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Healing the structural defects of spinel MnFe_(2)O_(4) to enhance the electrocatalytic activity for oxygen reduction reaction
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作者 Manting Tang Yue Zou +5 位作者 Zhiyong Jiang Peiyu Ma Zhiyou Zhou Xiaodi Zhu Jun Bao Shi-Gang Sun 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第10期12-19,I0001,共9页
Spinel metal oxides containing Mn,Co,or Fe(AB_(2)O_(4),A/B=Mn/Fe/Co)are one of the most promising nonPt electrocatalysts for oxygen reduction reaction(ORR)in alkaline conditions.However,the low conductivity of metal o... Spinel metal oxides containing Mn,Co,or Fe(AB_(2)O_(4),A/B=Mn/Fe/Co)are one of the most promising nonPt electrocatalysts for oxygen reduction reaction(ORR)in alkaline conditions.However,the low conductivity of metal oxides and the poor intrinsic activities of transition metal sites lead to unsatisfactory ORR performance.In this study,eutectic molten salt(EMS)treatment is employed to reconstruct the atomic arrangement of MnFe_(2)O_(4)electrocatalyst as a prototype for enhancing ORR performance.Comprehensive analyses by using XAFS,soft XAS,XPS,and electrochemical methods reveal that the EMS treatment reduces the oxygen vacancies and spinel inverse in MnFe_(2)O_(4)effectively,which improves the electric conductivity and increases the population of more catalytically active Mn^(2+)sites with tetrahedral coordination.Moreover,the enhanced Mn-O interaction after EMS treatment is conducive to the adsorption and activation of O_(2),which promotes the first electron transfer step(generally considered as the ratedetermining step)of the ORR process.As a result,the EMS treated MnFe_(2)O_(4)catalyst delivers a positive shift of 40 mV in the ORR half-wave potential and a two-fold enhanced mass/specific activity.This work provides a convenient approach to manipulate the atomic architecture and local electronic structure of spinel oxides as ORR electrocatalysts and a comprehensive understanding of the structureperformance relationship from the molecular/atomic scale. 展开更多
关键词 spinel MnFe_(2)o_(4) oxygen reduction reaction spinel inverse oxygen vacancies Eutectic molten salt
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Synthesis of spinel LiMn_(2)O_(4) microspheres with durable high rate capability 被引量:2
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作者 周玉波 邓远富 +2 位作者 袁伟豪 施志聪 陈国华 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2012年第10期2541-2547,共7页
Spinel LiMn2O4 microspheres with durable high rate capability were synthesized by a facile route using spherical MnCO3 precursors as the self-supported templates, combined with the calcinations of LiNO3 at 700 °C... Spinel LiMn2O4 microspheres with durable high rate capability were synthesized by a facile route using spherical MnCO3 precursors as the self-supported templates, combined with the calcinations of LiNO3 at 700 °C for 8 h. The spherical MnCO3 precursors were obtained from the control of the crystallizing process of Mn2+ ions and NH4HCO3 in aqueous solution. The effects of the mole ratio of the raw materials, reaction time, and reaction temperature on the morphology and yield of the MnCO3 were investigated. The as-synthesized MnCO3 and LiMn2O4 microspheres were characterized by powder X-ray diffractometry (XRD) and scanning electron microscopy (SEM). Galvanostatic charge/discharge tests indicate that the spinel LiMn2O4 microspheres deliver a discharge capacity of 90 mA-h/g at 10C rate show good capacity retention capability (75% of their initial capacity after 800 cycles at 10C rate). The durable high rate capability suggests that the as-synthesized LiMn2O4 microspheres are promising cathode materials for high power lithium ion batteries. 展开更多
