng Liang Sheng Zhao Xu Xia Zhao 《Chinese Chemical Letters》 SCIE CAS CSCD 2008年第3期345-349,共5页
Lithium iron phosphate (LiFePO4) doped with magnesium was hydrothermally synthesized from commercial LiOH, FeSO4, H3PO4 and MgSO4 with glucose as carbon precursor in aqueous solution. The samples were characterized ... Lithium iron phosphate (LiFePO4) doped with magnesium was hydrothermally synthesized from commercial LiOH, FeSO4, H3PO4 and MgSO4 with glucose as carbon precursor in aqueous solution. The samples were characterized by X-ray powder diffraction, scanning electron microscopy and constant charge-discharge cycling. The results show that the synthesized powders have been in situ coated with carbon precursor produced from caramel reaction of glucose. At ambient temperature (28±2℃), the electrochemical performances of LiFePO4 prepared exhibit the high discharge capacity of 135 mAh g^-1 at 5C and good capacity retention of 98% over 90 cycles. The excellent electrochemical performances should be correlated with the intimate contact between carbon and LiFePO4 primary and secondary particles, resulting from the in situ formation of carbon precursor/carbon, leading to the increase in conductivity of LiFePO4. 展开更多
关键词 Lithium iron phosphate Mg doping Hydrothermal reaction GLUCOSE Carbon coated
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Micro-arc oxidization fabrication and ethanol sensing performance of Fe-doped TiO_2 thin films 被引量:4
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作者 Fu-jian Ren Xiao-bai Yu +1 位作者 Yun-han Ling Jia-you Feng 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2012年第5期461-466,共6页
In-situ pure TiO2 and Fe-doped TiO2 thin films were synthesized on Ti plates via the micro-arc oxidation (MAO) technique. The as-fabricated anatase TiO2 thin film-based conductometric sensors were employed to measur... In-situ pure TiO2 and Fe-doped TiO2 thin films were synthesized on Ti plates via the micro-arc oxidation (MAO) technique. The as-fabricated anatase TiO2 thin film-based conductometric sensors were employed to measure the gas sensitivity to ethanol. The results showed that Fe ions could be easily introduced into the MAO-TiO2 thin films by adding precursor K4(FeCN)6'3H20 into the NaaPO4 electrolyte. The amount of doped Fe ions increased almost linearly with the concentration of Kg(FeCN)63H20 increasing, eventually affecting the ethanol sensing performances of TiO2 thin films. It was found that the enhanced sensor signals obtained had an optimal concentration of Fe dopant (1.28at%), by which the maximal gas sensor signal to 1000 ppm ethanol was estimated to be 7.91 at 275℃. The response time was generally reduced by doped Fe ions, which could be ascribed to the increase of oxygen vacancies caused by Fe3+ substituting for Ti4+. 展开更多
