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Local coordination and electronic interactions of Pd/MXene via dual‐atom codoping with superior durability for efficient electrocatalytic ethanol oxidation
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作者 Zhangxin Chen Fan Jing +7 位作者 Minghui Luo Xiaohui Wu Haichang Fu Shengwei Xiao Binbin Yu Dan Chen Xianqiang Xiong Yanxian Jin 《Carbon Energy》 SCIE EI CAS CSCD 2024年第8期166-177,共12页
Catalyst design relies heavily on electronic metal‐support interactions,but the metal‐support interface with an uncontrollable electronic or coordination environment makes it challenging.Herein,we outline a promisin... Catalyst design relies heavily on electronic metal‐support interactions,but the metal‐support interface with an uncontrollable electronic or coordination environment makes it challenging.Herein,we outline a promising approach for the rational design of catalysts involving heteroatoms as anchors for Pd nanoparticles for ethanol oxidation reaction(EOR)catalysis.The doped B and N atoms from dimethylamine borane(DB)occupy the position of the Ti_(3)C_(2) lattice to anchor the supported Pd nanoparticles.The electrons transfer from the support to B atoms,and then to the metal Pd to form a stable electronic center.A strong electronic interaction can be produced and the d‐band center can be shifted down,driving Pd into the dominant metallic state and making Pd nanoparticles deposit uniformly on the support.As‐obtained Pd/DB–Ti_(3)C_(2) exhibits superior durability to its counterpart(∼14.6% retention)with 91.1% retention after 2000 cycles,placing it among the top single metal anodic catalysts.Further,in situ Raman and density functional theory computations confirm that Pd/DB–Ti_(3)C_(2) is capable of dehydrogenating ethanol at low reaction energies. 展开更多
关键词 DURABILITY electronic interactions ethanol oxidation heteroatom codoping Pd/MXene
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Charge-balanced codoping enables exceeding doping limit and ultralow thermal conductivity
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作者 Long Chen Chun Wang +3 位作者 Lin Wang Minghao Wang Yongchun Zhu Changzheng Wu 《中国科学技术大学学报》 CAS CSCD 北大核心 2024年第6期1-7,I0009,共8页
Materials with low thermal conductivity are applied extensively in energy management,and breaking the amorphous limits of thermal conductivity to solids has attracted widespread attention from scientists.Doping is a c... Materials with low thermal conductivity are applied extensively in energy management,and breaking the amorphous limits of thermal conductivity to solids has attracted widespread attention from scientists.Doping is a common strategy for achieving low thermal conductivity that can offer abundant scattering centers in which heavier dopants always result in lower phonon group velocities and lower thermal conductivities.However,the amount of equivalent heavyatom single dopant available is limited.Unfortunately,nonequivalent heavy dopants have finite solubility because of charge imbalance.Here,we propose a charge balance strategy for SnS by substituting Sn2+with Ag^(+)and heavy Bi^(3+),improving the doping limit of Ag from 2%to 3%.Ag and Bi codoping increases the point defect concentration and introduces abundant boundaries simultaneously,scattering the phonons at both the atomic scale and nanoscale.The thermal conductivity of Ag0.03Bi0.03Sn0.94S decreased to 0.535 W·m^(−1)·K^(−1)at room temperature and 0.388 W·m^(−1)·K^(−1)at 275°C,which is below the amorphous limit of 0.450 W·m^(−1)·K^(−1)for SnS.This strategy offers a simple way to enhance the doping limit and achieve ultralow thermal conductivity in solids below the amorphous limit without precise structural modification. 展开更多