关键词 MnCo_(3)microspheres self-supported template limn_(2)o_(4) microspheres rate capability
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钛酸酯偶联剂表面处理对LiMn_(2)O_(4)结构及性能的影响
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作者 蔡海洋 李振京 +2 位作者 范广新 孟德轩 刘超帅 《矿冶工程》 CAS 北大核心 2024年第4期18-23,30,共7页
通过加热分解钛酸酯偶联剂在LiMn_(2)O_(4)表面包覆TiO_(2),研究包覆处理对LiMn_(2)O_(4)材料结构、电化学性能及在循环过程中材料结构的影响。结果表明:550℃下加热分解钛酸酯偶联剂,可使TiO_(2)均匀包覆在材料表面;表面包覆不改变LiMn... 通过加热分解钛酸酯偶联剂在LiMn_(2)O_(4)表面包覆TiO_(2),研究包覆处理对LiMn_(2)O_(4)材料结构、电化学性能及在循环过程中材料结构的影响。结果表明:550℃下加热分解钛酸酯偶联剂,可使TiO_(2)均匀包覆在材料表面;表面包覆不改变LiMn_(2)O_(4)的晶体结构,但能明显提升其电化学性能,特别是高温倍率性能和循环性能;包覆TiO_(2)后的LiMn_(2)O_(4)材料在55℃、5C下比容量为75.34 mAh/g,高于原始材料的比容量(43.05 mAh/g);经150次循环后,未包覆TiO_(2)的材料容量保持率为62.85%,包覆TiO_(2)后的材料容量保持率提高至77.27%。表面处理后LiMn_(2)O_(4)电化学性能提升的原因是TiO_(2)包覆层减少了正极材料中Mn的溶解,抑制了循环过程中的晶体结构变化,降低了电极极化和电荷转移阻抗,提高了材料的充放电可逆性及Li+的扩散能力。 展开更多
关键词 正极材料 limn_(2)o_(4) Tio_(2) 钛酸酯偶联剂 表面包覆 改性 电化学性能
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Zn-Al共掺杂和形貌调控制备LiMn_(2)O_(4)正极材料及其电化学性能
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作者 朱琴 马姣 +3 位作者 钱志慧 李萌 郭昱娇 郭俊明 《精细化工》 EI CAS CSCD 北大核心 2024年第6期1246-1253,1269,共9页
采用固相燃烧法在不同焙烧温度(600、650、700和750℃)下制备了LiZn_(0.05)Al_(0.03)Mn_(1.92)O_(4)正极材料,采用XRD、SEM、XPS对其进行了表征,通过循环伏安(CV)和电化学阻抗(EIS)测试了其电化学性能。结果表明,Zn-Al共掺杂和焙烧温度... 采用固相燃烧法在不同焙烧温度(600、650、700和750℃)下制备了LiZn_(0.05)Al_(0.03)Mn_(1.92)O_(4)正极材料,采用XRD、SEM、XPS对其进行了表征,通过循环伏安(CV)和电化学阻抗(EIS)测试了其电化学性能。结果表明,Zn-Al共掺杂和焙烧温度未改变LiMn_(2)O_(4)的晶体结构,正极材料的结晶性随焙烧温度(<750℃)的升高而增加,650℃及以上时形成了较多包含高暴露(111)晶面、小面积(110)、(100)晶面的截断八面体形貌晶粒,但750℃时正极材料发生部分分解。焙烧温度650℃的样品(LZAMO-650)表现出最佳的电化学性能,在5 C和10 C倍率下,初始放电比容量分别为101.3、99.9 mA·h/g,循环1000圈后容量保持率分别为81.5%、74.3%;LZAMO-650样品极化作用较小,有较好的循环可逆性,具有较低的电荷转移阻抗(R_(ct)=132.14Ω)和较大的锂离子扩散系数(DLi^(+)=3.65×10^(–16)cm^(2)/s)。Zn-Al共掺杂和形貌调控改性LiMn_(2)O_(4)正极材料有效抑制了Jahn-Teller效应,形成的截断八面体颗粒形貌降低了Mn的溶解,同时提供了更多的Li^(+)迁移三维通道,从而改善了材料的电化学性能。 展开更多
关键词 固相燃烧法 尖晶石limn_(2)o_(4) Zn-Al共掺 形貌调控 焙烧温度 JAHN-TELLER效应 Mn溶解 功能材料
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Multifunctional AlPO_(4)reconstructed LiMn_(2)O_(4)surface for electrochemical lithium extraction from brine
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作者 Jun Gu Linlin Chen +5 位作者 Xiaowei Li Guiling Luo Linjing Fan Yanhong Chao Haiyan Ji Wenshuai Zhu 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第2期410-421,I0010,共13页
LiMn_(2)O_(4)(LMO)electrochemical lithium-ion pump has gained widespread attention due to its green,high efficiency,and low energy consumption in selectively extracting lithium from brine.However,collapse of crystal s... LiMn_(2)O_(4)(LMO)electrochemical lithium-ion pump has gained widespread attention due to its green,high efficiency,and low energy consumption in selectively extracting lithium from brine.However,collapse of crystal structure and loss of lithium extraction capacity caused by Mn dissolution loss limits its industrialized application.Hence,a multifunctional coating was developed by depositing amorphous AlPO_(4)on the surface of LMO using sol-gel method.The characterization and electrochemical performance test provided insights into the mechanism of Li^(+)embedment and de-embedment and revealed that multifunctional AlPO_(4)can reconstruct the physical and chemical state of LMO surface to improve the interface hydrophilicity,promote the transport of Li^(+),strengthen cycle stability.Remarkably,after 20 cycles,the capacity retention rate of 0.5AP-LMO reached 93.6%with only 0.147%Mn dissolution loss.The average Li^(+)release capacity of 0.5AP-LMO//Ag system in simulated brine is 28.77 mg/(g h),which is 90.4%higher than LMO.Encouragingly,even in the more complex Zabuye real brine,0.5AP-LMO//Ag can still maintain excellent lithium extraction performance.These results indicate that the 0.5AP-LMO//Ag lithium-ion pump shows promising potential as a Li^(+)selective extraction system. 展开更多