关键词 thin films titanium dioxide doping iron micro-arc oxidation ethanol sensors
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Degradation of Gesaprim Herbicide by Heterogeneous Photocatalysis Using Fe-Doped TiO2
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作者 Noemí A. Quiroz Dulce J. R. Gutierrez +1 位作者 Susana S. Martínez Cristina L. Bahena 《International Journal of Geosciences》 2011年第4期669-675,共7页
Fe-doped TiO2 was prepared by the sol gel method and characterized by X-ray diffraction. All the Fe-doped TiO2 were composed of an anatase crystal form. The activity of the Fe-doped TiO2 for the degradation of the ges... Fe-doped TiO2 was prepared by the sol gel method and characterized by X-ray diffraction. All the Fe-doped TiO2 were composed of an anatase crystal form. The activity of the Fe-doped TiO2 for the degradation of the gesaprim commercial herbicide (which contains atrazine as active compound and formulating agents) was studied by varying the iron content during UV (15 W), visible light and solar irradiations. The visible light came from commercial saving energy lamps (13, 15 and 20 Watts). The gesaprim degradation rate depended on the iron content in the photo catalyst. The Fe-doped TiO2 (0.5% by weight of TiO2) showed higher TOC removal under visible light and was more active than the undoped TiO2 photo catalyst under the light irradiation sources tested. Over 90% of chemical oxygen demand abatement was achieved with both UV and visible light but less time was required to decrease the chemical oxygen demand content by using the catalyst doped with iron at 0.5% under visible light. It was observed that the degradation of gesaprim increased by increasing the iron content in the catalyst under visible light. 展开更多
关键词 ATRAZINE iron doped TIO2 Solar IRRADIATION VISIBLE Light IRRADIATION
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The research and development of Fe doped TiO2
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作者 Mingqin Li 《材料科学研究(中英文版)》 2013年第2期28-33,共6页
关键词 二氧化钛 铁掺杂 开发 染料敏化太阳能电池 纳米管阵列 FE 光催化降解 改性方法
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Shape Controlled Preparation,Characterization and Gas Sensitivities of Shuttle-like Cr-doped α-Fe_2O_3 Nanoparticles
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作者 SI Shu-feng MING Zheng-qiu +1 位作者 XING Guo-wen YAN Xi 《Chemical Research in Chinese Universities》 SCIE CAS CSCD 2012年第4期567-571,共5页