关键词 charge-balanced codoping heavy atom point defect grain boundary ultralow thermal conductivity
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Realizing Cd and Ag codoping in p-type Mg_(3)Sb_(2)toward high thermoelectric performance 被引量:1
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作者 Shijuan Xiao Kunling Peng +6 位作者 Zizhen Zhou Huan Wang Sikang Zheng Xu Lu Guang Han Guoyu Wang Xiaoyuan Zhou 《Journal of Magnesium and Alloys》 SCIE EI CAS CSCD 2023年第7期2486-2494,共9页
Mg_(3)Sb_(2)has attracted intensive attention as a typical Zintl-type thermoelectric material.Despite the exceptional thermoelectric performance in n-type Mg_(3)Sb_(2),the dimensionless figure of merit(zT)of p-type Mg... Mg_(3)Sb_(2)has attracted intensive attention as a typical Zintl-type thermoelectric material.Despite the exceptional thermoelectric performance in n-type Mg_(3)Sb_(2),the dimensionless figure of merit(zT)of p-type Mg_(3)Sb_(2)remains lower than 1,which is mainly attributed to its inferior electrical properties.Herein,we synergistically optimize the thermoelectric properties of p-type Mg_(3)Sb_(2)materials via codoping of Cd and Ag,which were synthesized by high-energy ball milling combined with hot pressing.It is found that Cd doping not only increases the carrier mobility of p-type Mg_(3)Sb_(2),but also diminishes its thermal conductivity(κ_(tot)),with Mg_(2.85)Cd_(0.5)Sb_(2)achieving a lowκtot value of∼0.67 W m^(−1)K^(−1)at room temperature.Further Ag doping elevates the carrier concentration,so that the power factor is optimized over the entire temperature range.Eventually,a peak zT of∼0.75 at 773 K and an excellent average zT of∼0.41 over 300−773 K are obtained in Mg_(2.82)Ag_(0.03)Cd_(0.5)Sb_(2),which are∼240%and∼490%higher than those of pristine Mg_(3.4)Sb_(2),respectively.This study provides an effective pathway to synergistically improve the thermoelectric performance of p-type Mg_(3)Sb_(2)by codoping Cd and Ag,which is beneficial to the future applications of Mg_(3)Sb_(2)-based thermoelectric materials. 展开更多
关键词 THERMOELECTRIC p-type Mg_(3)Sb_(2) Cd and Ag codoping Lattice thermal conductivity Carrier concentration
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Zn-Sn共掺杂Mg_(2)TiO_(4)微波介电陶瓷的制备与表征
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作者 何梦慈 王元凯 娄本浊 《化工技术与开发》 CAS 2024年第5期1-5,72,共6页
本研究分别用微量Zn^(2+)与Sn^(4+)取代Mg_(2)+与Ti^(4+),通过固相反应法制备了Zn-Sn共掺杂Mg_(2)TiO_(4)微波介电陶瓷,并采用阿基米德法、XRD、SEM、EDS及网络分析仪等手段,分析了材料的基本物性和介电特性。基本物性分析结果表明,烧... 本研究分别用微量Zn^(2+)与Sn^(4+)取代Mg_(2)+与Ti^(4+),通过固相反应法制备了Zn-Sn共掺杂Mg_(2)TiO_(4)微波介电陶瓷,并采用阿基米德法、XRD、SEM、EDS及网络分析仪等手段,分析了材料的基本物性和介电特性。基本物性分析结果表明,烧结温度、Zn掺杂量x、Sn掺杂量y等因素对Mg_(2)TiO_(4)的晶体结构无明显影响,烧结致密性随烧结温度的升高呈先增大后减小的趋势,其中在1300℃下烧结所得的(Zn_(0.05)Mg_(0.95))2(Sn_(0.05)Ti_(0.95))O_(4),烧结致密性最佳,达到98%。微波介电特性分析结果表明,Zn-Sn共掺杂Mg_(2)TiO_(4)的介电常数εr与品质因数Q×f值,均随烧结温度的升高而呈先增大后减小的趋势,且其谐振频率温度系数τf具有较好的稳定性,其中在1300℃下烧结所得的(Zn_(0.05)Mg_(0.95))2(Sn_(0.05)Ti_(0.95))O4,εr≈15.55,Q×f≈319690GHz,此时τf≈-52.06×10^(-6)·℃^(-1)。与前人的研究结果比较后可知,本研究制备的(Zn_(0.05)Mg_(0.95))2(Sn_(0.05)Ti_(0.95))O_(4)不仅将烧结温度大幅下降至1300℃,还能将品质因子提升至319690GHz,使其微波介电性能得到有效改善。 展开更多