关键词 limn_(2)o_(4) Multifunctional AlPo_(4)coating Li^(+)embedment and de-embedment mechanism Stability HYDRoPHILICITY Various solution
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Effects of Different Synthetic Parameters on Structure and Performance of LiMn_2O_4 by Adipic Acid-Assisted Sol-Gel Method 被引量:4
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作者 伊廷锋 王殿龙 +1 位作者 高昆 胡信国 《Journal of Rare Earths》 SCIE EI CAS CSCD 2005年第S1期209-213,共5页
The spinel lithium manganese oxide cathode materials were prepared by adipic acid-assisted sol-gel method at 350~900 ℃ in air. The effects of water content of solution, molar ratio between metal ion and adipic acid,... The spinel lithium manganese oxide cathode materials were prepared by adipic acid-assisted sol-gel method at 350~900 ℃ in air. The effects of water content of solution, molar ratio between metal ion and adipic acid, cooling rate, synthesis temperature and particle sizes on structure and electrochemical performance of LiMn_2O_4 are investigated by X-ray diffraction (XRD), and cyclic voltammetry (CV). The result shows that the structure and electrochemical performance of LiMn_2O_4 are greatly affected by synthesis condition, and the optimal synthesis condition is determined. Charge-discharge test reveals that the particle size and cooling rate have significant effects on the electrochemical performance of LiMn_2O_4 cathode materials. 展开更多
关键词 lithium ion battery SoL-GEL limn_2o_4 STRUCTURE electrochemical performance
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Capacity fading of spinel LiMn_2O_4 during cycling at elevated temperature 被引量:1
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作者 Yanbin Chen and Qingguo LiuLaboratory of Solid State Ionics, University of Science and Technology Beijing, Beijing 100083, China (Received 2001-09-20) 《Journal of University of Science and Technology Beijing》 CSCD 2002年第3期197-201,共5页
A normal spinel LiMn_2O_4 as cathode material for lithium-ion cells wascycled galvanostatically (0.2 C) at 55 deg C. To determine the contribution of each voltage plateauto the total capacity fading of the cathode upo... A normal spinel LiMn_2O_4 as cathode material for lithium-ion cells wascycled galvanostatically (0.2 C) at 55 deg C. To determine the contribution of each voltage plateauto the total capacity fading of the cathode upon repeated cycling, the capacities in each plateauwere separated by differentiation of voltage vs. capacity. The results how that the capacity fadingin the upper voltage plateau is more rapidly than that in the lower during discharging, while incharging process, it fades slower than that in the lower voltage range. The increased capacity shiftand aggravated self-discharge/electrolyte oxidation during discharging contribute to a high fadingrate in the upper step. Capacity shift also takes place during charging process, which againenhancing the fading rate of the lower voltage plateau. An increase in capacity shift, as a resultof an increase in polarization of the cell, plays a major role in determining the fading rate ineach voltage plateau, further reflecting the thickening of the passivation layer on the activeparticles, and the accumulation of electrolyte decomposition. The relative capacity loss formodified spinels is well correlated with the relative increase in the polarization of thehalf-cells, confirming the above causes for capacity fade of this kind of cathode material. 展开更多
关键词 spinel limn_2o_4 capacity fading capacity shift SELF-DISCHARGE lithium reinsertion electrolyte oxidation