α-Fe2O3 nanoparticles doped with various molar fractions of Cr^3+ were synthesized by a forced hydrolysis route and were characterized by X-ray diffraction(XRD),scanning electronic microscopy(SEM),X-ray photoele... α-Fe2O3 nanoparticles doped with various molar fractions of Cr^3+ were synthesized by a forced hydrolysis route and were characterized by X-ray diffraction(XRD),scanning electronic microscopy(SEM),X-ray photoelectron spectroscopy(XPS) and inductive coupled plasma(ICP) techniques.The particles reserve shuttle-like shape in the presence of Cr^3+.The crystallite sizes of Fe2O3 become smaller with the increased Cr^3+ concentration in solution.The responses of Cr doped α-Fe2O3 sensors were studied towards reducing gases such as ethanol,methanol,acetone,gasoline and n-hexane.Gas sensors based on these materials have higher sensitivities and rapid response/recovery time to alcohol than to hydrocarbon. 展开更多
关键词 Gas sensitivity Cr doped α-ironic oxide Forced hydrolysis
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Research of Crystallization of Aluminums Cast Iron
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作者 Saule Kaldybayeva 《Journal of Minerals and Materials Characterization and Engineering》 2011年第13期1197-1203,共7页
In work was researched the composition and structure of high-alloyed aluminum cast iron ЧЮ22Ш. Crystalization of cast iron ЧЮ22Ш (ЧЮ22Ш standard cast iron) was researched by phase transformation, leaking upon... In work was researched the composition and structure of high-alloyed aluminum cast iron ЧЮ22Ш. Crystalization of cast iron ЧЮ22Ш (ЧЮ22Ш standard cast iron) was researched by phase transformation, leaking upon its harden and cooling –down. High-alloyed materials are widely applied as the heat-resistant materials. Overall content of that reaches 30-50% and more. Previous performed researches allowed to optimize the content high-alloyed aluminum cast iron ЧЮ22Ш, to research its structure, casting and operational characteristics, to develop technological mode of melting, casting and thermal / heat treatment casts, to held its industrial examination and to determine perspective direction of its application. However, in present time ability of the aluminum cast iron ЧЮ22Ш is being used not sufficiently. 展开更多
关键词 heavily doped aluminum CAST iron structure the composition of the PHASES THERMAL properties specific heat THERMAL conductivity THERMAL DIFFUSIVITY
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磷掺杂钴酸铁电极材料用于非对称超级电容器
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作者 姚远 吴凤楠 +5 位作者 徐子明 刘冬澳 罗意 杨俊和 薛裕华 李生娟 《材料科学与工程学报》 CAS CSCD 北大核心 2024年第4期553-561,共9页
采用简单的水热法和低温磷化法在柔性碳布上原位生长磷掺杂的钴酸铁纳米线(P-FeCo_(2)O_(4-x))电极材料,研究了不同磷源加入量对P-Fe Co_(2)O_(4-x)的形貌和性能的影响。结果表明:当加入的磷源量为400mg时,所制备的P-FeCo_(2)O_(4-x)-2... 采用简单的水热法和低温磷化法在柔性碳布上原位生长磷掺杂的钴酸铁纳米线(P-FeCo_(2)O_(4-x))电极材料,研究了不同磷源加入量对P-Fe Co_(2)O_(4-x)的形貌和性能的影响。结果表明:当加入的磷源量为400mg时,所制备的P-FeCo_(2)O_(4-x)-2电极材料具有优异的电化学性能,在5m A/cm^(2)的电流密度下表现出3643m F/cm^(2)的比电容,在20m A/cm^(2)的电流下充放电循环5000次后容量保持率为85.9%。性能提升的主要原因得益于磷掺杂到尖晶石结构中,取代了部分氧原子的位置并形成氧空位,提高缺陷程度的同时,改善了电子结构,提高了电导率。进一步组装成柔性非对称超级电容器,其正极为P-FeCo_(2)O_(4-x)-2材料,负极为活性炭(AC)。该电容器在功率密度达到747.4W/kg的情况下,展现出高达40.9Wh/kg的出色能量密度。此外,经过2000次充放电循环测试,即使在5A/g的电流密度下,其容量保持率依然稳定在82.1%。 展开更多
