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Stereodynamics Study of Li+HF→LiF+H Reactions on X^2A’ Potential Energy Surface at Collision Energies below 5.00 kcal/mol
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作者 李红征 刘新国 +1 位作者 谭瑞山 胡梅 《Chinese Physics Letters》 SCIE CAS CSCD 2015年第8期52-56,共5页
The product rotational polarizations of reaction Li-SHF→LiF-kH at different collision energies, as well as at the different vibrational states and rotational states, are calculated by using the quasi-classical trajec... The product rotational polarizations of reaction Li-SHF→LiF-kH at different collision energies, as well as at the different vibrational states and rotational states, are calculated by using the quasi-classical trajectory method based on a new potential energy surface constructed by Aguado et al. [J. Chem. Phys. 119(2003) 10088]. We investigate the Mignment and the orientation of the product molecule by calculating the P(θr, φr) distribu- tions describing polar angle distribution, the P(θr) distributions describing the k-j' correlation and the P(φr) distributions describing the k-k'-j' correlation. We also explore the dependence of reaction probabilities and cross sections on the rotational and vibrational quantum number of the title reaction. It is concluded that the vibrational state has more important impact on the angular distribution, reaction probability and cross section. 展开更多
关键词 PES Stereodynamics Study of li+HF Potential Energy surface at Collision Energies below 5.00 kcal/mol liF+H Reactions on X~2A
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Anti⁃icing/De⁃icing Mechanism and Application Progress of Bio⁃inspired Surface for Aircraft 被引量:5
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作者 ZHU Yantong WANG Zelinlan +3 位作者 LIU Xiaolin ZHAO Zehui YAN Yuying CHEN Huawei 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI CSCD 2022年第5期541-560,共20页
Icing on the surface of aircraft will not only aggravate its quality and affect flight control,but even cause safety accidents,which is one of the important factors restricting all-weather flight.Bio-inspired anti-ici... Icing on the surface of aircraft will not only aggravate its quality and affect flight control,but even cause safety accidents,which is one of the important factors restricting all-weather flight.Bio-inspired anti-icing surfaces have gained great attention recently due to their low-hysteresis,non-stick properties,slow nucleation rate and low ice adhesion strength.These bio-inspired anti-icing surfaces,such as superhydrophobic surfaces,slippery liquid-infused porous surfaces and quasi-liquid film surfaces,have realized excellent anti-icing performance at various stages of icing.However,for harsh environment,there are still many problems and challenges.From the perspective of bioinspiration,the mechanism of icing nucleation,liquid bounce and ice adhesion has been reviewed together with the application progress and bottleneck issues about anti-icing in view of the process of icing.Subsequently,the reliability and development prospect of active,passive and active-passive integrated anti-icing technology are discussed,respectively. 展开更多
关键词 mechanical manufacturing and automation anti-icing of aircraft superhydrophobic surface slippery liquid-infused porous surface electrothermal coating
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Enhanced high-temperature performance of Li-rich layered oxide via surface heterophase coating 被引量:8
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作者 Yuefeng Su Feiyu Yuan +5 位作者 Lai Chen Yun Lu Jinyang Dong Youyou Fang Shi Chen Feng Wu 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2020年第12期39-47,共9页