关键词 微波介电陶瓷 Mg_(2)TiO_(4) zn-sn共掺杂 固相反应法 微波介电特性
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Band gap narrowing of TiO_2 by compensated codoping for enhanced photocatalytic activity 被引量:1
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作者 Jindou Huang Shuhao Wen +1 位作者 Jianyong Liu Guozhong He 《Journal of Natural Gas Chemistry》 EI CAS CSCD 2012年第3期302-307,共6页
In this study, we have performed first-principles screened exchanged hybrid density function theory with the HSE06 function calculations of the C-Mo, C-W, N-Nb and N-Ta codoped anatase TiO2 systems to investigate the ... In this study, we have performed first-principles screened exchanged hybrid density function theory with the HSE06 function calculations of the C-Mo, C-W, N-Nb and N-Ta codoped anatase TiO2 systems to investigate the effect of codoping on the electronic structure of TiO2. The calculated results demonstrate that (W(s)+C(s)) codoped TiO2 narrows the band gap significantly, and have little influence on the position of conduction band edges, therefore, enhances the efficiency of the photocatalytic hydrogen generation from water and the photodegradation of organic pollutants. Moreover, the proper oxygen pressure and temperature are two key factors during synthesis which should be carefully under control so that the desired (W(s)+C(s)) codoped TiO2 can be obtained. 展开更多
关键词 hybrid DFT TiO2 codoping thermodynamic stability band gap PHOTOCATALYSTS
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Effect of the codoping of N-H-O on the growth characteristics and defects of diamonds under high temperature and high pressure 被引量:1
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作者 Zhenghao Cai Bowei Li +5 位作者 Liangchao Chen Zhiwen Wang Shuai Fang Yongkui Wang Hongan Ma Xiaopeng Jia 《Chinese Physics B》 SCIE EI CAS CSCD 2022年第10期113-119,共7页
Diamond crystals were synthesized with different doping proportions of N-H-O at 5.5 GPa-7.1 GPa and 1370℃-1450℃. With the increase in the N-H-O doping ratio, the crystal growth rate decreased, the temperature and pr... Diamond crystals were synthesized with different doping proportions of N-H-O at 5.5 GPa-7.1 GPa and 1370℃-1450℃. With the increase in the N-H-O doping ratio, the crystal growth rate decreased, the temperature and pressure conditions required for diamond nucleation became increasingly stringent, and the diamond crystallization process was affected. [111] became the dominant plane of diamonds;surface morphology became block-like;and growth texture,stacking faults, and etch pits increased. The diamond crystals had a two-dimensional growth habit. Increasing the doping concentration also increased the amount of N that entered the diamond crystals as confirmed via Fourier transform infrared spectroscopy. However, crystal quality gradually deteriorated as verified by the red-shifting of Raman peak positions and the widening of the Raman full width at half maximum. With the increase in the doping ratio, the photoluminescence property of the diamond crystals also drastically changed. The intensity of the N vacancy center of the diamond crystals changed, and several Ni-related defect centers, such as the NE1 and NE3 centers, appeared. Diamond synthesis in N-H-O-bearing fluid provides important information for deepening our understanding of the growth characteristics of diamonds in complex systems and the formation mechanism of natural diamonds, which are almost always N-rich and full of various defect centers. Meanwhile, this study proved that the type of defect centers in diamond crystals could be regulated by controlling the N-H-O impurity contents of the synthesis system. 展开更多
