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P,N co-doped hollow carbon nanospheres prepared by micellar copolymerization for increased hydrogen evolution in alkaline water 被引量:1
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作者 HAN Yi-meng XIONG Hao +2 位作者 YANG Jia-ying WANG Jian-gan XU Fei 《新型炭材料(中英文)》 北大核心 2025年第1期211-221,共11页
The design of cost-effective and efficient metal-free carbon-based catalysts for the hydrogen evolution reaction(HER)is of great significance for increasing the production of clean hydrogen by the electrolysis of alka... The design of cost-effective and efficient metal-free carbon-based catalysts for the hydrogen evolution reaction(HER)is of great significance for increasing the production of clean hydrogen by the electrolysis of alkaline water.Precise control of the electronic structure by heteroatom doping has proven to be efficient for increasing catalytic activity.Nevertheless,both the structural characteristics and the underlying mechanism are not well understood,especially for doping with two different atoms,thus limiting the use of these catalysts.We report the production of phosphorus and nitrogen co-doped hollow carbon nanospheres(HCNs)by the copolymerization of pyrrole and aniline at a Triton X-100 micelle-interface,followed by doping with phytic acid and carbonization.The unique pore structure and defect-rich framework of the HCNs expose numerous active sites.Crucially,the combined effect of graphitic nitrogen and phosphorus-carbon bonds modulate the local electronic structure of adjacent C atoms and facilitates electron transfer.As a res-ult,the HCN carbonized at 1100°C exhibited superior HER activity and an outstanding stability(70 h at a current density of 10 mA cm^(−2))in alkaline water,because of the large number of graphitic nitrogen and phosphorus-carbon bonds. 展开更多
关键词 Alkaline hydrogen evolution ELECTROCATALYSTS Hollow carbon nanospheres Dual atoms doping Combined effect
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Sc-doped strontium iron molybdenum cathode for high-efficiency CO_(2)electrolysis in solid oxide electrolysis cell
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作者 LIU Zhen ZHANG Lihong +4 位作者 XU Chunming WANG Zhenhua QIAO Jinshuo SUN Wang SUN Kening 《燃料化学学报(中英文)》 北大核心 2025年第2期272-281,共10页
Solid oxide electrolysis cells(SOECs)can effectively convert CO_(2)into high value-added CO fuel.In this paper,Sc-doped Sr_(2)Fe_(1.5)Mo_(0.3)Sc_(0.2)O_(6−δ)(SFMSc)perovskite oxide material is synthesized via solid-p... Solid oxide electrolysis cells(SOECs)can effectively convert CO_(2)into high value-added CO fuel.In this paper,Sc-doped Sr_(2)Fe_(1.5)Mo_(0.3)Sc_(0.2)O_(6−δ)(SFMSc)perovskite oxide material is synthesized via solid-phase method as the cathode for CO_(2)electrolysis by SOECs.XRD confirms that SFMSc exhibits a stable cubic phase crystal structure.The experimental results of TPD,TG,EPR,CO_(2)-TPD further demonstrate that Sc-doping increases the concentration of oxygen vacancy in the material and the chemical adsorption