Li-rich layered oxides have become one of the most concerned cathode materials for high-energy lithiumion batteries, but they still suffer from poor cycling stability and detrimental voltage decay, especially at eleva... Li-rich layered oxides have become one of the most concerned cathode materials for high-energy lithiumion batteries, but they still suffer from poor cycling stability and detrimental voltage decay, especially at elevated temperature. Herein, we proposed a surface heterophase coating engineering based on amorphous/crystalline Li3 PO4 to address these issues for Li-rich layered oxides via a facile wet chemical method. The heterophase coating layer combines the advantages of physical barrier effect achieved by amorphous Li3 PO4 with facilitated Li+diffusion stemmed from crystalline Li3 PO4. Consequently, the modified Li(1.2) Ni(0.2) Mn(0.6) O2 delivers higher initial coulombic efficiency of 92% with enhanced cycling stability at 55 °C(192.9 mAh/g after 100 cycles at 1 C). More importantly, the intrinsic voltage decay has been inhibited as well, i.e. the average potential drop per cycle decreases from 5.96 mV to 2.99 mV. This surface heterophase coating engineering provides an effective strategy to enhance the high-temperature electrochemical performances of Li-rich layered oxides and guides the direction of surface modification strategies for cathode materials in the future. 展开更多
关键词 li-rich layered oxide surface heterophase coating Crystalline/amorphous li3PO4 High-temperature performance Voltage decay
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Comparison on corrosion resistance and surface film of pure Mg and Mg−14Li alloy 被引量:4
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作者 Chuan-qiang LI Zhi-pei TONG +3 位作者 Yi-bin HE Huai-pei HUANG Yong DONG Peng ZHANG 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2020年第9期2413-2423,共11页
To study different corrosion resistances and surface film types of hexagonal close-packed(HCP)pure Mg and body-centered cubic(BCC)Mg−14wt.%Li alloy in 0.1 mol/L NaCl,a series of experiments were conducted,including hy... To study different corrosion resistances and surface film types of hexagonal close-packed(HCP)pure Mg and body-centered cubic(BCC)Mg−14wt.%Li alloy in 0.1 mol/L NaCl,a series of experiments were conducted,including hydrogen evolution,mass loss,in-situ electrochemical testing combined with Raman spectroscopy and microstructural observation.The results indicate that the corrosion resistance of pure Mg is superior to that of Mg−14Li,and the protective function of the surface films on both magnesium systems is elevated within 16 h of immersion in 0.1 mol/L NaCl.An articulated,thick,and needle-like surface film containing Li2CO3 on Mg−14Li,different from the typically thin,flaky Mg(OH)2 film on pure Mg,is confirmed via scanning electron microscopy(SEM).However,both surface films can be broken down at a high anodic over-potential.Thus,different corrosion resistances of the two Mg systems are ascribed to various protective films forming on their surfaces. 展开更多
关键词 Mg−li alloy corrosion resistance surface film electrochemical testing in-situ electrochemical-Raman spectroscopy
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钙钛矿结构Li_(0.33)La_(0.557)Ti_(0.7)Cr_(0.3)O_(3)包覆稳定富锂锰基正极
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作者 刘磊磊 薛文东 黄冰心 《电源技术》 CAS 北大核心 2024年第1期66-70,共5页
富锂锰基层状氧化物凭借超高的放电比容量和较低的价格成为了极具发展前景的锂离子电池正极材料,然而,首次库仑效率较低、容量衰减严重以及较差的倍率性能等缺点制约了其进一步的应用。选用离子-电子混合导体Li_(0.33)La_(0.557)Ti_(0.7... 富锂锰基层状氧化物凭借超高的放电比容量和较低的价格成为了极具发展前景的锂离子电池正极材料,然而,首次库仑效率较低、容量衰减严重以及较差的倍率性能等缺点制约了其进一步的应用。选用离子-电子混合导体Li_(0.33)La_(0.557)Ti_(0.7)Cr_(0.3)O_(3)作为包覆层材料,并采用共沉淀法和高温退火法将其包覆于正极颗粒上。包覆量为2%的样品性能最佳,在0.5 C下、2.0~4.8 V电压范围内,200次循环容量保持率可以达到88.2%,相比于原始样品的62.1%有了明显的提升。 展开更多
