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| 1 | Facile synthesis of yolk-shell Ni@void@SnO2(Ni3Sn2) ternary composites via galvanic replacement/Kirkendall effect and their enhanced microwave absorption properties显示文摘蛋黄壳第三的 composites 一个 Ni 范围核心和 SnO 2(Ni3 Sn 2) 壳被一个灵巧的二拍子的圆舞方法成功地准备。产生 composites 的尺寸,形态学,微观结构,和阶段纯净被扫描电子显微镜学描绘,精力散 X 光检查光谱学,传播电子显微镜学(TEM ) ,高分辨率的 TEM,精选区域的电子衍射,和粉末 X 光检查衍射。蛋黄壳结构的核心尺寸,空隙的空体积,和成分由改变反应时间变化了。机制为蛋黄壳结构的形成基于时间依赖者实验被建议。蛋黄壳结构被蚀刻的反应,流电的代替反应,和 Kirkendall 效果的 synergistic 联合形成。蛋黄壳第三的 SnO 2(Ni 3 Sn 2)@Ni composites 在 15 h 的一反应时间综合了显示出的优秀微波吸收性质。思考损失被发现作为在 6.1 GHz 的低 as-43 dB。提高的微波吸收性质可以被归因于好阻抗火柴,多重思考,由于在核心和壳之间的虚空散布,并且在电介质之间的有效补充损失和磁性的损失。因此,蛋黄壳第三的 composites 被期望为微波吸收应用,锂离子电池,和光催化正在答应候选人。 | Biao Zhao Xiaoqin Guo Wanyu Zhao Jiushuai Deng Bingbing Fan Gang Shao Zhongyi Bai Rui Zhang | 2017 | Nano Research2017,10,1: | 14 |
| 2 | Theory assisted design of N-doped tin oxides for enhanced electrochemical CO2 activation and reduction显示文摘Clearly understanding the structure-function relationship and rational design of efficient CO2 electrocatalysts are still the challenges.This article describes the molecular origin of high selectivity of formic acid on N-doped SnO2 nanoparticles,which obtained via thermal treatment of g-C3N4 and SnCl2·2H2O precursor.Combined with density functional theory(DFT)calculations,we discover that N-doping effectively introduces oxygen vacancies and increases the charge density of Sn sites,which plays a positive role in CO2 activation.In addition,N-doping further regulates the adsorption energy of^*OCHO,^*COOH,^*H and promotes HCOOH generation.Benefited from above modulation,the obtained N-doped SnO2 catalysts with oxygen vacancies(Ov-N-SnO2)exhibit faradaic efficiency of 93% for C1 formation,88% for HCOOH production and well-suppression of H2 evolution over a wide range of potentials. | Congling Hu Lei Zhang Lulu Li Wenjin Zhu Wanyu Deng Hao Dong Zhi-Jian Zhao Jinlong Gong | 2019 | Science China Chemistry2019,62,8: | 2 |
| 3 | Low-expression of microRNA-107 inhibits cell apoptosis in glioma by upregulation of SALL4显示文摘 | Jie He Wanyu Zhang Qiangqiang Zhou Tianshu Zhao Yuwen Song Li Chai Yu Li | 2013 | International Journal of Biochemistry and Cell Biology2013,,: | 1 |
| 4 | Microwave synthesis of chain-like zircona nanofibers through carbon-induced self-assembly growth显示文摘 | Wanyu ZHAO Jian LI Bingbing FAN Gang SHAO Hailong WANG Bozhen SONG Shengnan WEI Rui ZHANG | 2017 | Frontiers of Materials Science2017,11,4: | 1 |
| 5 | Rational design of robust nano-Si/graphite nanocomposites anodes with strong interfacial adhesion for high-performance lithium-ion batteries显示文摘The nano-Si/graphite nanocomposites are the promising anodes candidates for high-energy lithium-ion batteries because of their high theoretical capacities and low volume variations.However,the nano-Si has a severe tendency to separate from the graphite substrate due to the inherently weak bonding between them,thus leading to the deteriorated cycling performance and low Coulombic efficiency.Herein,we design a robust nano-Si/graphite nanocomposite structure with strong interfacial adhesion caused by the Si—Ti and Ti—C covalent bonds.The abundant Si—Ti and Ti—C bonds formed between nano-Si and graphite greatly enhance the interfacial adhesion force,resulting in the highly stabilized and integrated electrode structure during battery cycling.Consequently,the as-obtained nano-Si/graphite anodes deliver a high capacity retention of 90.0% after 420 cycles at 0.5 C with an average Coulombic efficiency of 99.5%;moreover,a high initial Coulombic efficiency of 90.2% is achieved.Significantly,this work provides a novel strategy to address the poor interfacial adhesion between nano-Si and graphite,which can be applied to other nano-Si based composites anodes. | Yuantao Yan Xiaoli Zhao Huanglin Dou Jingjiang Wei Wanyu Zhao Zhihua Sun Xiaowei Yang | 2021 | Chinese Chemical Letters2021,32,2: | 1 |
