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First-Principles Study of P2-Type Na_(x)NiO_(2)and Na_(x)Ni_(0.75)M_(0.25)O_(2)(M=Fe,Cu,Mn)Cathode Materials for Sodium-Ion Battery
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作者 Xiaoyue He Genqiang Zhang 《Chinese Journal of Chemical Physics》 2025年第6期917-925,I0240,共10页
The development of affordable,high-efficiency sodium-ion batteries is primarily dependent on the advancement of cathode materials.These materials need to exhibit a high cell voltage,significant storage capacity,and qu... The development of affordable,high-efficiency sodium-ion batteries is primarily dependent on the advancement of cathode materials.These materials need to exhibit a high cell voltage,significant storage capacity,and quick diffusion of sodium ions to fulfill the requirements for efficient and ecofriendly energy storage systems.In this vein,density functional theory(DFT)calculation has become instrumental in advancing the study of battery materials.This study presents a firstprinciples investigation of P2-type Na_(x)NiO_(2)and Na_(x)Ni_(0.75)M_(0.25)O_(2)(M=Cu,Fe,Mn)cathode materials for sodium-ion batteries(SIBs),focusing on Na content variation and its impact on the battery performance.For NaNiO_(2),we replaced part of the expensive Ni element with lower-cost Cu,Fe,and Mn in hopes of reducing costs and improving material performance.By employing density functional theory(DFT),we explore the relationship between lattice constants,cell volume,enthalpy of formation,and cell voltage,and how these factors influence sodium ion insertion/extraction.We provide insights into the diffusion paths and activation energies for Na ions,and assess the influence of transition metal(TM)substitution on the structural stability and electrochemical properties of the materials.Additionally,the study delves into the electronic structure,highlighting how Cu and Fe integration refines the band gap of the spin-down bands.The findings reveal that certain transition metal substitutions can enhance performance,offering a pathway to optimize sodium-ion battery electrode materials. 展开更多
关键词 Cathode Density functional theory calculation Sodium-ion battery Ab initio molecular dynamics P2-type Na_(x)NiO_(2)
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Understanding Li roles in chemical reversibility of O2-type Li-rich layered cathode materials 被引量:5
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作者 Jie Feng Yun-Shan Jiang +4 位作者 Fu-Da Yu Wang Ke Lan-Fang Que Jenq-Gong Duh Zhen-Bo Wang 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2022年第3期666-675,I0018,共11页
Traditional O3-type Li-rich layered materials are attractive with ultra-high specific capacities,but suffering from inherent problems of voltage hysteresis and poor cycle performance.As an alternative,O2-type material... Traditional O3-type Li-rich layered materials are attractive with ultra-high specific capacities,but suffering from inherent problems of voltage hysteresis and poor cycle performance.As an alternative,O2-type materials show the potential to improve the oxygen redox reversibility and structural stability.However,their structure-performance relationship is still unclear.Here,we investigate the correlation between the Li component and dynamic chemical reversibility of O2-type Li-rich materials.By exploring the formation mechanism of a series of materials prepared by Na/Li exchange,we reveal that insufficient Li leads to an incomplete replacement,and the residual Na in the Li-layer would hinder the fast diffusion of Li^(+).Moreover,excessive Li induces the extraction of interlayer Li during the melting chemical reaction stage,resulting in a reduction in the valence of Mn,which leads to a severe Jahn-Teller effect.Structural detection confirms that the regulation of Li can improve the cycle stability of Li-rich materials and suppress the trend of voltage fading.The reversible phase evolution observed in in-situ X-ray diffraction confirms the excellent structural stability of the optimized material,which is conducive to capacity retention.This work highlights the significance of modulating dynamic electrochemical performance through the intrinsic structure. 展开更多