关键词 超级电容器 磷掺杂 钴酸铁 纳米线 高能量密度
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铁掺杂分散性氮化碳的制备及其对废水中Cr(Ⅵ)的还原
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作者 刘朕 任卓 +2 位作者 孙杨硕 马喜君 张静 《淮阴工学院学报》 CAS 2024年第5期33-38,共6页
Fe掺杂辐照改性石墨相氮化碳(g-C_(3)N_(4))制备铁掺杂分散性氮化碳,利用SEM、XRD、FTIR对材料进行表征,电子束辐照改变了石墨相氮化碳的能带结构,Fe的掺杂抑制了光生电子空穴对的复合。在光催化条件下利用铁掺杂分散性氮化碳对废水中Cr... Fe掺杂辐照改性石墨相氮化碳(g-C_(3)N_(4))制备铁掺杂分散性氮化碳,利用SEM、XRD、FTIR对材料进行表征,电子束辐照改变了石墨相氮化碳的能带结构,Fe的掺杂抑制了光生电子空穴对的复合。在光催化条件下利用铁掺杂分散性氮化碳对废水中Cr(Ⅵ)的还原能力进行了试验研究,对电子束辐照剂量、催化剂种类、催化剂投加量、Fe的掺杂量等影响因素进行了相关的分析,结果表明:电子束辐照剂量为30 kGy,Fe的掺杂比例为10%时,Cr(Ⅵ)的降解效率最高,180 min内的降解率为95%,是纯石墨相氮化碳的4倍以上。 展开更多
关键词 铁掺杂分散性氮化碳 Cr(Ⅵ) 电子束辐照 光催化
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锰基钠离子电池正极材料设计及电化学性能研究 被引量:2
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作者 刘德新 马腾跃 +2 位作者 安金玲 刘进荣 何伟艳 《无机盐工业》 CAS CSCD 北大核心 2024年第3期51-55,共5页
钠离子电池因环境友好、储量丰富等优势,成为锂离子电池的后继者,在储能材料方面有很大的应用潜力。针对钠离子电池锰基正极材料存在结构不稳定、循环稳定性差等问题,采用溶胶-凝胶法制备Na_(0.7)Fe_(x)Mn(1-x)O_(2)(0<x<1)锰基... 钠离子电池因环境友好、储量丰富等优势,成为锂离子电池的后继者,在储能材料方面有很大的应用潜力。针对钠离子电池锰基正极材料存在结构不稳定、循环稳定性差等问题,采用溶胶-凝胶法制备Na_(0.7)Fe_(x)Mn(1-x)O_(2)(0<x<1)锰基正极材料,考察铁锰物质的量比对Na_(0.7)Fe_(x)Mn(1-x)O_(2)材料微观结构、电化学性能的影响。结果表明:铁的掺杂稳定了材料P2相晶型且增加了钠层间距;合成的两种材料Na_(0.7)Fe_(0.2)Mn_(0.8)O_(2)和Na_(0.7)Fe0.35Mn0.65O_(2)在电压范围为2~4 V、放电倍率为0.5C的条件下,首次充/放电比容量分别为88.54、63.73 mA·h/g和74.02、49.01 mA·h/g,循环100次后充/放电比容量分别为51.94、51.36 mA·h/g和52.15、51.59 mA·h/g,循环效率分别为58.01%和69.7%,表现出良好的容量保持和循环性能;在倍率方面,两种材料经过2C大电流充电后,重新循环到0.5C倍率时两种材料的充/放电比容量仍可达113.82、110.25 mA·h/g和51.75、51.11 mA·h/g,两种材料都表现了较好的循环倍率性能,其中Na_(0.7)Fe_(0.2)Mn_(0.8)O_(2)材料的性能表现得更加优异。 展开更多
关键词 锰基 正极材料 铁掺杂 P2相 比容量
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铁掺杂氮化碳/BiVO_(4)构建Z型光催化全解水 被引量:1
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作者 刘智焬 戚荣杰 +3 位作者 罗皓霖 叶朕 江治 上官文峰 《分子催化(中英文)》 CAS CSCD 北大核心 2024年第2期112-120,I0001,I0002,共11页
采用气相挥发法在聚合物氮化碳(PCN)结构中引入了适量的铁(Fe)掺杂组分,成功制备出具有可调Fe掺杂浓度的PCN半导体光催化剂,其中0.55%(w) Fe掺杂的PCN析氢催化活性(410μmol·h^(-1))为原始PCN的2.6倍并通过XRD、UV-Vis、PL、XPS、... 采用气相挥发法在聚合物氮化碳(PCN)结构中引入了适量的铁(Fe)掺杂组分,成功制备出具有可调Fe掺杂浓度的PCN半导体光催化剂,其中0.55%(w) Fe掺杂的PCN析氢催化活性(410μmol·h^(-1))为原始PCN的2.6倍并通过XRD、UV-Vis、PL、XPS、SEM等表征阐明了Fe掺杂对PCN的影响和作用机理.同时调控钒酸铋的生长环境(配合剂、水热时间、pH)合成了具备不同形貌的钒酸铋(BiVO4),进一步成功合成了暴露{010}和{-121}晶面的十面体BiVO_(4).Z型体系中还原和氧化过程分离,可以在不同催化剂上分别进行氧化还原反应,能够有效抑制逆反应的发生,同时扩宽光催化材料的设计和选择的可能性.以PCN作为产氢端催化剂,十面体BiVO_(4)作为产氧端催化剂,以Fe^(3+)/Fe^(2+)作为离子对构建了Z型体系实现了光催化全解水.其中0.55%Fe掺杂的PCN-Fe/BiVO_(4)表现出了更优异的光催化活性,全解水的产氢性能比未改性的PCN/BiVO_(4)提升近一倍,进一步验证了气相挥发法掺杂Fe改性策略的有效性.这种基于催化剂(氮化碳)性质的掺杂改性方法对于催化剂的优化和设计以及构建Z型光催化全解水体系的探索具备一定的借鉴意义. 展开更多
关键词 氮化碳 铁掺杂 钒酸铋 Z型体系 光催化
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冶金含铁尘泥制备的Mn–Ce掺杂Fe基催化剂及特性
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作者 高志芳 龙红明 +3 位作者 高翔鹏 李明阳 张浩 周海成 《工程科学学报》 EI CSCD 北大核心 2024年第3期407-419,共13页