capacity of CO_(2)molecules.Electrochemical tests reveal that SFMSc single cell achieves a current density of 2.26 A/cm^(2) and a lower polarization impedance of 0.32Ω·cm^(2) at 800°C under the applied voltage of 1.8 V.And no significant performance attenuation or carbon deposition is observed after 80 h continuous long-term stability test.This study provides a favorable support for the development of SOEC cathode materials with good electro-catalytic performance and stability. 展开更多
关键词 solid oxide electrolysis cells CATHODE PEROVSKITE ELECTRO-CATALYSIS element doping
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Pr/N co-doped biomass carbon dots with enhanced fluorescence for efficient detection of 2,4-dinitrophenylhydrazine
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作者 SUN Xuehua MA Min +4 位作者 LIU Jianting TIAN Rui CHAI Hongmei CUI Huali GAO Loujun 《无机化学学报》 北大核心 2025年第3期561-573,共13页
We used the natural product chamomile as a carbon source to synthesize praseodymium(Pr) and nitrogen(N) co-doped biomass carbon dots(Pr/N-BCDs) with remarkable luminescence properties by one-step hydrothermal method.C... We used the natural product chamomile as a carbon source to synthesize praseodymium(Pr) and nitrogen(N) co-doped biomass carbon dots(Pr/N-BCDs) with remarkable luminescence properties by one-step hydrothermal method.Compared with single N-doped BCDs(N-BCDs) and Pr-doped BCDs(Pr-BCDs),Pr/N-BCDs not only showed better fluorescence properties and stability but also achieved a significant increase in quantum yield of 12%.More importantly,under certain conditions,Pr/N-BCDs and 2,4-dinitrophenylhydrazide(2,4-DNPH) had significant fluorescence internal filtration effect(IFE) and dynamic quenching effect,and in the concentration range of0.50-20 μmol·L^(-1),the concentration of 2,4-DNPH had a good linear relationship with the fluorescence quenching signal,and the detection limit was as low as 2.1 nmol·L^(-1). 展开更多
关键词 co⁃doped carbon dots 2 4⁃DNPH fluorescence detection
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Defect Dipole Thermal-stability to the Electro-mechanical Properties of Fe Doped PZT Ceramics
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作者 SUN Yuxuan WANG Zheng +5 位作者 SHI Xue SHI Ying DU Wentong MAN Zhenyong ZHENG Liaoying LI Guorong 《无机材料学报》 北大核心 2025年第5期545-551,I0009-I0010,共9页
The accepted doping ion in Ti^(4+)-site of PbZr_(y)Ti_(1–y)O_(3)(PZT)-based piezoelectric ceramics is a well-known method to increase mechanical quality factor(Q_(m)),since the acceptor coupled by oxygen vacancy beco... The accepted doping ion in Ti^(4+)-site of PbZr_(y)Ti_(1–y)O_(3)(PZT)-based piezoelectric ceramics is a well-known method to increase mechanical quality factor(Q_(m)),since the acceptor coupled by oxygen vacancy becomes defect dipole,which prevents the domain rotation.In this field,a serious problem is that generally,Qm decreases as the temperature(T)increases,since the oxygen vacancies are decoupled from the defect dipoles.In this work,Q_(m) of Pb_(0.95)Sr_(0.05)(Zr_(0.53)Ti_(0.47))O_(3)(PSZT)ceramics