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25篇 您的检索式:作者名="Lu Xianjun"
    题名 作者 年代 出处 被引量
1High valence metals engineering strategies of Fe/Co/Ni-based catalysts for boosted OER electrocatalysis显示文摘Electrocatalysis for the oxygen evolution reactions(OER)has attracted much attention due to its important role in water splitting and rechargeable metal-air batteries.Therefore,designing highly efficient and low-cost catalysts for OER process is essential as the conventional catalysts still rely on precious metals.Transition metal-based compounds have been widely investigated as active OER catalysts,and renewed interest in the high valence metals engineered compounds has been achieved for superior catalytic activity and stability.However,an in-depth understanding of the construction strategies and induced effects for the high valence metals engineered catalysts is still lacking and desired.In this review,we have summarized the construction strategies of high valence metals as dopants or formed heterostructures with the iron/cobalt/nickel(Fe/Co/Ni)-based catalysts.Then the induced effects on Fe/Co/Ni-based catalysts by incorporating high valence metals,e.g.,accelerating the surface reconstruction,forming amorphous structure,generating vacancies/defects,and acting as stabilizers,are highlighted.The impacts of high valence metals on OER performance are elucidated based on different elements,including molybdenum(Mo),tungsten(W),cerium(Ce),vanadium(V),chromium(Cr),manganese(Mn),niobium(Nb),zirconium(Zr).The correlations of construction strategies,induced effects,catalytic activity and OER reaction pathways are elaborated.Finally,the remaining challenges for further enhancements of OER performance induced by high valence metals are presented.Lu Li Xianjun Cao Juanjuan Huo Junpeng Qu Weihua Chen Chuntai Liu Yufei Zhao Hao Liu Guoxiu Wang 2023Journal of Energy Chemistry2023,,1:3
2Two-way coupled analysis of lithium diffusion and diffusion induced finite elastoplastic bending of bilayer electrodes in lithium-ion batteries显示文摘A fully coupling model for the diffusion induced finite elastoplastic bending of bilayer electrodes in lithium-ion batteries is proposed. The effect of the mechanical stress on the lithium diffusion is accounted for by the mechanical part of the chemical potential derived from the Gibbs free energy along with the logarithmic stress and strain. Eight dimensionless parameters, governing the stress-assisted diffusion and the diffusion induced elastoplastic bending, are identified. It is found that the finite plasticity starting from the interface of the bilayer increases the chemical potential gradient and thereby facilitates the lithium diffusion. The full plastic flow makes the abnormal lithium concentration distribution possible, i.e., the concentration at the lithium inlet can be lower than the concentration at the interface(downstream). The increase in the thickness of the active layer during charging is much larger than the eigen-stretch due to lithiation, and this excess thickening is found to be caused by the lithiation induced plastic yield.Jun YIN Xianjun SHAO Bo LU Yicheng SONG Junqian ZHANG 2018Applied Mathematics and Mechanics(English Edition)2018,39,11:2
3The association of interleukin-16 gene polymorphisms with IL-16 serum levels and risk of nasopharyngeal carcinoma in a Chinese population显示文摘Xue Qin Qiliu Peng Xiaoxia Lao Zhiping Chen Yu Lu Xianjun Lao Cuiju Mo Jingzhe Sui Junrong Wu Limin Zhai Shi Yang Shan Li Jinmin Zhao 2014Tumor Biology2014,,3:2
4Early diagnosis of novel SFTS bunyavirus infection by quantitative real-time RT-PCR assay显示文摘Yulan Sun Mifang Liang Jing Qu Cong Jin QuanFu Zhang Jiandong Li Xiaolin Jiang Qin Wang Jing Lu Wen Gu Shuo Zhang Chuan Li XianJun Wang Faxian Zhan Wenqing Yao Zhenqiang Bi Shiwen Wang Dexin Li 2011Journal of Clinical Virology2011,,1:1