关键词 HPHT N-H-O codoping synthetic diamond nitrogen concentration defects in diamond
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N/S codoping modification based on the metal organic frameworkderived carbon to improve the electrochemical performance of different energy storage devices 被引量:1
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作者 Ziyi Zhu Xue Li +4 位作者 Zhong Zhang Qi Meng Wenjia Zhang Peng Dong Yingjie Zhang 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2022年第11期394-403,I0011,共11页
Carbon-based materials have become a research hotspot in the field of energy storage devices in recent years due to their abundant resources,low cost,and environmental friendliness.However,the low capacity and poor hi... Carbon-based materials have become a research hotspot in the field of energy storage devices in recent years due to their abundant resources,low cost,and environmental friendliness.However,the low capacity and poor high rate performance still constitute great challenges.Metal organic framework-derived carbon has been widely researched because of its high porosity,tunable structure,and good conductivity.In this work,N/S codoped hierarchical porous carbon microspheres were prepared by a high-temperature heat treatment and atomic doping process using a zinc-based organic framework as the precursor.When used as a potassium-ion battery anode,it has a high reversible specific capacity(435.7 mAh g^(-1)),good rate performance(133.5 mAh g^(-1)at 10,000 m A g^(-1)),and long-term cycling stability(73.2%capacity retention after the 2500th cycle).The potassium storage mechanism of the derived carbon was explained by various electrochemical analysis methods and microstructure characterization techniques,and the relationship between the structural characteristics and electrochemical properties was researched.In a supercapacitor,the porous carbon material exhibits a specific capacitance of 307.2 F g^(-1)at a current density of 0.2 A g^(-1)in a KOH aqueous solution and achieves a retention rate of 99.88%after 10,000 cycles.The assembled symmetric supercapacitor device delivers a high energy density of 6.69 Wh kg^(-1),with a corresponding power density of 2500 W kg^(-1).In addition,density functional theory calculations further confirmed that N/S codoping can improve the adsorption capacities of potassium and hydroxyl ions in the derived carbon. 展开更多
关键词 N/S codoped Carbon microspheres Metal organic frameworks Potassium-ion batteries SUPERCAPACITORS
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Revisiting the Electron-Doped SmFeAsO:Enhanced Superconductivity up to 58.6 K by Th and F Codoping 被引量:1
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作者 王小川 于佳 +6 位作者 阮彬彬 潘伯津 穆青隔 刘通 赵康 陈根富 任治安 《Chinese Physics Letters》 SCIE CAS CSCD 2017年第7期228-231,共4页