doped by 0.40%Fe_(2)O_(3)(in mole)abnormally increases as T increases,of which the Qm and piezoelectric coefficient(d_(33))at room temperature and Curie temperature(TC)are 507,292 pC/N,and 345℃,respectively.The maximum Qm of 824 was achieved in the range of 120–160℃,which is 62.52%higher than that at room temperature,while the dynamic piezoelectric constant(d_(31))was just slightly decreased by 3.85%.X-ray diffraction(XRD)and piezoresponse force microscopy results show that the interplanar spacing and the fine domains form as temperature increases,and the thermally stimulated depolarization current shows that the defect dipoles are stable even the temperature up to 240℃.It can be deduced that the aggregation of oxygen vacancies near the fine domains and defect dipole can be stable up to 240℃,which pins domain rotation,resulting in the enhanced Q_(m) with the increasing temperature.These results give a potential path to design high Q_(m) at high temperature. 展开更多
关键词 defect dipole temperature characteristic oxygen vacancy electro-mechanical property mechanical quality factor hardening doping
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Controllable phase transition of Al^(3+)induced manganese dioxide fromβ-toδ-type and their Al-dopedδ-type manganese dioxide for high-performance asymmetric supercapacitors
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作者 CHENG Xiao-yang ZHANG Li-hua +4 位作者 LI Ling-yan WU Hao ZHENG Jin-feng YAO Jia-rong LI Gui-fang 《Journal of Central South University》 2025年第6期2101-2113,共13页
Al-doped manganese dioxide(MnO_(2))was synthesized by simple hydrothermal method,and a controllable phase transition of the MnO_(2)crystal phase fromβtoδwas achieved.The effects of Al doping concentration on the str... Al-doped manganese dioxide(MnO_(2))was synthesized by simple hydrothermal method,and a controllable phase transition of the MnO_(2)crystal phase fromβtoδwas achieved.The effects of Al doping concentration on the structure and electrochemical properties of electrode materials were studied in detail.The results show that the controlled synthesis requires a synergy between KMnO_(4),MnCl_(2)and AlCl_(3),and that Al^(3+)plays an important role.Compared with the pure phase MnO_(2),the crystallinity of Al-doped MnO_(2)decreases and the specific surface area increases,which provides more active sites for the electrode material.When 3 mmol Al^(3+)is added,the prepared MnO_(2)-3 has the largest specific capacitance and the highest rate performance.The energy density of the asymmetric supercapacitor(ASC)with MnO_(2)-3 as the positive electrode and activated carbon(AC)as the negative electrode can reach 18.4 W·h/kg at the power density of 400 W/kg,and the capacity can maintain 90%of the initial value after 20000 cycles,indicating that Al-doped MnO_(2)has certain practical application value.This study provides favorable guidance for MnO_(2)as a high performance electrode material. 展开更多
关键词 Al doping MnO 2 phase transformation energy storage SUPERCAPACITOR
