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27篇 您的检索式:作者名="Jingwei LUO"
    题名 作者 年代 出处 被引量
1Reversing drug resistance of soft tumor-repopulating cells by tumor cell-derived chemotherapeutic microparticles显示文摘颠倒使人重新住入肿瘤的房间(TRC ) 的药抵抗或起源的发展中的新奇途径像房间的癌症房间是迫切临床的需要改进癌症病人的结果。这里,我们显示出用肿瘤颠倒 TRC 的药抵抗的一条创新途径包含反肿瘤药的导出房间的 microparticles (T-MPs ) 。由比区分的癌症房间更可变形的优点, TRC 优先地收起 T-MPs 在进入房间以后释放反肿瘤药,它接着导致 TRC 的死亡。内在的机制包括防碍药流出并且支持这些药的原子入口。我们的调查结果在用有希望的临床的应用程序颠倒 TRC 的药抵抗在 T-MPs 的举起和一条新奇途径的有效性表明肿瘤房间柔软的重要性。Jingwei Ma Yi Zhang Ke Tang Huafeng Zhang Xiaonan Yin Yong Li Pingwei Xu Yanling Sun Ruihua Ma Tiantian Ji Junwei Chen Shuang Zhang Tianzhen Zhang Shunqun Luo Yang Jin Xiuli Luo Chengyin Li Hongwei Gong Zhixiong Long Jinzhi Lu Zhuowei Hu Xuetao Cao Ning Wang Xiangliang Yang Bo Huang 2016Cell Research2016,26,6:17
2High-precision Dating and Geological Significance of Chang 7 Tuff Zircon of the Triassic Yanchang Formation, Ordos Basin in Central China显示文摘The Ordos Basin, as the second largest petroliferous basin of China, contains abundant oil and gas resources, oil shale, and sandstone-type uranium mineral resources. Chang 7 shale is not only the major source rock of the Mesozoic petroliferous system of the Basin, but is also crucial in determining the space-time distribution relationship of the shale section for the effective exploration and development of the Basin's oil and gas resources. To obtain a highly precise age of the shale development section, we collected tuff samples from the top and bottom profile of the Chang 7 Member, Yishi Village, Yaoqu Town, Tongchuan District, on the southern margin of the Ordos Basin and performed high-precision chemical abrasion(CA)–isotope dilution(ID)–thermal ionization mass spectrometry(TIMS) zircon U-Pb dating on the basis of extensive laser ablation inductively coupled plasma mass spectrometry(LA-ICP-MS) zircon U-Pb dating data. Our results show the precise ages of the top and bottom zircon in the Chang 7 shale to be 241.06±0.12 Ma and 241.558±0.093 Ma, respectively. We first obtained Chang 7 age data with Grade 0.1-Ma precision and then determined the age of the shale development in the Chang 7 Member to be the early-Middle Triassic Ladinian. This result is supported by paleontological evidence. The deposition duration of the Chang 7 shale is 0.5 Ma with an average deposition rate of the shale section being 5.3 cm/ka. Our research results provide time scale and basic data for further investigation of the basin–mountain coupling relation of the shale section, the sedimentary environment and volcanic ash and organic-matter-rich shale development relation, and the organism break-out and organic-matter enrichment mechanism.ZHU Rukai CUI Jingwei DENG Shenghui LUO Zhong LU Yuanzheng QIU Zhen 2019Acta Geologica Sinica(English Edition)2019,93,6:13
3High-Performance Flexible Asymmetric Supercapacitor Based on CoAl-LDH and rGO Electrodes显示文摘A flexible asymmetric supercapacitor(ASC)based on a Co Al-layered double hydroxide(Co Al-LDH)electrode and a reduced graphene oxide(r GO) electrode was successfully fabricated. The Co Al-LDH electrode as a positive electrode was synthesized by directly growing Co Al-LDH nanosheet arrays on a carbon cloth(CC)through a facile hydrothermal method, and it delivered a specific capacitance of 616.9 F g^(-1)at a current density of1 A g^(-1). The r GO electrode as a negative electrode was synthesized by coating r GO on the CC via a simple dipcoating method and revealed a specific capacitance of110.0 F g^(-1)at a current density of 2 A g^(-1). Ultimately,the advanced ASC offered a broad voltage window(1.7 V)and exhibited a high superficial capacitance of1.77 F cm^(-2)at 2 m A cm^(-2)and a high energy density of0.71 m Wh cm^(-2)at a power density of 17.05 m W cm^(-2),along with an excellent cycle stability(92.9% capacitance retention over 8000 charge–discharge cycles).Shuoshuo Li Pengpeng Cheng Jiaxian Luo Dan Zhou Weiming Xu Jingwei Li Ruchun Li Dingsheng Yuan 2017Nano-Micro Letters2017,9,3:10