In the iron-based high-To bulk superconductors, Tc above 50 K was only observed in the electron-doped 1111-type compounds. Here we revisit the electron-doped SmFeAsO polycrystals to make a further investigation for th... In the iron-based high-To bulk superconductors, Tc above 50 K was only observed in the electron-doped 1111-type compounds. Here we revisit the electron-doped SmFeAsO polycrystals to make a further investigation for the highest Tc in these materials. To introduce more electron carriers and less crystal lattice distortions, we study the Th and F eodoping effects into the Sm-O layers with heavy electron doping. Dozens of Sm1-xThx FeAsO1-yFy samples are synthesized through the solid state reaction method, and these samples are carefully characterized by the structural, resistive, and magnetic measurements. We find that the codoping of Th and F clearly enhances the superconducting Tc more than the Th or F single-doped samples, with the highest record Tc up to 58.6K when x = 0.2 and y=0.225. Further element doping causes more impurities and lattice distortions in the samples with a weakened superconductivity. 展开更多
关键词 TH AS Revisiting the Electron-Doped SmFeAsO:Enhanced Superconductivity up to58.6K by Th and F codoping
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Phase transformation and morphology tuning of β-NaYF_4:Yb^(3+),Er^(3+) nanocrystals through K^+ ions codoping
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作者 梁志琴 赵谡玲 +3 位作者 崔越 田丽娇 张俊杰 徐征 《Chinese Physics B》 SCIE EI CAS CSCD 2015年第3期384-389,共6页
In this work, a simple method to modulate the crystal phase and morphology with a large amount of K+ions codoping is proposed. The phase changes to the mixture of β-Na YF4 and β-KYF4 with increasing the content of... In this work, a simple method to modulate the crystal phase and morphology with a large amount of K+ions codoping is proposed. The phase changes to the mixture of β-Na YF4 and β-KYF4 with increasing the content of K^+ions to 80 mol%.When it exceeds 80 mol%, β-Na YF4 disappears gradually and β-KYF4 dominates with a poor crystalline. In addition, the morphology changes from nanosphere to nanoplate, and then to nanoprism, which indicates that a higher content of K^+ions favors the growth rates along [0001] than the [10-10] of the nanocrystals. Additionally, the upconversion(UC) luminescence properties and the ratio of red/green(R/G) UC intensity of samples with different phases and morphologies are detected,which makes it possible to tune the UC fluorescence by varying the concentration of K^+ions. 展开更多
关键词 upconversion fluorescence NaYF4:Yb ER K+ ions codoping
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Upconversion Luminescence Properties of NaY0.92Yb0.05Er0.03F4 Enhanced by Zr^4+ Codoping
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作者 刘宏升 徐汉东 +3 位作者 黄清明 曹文兵 俞瀚 于岩 《Chinese Journal of Structural Chemistry》 SCIE CAS CSCD 2017年第10期1743-1751,共9页
In this paper we present a novel report on the upconversion luminescence performance of NaY0.92Yb0.05Er0.03F4 enhanced by Zr^4+ codoping. The luminescence intensity of the tridoped hexagonal NaYF_4 synthesized by a h... In this paper we present a novel report on the upconversion luminescence performance of NaY0.92Yb0.05Er0.03F4 enhanced by Zr^4+ codoping. The luminescence intensity of the tridoped hexagonal NaYF_4 synthesized by a hydrothermal method increased to the maximum, about seven times of the non-Zr^4+ sample when the Zr^4+ codoping concentration rose to 6 mol%, while the luminescence lifetime was also prolonged by Zr^4+ codoping. To explore the relationships