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Co-enhancement of doped N and oxygen vacancies on the photocatalytic performance of ceria:Mechanism and influence of crystal faces
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作者 WANG Fan LI Jun-qi +3 位作者 MURALI Arun CHEN Chao-yi ZHANG Wei LAN Yuan-pei 《Journal of Central South University》 2025年第6期2129-2147,共19页
Nitrogen doping has significant effects on the photocatalytic performance of ceria(CeO_(2)),and the possible synergistic effect with the inevitably introduced abundant oxygen vacancies(OVs)is of great significance for... Nitrogen doping has significant effects on the photocatalytic performance of ceria(CeO_(2)),and the possible synergistic effect with the inevitably introduced abundant oxygen vacancies(OVs)is of great significance for further investigation,and the specifically exposed crystal faces of CeO_(2)may have an impact on the performance of nitrogen doped CeO_(2).Herein,nitrogen-doped CeO_(2)with different morphologies and exposed crystal faces was prepared,and its performances in the photocatalytic degradation of tetracycline(TC)or hydrogen production via water splitting were evaluated.Density functional theory(DFT)was used to simulate the band structures,density of states,and oxygen defect properties of different CeO_(2)structures.It was found that nitrogen doping and OVs synergistically promoted the catalytic activity of nitrogen-doped CeO_(2).In addition,the exposed crystal faces of CeO_(2)have significant effects on the introduction of nitrogen and the ease of OV generation,as well as the synergistic effect of nitrogen doping with OVs.Among them,the rod-like nitrogen-doped CeO_(2)with exposed(110)face(R-CeO_(2)-NH_(3))showed a photocatalytic degradation ratio of 73.59%for TC and hydrogen production of 156.89μmol/g,outperforming other prepared photocatalysts. 展开更多
关键词 nitrogen doping CeO 2 oxygen vacancies synergistic effect crystal faces PHOTOCATALYSIS
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The relationship between the high-frequency performance of supercapacitors and the type of doped nitrogen in the carbon electrode 被引量:2
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作者 FAN Ya-feng YI Zong-lin +6 位作者 ZHOU Yi XIE Li-jing SUN Guo-hua WANG Zhen-bing Huang Xian-hong SU Fang-yuan CHEN Cheng-meng 《新型炭材料(中英文)》 SCIE EI CAS CSCD 北大核心 2024年第5期1015-1026,共12页
Nitrogen doping has been widely used to improve the performance of carbon electrodes in supercapacitors,particularly in terms of their high-frequency response.However,the charge storage and electrolyte ion response me... Nitrogen doping has been widely used to improve the performance of carbon electrodes in supercapacitors,particularly in terms of their high-frequency response.However,the charge storage and electrolyte ion response mechanisms of different nitrogen dopants at high frequencies are still unclear.In this study,melamine foam carbons with different configurations of surfacedoped N were formed by gradient carbonization,and the effects of the configurations on the