4Artificial intelligence and big data facilitated targeted drug discovery显示文摘Different kinds of biological databases publicly available nowadays provide us a goldmine of multidiscipline big data.The Cancer Genome Atlas is a cancer database including detailed information of many patients with cancer.DrugBank is a database including detailed information of approved,investigational and withdrawn drugs,as well as other nutraceutical and metabolite structures.PubChem is a chemical compound database including all commercially available compounds as well as other synthesisable compounds.Protein Data Bank is a crystal structure database including X-ray,cryo-EM and nuclear magnetic resonance protein three-dimensional structures as well as their ligands.On the other hand,artificial intelligence(AI)is playing an important role in the drug discovery progress.The integration of such big data and AI is making a great difference in the discovery of novel targeted drug.In this review,we focus on the currently available advanced methods for the discovery of highly effective lead compounds with great absorption,distribution,metabolism,excretion and toxicity properties.Benquan Liu Huiqin He Hongyi Luo Tingting Zhang Jingwei Jiang 2019Stroke & Vascular Neurology2019,4,4:5
5Synthesis of 3D Hexagram-Like Cobalt–Manganese Sulfides Nanosheets Grown on Nickel Foam: A Bifunctional Electrocatalyst for Overall Water Splitting显示文摘The exploration of low-cost and efficient bifunctional electrocatalysts for oxygen evolution reaction and hydrogen evolution reaction through tuning the chemical composition is strongly required for sustainable resources. Herein, we developed a bimetallic cobalt–manganese sulfide supported on Ni foam(CMS/Ni) via a solvothermal method. It has discovered that after combining with the pure Co_9S_8 and Mn S, the morphologies of CMS/Ni have modulated. The obtained three-dimensionally hexagram-like CMS/Ni nanosheets have a significant increase in electrochemical active surface area and charge transport ability. More than that, the synergetic effect of Co and Mn has also presented in this composite. Benefiting from these, the CMS/Ni electrode shows great performance toward hydrogen evolution reaction and oxygen evolution reaction in basic medium, comparing favorably to that ofthe pure Co_9S_8/Ni and Mn S/Ni. More importantly, this versatile CMS/Ni can catalyze the water splitting in a twoelectrode system at a potential of 1.47 V, and this electrolyzer can be efficiently driven by a 1.50 V commercial dry battery.Jingwei Li Weiming Xu Jiaxian Luo Dan Zhou Dawei Zhang Licheng Wei Peiman Xu Dingsheng Yuan 2018Nano-Micro Letters2018,10,1:3
6Subdivision and age of the Yanchang Formation and the Middle/Upper Triassic boundary in Ordos Basin, North China显示文摘The Yanchang Formation is extensively developed in the Ordos Basin and its surrounding regions. As one of the best terrestrial Triassic sequences in China and the major oil-gas bearing formations in the Ordos Basin, its age determination and stratigraphic assignment are important in geological survey and oil-gas exploration. It had been attributed to the Late Triassic and regarded as the typical representative of the Upper Triassic in northern China for a long time, although some scholars had already proposed that the lower part of this formation should be of the Middle Triassic age in the mid-late 20 th century. In this paper, we suggest that the lower and middle parts of the Yanchang Formation should be of the Ladinian and the bottom possibly belongs to the late Anisian of the Middle Triassic, mainly based on new fossils found in it and high resolution radiometric dating results. The main source rocks, namely the oil shales and mudstones of the Chang-7, are of the Ladinian Age. The upper part of the Yanchang Formation, namely the Chang-6 and the above parts, belongs to the Late Triassic. The uppermost of the Triassic is missed in most parts of the Ordos Basin. The Middle-Upper Triassic Series boundary lies in the Yanchang Formation, equivalent to the boundary between Chang-7 and Chang-6. The Ladinian is an important palaeoenvironmental turning point in the Ordos Basin. Palaeoenvironmental changes in the basin are coincidence with that of the Sichuan Basin and the main tectonic movement of the Qinling Mountains. It indicates that tectonic activities of the Qinling Mountains are related to the big palaeoenvironmental changes in both the Ordos and Sichuan Basins, which are caused by the same structural dynamic system during the Ladinian.Shenghui DENG Yuanzheng LU Zhong LUO Ru FAN Xin LI Yi ZHAO Xueying MA Rukai ZHU Jingwei CUI 2018Science China Earth Sciences2018,61,10:2