关键词 锂离子电池 富锂锰基正极 表面包覆 循环性能
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Surface-roughened current collectors for anode-free all-solid-state batteries 被引量:1
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作者 Donghee Gu Hyoungchul Kim +1 位作者 Jong-Ho Lee Sangbaek Park 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2022年第7期248-257,I0007,共11页
Anode-free all-solid-state batteries(AFASSBs), composed of a fully lithiated cathode and a bare current collector(CC) that eliminates excess lithium, can maximize the energy density(because of a compact cell configura... Anode-free all-solid-state batteries(AFASSBs), composed of a fully lithiated cathode and a bare current collector(CC) that eliminates excess lithium, can maximize the energy density(because of a compact cell configuration) and improve the safety of solid-state systems. Although significant progress has been made by modifying CCs in liquid-based anode-free batteries, the role of CCs and the mechanism of Li formation on CCs in AFASSBs are still unexplored. Here, we systematically investigate the effect of the surface roughness of the CCs on the Li plating/stripping behavior in AFASSBs. The results show that the moderately roughened CC substantially improves the Coulombic efficiency and cycle stability of AFASSBs owing to the increased contact points between the solid electrolyte and the roughened CC. In contrast, the excessively roughened CC deteriorates the performance owing to the contact loss.Moreover, an ex situ interface analysis reveals that the roughened surface of the CC could suppress the interfacial degradation during the Li ion extraction from a sulfide solid electrolyte to a CC. This provides an indication to the origin that hinders the electrochemical performance of AFASSBs. These findings show the potential for the application of surface-engineered CCs in AFASSBs and provide guidelines for designing advanced CCs. 展开更多
关键词 Anode-free Solid-state batteries Current collectors surface roughness li formation
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The First Principles Study of Hydrogen Adsorption on Ni-Decorated LiB(001) Surface 被引量:1
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作者 张富春 刘洋 张伟斌 《Chinese Physics Letters》 SCIE CAS CSCD 2015年第5期115-118,共4页
The hydrogen adsorption on the one and three Ni-decorated LiB (001) 2 × 2 surface is investigated by the first principles study. It is demonstrated that Ni atoms are preferentially adsorbed on the top B atom, a... The hydrogen adsorption on the one and three Ni-decorated LiB (001) 2 × 2 surface is investigated by the first principles study. It is demonstrated that Ni atoms are preferentially adsorbed on the top B atom, and form a covalent bond of NiB and an ionic bond of NiLi on the surface. Four H2 molecules can adsorb on the one- Ni-decorated LiB (001) surface, and the average adsorption energy is in a range from -0.35 to -0.58eV/H2. The charge population analysis shows that the dipole moments on the Ni decorated surface is responsible for the polarization and adsorption of H2. Then, we show that three Ni atoms can be decorated on the LiB (001) 2 × 2 surface, and form a Ni3B nano cluster on the surface, which agrees with experimental results. Three Ni- decorated LiB (001) can adsorb up to six H2 molecules, indicating that the Ni-decorated LiB (001) system might be a promising hydrogen storage material. 展开更多
关键词 li NI The First Principles Study of Hydrogen Adsorption on Ni-Decorated liB surface
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Surface-Engineered Li4Ti5O12 Nanostructures for High-Power Li-Ion Batteries 被引量:6