between the microstructure and upconversion properties, X-ray powder diffraction, field emission scanning electron microscope, electron energy-dispersive spectroscopy and upconversion emission spectroscopy were employed. From these characterizations, we found that the codoping of Zr^4+ could modulate the crystal microstructure of NaYF_4 for higher upconversion luminescence intensity and longer lifetime. This study may be helpful for the design and synthesis of high-performance upconversion materials. 展开更多
关键词 NAYF4 UPCONVERSION Zr^4+ codoping
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Waste to wealth: Oxygen-nitrogen-sulfur codoped lignin-derived carbon microspheres from hazardous black liquors for high-performance DSSCs 被引量:1
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作者 Wenjie Cheng Caichao Wan +6 位作者 Xingong Li Huayun Chai Zhenxu Yang Song Wei Jiahui Su Xueer Tang Yiqiang Wu 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2023年第8期549-563,I0013,共16页
Carbon materials are effective substitutes for Pt counter electrodes(CEs) in dye-sensitized solar cells(DSSCs). However, many of these materials, such as carbon nanotubes and graphene, are expensive and require comple... Carbon materials are effective substitutes for Pt counter electrodes(CEs) in dye-sensitized solar cells(DSSCs). However, many of these materials, such as carbon nanotubes and graphene, are expensive and require complex preparation process. Herein, waste lignin, recycled from hazardous black liquors,is used to create oxygen-nitrogen-sulfur codoped carbon microspheres for use in DSSC CEs through the facile process of low-temperature preoxidation and high-temperature self-activation. The large number of ester bonds formed by preoxidation increase the degree of cross-linking of the lignin chains, leading to the formation of highly disordered carbon with ample defect sites during pyrolysis. The presence of organic O/N/S components in the waste lignin results in high O/N/S doping of the pyrolysed carbon,which increases the electrolyte ion adsorption and accelerates the electron transfer at the CE/electrolyte interface, as confirmed by density functional theory(DFT) calculations. The presence of inorganic impurities enables the construction of a hierarchical micropore-rich carbon structure through the etching effect during self-activation, which can provide abundant catalytically active sites for the reversible adsorption/desorption of electrolyte ions. Under these synergistic effects, the DSSCs that use this novel carbon CE achieve a quite high power-conversion efficiency of 9.22%. To the best of our knowledge, the value is a new record reported so far for biomass-carbon-based DSSCs. 展开更多
关键词 LIGNIN Carbon microspheres codoping Hierarchical pores DSSCS
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Improvement of Photoactivity of Titanium Oxide by Codoping Sn-Li-F Elements
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作者 Huaixiang Li Yingshuai Lv Lusheng Chen Hao Tian Lei Yu Shanshan Chen 《材料科学与工程(中英文版)》 2010年第6期44-50,共7页
关键词 二氧化钛微粒 光催化活性 掺锡 氟元素 X射线光电子能谱 亚甲基蓝 晶体结构 煅烧温度
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Zn-Sn复合氧化物的制备及其电化学性能 被引量:3
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作者 黄峰 卢献忠 +1 位作者 詹晖 周运鸿 《电池》 CAS CSCD 北大核心 2007年第4期263-265,共3页