关键词 Li-ion batteries Li-rich oxide cathode O2-type Chemical reversibility Electrochemical performance
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Structures and hydrogen storage properties of RE-Mg-Ni-Mn-based AB2-type alloys prepared by casting and melt spinning 被引量:3
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作者 Yang-Huan Zhang Zhong-Hui Hou +3 位作者 Ying Cai Feng Hu Yan Qi Dong-Liang Zhao 《Rare Metals》 SCIE EI CAS CSCD 2019年第11期1086-1096,共11页
To ameliorate the electrochemical hydrogen storage properties of RE-Mg-Ni-Mn-based AB2-type electrode alloys,La element was partially substituted by Ce,and La1-xCexMgNi3.5Mn0.5(x=0,0.1,0.2,0.3,0.4)alloys were fabricat... To ameliorate the electrochemical hydrogen storage properties of RE-Mg-Ni-Mn-based AB2-type electrode alloys,La element was partially substituted by Ce,and La1-xCexMgNi3.5Mn0.5(x=0,0.1,0.2,0.3,0.4)alloys were fabricated by casting and melt spinning.The effects of Ce content on structures and electrochemical hydrogen storage properties of prepared alloys were studied in detail.Results show that the experimental alloys consist of LaMgNi4 and LaNi5 phases.The variation of Ce content,instead of changing phase composition,results in an obvious phase abundance change in the alloys,namely the amount of LaMgNi4 and LaNi5 phases,respectively,increases and decreases with Ce content growing.Moreover,the partial substitution of Ce for La leads to that the lattice keeps constant,cell volumes clearly decreases and the alloy grains are markedly refined.The electrochemical measurements reveal that the as-cast and as-spun alloys obtain the maximum discharge capacities at the first cycling without any activation needed.With Ce content increasing,the discharge capacity of as-cast alloys visibly decreases.By contrast,the as-spun alloys have the maximum discharge capacity value.The substitution of Ce for La dramatically promotes the cycle stability.Moreover,the electrochemical kinetic performances of as-cast and asspun alloys first increase and then decrease with Ce content increasing. 展开更多
关键词 AB2-type alloy Ce SUBSTITUTION for La MELT SPINNING ELECTROCHEMICAL properties
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Electrochemical hydrogen storage behaviors of as-cast and spun RE-Mg-Ni-Co-Al-based AB2-type alloys applied to Ni-MH battery 被引量:3
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作者 Yang-Huan Zhang Gang Huang +3 位作者 Ze-Ming Yuan Shi-Hai Guo Yan Qi Dong-Liang Zhao 《Rare Metals》 SCIE EI CAS CSCD 2020年第2期181-192,共12页
Preparation of La-Mg-Ni-Co-Al-based AB2-type alloys La0.8-xCe0.2YxMgNi3.4Co0.4Al0.1(x=0,0.05,0.10,0.15,0.20)was performed using melt spinning technology.The influences of spun rate and Y content on structures and elec... Preparation of La-Mg-Ni-Co-Al-based AB2-type alloys La0.8-xCe0.2YxMgNi3.4Co0.4Al0.1(x=0,0.05,0.10,0.15,0.20)was performed using melt spinning technology.The influences of spun rate and Y content on structures and electrochemical hydrogen storage characteristics were studied.The base phase LaMgNi4 and the lesser phase LaNis were detected by X-ray diffraction(XRD)and scanning electron microscope(SEM).The variations of spinning rate and Y content cause an obvious change in phase content,but without altering phase composition,namely,with spinning rate and Y content growing,LaMgNi4 phase content augments while LaNi5 content declines.Furthermore,melt spinning and the replacing La by Y refine the grains dramatically.The electrochemical tests show a favorable activation capability of the two kinds of alloys,and the maximum discharge capacities are achieved during the first cycle.Discharge capacity firstly increases and subsequently decreases with spinning rate rising,while cycle stability is ameliorated and discharge capacity decreases with Y addition increasing.It is found that the amelioration of cycle stability is due to the enhancement of anti-pulverization,anti-corrosion and antioxidation abilities by both replacement of La with Y and melt spinning.Moreover,with the increase of Y addition and/or spinning rate,the electrochemical kinetics that contain charge transfer rate,limiting current density(IL),hydrogen diffusion coefficient(D)and the high rate discharge ability(HRD)firstly augment and then reduce. 展开更多