| 6 | Processing micrometer-sized particles in crumpled graphene network for freestanding membrane enabled by freeze casting显示文摘Graphene oxide(GO)is widely used in the construction and application of various 2 D membrane-based materials due to its unique colloidal structure.Herein,we demonstrate that micrometer-sized particles can make up freestanding membranes enabled by the extraordinary amphiphilic and polymer-like properties of graphene oxide through freeze casting.The 2 D macromolecule,GO could well wrap the particles for better uniformity and stability in either dispersion or membrane.Importantly,freeze casting plays an important role in avoiding the severe aggregation of micrometer-sized particles in the solventremoving process.After reduction,the membrane exhibits good electrical conductivity while maintaining its integral structure,which can be directly used as a freestanding binder-free electrode.This work provides a universal approach to fabricate freestanding membranes with various micrometersized materials for energy storage. | Jing Cao Xiaoli Zhao Jiahe Wang Huanglin Dou Congcong Liu Xiaojun Yan Yuantao Yan Min Guo Wanyu Zhao Xiaowei Yang | 2020 | Chinese Chemical Letters2020,31,1: | 1 |
| 7 | Th1 and Th2 Immune Response in Chronic Hepatitis B Patients during a Long-Term Treatment with Adefovir Dipivoxil显示文摘 | Yanfang Jiang Zhenhua Ma Guijie Xin Hongqing Yan Wanyu Li Huining Xu Chunhai Hao Junqi Niu Pingwei Zhao Dennis Daniel Taub | 2010 | Mediators of Inflammation2010,,: | 1 |
| 8 | Microwave induced in-situ formation of SiC nano wires on SiCNO ceramic aerogels with excellent electromagnetic wave absorption performance显示文摘Electromagnetic absorption(EMA)materials with light weight and harsh environmental robustness are highly desired and crucially important in the stealth of high-speed vehicles.However,meeting these two requirements is always a great challenge,which excluded the most attractive lightweight candidates,such as carbon-based materials.In this study,SiC_(nw)-reinfbrced SiCNO(SiC_(nw)/SiCNO)composite aerogels were fabricated through the in-situ growth of SiC_(nw) in polymer-derived SiCNO ceramic aerogels by using catalyst-assisted microwave heating at ultra-low temperature and in short time.The phase composition,microstructure,and EMA property of the SiC_(nw)/SiCNO composite aerogels were systematically investigated.The results indicated that the morphology and phase composition of SiC_(nw)/SiCNO composite aerogels can be regulated easily by varying the microwave treatment temperature.The composite aerogels show excellent EMA property with minimum reflection loss of -23.9 dB@13.8 GHz,-26.5 dB@10.9 GHz,and -20.4 dB@14.5 GHz and the corresponding effective bandwidth of 5.2 GHz,3.2 GHz,and 4.8 GHz at 2.0 mm thickness for microwave treatment at 600℃,800℃,and 1000℃,respectively,which is much better than that of SiCN ceramic aerogels.The superior EMA performance is mainly attributed to the improved impedance matching,multireflection,multi-interfacial polarization,and micro current caused by migration of hopping electrons. | Keke YUAN Daoyang HAN Junfang LIANG Wanyu ZHAO Mingliang LI Biao ZHAO Wen LIU Hongxia LU Hailong WANG Hongliang XU Gang SHAO Rui ZHANG | 2021 | Journal of Advanced Ceramics2021,10,5: | 1 |
| 9 | METHOD TO ELIMINATE THE INFLUENCE OF SERVO-MOTOR FRICTION TORQUEON ULTRA-LOW SPEED PERFORMANCE OFELEC显示文摘METHODTOELIMINATETHEINFLUENCEOFSERVO-MOTORFRICTIONTORQUEONULTRA-LOWSPEEDPERFORMANCEOFELECTROHYDRAULICSERVOSYSTEMLiShangyi;LiW... | Li Shangyi Li Wanyu Zhao Keding Wang Wuyong Xu Hongguang(Harbin Institute of Technology) | 1994 | Chinese Journal of Mechanical Engineering1994,7,1: | 1 |
| 10 | Engineering Sodium Metal Anode with Sodiophilic Bismuthide Penetration for Dendrite-Free and High-Rate Sodium-Ion Battery显示文摘Sodium(Na)metal batteries with a high volumetric energy density that can be operated at high rates are highly desirable.However,an uneven Na-ion migration in bulk Na anodes leads to localized deposition/dissolution of sodium during high-rate plating/stripping behaviors,followed by severe dendrite growth and loose stacking.Herein,we engineer the Na hybrid anode with sodiophilic Na_(3)Bi-penetration to develop the abundant phase-boundary ionic transport channels.Compared to intrinsic Na,the reduced adsorption energy and ion-diffusion barrier on Na_(3)Bi ensure even Na^(+)nucleation and rapid Na^(+)migration within the hybrid electrode,leading to uniform deposition and dissolution at high current densities.Furthermore,the bismuthide enables compact Na deposition within the sodiophilic framework during cycling,thus favoring a high volumetric capacity.Consequently,the obtained anode was endowed with a high current density(up to 5 mA∙cm^(−2)),high areal capacity(up to 5 mA∙h∙cm^(−2)),and long-term cycling stability(up to 2800 h at 2 mA∙cm^(−2)). | Wanyu Zhao Min Guo Zhijun Zuo Xiaoli Zhao Huanglin Dou Yijie Zhang Shiying Li Zichen Wu Yayun Shi Zifeng Ma Xiaowei Yang | 2022 | Engineering2022,8,4: | 0 |