high-frequency response behavior of the supercapacitors were analyzed.Using a combination of experiments and first-principle calculations,we found that pyrrolic N,characterized by a higher adsorption energy,increases the charge storage capacity of the electrode at high frequencies.On the other hand,graphitic N,with a lower adsorption energy,increases the speed of ion response.We propose the use of adsorption energy as a practical descriptor for electrode/electrolyte design in high-frequency applications,offering a more universal approach for improving the performance of N-doped carbon materials in supercapacitors. 展开更多
关键词 High-frequency supercapacitors Carbon electrodes doped nitrogen species Adsorption energy DESCRIPTOR
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Ion implantation process and lattice damage mechanism of boron doped crystalline germanium
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作者 HABIBA Um E CHEN Tian-Ye +8 位作者 LIU Chi-Xian DOU Wei LIU Xiao-Yan LING Jing-Wei PAN Chang-Yi WANG Peng DENG Hui-Yong SHEN Hong DAI Ning 《红外与毫米波学报》 CSCD 北大核心 2024年第6期749-754,共6页
The response wavelength of the blocked-impurity-band(BIB)structured infrared detector can reach 200µm,which is the most important very long wavelength infrared astronomical detector.The ion implantation method gr... The response wavelength of the blocked-impurity-band(BIB)structured infrared detector can reach 200µm,which is the most important very long wavelength infrared astronomical detector.The ion implantation method greatly simplifies the fabrication process of the device,but it is easy to cause lattice damage,introduce crystalline defects,and lead to the increase of the dark current of detectors.Herein,the boron-doped germanium ion implantation process was studied,and the involved lattice damage mechanism was discussed.Experimental conditions involved using 80 keV energy for boron ion implantation,with doses ranging from 1×10^(13)cm^(-2)to 3×10^(15)cm^(-2).After implantation,thermal annealing at 450℃was implemented to optimize dopant activation and mitigate the effects of ion implantation.Various sophisticated characterization techniques,including X-ray dif⁃fraction(XRD),Raman spectroscopy,X-ray photoelectron spectroscopy(XPS),and secondary ion mass spec⁃trometry(SIMS)were used to clarify lattice damage.At lower doses,no notable structural alterations were ob⁃served.However,as the dosage increased,specific micro distortions became apparent,which could be attributed to point defects and residual strain.The created lattice damage was recovered by thermal treatment,however,an irreversible strain induced by implantation still existed at heavily dosed samples. 展开更多
关键词 boron doped germanium ion implantation lattice damage
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钠离子电池正极材料NaMn_(0.33)Fe_(0.33)Ni_(0.33)O_(2)的喷雾干燥法制备及其改性 被引量:1
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作者 张庆印 杨訾 +2 位作者 赵静 张桂芳 时志强 《天津工业大学学报》 北大核心 2025年第1期40-46,共7页