关键词 Electrochemical characteristic AB2-type alloy Y SUBSTITUTION MELT SPINNING
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Electrochemical mechanism of high Na-content P2-type layered oxides for sodium-ion batteries 被引量:5
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作者 Ying Yang Wei-Feng Wei 《Rare Metals》 SCIE EI CAS CSCD 2020年第4期332-334,共3页
The development on capacity and structure issues of P2-type cathode has so far focused on ion-doping/substitution strategy.In a recent report published in Journal of the American Chemical Society,Hu and colleagues dem... The development on capacity and structure issues of P2-type cathode has so far focused on ion-doping/substitution strategy.In a recent report published in Journal of the American Chemical Society,Hu and colleagues demonstrated that high Na-content P2-type layered oxides exhibit higher capacities as well as great structural stability. 展开更多
关键词 Na-content P2-type sodium-ion batteries structure
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Increasing(010) active plane of P2-type layered cathodes with hexagonal prism towards improved sodium-storage 被引量:2
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作者 Dongmei Dai Xiaobing Lai +8 位作者 Xiaojuan Wang Yunting Yao Mengmin Jia Liang Wang Pengyao Yan Yaru Qiao Zhuangzhuang Zhang Bao Li Dai-Huo Liu 《Chinese Chemical Letters》 SCIE CAS CSCD 2024年第10期505-509,共5页
Na-ion cathode materials with a fast charge and discharge behavior are needed to develop future high energy sodium-ion batteries(SIBs).However,inevitably complicated phase transitions and sluggish kinet ics during ins... Na-ion cathode materials with a fast charge and discharge behavior are needed to develop future high energy sodium-ion batteries(SIBs).However,inevitably complicated phase transitions and sluggish kinet ics during insertion and removal of Na+in P_(2)-type layered transition metal oxides generate structura instability and severe capacity decay.To get rid of such a dilemma,we report a structural optimization strategy to promote P2-type layered transition metal oxides with more(010)active planes as an efficien cathode for SIBs.As a result,as-prepared hexagonal-prism P2-type layered Na_(0.71)Ni_(0.16)Li_(0.09)Co_(0.16)Mn0.6O_(2)cathode with more(010)active planes delivers a reversible capacity of 120.1 mAh/g at 0.1 C,impressive rate capability of 52.7 m Ah/g at 10 C,and long-term cycling stability(capacity retention of 95.6%ove200 cycles).The outstanding electrochemical performance benefited from the unique hexagonal-prism with more(010)active facets,which can effectively shorten the diffusion distances of Na+,increase the Na-ion migration dynamics and nanostructural stability during cycling verified by morphology character ization,Rietveld refinement,GITT,density functional theory calculations and operando XRD. 展开更多
关键词 Layered cathodes Hexagonal-prism shape P2-type structure Sodiumion batteries Enhanced diffusion kinetics
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Surface engineering of P2-type cathode material targeting long-cycling and high-rate sodium-ion batteries 被引量:1
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作者 Jun Xiao Yang Xiao +11 位作者 Shijian Wang Zefu Huang Jiayi Li Cheng Gong Guilai Zhang Bing Sun Hong Gao Huiqiao Li Xin Guo Yong Wang Hao Liu Guoxiu Wang 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第10期444-452,I0009,共10页