针对冶金工业固废–含铁冶金尘泥组分复杂的特性,结合当前冶金烧结过程NO_x排放也是钢铁行业污染治理的重中之重的现状,提出对冶金含铁尘泥进行改性制备掺杂低温催化剂的思路,并制备了Mn–Ce掺杂的含铁尘泥基催化剂(Mn_(0.05)Ce_(0.1)/A... 针对冶金工业固废–含铁冶金尘泥组分复杂的特性,结合当前冶金烧结过程NO_x排放也是钢铁行业污染治理的重中之重的现状,提出对冶金含铁尘泥进行改性制备掺杂低温催化剂的思路,并制备了Mn–Ce掺杂的含铁尘泥基催化剂(Mn_(0.05)Ce_(0.1)/ADM,ADM分别代表acidolysis,dust和mud),研究结果表明在170~430℃宽温度区间内,Mn_(0.05)Ce_(0.1)/ADM催化剂NO_x脱除率达到90%以上,并表现出优异的SO_(2)和H_(2)O抗性,抗水抗硫性测试表明Mn_(0.05)Ce_(0.1)/ADM催化剂得益于Fe、Ce优异的抗水抗硫性,其活性组分具有较好的分散性和优异的介孔结构,并降低了表面结晶度. Mn掺杂使催化剂在牺牲一定Ce^(3+)浓度和高价态Mnx+离子的同时提高了Fe^(3+)的浓度,结果使其具有最均衡脱硝活性.此外,Fe–Ce–Mn间的协同作用改善了催化剂的表面酸性从而增加了Lewis酸性位点,进而促进静电极化激活NO_(2)和硝酸盐物种生成.研究结果可为冶金固废的高附加值利用及以废治污的思路提供一定理论参考. 展开更多
关键词 冶金固废 含铁尘泥 掺杂 铁基 催化剂
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铁掺杂硫化铋光芬顿降解有机污染物 被引量:1
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作者 陈顺通 王欢 崔文权 《分子催化(中英文)》 CAS CSCD 北大核心 2024年第1期17-25,I0001,共10页
采用微波法制备了Fe掺杂Bi_(2)S_(3)复合光催化剂(Fe-Bi2S3),用于光芬顿法降解污染物的研究.对Fe-Bi_(2)S_(3)进行了结构、形貌、元素组成、光电化学性能等表征测试,结果表明:Fe-Bi_(2)S_(3)材料呈无定形结构,光响应性能良好,Fe掺杂后... 采用微波法制备了Fe掺杂Bi_(2)S_(3)复合光催化剂(Fe-Bi2S3),用于光芬顿法降解污染物的研究.对Fe-Bi_(2)S_(3)进行了结构、形貌、元素组成、光电化学性能等表征测试,结果表明:Fe-Bi_(2)S_(3)材料呈无定形结构,光响应性能良好,Fe掺杂后的复合物光生载流子分离能力得到明显改善.最优掺杂比的Fe-Bi2S3复合物在30 min内对亚甲基蓝的光芬顿降解效率高达99%,且具有良好的稳定性.最后,提出了Fe-Bi_(2)S_(3)可能的降解机理. 展开更多
关键词 硫化铋 铁掺杂 光芬顿协同 降解 污染物
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铁/硫共掺杂的石墨相氮化碳及其光催化性能
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作者 梁龙 陆帅帅 +2 位作者 刘亚男 江芳 陈欢 《环境保护科学》 CAS 2024年第3期71-81,共11页
文章以三聚氰胺、三聚硫氰酸和硝酸铁为原料,通过热聚合法制得铁/硫共掺杂的石墨相氮化碳(Fe/S-CN)催化剂。利用TEM、XRD、FT-IR、EIS等手段对聚合过程中间体和所得Fe/S-CN催化剂进行表征,结果表明三聚氰胺和三聚硫氰酸在热聚合过程中... 文章以三聚氰胺、三聚硫氰酸和硝酸铁为原料,通过热聚合法制得铁/硫共掺杂的石墨相氮化碳(Fe/S-CN)催化剂。利用TEM、XRD、FT-IR、EIS等手段对聚合过程中间体和所得Fe/S-CN催化剂进行表征,结果表明三聚氰胺和三聚硫氰酸在热聚合过程中形成铁/硫掺杂的纳米薄层材料。以水中双酚A为目标污染物,考察Fe/S-CN的光催化性能,结果表明在模拟太阳光条件下,2%Fe/S-CN具有最好的污染物降解活性,光照3 h后20 mg/L双酚A的降解率可达92.8%,明显优于硫掺杂石墨相氮化碳和体相石墨相氮化碳。光电流和电化学阻抗的结果表明,铁/硫的掺杂提高了光生电子-空穴对的分离效率;EIS结果说明了金属修饰和非金属掺杂改善了载流子的传输性能,有利于载流子分离。自由基猝灭实验证实,光生空穴、单线态氧和超氧自由基是Fe/S-CN光催化双酚A氧化还原反应的主要活性物种。 展开更多
关键词 石墨相氮化碳 铁/硫共掺杂 光催化 双酚A
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多级孔铁氮掺杂生物炭催化剂的制备及性能
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作者 林逸宁 葛强 +5 位作者 万金泉 朱丛韵 王艳 周贤波 刘宽勇 刘和芳 《化工环保》 CAS CSCD 北大核心 2024年第4期546-553,共8页
在水稻秸秆基铁氮掺杂生物炭粉末催化剂的基础上,制备了多级孔铁氮掺杂生物炭成型固体催化剂,探讨了其成型工艺,对其进行了表征,并对其活化过硫酸盐降解有机污染物的性能进行了评价,为铁氮掺杂生物炭催化剂的工业放大提供参考。该方法... 在水稻秸秆基铁氮掺杂生物炭粉末催化剂的基础上,制备了多级孔铁氮掺杂生物炭成型固体催化剂,探讨了其成型工艺,对其进行了表征,并对其活化过硫酸盐降解有机污染物的性能进行了评价,为铁氮掺杂生物炭催化剂的工业放大提供参考。该方法制备的成型球体催化剂具有良好的力学性能、丰富的多级孔结构、极低的铁离子浸出,可在宽pH范围内有效去除实际废水COD以及三氯苯酚(TCP)、双酚A(BPA)等有机污染物,可通过浸渍和热处理再生。吸附60 min、降解100 min后,COD、TCP、BPA的去除率分别可达46.85%、63.62%、90.18%。Fe^(2+)、Fe^(0)能够活化过硫酸盐产生·OH、SO_(4)^(-)·、·O_(2)^(-)和^(1)O_(2)降解有机污染物,Fe—N、C=O、O=C—OH和π→π^(*)位点作为电子供体,氧化态N作为电子受体。 展开更多
关键词 铁氮掺杂生物炭 催化剂成型 过硫酸盐高级氧化 造孔
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