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作者 Binitha Gangaja Shantikumar Nair Dhamodaran Santhanagopalan 《Nano-Micro Letters》 SCIE EI CAS CSCD 2020年第2期235-245,共11页
Materials with high-power charge–discharge capabilities are of interest to overcome the power limitations of conventional Li-ion batteries.In this study,a unique solvothermal synthesis of Li4Ti5O12 nanoparticles is p... Materials with high-power charge–discharge capabilities are of interest to overcome the power limitations of conventional Li-ion batteries.In this study,a unique solvothermal synthesis of Li4Ti5O12 nanoparticles is proposed by using an off-stoichiometric precursor ratio.A Li-deficient off-stoichiometry leads to the coexistence of phaseseparated crystalline nanoparticles of Li4Ti5O12 and TiO2 exhibiting reasonable high-rate performances.However,after the solvothermal process,an extended aging of the hydrolyzed solution leads to the formation of a Li4Ti5O12 nanoplate-like structure with a self-assembled disordered surface layer without crystalline TiO2.The Li4Ti5O12 nanoplates with the disordered surface layer deliver ultrahighrate performances for both charging and discharging in the range of 50–300C and reversible capacities of 156 and 113 mAh g−1 at these two rates,respectively.Furthermore,the electrode exhibits an ultrahigh-charging-rate capability up to 1200C(60 mAh g−1;discharge limited to 100C).Unlike previously reported high-rate half cells,we demonstrate a high-power Li-ion battery by coupling Li4Ti5O12 with a high-rate LiMn2O4 cathode.The full cell exhibits ultrafast charging/discharging for 140 and 12 s while retaining 97 and 66% of the anode theoretical capacity,respectively.Room-(25℃),low-(−10℃),and high-(55℃)temperature cycling data show the wide temperature operation range of the cell at a high rate of 100C. 展开更多
关键词 Ultrafast charging li-ion battery lithium titanate Off-stoichiometric synthesis surface chemistry
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Surface structure evolution of cathode materials for Li-ion batteries 被引量:1
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作者 吕迎春 刘亚利 谷林 《Chinese Physics B》 SCIE EI CAS CSCD 2016年第1期106-114,共9页
Lithium ion batteries are important electrochemical energy storage devices for consumer electronics and the most promising candidates for electrical/hybrid vehicles. The surface chemistry influences the performance of... Lithium ion batteries are important electrochemical energy storage devices for consumer electronics and the most promising candidates for electrical/hybrid vehicles. The surface chemistry influences the performance of the batteries significantly. In this short review, the ewlution of the surface struture of the cathode materials at different states of the pristine, storage and electrochemical reaclions are summarized. The main methods for the surface modification are also introduced. 展开更多
关键词 structure evolution surface CATHODE li-ion batteries
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Constructing a stable interface on Ni-rich LiNi_(0.8)Co_(0.1)Mn_(0.1)O_(2) cathode via lactic acid-assisted engineering strategy
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作者 Weijian Tang Chengzhi Hu +4 位作者 AFei Li Xiaoqin Huang Zhangxian Chen Jianhui Su Weixin Zhang 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第3期412-422,I0010,共12页