The widespread interest in layered P2-type Mn-based cathode materials for sodium-ion batteries(SIBs)stems from their cost-effectiveness and abundant resources.However,the inferior cycle stability and mediocre rate per... The widespread interest in layered P2-type Mn-based cathode materials for sodium-ion batteries(SIBs)stems from their cost-effectiveness and abundant resources.However,the inferior cycle stability and mediocre rate performance impede their further development in practical applications.Herein,we devised a wet chemical precipitation method to deposit an amorphous aluminum phosphate(AlPO_(4),denoted as AP)protective layer onto the surface of P2-type Na_(0.55)Ni_(0.1)Co_(0.7)Mn_(0.8)O_(2)(NCM@AP).The resulting NCM@5AP electrode,with a 5 wt%coating,exhibits extended cycle life(capacity retention of78.4%after 200 cycles at 100 mA g^(-1))and superior rate performance(98 mA h g^(-1)at 500 mA g^(-1))compared to pristine NCM.Moreover,our investigation provides comprehensive insights into the phase stability and active Na^(+)ion kinetics in the NCM@5AP composite electrode,shedding light on the underlying mechanisms responsible for the enhanced performance observed in the coated electrode. 展开更多
关键词 Layered metal oxides Sodium-ion batteries P2-type structure Surface engineering
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Insights into the Ti^(4+) doping in P2-type Na_(0.67)Ni_(0.33)Mn_(0.52)Ti_(0.15)O_(2) for enhanced performance of sodium-ion batteries 被引量:1
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作者 Shi Tao Wei ZhouaDajun Wu +4 位作者 Zhicheng Wang Bin Qian Wangsheng Chu Augusto Marcelli Li Song 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2021年第15期230-236,共7页
Due to the sodium abundance and availability,sodium-ion batteries(SIBs)have the potential to meet the worldwide growing demand of electrical energy storage.P2-type sodium transition-metal layer oxides with a high ener... Due to the sodium abundance and availability,sodium-ion batteries(SIBs)have the potential to meet the worldwide growing demand of electrical energy storage.P2-type sodium transition-metal layer oxides with a high energy density are considered as the most promising cathode materials for SIBs.We present here a detailed study of the enhanced rate capability and cyclic stability of the Ti-doped Na_(0.67)Ni_(0.33)Mn_(0.67)O_(2)cathode material.The combined analysis of ex-situ X-ray absorption fine structure(XAFS)spectroscopy,aberration-corrected high resolution transmission electron microscopy(AB-HRTEM)and X-ray diffraction(XRD)show that the strong Ti–O bond in the transition metal layers stabilizes the local structure,destroy the Na+-vacancy ordering and arrest the irreversible multiphase transformation that occurs during the intercalation/deintercalation process.Actually,Na_(0.67)Ni_(0.33)Mn_(0.52)Ti_(0.15)O_(2)exhibits a reversible capacity of 89.6 mA h g^(-1)even at 5 C,an excellent cyclability with 88.78%capacity retention after 200 cycles at 0.5 C.This study provides a better understanding in optimization of the design of high-energy cathode materials based on titanium doped layered oxides for SIBs. 展开更多
关键词 P2-type layer oxides Ti doping X-ray absorption fine structure Phase transition Sodium-ion batteries
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Inhibiting Voltage Decay in Li-Rich Layered Oxide Cathode:From O3-Type to O2-Type Structural Design 被引量:1
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作者 Guohua Zhang Xiaohui Wen +2 位作者 Yuheng Gao Renyuan Zhang Yunhui Huang 《Nano-Micro Letters》 SCIE EI CAS CSCD 2024年第12期81-102,共22页
Li-rich layered oxide(LRLO)cathodes have been regarded as promising candidates for next-generation Li-ion batteries due to their exceptionally high energy density,which combines cationic and anionic redox activities.H... Li-rich layered oxide(LRLO)cathodes have been regarded as promising candidates for next-generation Li-ion batteries due to their exceptionally high energy density,which combines cationic and anionic redox activities.However,continuous voltage decay during cycling remains the primary obstacle for practical applications,which has yet to be fundamentally addressed.It is widely acknowledged that voltage decay originates from the irreversible migration of transition metal ions,which usually further exacerbates structural evolution and aggravates the irreversible oxygen redox reactions.Recently,constructing O2-type structure has been considered one of the most promising approaches for inhibiting voltage decay.In this review,the relationship between voltage decay and structural evolution is systematically elucidated.Strategies to suppress voltage decay are systematically summarized.Additionally,the design of O2-type structure and the corresponding mechanism of suppressing voltage decay are comprehensively discussed.Unfortunately,the reported O2-type LRLO cathodes still exhibit partially disordered structure with extended cycles.Herein,the factors that may cause the irreversible transition metal migrations in O2-type LRLO materials are also explored,while the perspectives and challenges for designing high-performance O2-type LRLO cathodes without voltage decay are proposed. 展开更多