7Effects of micro-structure on fatigue crack propagation and acoustic emission behaviors in a micro-alloyed steel显示文摘Zhiyuan Han Hongyun Luo Yubo Zhang Jingwei Cao 2013Materials Science & Engineering A2013,,:1
8Adsorption of p -nitroaniline from aqueous solutions onto activated carbon fiber prepared from cotton stalk显示文摘Kunquan Li Zheng Zheng Jingwei Feng Jibiao Zhang Xingzhang Luo Guohua Zhao Xingfa Huang 2008Journal of Hazardous Materials2008,,2:1
9MicroRNA-610 inhibits the migration and invasion of gastric cancer cells by suppressing the expression of vasodilator-stimulated phosphoprotein显示文摘Jing Wang Jingwei Zhang Junzhu Wu Daji Luo Ke Su Wentao Shi Jian Liu Yihao Tian Lei Wei 2011European Journal of Cancer2011,,12:1
10Isolation and identification of a novel coronavirus from wild bird显示文摘A novel coronavirus strain was isolated from laryngotracheal swab of wild partridge and designated as partridge/GD/S14/2003 (S14). Its whole genomic sequence was obtained (GenBank Accession number: AY646283) through RT-PCR amplification, cloning, nucleotide sequencing, and analysis by the DNASTAR program. To investigate the origin of the virus, we further analyzed the nucleotide sequences of the main structural proteins, and compared those with other available virus isolates. Our results showed that the highest nucleotide homologies between the S1 gene of S14 strain and those of nephrogenic-type strains JX1-99 and TJ2-96 were 94.6% and 93.4%, respectively. In addition, a relatively high genetic identity, 85% and 84.3%, respectively, was detected between S1 gene of S14 and those of strains QXIBV and LX4. The results suggested that the S14 strain may be originated from or related to nephrogenic-type and proventriculus-type infectious bronchitis virus (IBV). The highest nucleotide homology between the S2 gene of S14 strain and those of QXIBV and LX4 was 85% and 84.3%, respectively and all of them belonged to group II coronaviruses. The highest nucleotide homology between the M gene of S14 strain and those of strains SAIB20 and GD6-98 was 90.6% and 90.2%, respectively by which S14 belonged to group III. Although they displayed high level of genetic identity in S1 and S2 gene, there was lower homology of M coding sequences between S14 and BJ, and between S14 and QXIBV strains. Phylogenetic analysis of N gene indicated that group I strains might evolve from RNA recombination between strain H52 and Gray; while group II strains from strain H120 and D1466. S14 strain had the highest N gene homology with strain QXIBV which was 95.7%, thus classified as a group III member. Strains SAIB20 and GD6-98 which were closely related to the M gene of S14 strain belonged to group I and IV, respectively. A possible role of partridge S14 strain may play in the process of coronavirus evolution is discussed.ZHANG Guihong FU Jiadong REN Tao CAO Weisheng LUO Kaijiang XU Chenggang XIN Chaoan JIANG Jingwei LIAO Ming 2006Progress in Natural Science:Materials International2006,16,12:1
11Adsorption of p -nitroaniline from aqueous solutions onto activated carbon fiber prepared from cotton stalk显示文摘Kunquan Li Zheng Zheng Jingwei Feng Jibiao Zhang Xingzhang Luo Guohua Zhao Xingfa Huang 2008Journal of Hazardous Materials2008,,2:1
12A multifunctional optoelectronic device based on 2D material with wide bandgap显示文摘Low-dimensional materials exhibit unique quantum confinement effects and morphologies as a result of their nanoscale size in one or more dimensions,making them exhibit distinctive physical properties compared to bulk counterparts.Among all low-dimensional materials,due to their atomic level thickness,two-dimensional materials possess extremely large shape anisotropy and consequently are speculated to have large optically anisotropic absorption.In this work,we demonstrate an optoelectronic device based on the combination of two-dimensional material and carbon dot with wide bandgap.High-efficient luminescence of carbon dot and