Ni-rich layered oxides are potential cathode materials for next-generation high energy density Li-ion batteries due to their high capacity and low cost.However,the inherently unstable surface properties,including high... Ni-rich layered oxides are potential cathode materials for next-generation high energy density Li-ion batteries due to their high capacity and low cost.However,the inherently unstable surface properties,including high levels of residual Li compounds,dissolution of transition metal cations,and parasitic side reactions,have not been effectively addressed,leading to significant degradation in their electrochemical performance.In this study,we propose a simple and effective lactic acid-assisted interface engineering strategy to regulate the surface chemistry and properties of Ni-rich LiNi_(0.8)Co_(0.1)Mr_(0.1)O_(2) cathode.This novel surface treatment method successfully eliminates surface residual Li compounds,inhibits structural collapse,and mitigates cathode-electrolyte interface film growth.As a result,the lactic acidtreated LiNi_(0.8)Co_(0.1)Mn_(0.1)O_(2) achieved a remarkable capacity retention of 91.7% after 100 cycles at 0.5 C(25℃) and outstanding rate capability of 149.5 mA h g^(-1) at 10 C,significantly outperforming the pristine material.Furthermore,a pouch-type full cell incorporating the modified LiNi_(0.8)Co_(0.1)Mn_(0.1)O_(2) cathode demonstrates impressive long-term cycle life,retaining 81.5% of its capacity after 500 cycles at 1 C.More importantly,the thermal stability of the modified cathode is also dramatically improved.This study offers a valuable surface modification strategy for enhancing the overall performance of Ni-rich cathode materials. 展开更多
关键词 Residual li Lactic acid surface modification Carbon coating Layered cathode Ni-rich
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DETERMINATION OF THE SURFACE BINDING ENERGY OF A Cu/Li ALLOY BY MEASUREMENTS OF ANGULAR DISTRIBUTION OF SPUTTERED ATOMS
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作者 王纹泯 J.Roth 《Nuclear Science and Techniques》 SCIE CAS CSCD 1990年第Z1期84-88,共5页
A copper based binary alloy containing 16.9 at % lithium has been bombarded with deuterium ions in energy range of 400 eV to 2 keV at the incidence angles of 70° and 80° away from the surface normal. The spu... A copper based binary alloy containing 16.9 at % lithium has been bombarded with deuterium ions in energy range of 400 eV to 2 keV at the incidence angles of 70° and 80° away from the surface normal. The sputtered flux was condensed on Al- strips arranged arround the target in a cylindrical cup. 1.5 MeV proton backscattering and nuclear reaction 7Li(p, α)4He were used to detect the collected atoms of Cu and Li simultaneously. The angular distribution of sputtered atoms has been shown to be different for two components and strongly anisotropic for the grazing incidence. According to direct knock-on sputtering model and the experimental results the angle for the maximum differential sputtering yield is dependent on the incidence angle α, the bombarding energy E, the energy transfer factor γ= 4M1M2/(M1+ M2)2 and the surface binding energy U. With the assumption that the sputtered particles are diffracted by a planar barrier the surface binding energies of 2.3 eV for the Li component and 3.0 eV for the Cu component have been determined by fitting the measured angles of preferred ejection to the direct knock-on sputtering model, and the results agree well with a pair-binding model. 展开更多
关键词 surface binding energy Cu/li ALLOY Angular distribution Sputtered ATOMS
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Hard-carbon hybrid Li-ion/metal anode enabled by preferred mesoporous uniform lithium growth mechanism
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作者 Fang Yan Yan Liu +11 位作者 Yuan Li Yan Wang Zicen Deng Meng Li Zhenwei Zhu Aohan Zhou Ting Li Jingyi Qiu Gaoping Cao Shaobo Huang Biyan Wang Hao Zhang 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第1期252-259,I0006,共9页