关键词 Lithium-ion batteries Li-rich layered oxide Voltage decay Migration of transition metal ions O2-type structural design
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Designing a P2-type cathode material with Li in both Na and transition metal layers for Na-ion batteries 被引量:1
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作者 Jianxiang Gao Kai Sun +5 位作者 Hao Guo Zhengyao Li Jianlin Wang Xiaobai Ma Xuedong Bai Dongfeng Chen 《Chinese Physics B》 SCIE EI CAS CSCD 2022年第9期157-162,共6页
P2-type layered oxides have been considered as promising cathode materials for Na-ion batteries,but the capac-ity decay resulting from the Na+/vacancy ordering and phase transformation limits their future large-scale ... P2-type layered oxides have been considered as promising cathode materials for Na-ion batteries,but the capac-ity decay resulting from the Na+/vacancy ordering and phase transformation limits their future large-scale applica-tions.Herein,the impact of Li-doping in different layers on the structure and electrochemical performance of P2-type Na_(0.7)Ni_(0.35)Mn_(0.65)O_(2) is investigated.It can be found that Li ions successfully enter both the Na and transition metal layers.The strategy of Li-doping can improve the cycling stability and rate capability of P2-type layered oxides,which promotes the development of high-performance Na-ion batteries. 展开更多
关键词 Na_(0.7)Ni_(0.35)Mn_(0.65)O_(2) Li-doping P2-type cathode Na-ion batteries
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P2-type Na0.67Co0.35Ti0.20Mn0.44La0.01O2 cathode material with high-rate capability for sodium-ion batteries
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作者 Jiantao Tang Yanzhi Wang +3 位作者 Yanhong Li Jiabin Zhao Lijun Wang Xiduo Yang 《Journal of Rare Earths》 SCIE EI CAS CSCD 2019年第12期1296-1304,共9页
The substitution of elements has attracted great interest to enhance the electrochemical properties of sodium-ion batteries(SIBs).Herein,the P2-Na0.67Co0.35Ti0.20Mn0.45-xLaxO2 electrode samples were prepared via a sol... The substitution of elements has attracted great interest to enhance the electrochemical properties of sodium-ion batteries(SIBs).Herein,the P2-Na0.67Co0.35Ti0.20Mn0.45-xLaxO2 electrode samples were prepared via a solid-state route.The effect of La3+substitution was researched as high-rate SIBs cathode.The Na0.67Co0.35Ti0.20Mn0.44La0.01O2 exhibits a superior initial specific capacity of 162.7 and 125.9 mA h/g after50 cycles at 0.1 C rate,and the initial specific discharge capacity of 115.2 mA h/g with 60.6%capacity retention after 100 cycles at 1 C In addition,the Na0.67Co0.35Ti0.20Mn0.44La0.01O2 sample shows an excellent rate capacity of 91.9 and 60.4 mA·h/g with 46.9%and 50.9%capacity retentions even at 8 C and 10 C rate after100 cycles,respectively.The promising La-substituted P2-type Na0.67Co0.35Ti0.20Mn0.45-xLaxO2 material provides a new strategy for designing high-rate performance of SIBs. 展开更多
关键词 Na-ion batteries Cathode P2-type OXIDES La SUBSTITUTION High-performance
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Trace doping realizing superior electrochemical performance in P2-type Na_(0.50)Li_(0.08)Mn_(0.60)Co_(0.16)Ni_(0.16)0_(2)cathode for sodium-ion batteries
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作者 Hongying Hou Jinxu Qiu +9 位作者 Bao Li Liang Wang Zhuangzhuang Zhang Mengmin Jia Xiaobing Lai Mingming Han Pengyao Yan Dai-Huo Liu Dongmei Dai Bao Wang 《Chinese Chemical Letters》 SCIE CAS CSCD 2023年第12期387-391,共5页