为了制备颗粒较均一的钠离子电池正极材料NaMn_(0.33)Fe_(0.33)Ni_(0.33)O_(2)(NFM111),以乙酸镍四水合物、柠檬酸铁、乙酸锰四水合物、乙酸钠三水合物以及无水柠檬酸为原料配制出喷雾溶液,采用喷雾干燥法制备前驱体,预氧化后进行球磨... 为了制备颗粒较均一的钠离子电池正极材料NaMn_(0.33)Fe_(0.33)Ni_(0.33)O_(2)(NFM111),以乙酸镍四水合物、柠檬酸铁、乙酸锰四水合物、乙酸钠三水合物以及无水柠檬酸为原料配制出喷雾溶液,采用喷雾干燥法制备前驱体,预氧化后进行球磨并掺杂TiO_(2)后再进行高温烧结,得到NFM111@TiO_(2);采用物性表征和电化学测试,探究不同煅烧温度对NFM111的影响。结果表明:本文制备的NFM111@TiO_(2)颗粒的粒径大小一致;煅烧温度为900℃时增大了NFM111的层间距,进而增大了钠离子传输速率,NFM111@TiO_(2)的首圈放电比容量为143.2 mA·h/g,100圈后容量保持率为86.8%,具有良好的电化学性能。 展开更多
关键词 喷雾干燥法 钠离子电池 正极材料 层状氧化物 掺杂
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MOCVD生长的外延层掺杂氧化镓场效应晶体管 被引量:1
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作者 郁鑫鑫 沈睿 +11 位作者 于含 张钊 赛青林 陈端阳 杨珍妮 谯兵 周立坤 李忠辉 董鑫 张洪良 齐红基 陈堂胜 《人工晶体学报》 北大核心 2025年第2期312-318,共7页
本文基于Ga_(2)O_(3)MOCVD外延材料,开展了Ga_(2)O_(3)场效应晶体管的研制和性能研究。为了降低器件的导通电阻,优化了外延层设计,将掺杂浓度提高至1×10^(18) cm^(-3)以上。通过长沟道器件提取的外延层的电子浓度和场效应迁移率分... 本文基于Ga_(2)O_(3)MOCVD外延材料,开展了Ga_(2)O_(3)场效应晶体管的研制和性能研究。为了降低器件的导通电阻,优化了外延层设计,将掺杂浓度提高至1×10^(18) cm^(-3)以上。通过长沟道器件提取的外延层的电子浓度和场效应迁移率分别为2×10^(18) cm^(-3)和55 cm^(2)/(V·s),相应的沟道方阻为10.3 kΩ/sq。研制的栅漏间距2和16μm的Ga_(2)O_(3)MOSFET器件的比导通电阻分别为2.3和40.0 mΩ·cm^(2),对应的击穿电压分别达到458和2324 V。为了进一步提升器件的击穿电压,采用p型NiO制备栅电极,研制的Ga_(2)O_(3)JFET器件导通电阻显著增大,但击穿电压分别提升至755和3000 V以上。计算了不同栅漏间距器件的功率优值(P-FOM),发现其随栅漏间距的增加先增大后减小,其中栅漏间距为8μm的Ga_(2)O_(3)MOSFET器件获得了最高的P-FOM,达到了192 MW/cm^(2),表明MOCVD外延技术在Ga_(2)O_(3)功率器件上具有重要的应用前景。 展开更多
关键词 氧化镓 MOCVD外延 掺杂 比导通电阻 击穿电压 功率优值
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直接甲烷中温SOFCs阴极材料SrCo_(0.8)Fe_(0.125)Zr_(0.075)O_(3-δ)的制备与性能研究
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作者 吕秀清 孙海珍 +2 位作者 路敏 何婧 陈绘丽 《燃料化学学报(中英文)》 北大核心 2025年第7期1093-1100,共8页
SrCo_(0.8)Fe_(0.2)O_(3-δ)不仅具有较高的氧还原催化活性,还具有优异的离子电子导电性,但SrCo_(0.8)Fe_(0.2)O_(3-δ)结构不稳定、易和CO_(2)反应限制了其在固体氧化物燃料电池(Solid Oxide Fuel Cells,SOFCs)中的应用。本工作通过Zr... SrCo_(0.8)Fe_(0.2)O_(3-δ)不仅具有较高的氧还原催化活性,还具有优异的离子电子导电性,但SrCo_(0.8)Fe_(0.2)O_(3-δ)结构不稳定、易和CO_(2)反应限制了其在固体氧化物燃料电池(Solid Oxide Fuel Cells,SOFCs)中的应用。本工作通过Zr掺杂来提高SrCo_(0.8)Fe_(0.2)O_(3-δ)的结构稳定性和抗CO_(2)性能,合成了SrCo_(0.8)Fe_(0.125)Zr_(0.075)O_(3-δ)阴极材料,对其结构、热膨胀行为、电导率和抗CO_(2)性能进行了研究。在200–850℃温度范围内,SrCo_(0.8)Fe_(0.125)Zr_(0.075)O_(3-δ)在空气中的最大电导率为321 S/cm、与电解质Ba Zr_(0.1)Ce_(0.7)Y_(0.1)Yb_(0.1)O_(3-δ)(BZCYYb)具有良好的化学兼容性。采用阳极支撑型电池Ni-BZCYYb|BZCYYb|BZCYYb-SrCo_(0.8)Fe_(0.125)Zr_(0.075)O_(3-δ),考察了直接以CH4为燃料,SrCo_(0.8)Fe_(0.125)Zr_(0.075)O_(3-δ)作为SOFCs阴极的可行性。在700℃、电池最大功率密度为526 m W/cm^(2)。在650℃、电流密度350 m A/cm^(2)、以97%CH_(4)-3%H_(2)O为燃料的条件下,电池运行50 h电压没有明显下降,表现出良好的稳定性。结果表明,Zr掺杂稳定了SrCo_(0.8)Fe_(0.2)O_(3-δ)的结构、提高了抗CO_(2)性能,SrCo_(0.8)Fe_(0.125)Zr_(0.075)O_(3-δ)可以作为直接CH_(4)为燃料的SOFCs的阴极材料。 展开更多
关键词 SOFCS 甲烷燃料 阴极材料 掺杂
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掺杂碳点的制备及生物检测与生物成像应用研究进展
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作者 郭永艳 张娴 +3 位作者 高鹏 田雁飞 党铭铭 杨萍 《化工新型材料》 北大核心 2025年第5期226-231,237,共7页
在碳点中掺入杂原子可以改变碳点的结构,进而提高碳点的光学性能和电子传输能力,拓宽其应用范围。综述了非金属原子掺杂碳点、金属原子掺杂碳点的制备方法,介绍了掺杂碳点的性质,如紫外和近红外光吸收特性、磷光特性、光致发光特性和低... 在碳点中掺入杂原子可以改变碳点的结构,进而提高碳点的光学性能和电子传输能力,拓宽其应用范围。综述了非金属原子掺杂碳点、金属原子掺杂碳点的制备方法,介绍了掺杂碳点的性质,如紫外和近红外光吸收特性、磷光特性、光致发光特性和低细胞毒性等,以及掺杂碳点在生物检测、生物成像、组织成像中的应用进展。 展开更多
关键词 掺杂碳点 制备 生物检测 生物成像 应用
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掺杂磷烯二维纳米材料对草甘膦吸附机理的研究