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Pressure dependence of the thermal stability in LiMn_(2)O_(4) 被引量:1
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作者 Yan Zeng Hao Liang +4 位作者 Shixue Guan Junpu Wang Wenjia Liang Mengyang Huang Fang Peng 《Chinese Physics B》 SCIE EI CAS CSCD 2022年第1期453-457,共5页
Structural stability in terms of the decomposition temperature in LiMn_(2)O_(4) was systematically investigated by a series of high-temperature and high-pressure experiments.LiMn_(2)O_(4) was found to have structural ... Structural stability in terms of the decomposition temperature in LiMn_(2)O_(4) was systematically investigated by a series of high-temperature and high-pressure experiments.LiMn_(2)O_(4) was found to have structural stability up to 5 GPa at room temperature.Under ambient pressure,the compound decomposed at 1300℃.The decomposition temperature decreased with increasing pressure,yielding more complex decomposed products.Below the decomposition temperature,the crystal structure of LiMn_(2)O_(4) varied with pressure.The presented results in this study offer new insights into the thermal and pressure stability of LiMn_(2)O_(4) materials as a cathode for lithium-ion batteries that can operate under extreme conditions.Therefore,these findings may serve as a useful guide for future work for improving lithium-ion batteries. 展开更多
关键词 limn_(2)o_(4) high pressure x-ray diffractometer decomposition reactions
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柠檬酸络合反应方法制备尖晶石型LiMn_2O_4 被引量:25
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作者 杨文胜 刘庆国 +2 位作者 仇卫华 卢世刚 杨蕾玲 《电源技术》 CAS CSCD 北大核心 1999年第A03期49-52,共4页
采用柠檬酸络合反应方法制备了尖晶石型LiMn2O4正极材料,并考察了合成条件对合成产物电化学性能的影响。合成产物中的Li/Mn比例及合成温度是影响合成产物电化学性能的关键因素。在最佳合成条件下,即Li/Mn=1/2及... 采用柠檬酸络合反应方法制备了尖晶石型LiMn2O4正极材料,并考察了合成条件对合成产物电化学性能的影响。合成产物中的Li/Mn比例及合成温度是影响合成产物电化学性能的关键因素。在最佳合成条件下,即Li/Mn=1/2及温度800℃,制备的LiMn2O4具有完美的尖晶石结构及良好的电化学性能,完全可以用于高比能长寿命的锂离子蓄电池。 展开更多
关键词 锂离子蓄电池 柠檬酸络合反应方法 尖晶石型limn_2o_4
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尖晶石LiMn_(2)O_(4)高温电化学性能研究 被引量:8
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作者 孙玉成 卢世刚 刘人敏 《电源技术》 EI CAS CSCD 北大核心 2000年第6期333-335,共3页
利用高温固相反应合成了锂离子蓄电池正极材料尖晶石LiMn2 O4 ,研究了在高温 5 5℃下LiMn2 O4 循环容量的衰减和贮存后电化学性能的变化。与常温下相比较 ,5 5℃下尖晶石的容量衰减显著加快 ,贮存后的LiMn2 O4 循环性能变差。改变合成... 利用高温固相反应合成了锂离子蓄电池正极材料尖晶石LiMn2 O4 ,研究了在高温 5 5℃下LiMn2 O4 循环容量的衰减和贮存后电化学性能的变化。与常温下相比较 ,5 5℃下尖晶石的容量衰减显著加快 ,贮存后的LiMn2 O4 循环性能变差。改变合成工艺条件如合成温度、n(Li)∶n(Mn)比 ,LiMn2 O4 的高温电化学性能有所改善 ,掺杂金属Co元素合成尖晶石掺Co化合物也能够提高LiMn2 O4 在高温下的循环性能 ,通过测量LiMn2 O4 在高温下电解液中的溶解 ,分析了容量衰减的机理。 展开更多
关键词 锂离子蓄电池 尖晶石limn_(2)o_(4) 高温电化学性能
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Electrochemical Properties of Spinel LiMn_2O_(4-δ)F_δ for Cathode Materials of Secondary Lithium-ion Battery
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作者 Zhao Yong CHEN Xing Quan LIU Zuo Long YU (Chengdu Institute of Organic Chemistry, The Chinese Academy of Sciences, Chendy 610041) 《Chinese Chemical Letters》 SCIE CAS CSCD 2000年第5期455-458,共4页
The spinel LiMn_2O_(4-δ)Fδ cathode materials were synthesized by solid-state reaction, With calculated amounts of LiOH·H_2O, MnO_2(EMD). LiF. The results of electrochemical test demonstrated that these new mate... The spinel LiMn_2O_(4-δ)Fδ cathode materials were synthesized by solid-state reaction, With calculated amounts of LiOH·H_2O, MnO_2(EMD). LiF. The results of electrochemical test demonstrated that these new materials exhibited excellent electrochemical properties.Its initial capacity reached -115 mAb·g^(-1) and reversible efficiency is about 100%. After 60 cycles. its capacity was still around 110 mAh· g^(-1), with nearly 100% reversible efficiency, 展开更多
关键词 spinel limn_2o_(4-δ)Fδ CATHoDE materials.