P2-type layered oxides are receiving significant interest due to their superior structure and intrinsic performances.There are strenuous attempts to balance the structure stability,phase transition as well as desirabl... P2-type layered oxides are receiving significant interest due to their superior structure and intrinsic performances.There are strenuous attempts to balance the structure stability,phase transition as well as desirable electrochemical performances by inducing anion/cation ions,changing morphology,adjusting valence,etc.In this work,several same-period elements of Sc,Ti,V,Cr,Fe,Cu and Zn are doped into Na_(0.50)Li_(0.08)Mn_(0.60)Co_(0.16)Ni_(0.16)O_(2)cathodes,which are manipulated by ions radii and valence state,further studied by operando X-ray powder diffraction patterns(XRD).As a result,the Cu^(2+)doped cathode performed higher rate capacities(as high as 86 mAh/g even at 10 C)and more stable structures(capacity retention of~89.4%for 100 cycles),which owing to the synergistic effect among the tightened TMO_(2)layer,enlarged d-spacing,reduce O-O electrostatic repulsion,ameliorate lattice distortion as well as mitigate ordering of Na^(+)/vacancy. 展开更多
关键词 P2-type layeredoxide Same-period elements doping Rietveld refinement Operando XRD Sodium-ion battery
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Occurrence of anionic redox with absence of full oxidation to Ru^(5+) in high-energy P2-type layered oxide cathode
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作者 Jinho Ahn Hyunyoung Park +10 位作者 Wonseok Ko Yongseok Lee Jungmin Kang Seokjin Lee Sangyeop Lee Eunji Sim Kyuwook Ihm Jihyun Hong Jung-Keun Yoo Kyojin Ku Jongsoon Kim 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2023年第9期153-161,共9页
The anionic redox has been widely studied in layered-oxide-cathodes in attempts to achieve highenergy-density for Na-ion batteries(NIBs).It is known that an oxidation state of Mn^(4+) or Ru^(5+) is essential for the a... The anionic redox has been widely studied in layered-oxide-cathodes in attempts to achieve highenergy-density for Na-ion batteries(NIBs).It is known that an oxidation state of Mn^(4+) or Ru^(5+) is essential for the anionic reaction of O^(2-)/O~-to occur during Na^(+) de/intercalation.However,here,we report that the anionic redox can occur in Ru-based layered-oxide-cathodes before full oxidation of Ru^(4+)/Ru^(5+).Combining studies using first-principles calculation and experimental techniques reveals that further Na^(+) deintercalation from P2-Na_(0.33)[Mg_(0.33)Ru_(0.67)]O_(2) is based on anionic oxidation after 0.33 mol Na^(+) deintercalation from P2-Na_(0.67)[Mg_(0.33)Ru_(0.67)]O_(2) with cationic oxidation of Ru^(4+)/Ru^(4.5+).Especially,it is revealed that the only oxygen neighboring 2Mg/1 Ru can participate in the anionic redox during Na^(+) de/intercalation,which implies that the Na-O-Mg arrangement in the P2-Na_(0.33)[M9_(0.33)Ru_(0.67)]O_(2) structure can dramatically lower the thermodynamic stability of the anionic redox than that of cationic redox.Through the O anionic and Ru cationic reaction,P2-Na_(0.67)[Mg_(0.33)Ru_(0.67)]O_(2) exhibits not only a large specific capacity of~172 mA h g^(-1) but also excellent power-capability via facile Na^(+) diffusion and reversible structural change during charge/discharge.These findings suggest a novel strategy that can increase the activity of anionic redox by modulating the local environment around oxygen to develop high-energy-density cathode materials for NIBs. 展开更多
关键词 Na-ion batteries P2-type cathode Anionic redox Local environment First-principles calculation
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THE VALUE OF M_2-TYPE PYRUVATE KINASE IMMUNOASSAY IN THE DIAGNOSIS OF HEPATOCARCINOMA
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作者 刘金波 陈惠黎 《Chinese Journal of Cancer Research》 SCIE CAS CSCD 1991年第1期61-64,共4页