| 11 | Hsa_circ_0002137 stabled by LIN28B promotes osteosarcoma cell growth through the hsa-miR-1246/BCL2 axis显示文摘Circular RNAs(circRNAs)are a novel class of non-coding RNA that have recently shown to have huge capabilities in the regulation of gene expression at the posttranscriptional level.Growing evidence has indicated that circRNAs could serve as competing endogenous RNAs(ceRNAs)to sponge microRNAs(miRNAs)and suppress functions of targeted miRNAs.Osteosarcoma(OS)is the most common malignant primary bone cancer.Hsa_circ_0002137 is upregulated in OS.However,the role of hsa_circ_0002137 in OS remains unclear.Using miRNA pull-down assay,we showed that cir_0002137 sponged hsa-miR-1246,and BCL2 apoptosis regulator(BCL2)mRNA was a potential target of hsa-miR-1246 in human osteosarcoma(HOS)cells.Further,we found that hsa_cir_0002137 could enhance the expression of BCL2 hsa-miR-1246 and promote HOS cell growth through sponging hsa-miR-1246.Moreover,RNA binding protein immunoprecip itation(RIP)assay revealed that lin-28 homolog B(LIN28B)protein associated with hsa_circ_0002137,and LIN28B could increase hsa_circ_0002137 stability and thus accelerate OS cell growth.Our work was the first to study the functions of hsa_circ_0002137,has-miR-1246 and LIN28B in OS,and these results may provide novel therapeutic targets for OS treatment. | FEI ZHANG JIANZHONG LAI RONGHAN HE YI SHI KUN XU SHIHAI JIANG TANGZHAO LIANG WANYU ZHAO WEIDA REN LEI ZHU SONG JIN KUN WANG | 2022 | BIOCELL2022,46,3: | 0 |
| 12 | Existence of a Heterogeneous Pathway in Palladium-Catalyzed Carbon–Carbon Coupling Reaction:Evidence from Ag@Pd_(3)Cu Intermetallic Nanoplates显示文摘Palladium(Pd)-catalyzed cross-coupling reaction is a widely studied process with significant economic interest and represents one of the most successful nanocatalytic examples.Owing to the observed leaching of Pd ions from both monometallic and short-range-ordered Pd bimetallic nanocatalysts,there is ambiguity regarding whether the coupling reaction has a heterogeneous component.Herein,facilitated by theoretical calculations,we discovered that the Pd ion leaching-free Pd_(3)Cu intermetallic compound was able to catalyze the cross-coupling reaction heterogeneously with activity comparable with that of Pd ions leached from monometallic Pd.The observation that Pd_(3)Cu acted as a heterogeneous catalyst was further confirmed by the reaction-promoting effect of hot electrons generated by the Ag core in Ag@Pd_(3)Cu nanoplates upon photon adsorption and could only participate in the reaction on the surface of the nanocatalyst.Additionally,it demonstrated experimentally the effectiveness of the heterogeneous route in the coupling reaction.This study shows that the combination of plasmonic catalysis and intermetallic compounds is a promising strategy for designing robust nanocatalysts to synthesize value-added chemicals. | Rui Liu Cuihong Xu Yanan Chen Huachao Zhao Jiefang Sun Zuoliang He Wanyu Shan Gang Li Qiantao Shi Liping Fang Jingfu Liu Guibin Jiang | 2022 | CCS Chemistry2022,4,2: | 0 |
| 13 | Enantioselective effects of imazethapyr residues on Arabidopsis thaliana metabolic profile and phyllosphere microbial communities显示文摘Imazethapyr(IM)is a widely used acetolactate synthase-inhibiting chiral herbicide.It has long-term residuals that may be absorbed by the human body through the edible parts of plants,such as vegetable leaves or fruits.Here,we selected a model plant,Arabidopsis thaliana,to determine the effects of R-IM and S-IM on its leaf structure,photosynthetic efficiency,and metabolites,as well as the structures of microorganisms in the phyllosphere,after 7 days of exposure.Our results indicated enantiomeric differences in plant growth between R-IM and S-IM;133μg/kg R-IM showed heavier inhibition of photosynthetic efficiency and greater changes to subcellular structure than S-IM.R-IM and S-IM also had different effects