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镁、溴共掺杂对锂离子电池正极材料LiMn_2O_4电化学性能的影响 被引量:6
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作者 李玉珠 毛雁芳 +3 位作者 占涛涛 李超 肖顺华 张灵志 《人工晶体学报》 EI CAS CSCD 北大核心 2016年第5期1203-1210,共8页
通过溶胶凝胶法制备出LiMn_2O_4和LiMn_(1.92)Mg_(0.08)O_(3.84)Br_(0.16)锂离子电池正极材料,并用XRD、SEM、XPS、充放电测试和CV对其结构、形貌、化学成份以及电化学性能进行了研究。结果表明,Mg、Br的掺杂未改变LiMn_2O_4的结构。在0... 通过溶胶凝胶法制备出LiMn_2O_4和LiMn_(1.92)Mg_(0.08)O_(3.84)Br_(0.16)锂离子电池正极材料,并用XRD、SEM、XPS、充放电测试和CV对其结构、形貌、化学成份以及电化学性能进行了研究。结果表明,Mg、Br的掺杂未改变LiMn_2O_4的结构。在0.5 C倍率下,LiMn_(1.92)Mg_(0.08)O_(3.84)Br_(0.16)的放电比容量为119 m Ah/g,与LiMn_2O_4相比,其首次放电比容量提高了3.6%,循环100次后,Li Mn1.92Mg0.08O3.84Br0.16的容量保持率高达86.9%。在5 C倍率下,LiMn_(1.92)Mg_(0.08)O_(3.84)Br_(0.16)的放电比容量为91.1 m Ah/g,比LiMn_2O_4提高了24.1%。实验表明,Mg、Br共同掺杂提高了LiMn_2O_4的放电比容量,并明显改善其循环稳定性和倍率性能,从而获得了较好的综合电化学性能。 展开更多
关键词 溶胶凝胶法 limn_2o_4 Mg掺杂 Br掺杂 电化学性能
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Zr-doping stabilizes spinel LiMn_(2)O_(4)as a low cost long cycle life cathode for lithium ion batteries
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作者 张祥功 吴伟 +5 位作者 周思思 黄飞 许诗浩 尹良 杨伟 李泓 《Chinese Physics B》 SCIE EI CAS CSCD 2023年第5期554-559,共6页
The present commercial spinel LiMn_(2)O_(4) delivers only 90 m Ah/g–115 m Ah/g,far lower than the theoretical specific capacity.It degrades fast caused by the Jahn–Teller effect,Mn dissolution and related side react... The present commercial spinel LiMn_(2)O_(4) delivers only 90 m Ah/g–115 m Ah/g,far lower than the theoretical specific capacity.It degrades fast caused by the Jahn–Teller effect,Mn dissolution and related side reactions that consume Li inventory.In this work,Zr doping is employed to improve the structural stability and electrochemical performance of spinel LiMn_(2)O_(4).Li_(1.06)Mn_(1.94-x)Zr_xO_4(x=0,0.01,0.02,0.04)have been successfully synthesized by a simple solid-state reaction method and evaluated as cathode for lithium ion batteries(LIB).Li_(1.06)Mn_(1.92)Zr_(0.02)O_4 is superior cathode material with a high capacity of 122 m Ah/g at 1-C rate;long cycle stability,98.39%retention after 100 cycles at 1-C rate,excellent high rate performance 107.1 m Ah/g at 10-C rate,and high temperature performance 97.39%retention after 60 cycles.These are thought to be related to Zr doping effectively stabilizing the spinel LiMn_(2)O_(4),by forming stronger Zr–O bonds in the octahedron,suppressing the Jahn–Teller effect,thus improving electrochemical performance. 展开更多