By using Fab'-enzyme labelled immuno absorbent assay (ELISA) with sensitivity of picogram (10-12 g or pg) level, the M-type pyruvate kinase (M-PyK) in plasma was determined in 47 cases of normal healthy adult and ... By using Fab'-enzyme labelled immuno absorbent assay (ELISA) with sensitivity of picogram (10-12 g or pg) level, the M-type pyruvate kinase (M-PyK) in plasma was determined in 47 cases of normal healthy adult and 26 cases of hepatocellular carcinoma (HCC) patient. It was found that the upper limits of normal male and female were 1.1 and 1.4 ng/ml (expressed as M2-PyK) respectively. The plasma M-PyK in HCC patients was significant increased to above 5 times of average normal level, the positive rate was about 95%. In 6 cases of subclinical small hepatocarcinoma and 7 cases of HCC patient with normal serum alpha-fetal protein level, the mean plasma M-PyK value was also increased. Whereas the plasma M-PyK level in acute or chronic hepatitis and other benign diseases were normal. After the HCC being resected, the plasma M-PyK returned to normal, but increased again in the cases of recurrent hepatocarcinoma, suggesting that the increased M-PyK in the plasma of HCC patient was criginated from M2-type PyK in HCC tissue. Therefore, plasma M-PyK may become a new micro-level index of hepatocarcinoma. 展开更多
关键词 HCC THE VALUE OF M2-type PYRUVATE KINASE IMMUNOASSAY IN THE DIAGNOSIS OF HEPATOCARCINOMA AFP
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A^(I)_(2)Mg_(3)Ga_(12)S_(22)(A^(I)=K,Rb):T2-type supertetrahedra coupled with[MgS_(6)]octahedra for designing wide-band gap infrared nonlinear optical materials with well-balanced properties 被引量:1
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作者 Mengmeng Chen Xu Liu +5 位作者 Abudukadi Tudi Chen Cui Qixian Ren Zhihua Yang Yabo Wu Shilie Pan 《Science China Materials》 2025年第4期1030-1037,共8页
The simultaneous achievement of wide band gap and strong nonlinear optical(NLO)effect poses a challenging task in the development of infrared(IR)NLO materials.The coupling strategy of polyhedral building blocks has be... The simultaneous achievement of wide band gap and strong nonlinear optical(NLO)effect poses a challenging task in the development of infrared(IR)NLO materials.The coupling strategy of polyhedral building blocks has been demonstrated to be one of the effective approaches for constructing superior optical materials with well-balanced performance.Here,a new family of IR NLO materials A^(I)_(2)Mg_(3)Ga_(12)S_(22)(AI=K,Rb)that first contain[MgS_(6)]octahedra and T2-type supertetrahedra was designed and synthesized.K_(2)Mg_(3)Ga_(12)S_(22) exhibits a wide band gap of 3.34 eV,and a moderate second-harmonic generation response intensity of 0.4 times that of AgGaS2 under 2µm Q-switched laser radiation.Furthermore,the birefringence of K_(2)Mg_(3)Ga_(12)S_(22) is calculated to be 0.028@1064 nm,resulting in favorable phase-matching behavior in IR region.These characteristics suggest that K_(2)Mg_(3)Ga_(12)S_(22) could be a promising material for nonlinear frequency conversion applications and it provides new ideas into the design of novel compounds with outstanding IR NLO performances. 展开更多
关键词 wide band gap T2-type supertetrahedra nonlinear optical materials
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基于时滞补偿的DK-2机车制动滑模自抗扰控制
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作者 肖友刚 胡紫欣 +1 位作者 李蔚 袁玄成 《铁道科学与工程学报》 北大核心 2026年第1期275-288,共14页
为解决机车空气制动系统时滞与扰动导致制动控制性能下降的问题,以DK-2型机车制动机为研究对象,在分析制动机压力控制原理的基础上,设计一种带时滞与扰动补偿的滑模自抗扰复合控制器(sliding mode active disturbance rejection control... 为解决机车空气制动系统时滞与扰动导致制动控制性能下降的问题,以DK-2型机车制动机为研究对象,在分析制动机压力控制原理的基础上,设计一种带时滞与扰动补偿的滑模自抗扰复合控制器(sliding mode active disturbance rejection controller with time-delay and disturbance compensation,SMADRCWC)。首先,采用AMESim软件建立其气动系统数值仿真模型,探明时滞对DK-2型制动机的影响程度。在此基础上,设计时滞因子能自适应调整的输出预估跟踪微分器(adaptive output predictive tracking differentiator,AOPTD),在系统动态变化阶段增大以充分补偿时滞,在稳态时减小以避免超调;为了补偿气路泄漏、模型不确定性及外部干扰等总扰动,设计扩张状态观测器(extended state observer,ESO)对其进行实时估计并补偿,将AOPTD、ESO与滑模控制(sliding mode control,SMC)相结合,综合形成具有时滞补偿和扰动抑制功能的闭环控制器SMADRCWC。仿真结果表明:SMADRCWC能够有效提升列车管和制动缸的压力跟踪精度,同时减少电磁阀的频繁动作,提高系统运行的稳定性;在1000 ms时滞工况下,相比PID和滑模控制,该策略能够显著缩短压力调节时间,并有效补偿因时滞导致的动态误差,避免了超调现象的发生;在100~1000 ms时滞范围及复合扰动作用下,SMADRCWC控制下的DK-2型制动机运行平稳无超调,且压力控制误差在±5 kPa范围内,体现出了很强的鲁棒性。所设计的SMADRCWC控制器为不确定时滞和复杂扰动环境的机车空气制动系统控制提供了一种新的解决方法。 展开更多
关键词 DK-2制动机 时滞补偿 输出预估跟踪微分器 扩张状态观测器 滑模自抗扰控制