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作者 王群 周乃武 +5 位作者 单正莉 覃庆雨 刘钰佳 王梅 梅青刚 孙玉希 《原子与分子物理学报》 CAS 北大核心 2025年第4期58-64,共7页
草甘膦是世界上普遍使用的除草剂之一,被广泛使用在农田和非农田杂草的防治.由于草甘膦类除草剂的大范围应用,其对动植物的危害性逐渐受到人们的关注.磷烯二维纳米材料与草甘膦之间相互作用机理的研究对草甘膦的检测及去除具有重大的意... 草甘膦是世界上普遍使用的除草剂之一,被广泛使用在农田和非农田杂草的防治.由于草甘膦类除草剂的大范围应用,其对动植物的危害性逐渐受到人们的关注.磷烯二维纳米材料与草甘膦之间相互作用机理的研究对草甘膦的检测及去除具有重大的意义.本研究将采用基于密度泛函理论方法考察本征及Al,Ca,Ti及Fe金属原子掺杂的磷烯对草甘膦的吸附,通过吸附能,差分电荷密度,布居电荷分析本征及金属原子掺杂磷烯对草甘膦的吸附机制,从分子和原子水平上研究它们之间的详细机理.研究结果有望为掺杂磷烯材料在草甘膦吸附方面的应用提供有意义的理论参考. 展开更多
关键词 磷烯 掺杂磷烯 草甘膦 密度泛函理论
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基于分子动力学的导热型间位芳纶复合纸基绝缘材料的制备及性能研究
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作者 范晓舟 郭腾 +4 位作者 董合 毕瀚文 律方成 赵旭 孙泽坤 《绝缘材料》 北大核心 2025年第6期94-104,共11页
间位芳纶绝缘纸因其优异的介电性能和力学性能而广泛应用于变压器与高压套管中,但其较低的热导率限制了在高热负载环境下的应用。为提高芳纶绝缘纸的导热性能,本文采用仿真指导实验设计的方法,对多种纳米填料/芳纶仿真模型进行热导率计... 间位芳纶绝缘纸因其优异的介电性能和力学性能而广泛应用于变压器与高压套管中,但其较低的热导率限制了在高热负载环境下的应用。为提高芳纶绝缘纸的导热性能,本文采用仿真指导实验设计的方法,对多种纳米填料/芳纶仿真模型进行热导率计算,筛选出纳米SiO_(2)(KH570)、纳米TiO_(2)和纳米C_(3)N_(4)3种导热性能优良的纳米填料,并对比实验室复合芳纶纸手抄片的力学性能和绝缘性能,确定最优掺杂量,进一步探究纳米填料对复合芳纶纸热导率的影响并分析其内在的导热机理。结果表明:3种纳米填料最佳的掺杂质量分数分别是:SiO_(2)(KH570)为10%,TiO_(2)为4%,C_(3)N_(4)为4%。通过热导率测试,确定纳米C_(3)N_(4)为最优纳米填料,相比纯芳纶纸,掺杂4%纳米C_(3)N_(4)的复合芳纶纸弹性模量提升了135%,杨氏模量提升了198%,电气强度提升了60.24%,体积电阻率提升了3713%,热导率提升了304.31%。 展开更多
关键词 间位芳纶 纳米填料 掺杂改性 热导率
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Ni-a-MoS_(x)活化过硫酸盐降解诺氟沙星的性能及机理研究
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作者 张永霞 梁庚 +2 位作者 梁涵 谢佳瑶 王子晗 《现代化工》 北大核心 2025年第5期131-137,共7页
采用一步油浴法制备了Ni掺杂的a-MoS_(x)的催化剂(Ni-a-MoS_(x)),并将其用于诺氟沙星(NOR)的降解。结果表明,在最优条件下,2%Ni-a-MoS_(x)活化过氧单硫酸盐(PMS)体系中对诺氟沙星(NOR)30 min内的降解效率达到94.21%。这是由于大量的Mo^(... 采用一步油浴法制备了Ni掺杂的a-MoS_(x)的催化剂(Ni-a-MoS_(x)),并将其用于诺氟沙星(NOR)的降解。结果表明,在最优条件下,2%Ni-a-MoS_(x)活化过氧单硫酸盐(PMS)体系中对诺氟沙星(NOR)30 min内的降解效率达到94.21%。这是由于大量的Mo^(4+)位点导致电荷分布重新排列,促进了更多的电子转移,显著增强了PMS活化能力。牺牲剂和EPR实验表明,单线氧(^(1)O_(2))是体系中NOR降解的主要活性物种。DFT计算发现,PMS在Ni-a-MoS_(x)表现出更低的吸附能垒,这有利于缩短电子转移途径和促进PMS解离。同时,2%Ni-a-MoS_(x)较小的阻抗表明了其强电子转移能力。此外,在不同污染物和连续的循环降解实验中,2%Ni-a-MoS_(x)具有高效的催化性能和稳定的结构。 展开更多
关键词 Ni掺杂 过氧单硫酸盐 诺氟沙星 电子转移 单线氧
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N掺杂TiO_(2)-Fe_(2)O_(3)/C光催化剂的制备及其光催化降解性研究 被引量:1
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作者 李洁 张佳 +1 位作者 陈连喜 吕博 《化工新型材料》 北大核心 2025年第2期210-214,共5页
为寻找一种简便且具有良好孔结构的光催化剂合成路径,提升并拓宽其光催化应用范围,通过将N掺杂的双金属Ti-Fe MOFs在500℃的空气气氛中直接热解制备N掺杂TiO_(2)-Fe_(2)O_(3)/C纳米结构。获得的产物显示出独特的树枝状结构,且具有较大... 为寻找一种简便且具有良好孔结构的光催化剂合成路径,提升并拓宽其光催化应用范围,通过将N掺杂的双金属Ti-Fe MOFs在500℃的空气气氛中直接热解制备N掺杂TiO_(2)-Fe_(2)O_(3)/C纳米结构。获得的产物显示出独特的树枝状结构,且具有较大比表面积和良好的介孔结构。同时,红外光谱(FT-IR)和X射线光电子能谱(XPS)结果证实,在空气条件下煅烧后,衍生物仍保留了N和C成分。此外,将制备的N掺杂树枝状双金属结构多孔材料作为光催化剂用于降解亚甲基蓝(MB)染料。结果表明:N掺杂TiO_(2)-Fe_(2)O_(3)/C比N掺杂非Fe参与的TiO_(2)/C和非N非Fe掺杂TiO_(2)/C具有更好的光催化性能,且N掺杂TiO_(2)-Fe_(2)O_(3)/C对MB染料的有效降解率达到81%。 展开更多
关键词 Ti基-MOFs Fe基-MOFs TiO_(2)-Fe_(2)O_(3)/C N掺杂 光催化
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金属掺杂MoS_(2)基复合薄膜的微观结构与真空摩擦学性能研究
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作者 郑玉刚 苟世宁 +5 位作者 冯兴国 汪科良 赵蒙 张凯锋 周晖 李林 《材料导报》 北大核心 2025年第15期42-48,共7页