关键词 lithium battery CATHoDE limn_(2)o_(4) cycle life
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Configurational entropy-induced phase transition in spinel LiMn_(2)O_(4)
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作者 Wei Hu Wen-Wei Luo +2 位作者 Mu-Sheng Wu Bo Xu Chu-Ying Ouyang 《Chinese Physics B》 SCIE EI CAS CSCD 2022年第9期592-596,共5页
The spinel-type LiMn_(2)O_(4) is a promising candidate as cathode material for rechargeable Li-ion batteries due to its good thermal stability and safety.Experimentally,it is observed that in this compound there occur... The spinel-type LiMn_(2)O_(4) is a promising candidate as cathode material for rechargeable Li-ion batteries due to its good thermal stability and safety.Experimentally,it is observed that in this compound there occur the structural phase transitions from cubic(Fd3m)to tetragonal(I4_(1)/amd)phase at slightly below room temperature.To understand the phase transition mechanism,we compare the Gibbs free energy between cubic phase and tetragonal phase by including the configurational entropy.Our results show that the configurational entropy contributes substantially to the stability of the cubic phase at room temperature due to the disordered Mn^(3+)/Mn^(4+)distribution as well as the orientation of the Jahn-Teller elongation of the Mn^(3+)O_(6) octahedron in the the spinel phase.Meanwhile,the phase transition temperature is predicted to be 267.8 K,which is comparable to the experimentally observed temperature.These results serve as a good complement to the experimental study,and are beneficial to the improving of the electrochemical performance of LiMn_(2)O_(4) cathode. 展开更多
关键词 configurational entropy limn_(2)o_(4) phase transition Jahn-Teller distortion
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Ni、Co、Al掺杂尖晶石LiMn_(2)O_(4)的第一性原理计算 被引量:2
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作者 李旭 王建川 杜勇 《粉末冶金材料科学与工程》 2021年第5期387-395,共9页
针对分别掺杂Ni、Co、Al的尖晶石LiMn_(2)O_(4),采用基于密度泛函理论的第一性原理计算方法,分析反铁磁层和铁磁层沿[001]方向交替排列的磁性构型的合理性。结果表明,此磁结构下表现出Mn^(3+)/Mn^(4+)沿[001]方向交替排列的价态分布。Ni... 针对分别掺杂Ni、Co、Al的尖晶石LiMn_(2)O_(4),采用基于密度泛函理论的第一性原理计算方法,分析反铁磁层和铁磁层沿[001]方向交替排列的磁性构型的合理性。结果表明,此磁结构下表现出Mn^(3+)/Mn^(4+)沿[001]方向交替排列的价态分布。Ni、Co、Al三种掺杂原子都倾向于替换Mn^(3+)层上的Mn,占据16d位后价态表现为Ni^(2+)、Co^(3+)和Al^(3+)。Al与Ni掺杂均能抑制掺杂点位的Jahn-Teller畸变,且Ni掺杂后其最近邻的Mn^(3+)被氧化为Mn^(3+),使结构更稳定,而Co掺杂可能导致更严重的Jahn-Teller畸变。Al^(3+)和Co^(3+)可显著降低Li离子的两条路径扩散能垒,Ni^(2+)在Mn^(3+)的协同作用下可进一步降低低能垒路径的能垒。 展开更多