采用液相沉淀法制备ZnSn(OH)6前驱体。在不同温度下热处理前驱体,得到Zn-Sn复合氧化物。通过差热/热重分析(TG/DTA)、XRD分析前驱体和Zn-Sn复合氧化物的结构,运用恒流充放电研究了Zn-Sn复合氧化物作为锂离子电池负极材料的电化... 采用液相沉淀法制备ZnSn(OH)6前驱体。在不同温度下热处理前驱体,得到Zn-Sn复合氧化物。通过差热/热重分析(TG/DTA)、XRD分析前驱体和Zn-Sn复合氧化物的结构,运用恒流充放电研究了Zn-Sn复合氧化物作为锂离子电池负极材料的电化学性能。结果表明:在300℃和500℃下热处理前驱体得到的是非晶态的ZnSnO3,在670℃、720℃和800℃下热处理得到的是晶态的ZnSnO3和尖晶石型Zn2SnO4。若从容量和循环寿命综合考虑,在发生相变的温度范围(670~720℃)内热分解,得到的产物的电化学性能较差。 展开更多
关键词 锂离子电池 负极材料 zn-sn复合氧化物 液相沉淀法
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机械镀Zn-Sn合金镀层结构及形成原理分析 被引量:2
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作者 赵晓军 何明奕 +2 位作者 袁训华 王胜民 胡春玲 《材料热处理学报》 EI CAS CSCD 北大核心 2013年第S1期144-149,共6页
机械镀Zn-25%Sn合金镀层因其良好的耐盐水和含盐蒸气腐蚀性能,适宜在海洋性腐蚀环境中服役,已被澳大利亚等临海国家广泛应用并列入其工业标准。本试验分别采用还原沉积和携带沉积两种方法在钢铁制品表面上获得了平均锡含量达25%以上的... 机械镀Zn-25%Sn合金镀层因其良好的耐盐水和含盐蒸气腐蚀性能,适宜在海洋性腐蚀环境中服役,已被澳大利亚等临海国家广泛应用并列入其工业标准。本试验分别采用还原沉积和携带沉积两种方法在钢铁制品表面上获得了平均锡含量达25%以上的机械镀Zn-Sn合金镀层。针对样品的镀层结构和形层规律进行的分析比较结果表明:在不同的沉积条件下,还原沉积Zn-25%Sn镀层的形成以还原沉积和机械碰撞镶嵌形层为主,吸附沉积为辅;携带沉积Zn-25%Sn镀层的形成以吸附沉积和机械碰撞镶嵌形层为主,还原沉积为辅。 展开更多
关键词 机械镀 zn-sn合金镀层 还原沉积 携带沉积
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机械镀Zn-Sn合金镀层锡还原沉积法工艺研究 被引量:2
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作者 何明奕 赵晓军 +2 位作者 王胜民 袁训华 胡春玲 《材料科学与工艺》 EI CAS CSCD 北大核心 2014年第4期36-40,共5页
为丰富和发展机械镀合金化镀层沉积方法及制备工艺,在机械镀Zn-Sn合金镀层工艺过程中,采用还原沉积活化剂替代金属锡粉,在复合的活化液作用下,锌粉以吸附沉积为主,锡的添加以还原沉积为主的镀层形成环境,可以在钢铁制品表面上形成机械镀... 为丰富和发展机械镀合金化镀层沉积方法及制备工艺,在机械镀Zn-Sn合金镀层工艺过程中,采用还原沉积活化剂替代金属锡粉,在复合的活化液作用下,锌粉以吸附沉积为主,锡的添加以还原沉积为主的镀层形成环境,可以在钢铁制品表面上形成机械镀Zn-25%Sn合金镀层.镀层性能测试结果表明:由于不使用金属锡粉作为原料,镀层中无粗大锡粉颗粒;在同样的运动和冲击条件下,还原沉积工艺方法使得机械镀Zn-25%Sn合金镀层的形成过程向着致密化和平整化的方向改变,得到的镀层平整、光亮、均匀性好,同时也有利于提高有色金属的使用率,降低生产成本. 展开更多
关键词 机械镀 机械镀zn-sn合金 Zn-25%Sn合金镀层 还原沉积工艺 镀层性能
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三维氮磷共掺杂石墨烯的制备及电催化氧还原性能研究
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作者 靳伟诺 秦勇 刘扬 《化工新型材料》 CAS CSCD 北大核心 2024年第9期118-123,128,共7页
氧还原反应(ORR)是燃料电池和金属-空气电池的阴极反应,其缓慢的动力学是目前掣肘燃料电池和金属空气电池发展的主要因素。为了使反应顺利进行,常常需要使用金属(包括贵金属和过渡金属)基催化剂,但这些催化剂存在价格高、稳定性差等缺... 氧还原反应(ORR)是燃料电池和金属-空气电池的阴极反应,其缓慢的动力学是目前掣肘燃料电池和金属空气电池发展的主要因素。为了使反应顺利进行,常常需要使用金属(包括贵金属和过渡金属)基催化剂,但这些催化剂存在价格高、稳定性差等缺陷。非金属原子掺杂的碳基催化剂近年来被认为是一种具有前景的ORR电催化剂。在此,使用单一前驱体磷酸三聚氰胺和氧化石墨烯经水热然后退火制备了三维氮磷共掺杂石墨烯材料(3DNPG)。通过扫描电镜(SEM)、透射电镜(TEM)、X射线衍射(XRD)、X射线光电子能谱(XPS)等手段对3DNPG的结构与组成进行了表征。结果表明:3DNPG具有独特的三维网状结构、较大的比表面积(514.38m 2/g),特别是还具有非常高的N(15.53%)和P(6.61%)掺杂量。用作碱性溶液里ORR的催化剂时,其起始电位为0.994V,半波电位为0.817V,极限电流为5.34mA/cm^(2),在48h后电流密度保持率仍维持在99%,因此是一种兼具优异活性和循环稳定性的ORR催化剂,在燃料电池、金属-空气电池等领域具有非常重要的应用价值。 展开更多
关键词 三维石墨烯 氮磷共掺杂石墨烯 氧还原反应 电催化剂
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电沉积Zn-Sn合金工艺的研究 被引量:1
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作者 王征 安茂忠 +1 位作者 胡旭日 徐树民 《电镀与环保》 CAS CSCD 2007年第2期14-16,共3页
在电解铜箔上采用碱性焦磷酸盐体系电镀Zn-Sn合金,可改善铜箔表面的综合性能。研究了配位剂、pH值、温度、电流密度等对镀层质量的影响,选择了合适的添加剂,并对其极化行为进行了研究,优化确定了电镀Zn-Sn合金的镀液组成和工艺条件。经... 在电解铜箔上采用碱性焦磷酸盐体系电镀Zn-Sn合金,可改善铜箔表面的综合性能。研究了配位剂、pH值、温度、电流密度等对镀层质量的影响,选择了合适的添加剂,并对其极化行为进行了研究,优化确定了电镀Zn-Sn合金的镀液组成和工艺条件。经过处理后的电解铜箔耐蚀性、耐热性和粘合强度等性能均有明显提高。 展开更多
关键词 电解铜箔 电镀 zn-sn合金
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碳布支撑Sn^(2+)/Sn^(4+)共掺杂的ZnIn_(2)S_(4)柔性光催化剂用于高效降解盐酸四环素
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作者 董文斌 崔慧娜 +1 位作者 王海瑞 姚垚 《化学研究与应用》 CAS 北大核心 2024年第1期72-80,共9页
本文采用一步溶剂热法制备了Sn^(2+)/Sn^(4+)共掺杂的ZnIn_(2)S_(4)/碳布柔性光催化剂(CC/ZIS-Sn),二维片状ZIS-Sn均匀地排列在碳布表面。通过降解盐酸四环素(TCH)溶液来评价所制备样品的光催化活性。结果表明,CC/ZIS-Sn_(0.09)复合光... 本文采用一步溶剂热法制备了Sn^(2+)/Sn^(4+)共掺杂的ZnIn_(2)S_(4)/碳布柔性光催化剂(CC/ZIS-Sn),二维片状ZIS-Sn均匀地排列在碳布表面。通过降解盐酸四环素(TCH)溶液来评价所制备样品的光催化活性。结果表明,CC/ZIS-Sn_(0.09)复合光催化剂具有高效的光催化活性,40 min对TCH溶液(50 mL,20 mg/L)的降解率高达93.3%。适量的Sn掺杂和碳布协同作用能够调整电子结构,缩小光捕获带隙,增强ZIS光生载流子的分离和转移效率。自由基捕获实验证明空穴是光催化降解过程中的主要活性物质。此外,CC/ZIS-Sn光催化剂还具有良好的可回收性和稳定性,循环测试4次后,对TCH溶液的去除率仍达83.1%。 展开更多