extremely large shape anisotropy(>1500)of two-dimensional material with the wide bandgap of>4 eV cooperatively endow the optoelectronic device with multi-functions of optically anisotropic blue-light emission,visible light modulation,wavelength-dependent ultraviolet-light detection as well as blue fluorescent film assemble.This research opens new avenues for constructing multi-function-integrated optoelectronic devices via the combination of nanomaterials with different dimensions.Hongwei Xu Jingwei Liu Sheng Wei Jie Luo Rui Gong Siyuan Tian Yiqi Yang Yukun Lei Xinman Chen Jiahong Wang Gaokuo Zhong Yongbing Tang Feng Wang Hui-Ming Cheng Baofu Ding 2023Light(Science & Applications)2023,12,12:0
13Five new terpenoids from Viburnum odoratissimum var.sessiliflorum显示文摘Five new terpenoids,including two vibsane-type diterpenoids(1,2)and three iridoid allosides(3-5),together with eight known ones,were isolated from the leaves and twigs of Viburnum odoratissimum var.sessiliflorum.Their planar structures and relative configurations were determined by spectroscopic methods,especially 2D NMR techniques.The sugar moieties of the iridoids were confirmed asβ-D-allose by GC analysis after acid hydrolysis and acetylation.The absolute configurations of neovibsanin Q(1)and dehydrovibsanol B(2)were determined by quantum chemical calculation of their theoretical electronic circular dichroism(ECD)spectra and Rh2(OCOCF_(3))_(4)-induced ECD analysis.The anti-inflammatory activities of compounds 1,3,4,and 5 were evaluated using an LPS-induced RA W264.7 cell model.Compounds 3 suppressed the release of NO in a dose-dependent manner,with an IC_(50) value of 55.64μmol·L^(-1).The cytotoxicities of compounds 1-5 on HCT-116 cells were assessed and the results showed that compounds 2 and 3 exhibited moderate inhibitory activities with IC_(50) values of 13.8 and 12.3μmol·L^(-1),respectively.LI Yang JIAN Yajiao XU Fan LUO Yongxin LI Zhixuan OU Yi WEN Yan JIN Jingwei ZHANG Chuarui GAN Lishe 2023Chinese Journal of Natural Medicines2023,21,4:0
14Key geological factors controlling the estimated ultimate recovery of shale oil and gas: A case study of the Eagle Ford shale, Gulf Coast Basin, USA显示文摘Based on 991 groups of analysis data of shale samples from the Lower Member of the Cretaceous Eagle Ford Formation of 1317 production wells and 72 systematic coring wells in the U.S. Gulf Basin, the estimated ultimate recovery(EUR) of shale oil and gas of the wells are predicted by using two classical EUR estimation models, and the average values predicted excluding the effect of engineering factors are taken as the final EUR. Key geological factors controlling EUR of shale oil and gas are fully investigated. The reservoir capacity, resources, flow capacity and fracability are the four key geological parameters controlling EUR. The storage capacity of shale oil and gas is directly controlled by total porosity and hydrocarbon-bearing porosity, and indirectly controlled by total organic carbon(TOC) and vitrinite reflectance(Ro). The resources of shale oil and gas are controlled by hydrocarbon-bearing porosity and effective shale thickness etc. The flow capacity of shale oil and gas is controlled by effective permeability, crude oil density, gas-oil ratio, condensate oil-gas ratio, formation pressure gradient, and Ro. The fracability of shale is directly controlled by brittleness index, and indirectly controlled by clay content in volume. EUR of shale oil and gas is controlled by six geological parameters: it is positively correlated with effective shale thickness, TOC and fracture porosity, negatively correlated with clay content in volume, and increases firstly and then decreases with the rise of Ro and formation pressure gradient. Under the present upper limit of horizontal well fracturing effective thickness of 65 m and the lower limit of EUR of 3×10^(4) m^(3), when TOC<2.3%, or Ro<0.85%, or clay content in volume larger than 25%, and fractures and micro-fractures aren’t developed, favorable areas of shale oil and gas hardly occur.HOU Lianhua YU Zhichao LUO Xia LIN Senhu ZHAO Zhongying YANG Zhi WU Songtao CUI Jingwei ZHANG Lijun 2021Petroleum Exploration and Development2021,48,3:0