关键词 正极材料 limn_(2)o_(4)掺杂 磁性结构 扩散
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快离子导体La_(0.8)Sr_(0.2)MnO_3包覆LiMn_2O_4正极材料的结构和电化学性能 被引量:1
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作者 张晓辉 王红强 +2 位作者 赖飞燕 吴强 李庆余 《材料保护》 CAS CSCD 北大核心 2016年第10期31-34,41,共5页
为进一步提高动力电池正极材料锰酸锂(LiMn_2O_4)的循环稳定性,通过溶胶-凝胶法用快离子导体La_(0.8)Sr_(0.2)MnO_3作为包覆材料对LiMn_2O_4进行表面修饰,探讨了不同包覆量对复合材料电化学性能的影响。采用X射线衍射仪(XRD)、场发射扫... 为进一步提高动力电池正极材料锰酸锂(LiMn_2O_4)的循环稳定性,通过溶胶-凝胶法用快离子导体La_(0.8)Sr_(0.2)MnO_3作为包覆材料对LiMn_2O_4进行表面修饰,探讨了不同包覆量对复合材料电化学性能的影响。采用X射线衍射仪(XRD)、场发射扫描电镜(FESEM)和透射电子显微镜(TEM)对样品的微观结构以及形貌进行表征。结果表明:La_(0.8)Sr_(0.2)MnO_3的包覆并没有改变LiMn_2O_4晶体结构及空间构型;相比纯的LiMn_2O_4样品,La_(0.8)Sr_(0.2)MnO_3包覆后的样品颗粒表面较为粗糙;涂层为薄膜状结构,均匀且完全包覆在LiMn_2O_4颗粒的表面。利用电化学测试方法测试其电化学性能,测试结果表明,当La_(0.8)Sr_(0.2)MnO_3包覆量为5%时,具有较好的电化学性能,首次放电比容量为127.4 m A·h/g(0.1 C),25℃循环400次后容量保持率为91.2%,55℃循环100次后容量保持率为91.1%;与未经表面修饰的样品相比,其首次放电比容量为119.1 m A·h/g(0.1 C),400次的容量保持率为61.9%,100次容量保持率为77.9%,La_(0.8)Sr_(0.2)MnO_3包覆后的样品的电化学性能尤其是循环性能得到明显的提高。 展开更多
关键词 正极材料 limn_2o_4 La_0.8Sr_0.2Mno_3表面包覆 结构 电化学性能
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MgX_(2)O_(4)(X=Cr、Fe、Mn)型尖晶石B位点阳离子对乙烷化学链氧化脱氢生成乙烯的影响 被引量:1
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作者 梁晓岑 王雪梅 +7 位作者 幸子凡 毛敏 宋达 李杨 龙涛 周宇超 陈佩丽 何方 《燃料化学学报(中英文)》 EI CAS CSCD 北大核心 2024年第7期1006-1019,共14页
化学链循环氧化脱氢技术(CL-ODH)是一个多功能的平台,它可以利用载氧体中晶格氧的选择性氧化这一特性,实现乙烷向乙烯的高值化转化。本研究探讨了MgX_(2)O_(4)(X=Cr、Fe或Mn)型尖晶石载氧体中B位元素对乙烷CL-ODH性能的影响。采用固定床... 化学链循环氧化脱氢技术(CL-ODH)是一个多功能的平台,它可以利用载氧体中晶格氧的选择性氧化这一特性,实现乙烷向乙烯的高值化转化。本研究探讨了MgX_(2)O_(4)(X=Cr、Fe或Mn)型尖晶石载氧体中B位元素对乙烷CL-ODH性能的影响。采用固定床和H_(2)-TPR、O_(2)-TPD、TG、原位拉曼、SEM、TEM等方法对MgX_(2)O_(4)尖晶石进行了性能测试和表征。结果表明,MgCr_(2)O_(4)仅释放微量表面吸附氧,更倾向于催化乙烷转化为焦炭和氢气。MgFe_(2)O_(4)通过提供更多的表面晶格氧,促进乙烷深度氧化成CO_(2)。MgMn_(2)O_(4)载氧体在乙烷CL-ODH反应中能够释放出大量的体相晶格氧,它可以选择性燃烧氢气以推进反应正向进行,增加乙烯的选择性,实现了73.72%的乙烷转化率和81.46%的乙烯选择性。此外,MgMn_(2)O_(4)催化剂在乙烷CL-ODH反应中进行了30次的氧化还原循环实验,表现出稳定的反应性能,在整个循环测试中乙烯收率大约为62.00%。MgX_(2)O_(4)尖晶石氧化物中B位元素影响了其晶格氧的供应能力,从而影响了其在乙烷CL-ODH反应中的性能。 展开更多
关键词 乙烷CL-oDH MgX_(2)o_(4)尖晶石型载氧体 乙烷生产乙烯 MgMn_(2)o_(4)
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ZnFe_(2)O_(4) 改性清淤污泥透水砖对初期雨水典型污染物净化效果及其吸附特性 被引量:1
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作者 刘小婷 张翔凌 +5 位作者 李栩灏 朱浩 胡美艳 毛斌 雷晓芸 秦耀君 《环境污染与防治》 CAS CSCD 北大核心 2024年第1期76-81,共6页