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2型糖尿病患者血浆外泌体微小RNA筛选及验证的研究
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作者 刘晓田 常高华 +7 位作者 何亚玲 任孝颖 江玉洁 蒋喜丽 侯建 李玉倩 张振中 王重建 《中国糖尿病杂志》 北大核心 2026年第1期2-7,共6页
目的筛选并验证T2DM患者相关血浆外泌体微小RNA(miRNA),评价差异miRNA对T2DM的预测能力。方法选取“河南农村队列”2020年驻马店现场随访的T2DM患者52例及同期非DM者52例,采用三阶段1:1匹配为发现集T2DM(DT2DM,n=5)组、发现集对照(DCon,... 目的筛选并验证T2DM患者相关血浆外泌体微小RNA(miRNA),评价差异miRNA对T2DM的预测能力。方法选取“河南农村队列”2020年驻马店现场随访的T2DM患者52例及同期非DM者52例,采用三阶段1:1匹配为发现集T2DM(DT2DM,n=5)组、发现集对照(DCon,n=5)组、验证集T2DM(VT2DM,n=15)组、验证集对照(VCon,n=15)组、靶向验证集T2DM(TT2DM,n=32)组和靶向验证集对照(TCon,n=32)组。采用外泌体miRNA测序技术对血浆外泌体miRNA进行测序,qRT-PCR检测关键差异miRNA水平,Spearman相关分析miRNA与FPG、FIns的相关性,Logistic回归分析miRNA对T2DM的影响,受试者工作特征(ROC)曲线评价关键miRNA对T2DM的预测价值。结果DT2DM组心率、FPG、外泌体浓度高于DCon组(P<0.05)。VT2DM组TG、FPG、FIns、腹型肥胖比例高于VCon组(P<0.05)。TT2DM组WC、TG、FPG、高血压病比例高于TCon组(P<0.05)。两阶段测序结果显示,DT2DM、VT2DM组外泌体关键miRNA miR-3120-5p表达水平均高于DCon、VCon组。Spearman相关分析显示,校正混杂因素后,miR-3120-5p与FPG呈正相关(r=0.311,P=0.016)。Logistic回归分析显示,校正混杂因素后,外泌体miR-3120-5p表达水平是T2DM的影响因素(OR 1.566,95%CI 1.177~2.057)。ROC曲线分析显示,外泌体miR-3120-5p诊断T2DM的曲线下面积为0.75,敏感度为81%,特异度为66%,截断值为7.28。结论miR-3120-5p在T2DM患者血浆外泌体中高表达,并对其具有良好的预测价值,但需在大样本多中心队列人群中进一步验证。 展开更多
关键词 糖尿病 2 外泌体 微小RNA 血浆 病例对照研究
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糖化血红蛋白、骨代谢对2型糖尿病患者微血管并发症交互作用影响的研究
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作者 周美萍 赵小芹 +1 位作者 张俊 黄云 《中国糖尿病杂志》 北大核心 2026年第1期42-46,共5页
目的探讨HbA_(1)c、骨代谢在T2DM患者微血管并发症(MIC)中的交互作用。方法选取2023年10月至2024年12月我院收治的T2DM患者178例,根据是否发生MIC分为MIC组(n=51)和单纯T2DM组(n=127),比较两组一般资料、生化指标、骨代谢指标。Logisti... 目的探讨HbA_(1)c、骨代谢在T2DM患者微血管并发症(MIC)中的交互作用。方法选取2023年10月至2024年12月我院收治的T2DM患者178例,根据是否发生MIC分为MIC组(n=51)和单纯T2DM组(n=127),比较两组一般资料、生化指标、骨代谢指标。Logistic回归分析T2DM患者发生MIC的影响因素及交互作用。结果MIC组年龄、DM病程、BMI、WHR、HbA_(1)c、β胶原特殊序列(β-CTX)、甲状旁腺激素(PTH)高于T2DM组(P<0.05),25羟维生素D[25(OH)D]低于T2DM组(P<0.05)。Logistic回归分析显示,校正DM病程、WHR后,HbA_(1)c、β-CTX、PTH、25(OH)D均是T2DM患者发生MIC的影响因素,HbA_(1)c与25(OH)D、PTH之间存在相乘及相加交互作用(P<0.05),HbA_(1)c升高与25(OH)D降低及HbA_(1)c与PTH同时升高时,T2DM患者发生MIC风险增加(P<0.05)。结论HbA_(1)c、骨代谢指标与T2DM患者发生MIC密切相关,HbA_(1)c与25(OH)D、PTH可交互影响T2DM患者MIC发生风险。 展开更多
关键词 糖化血红蛋白 骨代谢 糖尿病 2 微血管并发症 交互作用
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2型糖尿病患者血清胆红素与骨质疏松的相关性研究
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作者 原晶 贾璞 刘薇 《首都医科大学学报》 北大核心 2026年第1期168-179,共12页
目的分析2型糖尿病(type 2 diabetes mellitus,T2DM)患者血清胆红素浓度与骨密度(bone mineral density,BMD)及骨质疏松(osteoporosis,OP)的关系。方法回顾性分析1514例于首都医科大学附属北京同仁医院住院T2DM患者,年龄50~94岁,平均年... 目的分析2型糖尿病(type 2 diabetes mellitus,T2DM)患者血清胆红素浓度与骨密度(bone mineral density,BMD)及骨质疏松(osteoporosis,OP)的关系。方法回顾性分析1514例于首都医科大学附属北京同仁医院住院T2DM患者,年龄50~94岁,平均年龄(63.49±8.11)岁,检测血清总胆红素(total bilirubin,TBIL)及直接胆红素(direct bilirubin,DBIL)浓度,根据四分位数分为Q1~Q44组。应用双能X线吸收检测法测定BMD。腰椎、全髋、股骨颈任意部位BMD的T值≤-2.5为OP。采用多因素Logistic回归和线性回归模型分析T2DM患者血清TBIL及DBIL与OP及BMD的关系。结果OP与非OP组血清TBIL及DBIL浓度差异有统计学意义。经过多因素校正后,TBIL-Q4组比Q1组OP患病率显著增高(OR=1.952,95%CI:1.041~3.659,P=0.037),腰椎BMD显著降低(β=-0.038,95%CI:-0.072~-0.004,P=0.027);与DBIL-Q1组相比,DBIL-Q2组及Q3组在股骨颈及髋部的BMD均显著降低(P<0.05)。亚组分析显示,TBIL及DBIL对OP的影响在年龄≤65岁及糖化血红蛋白(glycosylated hemoglobin,HbA1c)≤7.0%组更为显著;女性患者的TBIL浓度与腰椎BMD呈负相关(β=-0.019,95%CI:-0.034~-0.005,P=0.009)。结论胆红素浓度升高与OP患病率增加及BMD下降有关,尤其在年龄≤65岁及HbA1c≤7.0%亚组更为显著。 展开更多
关键词 2型糖尿病 总胆红素 直接胆红素 骨密度 骨质疏松 骨代谢
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中青年2型糖尿病病人并发症风险感知的潜在剖面及其影响因素
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作者 陈刚 王禹涵 +3 位作者 李腾 翟优优 郑鑫 王宇鹰 《护理研究》 北大核心 2026年第6期935-942,共8页
目的:探究中青年2型糖尿病病人并发症风险感知的潜在类别及其影响因素。方法:采用便利抽样法,选取2024年2月—8月在河南省2所三级甲等医院就诊的364例中青年2型糖尿病病人为研究对象。采用一般资料调查表、中文版糖尿病并发症风险感知量... 目的:探究中青年2型糖尿病病人并发症风险感知的潜在类别及其影响因素。方法:采用便利抽样法,选取2024年2月—8月在河南省2所三级甲等医院就诊的364例中青年2型糖尿病病人为研究对象。采用一般资料调查表、中文版糖尿病并发症风险感知量表(RPS⁃DM)、糖尿病健康素养量表(HLS)、家庭关怀指数问卷(APGAR)、领悟社会支持量表(PSSS)进行调查,对中青年2型糖尿病病人并发症风险感知进行潜在剖面分析,采用Logistic回归分析探讨病人并发症风险感知潜在类别的影响因素。结果:中青年2型糖尿病病人并发症风险感知可分为低风险感知⁃高乐观偏差型(40%)、中风险感知⁃低个人控制型(44%)、高风险感知⁃综合型(16%)3个类别。Logistic回归分析结果显示,居住地、家庭人均月收入、糖尿病家族史、糖尿病病程、体质指数、糖尿病健康素养、家庭关怀度、领悟社会支持是中青年2型糖尿病病人并发症风险感知潜在类别的影响因素(P<0.05)。结论:中青年2型糖尿病病人并发症风险感知特征存在群体异质性,医护人员可根据不同类别病人的特征采取针对性的干预措施,以提高病人并发症风险感知水平。 展开更多
关键词 中青年 2型糖尿病 并发症 风险感知 潜在剖面分析 影响因素
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