采用非平衡磁控溅射技术在Si片和9Cr18钢表面分别沉积了纯MoS_(2)、MoS_(2)-Ag、MoS_(2)-Ti和MoS_(2)-(Ti+Ag)四种不同类型的薄膜,并对这四种薄膜进行了对比分析研究。结果表明,四种薄膜的表面形貌为颗粒状,断面形貌为柱状晶,掺杂Ti和A... 采用非平衡磁控溅射技术在Si片和9Cr18钢表面分别沉积了纯MoS_(2)、MoS_(2)-Ag、MoS_(2)-Ti和MoS_(2)-(Ti+Ag)四种不同类型的薄膜,并对这四种薄膜进行了对比分析研究。结果表明,四种薄膜的表面形貌为颗粒状,断面形貌为柱状晶,掺杂Ti和Ag能显著提升薄膜的致密性,掺杂Ti还产生衍射峰宽化和晶粒细化。力学性能测试结果表明,掺杂Ti和(Ti+Ag)共掺杂能大幅度提升薄膜的硬度和附着力,硬度相较纯MoS_(2)薄膜分别提升了5.9倍和5.1倍,附着力分别增大了3.5倍和3.2倍。真空摩擦学性能实验分析发现,与磨损率为1.63×10^(-15)m^(3)/(N·m)的纯MoS_(2)薄膜相比,Ti掺杂及(Ti+Ag)共掺杂均能显著提高耐磨性能,MoS_(2)-(Ti+Ag)磨损率仅为0.9×10^(-17)m^(3)/(N·m),降低了2个数量级,表现出优异的摩擦学性能。本研究为改善金属掺杂MoS_(2)基复合薄膜的真空摩擦学性能提供了理论依据和实验数据。 展开更多
关键词 二硫化钼薄膜 金属掺杂 硬度 真空摩擦学性能
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氮硫共掺杂生物炭的制备及其对Ni^(2+)和Co^(2+)的吸附 被引量:1
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作者 余谟鑫 张振 +3 位作者 史文旭 孙宇航 王晓婷 柯清平 《精细化工》 北大核心 2025年第1期186-196,共11页
以芦荟皮为原料、(NH_(4))_(2)SO_(4)为氮源和硫源,采用水热法制备了炭前驱体,再经高温热解制备了氮硫共掺杂生物炭(NSBC)。采用SEM、BET、XPS、Zeta电位对其进行了表征,考察了不同温度热解制备的NSBC对水溶液中Ni^(2+)、Co^(2+)的吸附... 以芦荟皮为原料、(NH_(4))_(2)SO_(4)为氮源和硫源,采用水热法制备了炭前驱体,再经高温热解制备了氮硫共掺杂生物炭(NSBC)。采用SEM、BET、XPS、Zeta电位对其进行了表征,考察了不同温度热解制备的NSBC对水溶液中Ni^(2+)、Co^(2+)的吸附性能,探究了NSBC吸附Ni^(2+)、Co^(2+)的热力学和动力学过程,分析了温度和pH对其吸附性能的影响,并推测其吸附机理。结果表明,NSBC表面为层片状堆积的多孔结构,热解温度800℃制备的NSBC_(800)具有分级多孔结构,微孔总体积0.07 cm^(3)/g,比表面积149 m^(2)/g,非微孔体积占比46%,其表面具有摩尔分数29.94%的O元素、4.79%的N元素和6.21%的S元素。NSBC_(800)对Ni^(2+)和Co^(2+)的最大平衡吸附量分别为245.70和223.71 mg/g。NSBC表面由O、N和S元素组成的化学官能团吸附Ni^(2+)和Co^(2+)反应生成盐或络合物,沉积在生物炭表面;Langmuir模型和拟二级动力学模型描述的NSBC对Ni^(2+)和Co^(2+)的吸附表明,该过程由化学吸附控制,通过络合作用、共沉淀、离子交换和静电吸引等机制实现对Ni^(2+)和Co^(2+)的吸附。 展开更多
关键词 氮硫共掺杂 芦荟皮 生物质 废弃电池 Ni^(2+) Co^(2+) 水处理技术
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金属掺杂的磷烯对亚甲基蓝的吸附机理:DFT-D研究
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作者 王群 周乃武 +7 位作者 赵虹林 杨丽欣 邓壹铭 单正莉 杨志豪 邓良平 梅青刚 孙玉希 《原子与分子物理学报》 CAS 北大核心 2025年第3期52-60,共9页
随着工业的发展,染料废水对人类和环境的危害愈加显著,其中偶氮类的亚甲基蓝这种染料废水不仅色度大,而且难以降解.因此设计一种高效且灵敏的吸附剂来去除亚甲基蓝对人类和环境的危害是亟须解决的问题.本研究利用基于色散力校正的密度... 随着工业的发展,染料废水对人类和环境的危害愈加显著,其中偶氮类的亚甲基蓝这种染料废水不仅色度大,而且难以降解.因此设计一种高效且灵敏的吸附剂来去除亚甲基蓝对人类和环境的危害是亟须解决的问题.本研究利用基于色散力校正的密度泛函理论(DFT-D)的第一性原理方法探索了本征及掺杂磷烯吸附剂对亚甲基蓝的吸附机理,并详细考察了本征及掺杂Al,Ca,Ti和Fe金属原子后的磷烯对亚甲基蓝吸附的影响.研究结果表明亚甲基蓝初始构型会影响磷烯对其吸附,当亚甲基蓝平躺于磷烯表面时有较大的吸附,且金属原子掺杂显著地影响其对亚甲基蓝的吸附能力,掺杂金属原子均增大了磷烯对亚甲基蓝的吸附.其中吸附能力是Fe掺杂磷烯>Ca掺杂磷烯>Ti掺杂磷烯>Al掺杂磷烯.研究结论对于亚甲基蓝的处理带来了新的指导方向,有望为相关染料废水的检测和去除提供有意义的理论参考. 展开更多
关键词 亚甲基蓝 色散力校正 密度泛函理论 磷烯 掺杂磷烯
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道与器:全球反兴奋剂新形势下的中国方案
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作者 陈新宇 阮嘉禾 《体育科学》 北大核心 2025年第1期52-63,共12页
巴黎奥运周期内美国《罗琴科夫反兴奋剂法》对我国体育界产生了现实影响。当前全球反兴奋剂新形势表现为全球反兴奋剂体系的组织张力和规则张力,焦点是美国在国际体育中拓展域外管辖权。《罗琴科夫反兴奋剂法》存在正当性缺失、合宪性... 巴黎奥运周期内美国《罗琴科夫反兴奋剂法》对我国体育界产生了现实影响。当前全球反兴奋剂新形势表现为全球反兴奋剂体系的组织张力和规则张力,焦点是美国在国际体育中拓展域外管辖权。《罗琴科夫反兴奋剂法》存在正当性缺失、合宪性存疑并与国际法管辖原则悖反等问题。中国可从维护规则统一、加强人权保障之“道”与运用本国法、外国法既有依据之“器”加以应对。前者为适度纳入和完善兴奋剂违规认定的过错责任原则,培养本国运动员的规则意识和权利观念,并吸引其作为主体参与国际反兴奋剂监管。后者系由运动员个人或集体依据国内民事法律提起涉外诉讼,特定情况下可由检察院提起公益诉讼,同时以数据保护立法作为境外对我国运动员特定数据跨境披露要求的正当阻断;以及由我国当事方依据美国宪法正当程序条款和对外商业条款提出《罗琴科夫反兴奋剂法》合宪性异议,或对美国政府机构提起诉讼并申请诉前禁令,避免国际重大体育竞赛周期内扩大的损害。 展开更多
关键词 罗琴科夫反兴奋剂法 反兴奋剂 域外管辖权 中国方案
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