To achieve high energy density in lithium batteries,the construction of lithium-ion/metal hybrid anodes is a promising strategy.In particular,because of the anisotropy of graphite,hybrid anode formed by graphite/Li me... To achieve high energy density in lithium batteries,the construction of lithium-ion/metal hybrid anodes is a promising strategy.In particular,because of the anisotropy of graphite,hybrid anode formed by graphite/Li metal has low transport kinetics and is easy to causes the growth of lithium dendrites and accumulation of dead Li,which seriously affects the cycle life of batteries and even causes safety problems.Here,by comparing graphite with two types of hard carbon,it was found that hybrid anode formed by hard carbon and lithium metal,possessing more disordered mesoporous structure and lithophilic groups,presents better performance.Results indicate that the mesoporous structure provides abundant active site and storage space for dead lithium.With the synergistic effect of this structure and lithophilic functional groups(–COOH),the reversibility of hard carbon/lithium metal hybrid anode is maintained,promoting uniform deposition of lithium metal and alleviating formation of lithium dendrites.The hybrid anode maintains a 99.5%Coulombic efficiency(CE)after 260 cycles at a specific capacity of 500 m Ah/g.This work provides new insights into the hybrid anodes formed by carbon-based materials and lithium metal with high specific energy and fast charging ability. 展开更多
关键词 Hard carbon/li metal hybrid anode Mesoporous structure surface oxygen functional group Fast charging lithium batteries
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A robust interphase via in-situ pre-reconfiguring lithium anode surface for long-term lithium-oxygen batteries
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作者 Pan Xu Xiaodong Lin +8 位作者 Zongqiang Sun Kaixuan Li Wenjie Dou Qing Hou Zhiyou Zhou Jiawei Yan Mingsen Zheng Ruming Yuan Quanfeng Dong 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2022年第9期186-194,I0006,共10页
Lithium-oxygen(Li-O) battery is considered as one of the most promising alternatives because of its ultrahigh theoretical energy density. However, their cycling stability is severely restricted by the uncontrollable d... Lithium-oxygen(Li-O) battery is considered as one of the most promising alternatives because of its ultrahigh theoretical energy density. However, their cycling stability is severely restricted by the uncontrollable dendrite growth and serious oxygen corrosion issue on Li surface. Herein, a sulfur-modified Li surface can be successfully constructed via chemical reaction of guanylthiourea(GTU) molecule on Li,which can induce the selectively fast decomposition of lithium bis(trifluoromethanesulfonyl)imide(LiTFSI) to form a smooth and stable inorganics-rich solid-electrolyte interphase(IR-SEI) during the subsequent electrochemical process. Such an IR-SEI cannot only offer a highly reversible and stable Li plating/stripping chemistry with dendrite-free property(10 mA cm^(-2)-10 mAh cm^(-2), > 0.5 years;3 mA cm^(-2)-3 m Ah cm^(-2), > 1 year) but also endows the Li metal an anti-oxygen corrosion function, thereby significantly improving the cycling stability of Li-Obatteries. This work provides a new idea for constructing functional solid-electrolyte interphase(SEI) to achieve highly stable Li metal anode. 展开更多
关键词 Solid-electrolyte interphase Guanylthiourea Sulfur-modified li surface li metal li-O_(2)batteries
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Li<SUB>4</SUB>Ti<SUB>5</SUB>O<SUB>12</SUB>Synthesis with High Specific Surface Area and Single Phase
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作者 Toshihito Ohtake Ken-ichiro Iijima 《Journal of Materials Science and Chemical Engineering》 2015年第9期68-73,共6页