on metabolism and leaf microorganisms.S-IM mainly increased lipid compounds and decreased amino acids,while R-IM increased sugar accumulation.The relative abundance of Moraxellaceae human pathogenic bacteria was increased by R-IM treatment,indicating that R-IM treatment may increase leaf surface pathogenic bacteria.Our research provides a new perspective for evaluating the harmfulness of pesticide residues in soil,phyllosphere microbiome changes via the regulation of plant metabolism,and induced pathogenic bacterial accumulation risks. | Qianqiu Zhao Wanyue Liu Yan Li Mingjing Ke Qian Qu Wenting Yuan Xiangliang Pan Haifeng Qian | 2020 | Journal of Environmental Sciences2020,32,7: | 0 |
| 14 | Proton-induced fast preparation of size-controllable MoS2 nanocatalyst towards highly efficient water electrolysis显示文摘MoS2 has emerged for catalyzing the hydrogen evolution reaction.Various notable strategies have been developed to downsize the MoS2 particles and expose more active edges.However,the restacking issue,which reduces the exposure degree,has rarely been taken into account.Herein,we report on a facile proton-induced fast hydrothermal approach to produce size-controllable MoS2 nanocatalysts and demonstrate that along the varying of sheet sizes,there is a trade-off between the intrinsic catalytic activity(mainly determined by the unsaturated sulfur on the sheet edges)and the active edge accessibility(influenced by the assembly structure).The size-optimized catalyst delivers a high performance of a low overpotential of~200 mV at 10 mA/cm^(2),a Tafel slope of 46.3 mV/dec,and a stable working state,which is comparable to the recent notable works.Our findings will provide a pathway for its large-scale application and enhance the water electrolysis performance. | JingJiang Wei Ge Wang Yijie Zhang Shengping Wang Wanyu Zhao Qihang Liu Congcong Liu Xiaoli Zhao Xiaowei Yang | 2021 | Chinese Chemical Letters2021,32,3: | 0 |
| 15 | 2D Materials Boost Advanced Zn Anodes:Principles,Advances,and Challenges显示文摘Aqueous zinc-ion battery(ZIB)featuring with high safety,low cost,environmentally friendly,and high energy density is one of the most promising systems for large-scale energy storage application.Despite extensive research progress made in developing high-performance cathodes,the Zn anode issues,such as Zn dendrites,corrosion,and hydrogen evolution,have been observed to shorten ZIB’s lifespan seriously,thus restricting their practical application.Engineering advanced Zn anodes based on two-dimensional(2D)materials are widely investigated to address these issues.With atomic thickness,2D materials possess ultrahigh specific surface area,much exposed active sites,superior mechanical strength and flexibility,and unique electrical properties,which confirm to be a promising alternative anode material for ZIBs.This review aims to boost rational design strategies of 2D materials for practical application of ZIB by combining the fundamental principle and research progress.Firstly,the fundamental principles of 2D materials against the drawbacks of Zn anode are introduced.Then,the designed strategies of several typical 2D materials for stable Zn anodes are comprehensively summarized.Finally,perspectives on the future development of advanced Zn anodes by taking advantage of these unique properties of 2D materials are proposed. | Songhe Zheng Wanyu Zhao Jianping Chen Xiaoli Zhao Zhenghui Pan Xiaowei Yang | 2023 | Nano-Micro Letters2023,15,4: | 0 |
| 16 | Model Predictive Control for Cascaded H-Bridge PV Inverter with Capacitor Voltage Balance显示文摘We designed an improved direct-current capacitor voltage balancing control model predictive control(MPC)for single-phase cascaded H-bridge multilevel photovoltaic(PV)inverters.Compared with conventional voltage balanc-ing control methods,the method proposed could make the PV strings of each submodule operate at their maximum power point by independent capacitor voltage control.Besides,the predicted and reference value of the grid-connected current was obtained according to the maximum power output of the maximum power point tracking.A cost function was con-structed to achieve the high-precision grid-connected control of the CHB inverter.Finally,the effectiveness of the proposed control method was verified through a semi-physical simulation platform with three submodules. | Xinwei Wei Wanyu Tao Xunbo Fu Xiufeng Hua Zhi Zhang Xiaodan Zhao Chen Qin | 2024 | Journal of Electronic Research and Application2024,8,2: | 0 |