5Electrochemical Carbon Dioxide Reduction to Ethylene:From Mechanistic Understanding to Catalyst Surface Engineering显示文摘Electrochemical carbon dioxide reduction reaction(CO_(2)RR)provides a promising way to convert CO_(2)to chemicals.The multicarbon(C_(2+))products,especially ethylene,are of great interest due to their versatile industrial applications.However,selectively reducing CO_(2)to ethylene is still challenging as the additional energy required for the C–C coupling step results in large overpotential and many competing products.Nonetheless,mechanistic understanding of the key steps and preferred reaction pathways/conditions,as well as rational design of novel catalysts for ethylene production have been regarded as promising approaches to achieving the highly efficient and selective CO_(2)RR.In this review,we first illustrate the key steps for CO_(2)RR to ethylene(e.g.,CO_(2)adsorption/activation,formation of~*CO intermediate,C–C coupling step),offering mechanistic understanding of CO_(2)RR conversion to ethylene.Then the alternative reaction pathways and conditions for the formation of ethylene and competitive products(C_1 and other C_(2+)products)are investigated,guiding the further design and development of preferred conditions for ethylene generation.Engineering strategies of Cu-based catalysts for CO_(2)RR-ethylene are further summarized,and the correlations of reaction mechanism/pathways,engineering strategies and selectivity are elaborated.Finally,major challenges and perspectives in the research area of CO_(2)RR are proposed for future development and practical applications.Junpeng Qu Xianjun Cao Li Gao Jiayi Li Lu Li Yuhan Xie Yufei Zhao Jinqiang Zhang Minghong Wu Hao Liu 2023Nano-Micro Letters2023,15,10:1
6Study on the alteration ofchemical composition and structure parameters of modified montmorill-onite 显示文摘LU Xianjun CUI Xueqi SONG Meining 2003Minerals Engineering2003,,16:1
7STAG-CNS: An Order-Aware Conserved Noncoding Sequences Discovery Tool for Arbitrary Numbers of Species显示文摘为识别 noncoding 的一个方法一个染色体的规章的区域是确定在相关种类之间的分叉评价,,功能的顺序将通常更慢慢地分叉。基于排列识别这些保存 noncoding 序列(CNS ) 的大多数途径与已知的抄写因素绑定地点的平均长度相比有相对大的最小的顺序长度(15 bp ) 。围绕这限制,能同时集成的 STAG-CNS ? 从在三的保存 orthologous 基因或更多的种类的倡导者的数据被开发。从多达六草种使用数据使识别与假发现率 0.05 象 9 bp ?一样短的保存序列可能。这些 CNS 展出更大的重叠,开的染色质区域用 DNase 识别了我超敏性试金,并且在涉及 transcriptional 的基因的倡导者被充实规定。STAG-CNS 进一步被采用描绘从古老的玉米 polyploidy 与保留的副本基因联系的保存 noncoding 序列的损失。尽管这偏爱在包含许多房间类型的复杂机关系统的样品是更明显的,有更少保留的 CNS 的基因显示出更低的全面表示,建议 CNS 损失可以对应于越过全部祖先的表达式域的表达式上下文而非更低的表达式层次的一个减少的数字。Xianjun Lai Sairam Behera Zhikai Liang Yanli Lu Jitender S. Deogun James C. Schnable 2017Molecular Plant2017,10,7:1
8Genetic analysis and gene fine mapping of aroma in rice显示文摘Sun Shuxia Gao Fangyuan Lu Xianjun 2008Molecular Genetics and Genomics2008,31,2:1
9Zircon U-Pb geochronology of the Chinese continental crust: a preliminary analysis of the Elsevier science database显示文摘The amount of zircon U-Pb geochronological data for China has grown rapidly in recent years.Nearly 410,000 items of zircon U-Pb geochronological data,representing more than 7,000 relevant articles in the Elsevier Science Database,have been collected to a database in this research.Statistics on the ages and absolute errors of these collated data,yielded smallest standard errors for(206Pb/238U),(207Pb/235U),and(207Pb/206Pb)ages within respective time intervals of<1388.96 Ma,1388.96–3282.52 Ma,and>3282.52 Ma.The ages and their absolute errors were determined using three main geochronology methods,based on laser ablation inductively coupled mass spectrometer(LA-ICP-MS),sensitive high-resolution ion microprobe(SHRIMP),and secondary ion mass spectrometer(SIMS)measurements.We compared the influence of these different methods on errors for each age interval.In addition,using a Gaussian model of multi-peak fitting of zircon U-Pb age frequencies,we identified seven growth peaks in zircons from the Chinese continental crust,which are 48.60 Ma,131.49 Ma,249.91 Ma,444.27 Ma,835.95 Ma,1860.65 Ma,and 2505.54 Ma.It is clear that there are correspondences between these ages and various geological events,namely,the Wutai movement,Lvliang movement,Jinning movement,Caledonian movement,Indo-China movement,Yanshan movement,and Himalayaorogeny movement,respectively.The time and spatial distributions of these zircons correspond to distinct geological events on the Chinese continent,reflecting its crustal evolution.Yujing Wu Xianjun Fang Sisi Liao Lizhi Xue Zhe Chen Jiangnan Yang Yamin Lu Kun Ling Shengyi Hu Shuyuan Kong Yiwei Xiong Huacheng Li Xiuqi Shang Rui Ji Xueyun Lu Biao Song Lei Zhang Jianqing Ji 2019Big Earth Data2019,3,1:1