We have investigated a novel Li4Ti5O12 synthesis with high specific surface area, high crystallization and single phase and its mechanism. The method was performed with a solid phase synthesis by using CH3COOLi·2... We have investigated a novel Li4Ti5O12 synthesis with high specific surface area, high crystallization and single phase and its mechanism. The method was performed with a solid phase synthesis by using CH3COOLi·2H2O and anatase TiO2 via Li2TiO3 as an intermediate in pre-sintering at 500°C and sintering at 750°C. This result showed specific surface area of 12 m2/g and single phase- Li4Ti5O12 by applying the high specific surface anatase TiO2 as a precursor. 展开更多
关键词 li4TI5O12 SOliD Phase Synthesis SPECIFIC surface Area SEM TEM
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INVESTIGATION OF BEHAVIOR OF AMMONIUM SULFATE ON SURFACE OF IRON OXIDE Rong Sheng LI~*, Jing Feng CHEN, Hun YANG, Wu Yang ZHANG Dept. of Chemistry, Jilin University, Changchun 130023,
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作者 Quan WEI Testing Center, Jilin University 《Chinese Chemical Letters》 SCIE CAS CSCD 1993年第5期463-466,共4页
hhen ammonium sulfate-iron oxide is treated below 573 K, ammonium sulfate can spontaneously desperse on the surface of iron oxide. Simultaneously ammonium sulfate decomposes to some extent. During or after the dispers... hhen ammonium sulfate-iron oxide is treated below 573 K, ammonium sulfate can spontaneously desperse on the surface of iron oxide. Simultaneously ammonium sulfate decomposes to some extent. During or after the dispersion, sulfate ion can interact with Fe atom on the surface of iron oxide to form a sort of surface sulfato complex of Fe and thus is transformed from the isolated into the bidentately bound form. Above 573 K the sulfato complex of Fe will gradually decompose with a further increase in temperature. 展开更多
关键词 of Chemistry Wu Yang ZHANG Dept Jing Feng CHEN INVESTIGATION OF BEHAVIOR OF AMMONIUM SULFATE ON surface OF IRON OXIDE Rong Sheng li Jilin University Changchun 130023 Hun YANG
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无钴富锂锰基正极材料Li_(1.2)Ni_(0.2)Mn_(0.6)O_(2)的表面改性及电化学性能研究
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作者 朱守聪 施志聪 《材料研究与应用》 CAS 2024年第2期241-247,共7页
无钴富锂锰基正极材料Li_(1.2)Ni_(0.2)Mn_(0.6)O_(2)因高比容量、低成本等优点备受关注,是极具潜力的下一代锂离子电池正极材料。然而,Li_(1.2)Ni_(0.2)Mn_(0.6)O_(2)材料存在首次库伦效率低、倍率性能差及容量衰减等问题,限制了其进... 无钴富锂锰基正极材料Li_(1.2)Ni_(0.2)Mn_(0.6)O_(2)因高比容量、低成本等优点备受关注,是极具潜力的下一代锂离子电池正极材料。然而,Li_(1.2)Ni_(0.2)Mn_(0.6)O_(2)材料存在首次库伦效率低、倍率性能差及容量衰减等问题,限制了其进一步发展。为解决此问题,采用柠檬酸溶液表面处理结合再重新煅烧方法,通过在其表面包覆一层尖晶石相,对Li_(1.2)Ni_(0.2)Mn_(0.6)O_(2)开展了表面改性研究,并对改性前后样品进行物理表征和电化学测试分析。结果表明,改性前后的Li_(1.2)Ni_(0.2)Mn_(0.6)O_(2)正极材料,形貌基本一致,均为尺寸100—400 nm的不规则颗粒,改性后的粉末颗粒边缘略有不平整。使用柠檬酸溶液表面处理后,Li_(1.2)Ni_(0.2)Mn_(0.6)O_(2)材料形成了内部为层状相、表面为尖晶石相的结构。尖晶石相的存在不仅为锂离子扩散提供了三维离子扩散通道、提高倍率性能,还可充当正极材料表面与电解液间的保护层,提高首次库伦效率,改善循环性能。改性后的Li_(1.2)Ni_(0.2)Mn_(0.6)O_(2)的首次库伦效率为92.4%,可逆比容量为292 mAh·g^(-1),与改性前相比分别提高了13.8%和22 mAh·g^(-1),并且在不同倍率下的可逆比容量和长循环容量保持率均有明显提升,表明其具有更好的倍率性能和更优的循环稳定性能。本研究提出了一种无钴富锂锰基正极材料表面改性方法,该改性方法操作简单、效果明显,可应用于不同组分的富锂正极材料,为富锂锰基正极材料的进一步发展提供了新的思路。 展开更多
关键词 锂离子电池 富锂正极材料 富锂锰基正极材料 表面改性 首次库伦效率 尖晶石相 电化学性能 可逆比容量
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Development of Slippery Liquid-Infused Porous Surface on AZ31 Mg Alloys for Corrosion Protection
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作者 Wenhui Yao Yonghua Chen +3 位作者 Yanning Chen Liang Wu Bin Jiang Fusheng Pan 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 2023年第2期229-236,共8页