| 17 | CPAL, as a New Mediator of Cardiomyocyte Metabolic Alterations and Pyroptosis, Regulates Myocardial Infarction Injury in Mice显示文摘Myocardial infarction (MI), the most serious of the ischemic heart diseases, is accompanied by myocardial metabolic disorders and the loss of cardiomyocytes. Increasing evidence has shown that long noncoding RNAs (lncRNAs) are involved in various pathological conditions such as cancer and cardiovascular diseases (CVDs), and are emerging as a novel biomarker for these disorders. This study aims to investigate the regulatory role and mechanisms of lncRNAs in myocardial remodeling in the setting of MI. We find that post-infarcted hearts exhibit a reduction of adenosine triphosphate (ATP) and an alteration of the glucose and lipid metabolism genes cluster of differentiation 36 (CD36), hexokinase 1 (HK1), and clucose transporter 4 (GLUT4), accompanied by cardiomyocyte pyroptosis. We then identify a previously unknown conserved lncRNA, AK009126 (cardiomyocyte pyroptosis-associated lncRNA, CPAL), which is remarkably upregulated in the myocardial border zone of MI mice. Importantly, the adeno-associated virus 9 (AAV9)-mediated silencing of endogenous CPAL by its short hairpin RNA (shRNA) partially abrogates myocardial metabolic alterations and cardiomyocyte pyroptosis during MI in mice. Mechanistically, CPAL is shown to bind directly to nuclear factor kappa B (NFκB) and to act as an activator of NFκB to induce NFκB phosphorylation in cardiomyocytes. We also find that CPAL upregulates caspase-1 expression at the transcriptional level and consequently promotes the release of interleukin (IL)-18 and IL-1β from cardiomyocytes. Collectively, our findings reveal the conserved lncRNA CPAL as a new regulator of cardiac metabolic abnormalities and cardiomyocyte pyroptosis in the setting of MI and suggest CPAL as a new therapeutic target to protect cardiomyocytes against ischemic injury in infarcted hearts. | Jiamin Li Hongru Xue Ning Xu Liling Gong Ming Li Sijia Li Di Huang Qingwei Zhang Pengyu Li Qingsui Li Hang Yu Yining Liu Yadong Xue Haixin Chen Jiali Liu Wanyu Zhang Mingbin Liu Siyu Chang Xianzhi Lang Xingmiao Zhao Weijie Du Benzhi Cai Ning Wang Baofeng Yang | 2023 | Engineering2023,,1: | 0 |
| 18 | A new service model of document and information sharing among consortium members: The collaborative innovation practice of the NSLC and PASs显示文摘Purpose: This paper documents an exploration of an innovative approach to the sharing of documents and information among the members of the National Alliance of Academies of Sciences(NAAS) in China, based on the practice initiated by the National Science Library of the Chinese Academy of Sciences(NSLC).Design/methodology/approach: Through interviews and user surveys, we analyzed the general information demands of users from provincial academies of sciences(PASs) and problems of their document and information service teams. Based on our findings, we designed targeted services to help Alliance members support their document resources, information services for science and technology(S&T) decisions, and their knowledge transfer achievements. Furthermore, we offered training courses for provincial service teams, researchers, and administrators, to improve their information skills. These activities represent a new collaborative model for professional library consortia.Findings: To date, our service has been extended to all Alliance members, covering 19 provinces in China, and the NSLC service covers all aspects of knowledge services of Alliance members, from basic document delivery services to subject information analyses.Research limitations: Different PASs have different understandings of the role of the document and information services in the process of scientific research. These differences limit information service sharing of the NSLC with the PASs, and affect the service performance. For the sake of convenience, the original survey was conducted in only three provinces, which may not fully reflect the information needs of users in each Alliance institution. In