10Highly efficient and selective enrichment of puerarin from Radix Puerariae by molecularly imprinted solid-phase extraction显示文摘Chen Lina Jia Xianjun Lu Qing 2010Separation and Purification Technology2010,71,3:1
11Effect of preparation parameters on the structure and property of montmorillonite/alkylammounium complexes 显示文摘LU Xianjun QIU Jun LIU Yuqin 2011Adv Mater Res2011,158,:1
12Flotation selectivity and upgrading of Woxna fine graphite concentrate 显示文摘Lu Xianjun Eric Forssberg 2001Minerals Engineering2001,14,11:1
13A simple and rapid procedure for identification of seed coat colour at the early developmental stage of Brassica juncea and Brassica napus seeds 显示文摘Lu Ying Liu Xianjun Liu Shuyan 2012Plant Breeding2012,131,1:1
14Study on the alteration of chemical composition and structure parameters of modified montmorillonite显示文摘Xianjun Lu Xueqi Cui Meining Song 2003Minerals Engineering2003,,16:1
15Preparation of High purity and Low-sulphurGraphite from Woxna Fine Graphite Concentrate by Alkali Roasting显示文摘Lu Xianjun Forssberg E 2002Materials Engineering2002,15,10:1
16The Extremely Low Frequency Engineering Project for Underground Exploration显示文摘1.Introduction Super-low-frequency(SLF)(30-300 Hz)electromagnetic technology was first used in military to submarine deep water communications.In the 1950s,to strengthen the concealment and survivability of strategic missile nuclear submarines,both the United States and the Soviet Union began to study SLF communications,with the aim of achieving communications between land command centers and submarines at depths of below 100 m and distances of thousands of kilometers.Jianxun Lu Xianjun Zhuo Yong Liu Guoze Zhao Qingyun Di 2022Engineering2022,8,3:0
17The m^(6)A reader YTHDC2 maintains visual function and retinal photoreceptor survival through modulating translation of PPEF2 and PDE6B显示文摘Inherited retinal dystrophies (IRDs) are major causes of visual impairment and irreversible blindness worldwide, while the precise molecular and genetic mechanisms are still elusive. N6-methyladenosine (m^(6)A) modification is the most prevalent internal modification in eukaryotic mRNA. YTH domain containing 2 (YTHDC2), an m^(6)A reader protein, has recently been identified as a key player in germline development and human cancer. However, its contribution to retinal function remains unknown. Here, we explore the role of YTHDC2 in the visual function of retinal rod photoreceptors by generating rod-specific Ythdc2 knockout mice. Results show that Ythdc2 deficiency in rods causes diminished scotopic ERG responses and progressive retinal degeneration. Multi-omics analysis further identifies Ppef2 and Pde6b as the potential targets of YTHDC2 in the retina. Specifically, via its YTH domain, YTHDC2 recognizes and binds m^(6)A-modified Ppef2 mRNA at the coding sequence and Pde6b mRNA at the 5′-UTR, resulting in enhanced translation efficiency without affecting mRNA levels. Compromised translation efficiency of Ppef2 and Pde6b after YTHDC2 depletion ultimately leads to decreased protein levels in the retina, impaired retinal function, and progressive rod death. Collectively, our finding highlights the importance of YTHDC2 in visual function and photoreceptor survival, which provides an unreported elucidation of IRD pathogenesis via epitranscriptomics.Yeming Yang Xiaoyan Jiang Junyao Chen Lu Liu Guo Liu Kuanxiang Sun Wenjing Liu Xianjun Zhu Qiuyue Guan 2024Journal of Genetics and Genomics2024,51,2:0