The relatively poor corrosion resistance remarkably limits the wide applications of Mg alloys in practice,although they possess many attractive properties,like low density,high specific strength,and good biocompatibil... The relatively poor corrosion resistance remarkably limits the wide applications of Mg alloys in practice,although they possess many attractive properties,like low density,high specific strength,and good biocompatibility.The formation of a protective coating can effectively suppress the corrosion.In this work,a slippery liquid-infused porous surface(SLIPS),with good surface hydrophobicity,stability,and self-healing property,was formed on AZ31 Mg alloys.The development of SLIPS requires suitable porous micro/nanostructures.Layered double hydroxide(LDH),with effective corrosion resistance for Mg alloys,was a good candidate to accommodate the liquid lubricant.Especially,different temperatures were applied to in situ form MgAl-LDH on AZ31 Mg alloys.The results showed that the temperature of 120℃was the best condition for the SLIPS to provide good corrosion protection for Mg alloys,with the lowest corrosion current density of 3.19×10^(-9)A cm^(−2).In addition,the SLIPS performed well in the long-term immersion test and abrasion test.The AZ31 Mg alloys with superior corrosion resistance and good mechanical and chemical stability can be extensively applied in areas of automotive,electronics,and aerospace. 展开更多
关键词 Mg alloy Hydrothermal temperature Corrosion protection Slippery liquid-infused porous surface HYDROPHOBICITY surface stability
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LiF表面修饰协同F掺杂提升LiNi_(0.6)Co_(0.2)Mn_(0.2)O_(2)正极材料电化学性能
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作者 张晓辉 杨广场 +2 位作者 陆绍荣 梁力勃 杨小飞 《电源技术》 CAS 北大核心 2023年第10期1254-1258,共5页
富镍层状氧化物因高比容量和良好的倍率性能被认为是最有潜力的下一代高比能锂离子电池(LIBs)正极材料之一,但界面不稳定性和结构退化等因素导致的容量快速衰减阻碍了该类材料的商业化进程。利用LiNi_(0.6)Co_(0.2)Mn_(0.2)O_(2)(NCM)... 富镍层状氧化物因高比容量和良好的倍率性能被认为是最有潜力的下一代高比能锂离子电池(LIBs)正极材料之一,但界面不稳定性和结构退化等因素导致的容量快速衰减阻碍了该类材料的商业化进程。利用LiNi_(0.6)Co_(0.2)Mn_(0.2)O_(2)(NCM)的表面残锂构建了均匀的LiF涂层,并通过低温煅烧使部分F-掺杂到体相,同时优化NCM晶体表层和内部的结构稳定性。优化后的复合材料(F-NCM)在4.5 V截止电压下,以1 C电流密度循环400次后的比容量为130.8 mAh/g,保持率达到68.8%。通过与未改性的样品对比,该优化策略对放电容量和循环性能显示出明显的提升效果。此外,F-NCM也表现出良好的倍率性能,在高倍率10 C下,可以释放出161.9 mAh/g的比容量。 展开更多
关键词 锂离子电池 富镍三元材料 表面包覆 体相掺杂 协同优化
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Li含量对Li_(3x)La_((2/3)–x†(1/3)–2x)TiO_(3)固态电解质表面稳定性、电子结构及Li离子输运性质的影响
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作者 华彪 孙宝珍 +2 位作者 王靖轩 石晶 徐波 《物理学报》 SCIE EI CAS CSCD 北大核心 2023年第2期318-328,共11页
Li_(3x)La_((2/3)–x†(1/3)–2x)TiO_(3)(LLTO)是一类颇具前景的锂离子电池固态电解质.本文采用第一性原理结合分子动力学方法对贫锂相和富锂相两种类型的LLTO表面进行研究,分析表面Li含量对其稳定性、电子结构及Li离子输运性质的影响.... Li_(3x)La_((2/3)–x†(1/3)–2x)TiO_(3)(LLTO)是一类颇具前景的锂离子电池固态电解质.本文采用第一性原理结合分子动力学方法对贫锂相和富锂相两种类型的LLTO表面进行研究,分析表面Li含量对其稳定性、电子结构及Li离子输运性质的影响.结果表明,具有La/O/Li-原子终端的(001)面为最稳定晶面.对于LLTO(001)面,当贫锂相/富锂相终端Li含量为0.17/0.33,0.29/0.40,0.38/0.45时,其表面结构更为稳定.电子结构分析表明,随着Li含量的增大,不论是贫锂相还是富锂相,其(001)表面均发现金属至半导体的转变.Li离子输运性质的研究结果表明,贫锂相和富锂相LLTO(001)表面均具有沿ab平面的二维扩散通道,且当终端Li含量分别达到0.38和0.40时具有最大的Li离子扩散系数及最低的Li离子扩散能垒,最低扩散能垒分别为0.42 eV和0.30 eV.因而,改变终端Li含量有利于提高LLTO(001)表面稳定性、打开表面带隙、改善Li离子迁移性能,这有助于抑制LLTO表面锂枝晶的生长. 展开更多
关键词 全固态锂离子电池 锂含量 li_(3x)La_((2/3)–x†(1/3)–2x)TiO_(3)表面
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软包装锂离子电池表面凹坑缺陷检测方法
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作者 何涛 张成娟 +1 位作者 雷卓 王正家 《电池》 CAS 北大核心 2024年第3期358-363,共6页
软包装锂离子电池表面凹坑缺陷对比度低、缺陷区域过小且存在反光,传统方法很难进行准确检测。提出一种基于图像增强和改进DeepLabV3网络的软包装锂离子电池表面凹坑缺陷检测方法。通过分析表面凹坑缺陷图像特征,采用图像增强算法对图... 软包装锂离子电池表面凹坑缺陷对比度低、缺陷区域过小且存在反光,传统方法很难进行准确检测。提出一种基于图像增强和改进DeepLabV3网络的软包装锂离子电池表面凹坑缺陷检测方法。通过分析表面凹坑缺陷图像特征,采用图像增强算法对图像进行预处理,以增强凹坑缺陷对比度。对DeepLabV3网络进行改进,使用ResNet101作为特征提取网络,同时引入位置注意力模块,使得模型更加关注于凹坑缺陷相关特征,提升网络的检测精度。改进后的网络在自制数据集上的平均交并比达到85.98%,缺陷检测准确率达到98.33%。 展开更多
关键词 图像增强 深度学习 DeepLabV3 缺陷检测 软包装锂离子电池 表面凹坑
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