addition, quantitative and qualitative analyses have been limited by the coverage of the sample.Practical implications: Document and information sharing has not only taken advantage of the NSLC knowledge service system and cooperation model, it has also enhanced the range of services of the NAAS in China.Originality/value: Based on knowledge service enhancements, the NAAS in China has formed a new kind of library consortium, which has broken the traditional library alliance model that was based mainly on the sharing of resources and services. | Ping JIA Yue YOU Zhuang LI Wenjiao GUO Huifang XU Wanyu ZHAO Lu DONG | 2015 | Chinese Journal of Library and Information Science2015,,4: | 0 |
| 19 | Fluorescence Properties and Chemical Composition of Fine Particles in the Background Atmosphere of North China显示文摘To understand the aerosol characteristics in a regional background environment,fine-particle(PM_(2.5),n=228)samples were collected over a one-year period at the Shangdianzi(SDZ)station,which is a Global Atmospheric Watch regional background station in North China.The chemical and optical characteristics of PM_(2.5)were analyzed,including organic carbon,elemental carbon,water-soluble organic carbon,water-soluble inorganic ions,and fluorescent components of watersoluble organic matter.The source factors of major aerosol components are apportioned,and the sources of the fluorescent chromophores are further analyzed.The major chemical components of PM_(2.5)at SDZ were NO_(3)^(-),organic matter,SO_(4)^(2-),and NH_(4)^(+).Annually,water-soluble organic carbon contributed 48%±15%to the total organic carbon.Secondary formation(52%)and fossil fuel combustion(63%)are the largest sources of water-soluble organic matter and water-insoluble organic matter,respectively.In addition,three humic-like and one protein-like matter were identified via parallel factor analysis for excitation–emission matrices.The fluorescence intensities of the components were highest in winter and lowest in summer,indicating the main impact of burning sources.This study contributes to understanding the chemical and optical characteristics of ambient aerosols in the background atmosphere. | Ping LI Siyao YUE Xiaoyang YANG Di LIU Qiang ZHANG Wei HU Shengjie HOU Wanyu ZHAO Hong REN Gang LI Yuanguan GAO Junjun DENG Qiaorong XIE Yele SUN Zifa WANG Pingqing FU | 2023 | Advances in Atmospheric Sciences2023,40,7: | 0 |
| 20 | Accelerated ion/electron transport kinetics and increased active sites via local internal electric fields in heterostructured VO_(2)–carbon cloth for enhanced zinc-ion storage显示文摘Although the performance of the self-standing electrode has been enhanced for aqueous zinc-ion batteries(AZIBs),it is necessary to explore and analyse the deep modification mechanism(especially interface effects).Herein,density functional theory(DFT)calculations are applied to investigate the high-performance cathode based on the VO_(2)/carbon cloth composites with heterostructures interface(H-VO_(2)@CC).The adsorption energy comparisons and electron structure analyses verify that HVO_(2)@CC has extra activated sites at the interface,enhanced electrical conductivity,and structural stability for achieving highperformance AZIBs due to the presence of built-in electric field at the interfaces.Accordingly,the designed self-standing HVO_(2)@CC cathode delivers higher rate capacity,longer-life cyclability,and faster electronic/ion transmission kinetics benefiting from the synergistic effects.The risks of active material shedding and dissolution during the dis/charge process of two cathodes were evaluated via ex-situ ultraviolet–visible(UV–vis)spectrum and inductively coupled plasma-atomic emission spectroscopy(ICP-AES)technique.Finally,this investigation also explores the charge storage mechanism of H-VO_(2)@CC through various exsitu and in-situ characterization techniques.This finding can shed light on the significant potential of heterostructures interface engineering in practical applications and provide a valuable direction for the development of cathode materials for AZIBs and other metal-ion batteries. | Ping Luo Wenwei Zhang Wanyue Cai Zhen Huang Gangyuan Liu Chang Liu Shiyu Wang Feng Chen Lixue Xia Yan Zhao Shijie Dong Lu Xia | 2023 | Nano Research2023,16,1: | 0 |