关键词 碳布 Sn^(2+)/Sn^(4+)共掺杂 ZnIn_(2)S_(4) 盐酸四环素 光催化
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Cu对Zn-Sn合金微观组织和力学性能的影响
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作者 起华荣 史庆南 +2 位作者 赵启淞 王璐 王效琪 《铸造技术》 CAS 北大核心 2012年第12期1388-1390,共3页
研究了添加少量Cu元素对Zn-35%Sn流行饰品合金微观组织和力学性能的影响。结果表明,在Zn-35%Sn合金中加入0~3.0%Cu,金相组织中的ε相会明显增加;合金伸长率从11.2%下降为9.8%左右,然后再上升到12.6%;抗拉强度从100 MPa上升为150 MPa,... 研究了添加少量Cu元素对Zn-35%Sn流行饰品合金微观组织和力学性能的影响。结果表明,在Zn-35%Sn合金中加入0~3.0%Cu,金相组织中的ε相会明显增加;合金伸长率从11.2%下降为9.8%左右,然后再上升到12.6%;抗拉强度从100 MPa上升为150 MPa,又下降到120 MPa。断口分析表明,含Cu量较低时,断口处存在疏松缺陷,随着Cu含量的增加,缺陷逐渐消失;Cu元素的添加,可以细化Zn合金的晶粒,但对合金伸长率的影响不大。Zn-Sn合金中Cu的适宜添加量为1.5%~2.5%。 展开更多
关键词 铜元素添加 zn-sn合金 微观组织 力学性能
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Heteroatom tuning in agarose derived carbon aerogel for enhanced potassium ion multiple energy storage
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作者 Kaijun Xie Xin Liu +5 位作者 Haolin Li Long Fang Kai Xia Dongjiang Yang Yihui Zou Xiaodong Zhang 《Carbon Energy》 SCIE EI CAS CSCD 2024年第3期239-254,共16页
The incorporation of heteroatoms into carbon aerogels(CAs)can lead to structural distortions and changes in active sites due to their smaller size and electronegativity compared to pure carbon.However,the evolution of... The incorporation of heteroatoms into carbon aerogels(CAs)can lead to structural distortions and changes in active sites due to their smaller size and electronegativity compared to pure carbon.However,the evolution of the electronic structure from single-atom doping to heteroatom codoping in CAs has not yet been thoroughly investigated,and the impact of codoping on potassium ion(K+)storage and diffusion pathways as electrode material remains unclear.In this study,experimental and theoretical simulations were conducted to demonstrate that heteroatom codoping,composed of multiple heteroatoms(O/N/B)with different properties,has the potential to improve the electrical properties and stability of CAs compared to single-atom doping.Electronic states near the Fermi level have revealed that doping with O/N/B generates a greater number of active centers on adjacent carbon atoms than doping with O and O/N atoms.As a result of synergy with enhanced wetting ability(contact angle of 9.26°)derived from amino groups and hierarchical porous structure,ON-CA has the most optimized adsorption capacity(−1.62 eV)and diffusion barrier(0.12 eV)of K^(+).The optimal pathway of K^(+)in ON-CA is along the carbon ring with N or O doping.As K^(+)storage material for supercapacitors and ion batteries,it shows an outstanding specific capacity and capacitance,electrochemical stability,and rate performance.Especially,the assembled symmetrical K^(+)supercapacitor demonstrates an energy density of 51.8 Wh kg^(−1),an ultrahigh power density of 443Wkg^(−1),and outstanding cycling stability(maintaining 83.3%after 10,000 cycles in 1M KPF6 organic electrolyte).This research provides valuable insights into the design of highperformance potassium ion storage materials. 展开更多
关键词 AGAROSE carbon aerogels O/N/B codoping potassium-ion battery potassium-ion supercapacitor
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