18Regulation of different light conditions for efficient biomass production and protein accumulation of Spirulina platensis显示文摘Light plays an important role in the photosynthesis and metabolic process of microalgae.However,how different light conditions regulate the biomass production and protein accumulation of microalgae is mostly unknown.In this study,the influence of different light conditions,including light colors,densities,and light:dark cycles on the cell growth and biochemical composition of Spirulina platensis was symmetrically characterized.Under different colored lights,S.platensis all shows an increase trend within the increased light intensity ranges;however,each showing different optimal light intensities.At the same light intensity,different colored lights show different growth rate of S.platensis following the sequence of red>white>green>yellow>blue.The maximum growth rate and protein accumulation were determined as 21.88 and 5.10 mg/(L·d)when illuminated under red LED.The energy efficiency of different light sources was calculated and ranked as red>white>blue≈green>yellow.Transcriptomic analysis suggests that red light can promote cell growth and protein accumulation by upregulating genes related to photosynthesis,carbon fixation,and C-N metabolism pathways.This study provides a conducive and efficient way to promote biomass production and protein accumulation of S.platensis by regulating light conditions.Yufei ZHANG Xianjun LI Yuhui LI Shiqi LIU Yanrui CHEN Miao JIA Xin WANG Lu ZHANG Qiping GAO Liang ZHANG Daoyong YU Baosheng GE 2024Journal of Oceanology and Limnology2024,42,1:0
19Influence of cerium and yttrium addition on strength and electrical conductivity of pure aluminum alloys显示文摘To develop pure aluminum alloys with high conductivity and strength, Al-0.2Ce and Al-0.2Ce-0.1Y alloys were prepared by rolling and annealing processes in this study. The effects of trace rare earth elements on the strength and electrical conductivity of the pure aluminum alloys were investigated. It is revealed that the addition of Ce and Y to pure aluminum can effectively enhance the strength and electrical conductivity of the alloys. In Al-0.2Ce, the addition of Ce can effectively refine the grain size of a-Al, with an average grain size of 90.68 μm in the as-cast state. The grain size of the alloy is further reduced to 87.55 μm by the simultaneous addition of Y. The synergistic addition of Ce and Y changes the properties of the alloy. The addition of Ce and Y also produces the Al_(11)Ce_(3) and Al_(3)Y second phases, which have coherent relationship with a-Al. The two-dimensional mismatch degree was calculated to be only 4.43%and 0.85%, respectively, which can provide a certain amount of nucleation substrate for a-Al in the incubation stage. The interfacial match between the L1_(2)structure of Al_(3)Y and a-Al was calculated using first-principles simulations. The results indicate that Al_(3)Y has a strong bonding effect with a-Al. Nanoscale second phases at grain boundaries can be effective in reducing resistivity due to dislocation motion.Nanoscale second phases with better matching interfaces to the substrate have no positive effect on the scattering motion of electrons.Guojian Lin Lu Li Zhengwei Guo Xianjun Jia Xiao Wang Zhentao Yuan Guoxing Zhang Yun Zhan Quan Shan Zulai Li 2024Journal of Rare Earths2024,42,3:0
20Cryo-EM structure of constitutively active human Frizzled 7 in complex with heterotrimeric G_(s)显示文摘Dear Editor,The ten mammalian Frizzleds(FZD1–10)belong to the class F of G protein-coupled receptors(GPCRs)and mediate WNT signaling through interaction with transducer proteins including Dishevelled(DVL)or heterotrimeric G proteins.1 Their involvement in human disease has put FZDs at the forefront of drug targets,especially anti-cancer therapy.Lu Xu Bo Chen Hannes Schihada Shane C.Wright Ainoleena Turku Yiran Wu Gye-Won Han Maria Kowalski-Jahn Pawel Kozielewicz Carl-Fredrik Bowin Xianjun Zhang Chao Li Michel Bouvier Gunnar Schulte Fei Xu 2021Cell Research2021,31,12:0
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