为将水体清淤污泥有效资源化利用,并同步解决初期雨水径流污染问题,合成ZnFe_(2)O_(4)用于改性清淤污泥透水砖。运用场发射扫描电子显微镜、能谱分析仪、X射线衍射仪等手段对改性前后清淤污泥透水砖进行材料表征,分析表面形貌、元素组... 为将水体清淤污泥有效资源化利用,并同步解决初期雨水径流污染问题,合成ZnFe_(2)O_(4)用于改性清淤污泥透水砖。运用场发射扫描电子显微镜、能谱分析仪、X射线衍射仪等手段对改性前后清淤污泥透水砖进行材料表征,分析表面形貌、元素组成及晶体结构;通过ZnFe_(2)O_(4)掺混比试验筛选最优配比,并开展初期雨水径流净化试验及吸附试验。结果表明:1)ZnFe_(2)O_(4)改性大幅提升了清淤污泥透水砖对悬浮物和磷酸盐的理论最大吸附量;2)改性前后清淤污泥透水砖对磷酸盐的吸附趋于单分子层吸附,且为自发吸热过程;3)未改性清淤污泥透水砖对悬浮物的吸附过程符合多分子层吸附,而ZnFe_(2)O_(4)改性清淤污泥透水砖更符合单分子层吸附;4)ZnFe_(2)O_(4)改性清淤污泥透水砖对悬浮物和磷酸盐的吸附性能及净化效果均明显优于未改性清淤污泥透水砖,可作为功能性透水铺装材料应用于海绵城市。 展开更多
关键词 ZnFe_(2)o_(4) 尖晶石 透水砖 雨水净化 海绵城市 改性清淤污泥
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正极材料LiAl_(0.08)Mn_(1.92)O_(4)单晶颗粒形貌演变及电化学性能
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作者 朱琴 马姣 +6 位作者 钱志慧 罗宇旭 郭昱娇 向明武 刘晓芳 宁平 郭俊明 《无机化学学报》 SCIE CAS CSCD 北大核心 2024年第8期1549-1562,共14页
联合元素掺杂和形貌调控策略,采用固相燃烧法和不同焙烧温度处理合成LiAl_(0.08)Mn_(1.92)O_(4)正极材料。实验结果表明,Al掺杂和焙烧温度的变化未改变LiMn_(2)O_(4)的相结构,随着温度的升高,结晶性增强,颗粒尺寸增大,其中焙烧温度650... 联合元素掺杂和形貌调控策略,采用固相燃烧法和不同焙烧温度处理合成LiAl_(0.08)Mn_(1.92)O_(4)正极材料。实验结果表明,Al掺杂和焙烧温度的变化未改变LiMn_(2)O_(4)的相结构,随着温度的升高,结晶性增强,颗粒尺寸增大,其中焙烧温度650℃是形成截断八面体单晶颗粒形貌的关键温度,750℃是颗粒突然变大的突变温度。650℃优化焙烧温度下焙烧的LiAl_(0.08)Mn_(1.92)O_(4)形成了较完整的包含(111)、(110)和(100)晶面的截断八面体单晶颗粒形貌,表现出优良的电化学和动力学性能。在1C下其首次放电比容量为112.0 mAh·g^(-1),循环500次后容量保持率为72.9%,在5C和10C倍率下,其首次放电比容量可达到107.1和100.4 mAh·g^(-1),经2000次长循环后,容量保持率为52.2%和53.5%。并且具有最小氧化还原峰电位差(ΔE_(p2),循环前后分别为0.109和0.114 V)、最小电荷转移电阻(R_(ct),循环前后分别106.49和125.49Ω)及较大的锂离子扩散系数(D_(Li^(+))=1.72×10^(-16)cm^(2)·s^(-1)),表现出较好的电化学可逆性和较快的锂离子扩散速率。Al掺杂和单晶截断八面体颗粒形貌既有效抑制了LiMn_(2)O_(4)的Jahn-Teller畸变,又降低了Mn溶解,提高了材料的倍率性能和长循环寿命。 展开更多
关键词 尖晶石limn_(2)o_(4) AL掺杂 固相燃烧法 焙烧温度 形貌调控 截断八面体
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锰源对尖晶石LiMn_(2)O_(4)高温性能的影响 被引量:3
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作者 刘培松 宋利君 +3 位作者 黄朝连 胡磊 卢晓英 江奇 《无机化学学报》 SCIE CAS CSCD 北大核心 2023年第1期55-62,共8页
为考察不同锰源对所制备尖晶石LiMn_(2)O_(4)(LMO)电化学性能的影响(特别是高温性能),采用沉淀法制备前驱体,通过不同煅烧温度制备得到最常用的锰氧化物(MnO_(2)、Mn_(2)O_(3)和Mn_(3)O_(4))为锰源,经相同条件制备得到LMO正极材料,通过... 为考察不同锰源对所制备尖晶石LiMn_(2)O_(4)(LMO)电化学性能的影响(特别是高温性能),采用沉淀法制备前驱体,通过不同煅烧温度制备得到最常用的锰氧化物(MnO_(2)、Mn_(2)O_(3)和Mn_(3)O_(4))为锰源,经相同条件制备得到LMO正极材料,通过考察所得LMO形貌及电化学性能来研究锰源与LMO电化学性能的关系。研究结果表明,相同的前驱体在不同煅烧温度下可以得到不同的锰氧化物,且各自具有不同的形貌结构。由这些锰氧化物都可以得到高纯度的LMO,但产物形貌结构以及材料中的八面体晶体含量和尺寸不同。由Mn_(2)O_(3)制备得到的LMO材料中的八面体晶体含量最多,且尺寸最均匀,在3种LMO中容量性能、倍率性能和循环性能最好:0.2C(1C=148 mA·g^(-1))下首次放电比容量为131.8 mAh·g^(-1);3C下还有100.4 mAh·g^(-1)的放电比容量。其对应半电池在0.5C下循环100次后,放电比容量还有116.0 mAh·g^(-1),容量保持率为93.9%,电化学储能性能远远优于其他2种LMO。即使是在高温55℃下,由Mn_(2)O_(3)得到的LMO也表现出明显优于其他2种材料的高倍率性能和抗衰减性能。 展开更多
关键词 尖晶石limn_(2)o_(4) 锰氧化物 电化学储能性能 高温性能
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