15Chemo-drugs in cell microparticles reset antitumor activity of macrophages by activating lysosomal P450 and nuclear hnRNPA2B1显示文摘Macrophages in tumors(tumor-associated macrophages,TAMs),a major population within most tumors,play key homeostatic functions by stimulating angiogenesis,enhancing tumor cell growth,and suppressing antitumor immunity.Resetting TAMs by simple,efficacious and safe approach(s)is highly desirable to enhance antitumor immunity and attenuate tumor cell malignancy.Previously,we used tumor cell-derived microparticles to package chemotherapeutic drugs(drug-MPs),which resulted in a significant treatment outcome in human malignant pleural effusions via neutrophil recruitments,implicating that drug-MPs might reset TAMs,considering the inhibitory effects of M2 macrophages on neutrophil recruitment and activation.Here,we show that drug-MPs can function as an antitumor immunomodulator by resetting TAMs with M1 phenotype and IFN-βrelease.Mechanistically,drug molecules in tumor MPs activate macrophage lysosomal P450 monooxygenases,resulting in superoxide anion formation,which further amplifies lysosomal ROS production and pH value by activating lysosomal NOX2.Consequently,lysosomal Ca^(2+)signaling is activated,thus polarizing macrophages towards M1.Meanwhile,the drug molecules are delivered from lysosomes into the nucleus where they activate DNA sensor hnRNPA2B1 for IFN-βproduction.This lysosomal-nuclear machinery fully arouses the antitumor activity of macrophages by targeting both lysosomal pH and the nuclear innate immunity.These findings highlight that drug-MPs can act as a new immunotherapeutic approach by revitalizing antitumor activity of macrophages.This mechanistic elucidation can be translated to treat malignant ascites by drug-MPs combined with PD-1 blockade.Keke Wei Huafeng Zhang Shuaishuai Yang Yuxiao Cui Bingxia Zhang Jincheng Liu Liang Tang Yaoyao Tan Simin Liu Shiqi Chen Wu Yuan Xiao Luo Chen Chen Fei Li Junwei Liu Jie Chen Pingwei Xu Jiadi Lv Ke Tang Yi Zhang Jingwei Ma Bo Huang 2023Signal Transduction and Targeted Therapy2023,8,2:0
16The Mechanism by Which Pereskia aculeata Mill.Regulates Ferroptosis and Interferes with Colon Cancer Based on Network Pharmacology显示文摘[Objectives]The paper was to investigate the mechanism by which Pereskia aculeata Mill.regulates ferroptosis and interferes with colon cancer using network pharmacology.[Methods]The effect of P.aculeata on HCT116 cells was observed by examining cell morphology.The intersection of P.aculeata,colon cancer,and ferroptosis targets was determined using the Venny 2.1.0 online platform.DAVID database was used to perform GO and KEGG enrichment analyses.Cytoscape_v3.10.0 was used for network mapping and PPI analysis.[Results]The observation of cell morphology indicated that P.aculeata suppressed the growth of HCT116 cells.GO and KEGG analysis identified 67 genes involved in potential pathways,including the MAPK signaling pathway and Apoptosis,18 of which were located on the MAPK pathway.After conducting PPI visualization analysis and ranking based on Degree values,we identified TP53,TNF,EGFR,MAPK14,and AKT1 as the top five targets with the highest Degree values.[Conclusions]P.aculeata may activate the p53 gene through the MAPK signaling pathway,inducing ferroptosis and ultimately resulting in tumor cell death.Kaifei LIU Yingyuan QIN Linhao LIU Ye CHU Huanjin HUANG Jingwei LUO Xiaolong CHEN Yang YANG Yifei CHEN 2024Medicinal Plant2024,15,2:0
17New insights into the carotenoid biosynthesis in Torreya grandis kernels显示文摘Torreya grandis is a characteristic rare economic tree species in subtropical mountainous areas. The nut has a variety of bioactive compounds, such as polyphenols and vitamins. However, the carotenoids compositions and its regulatory mechanisms underlying carotenoid biosynthesis in kernels remain unknown. Here, the major carotenoids in the kernel were analyzed. The result showed that lutein and β-carotene were the predominant carotenoids in the kernel, while low levels of a-carotenoid and zeaxanthin were detected. Lutein and β-carotene were decreased during the maturation of kernel. Expression analysis by RNA-seq and q RT-PCR indicated that the expressions of TgCYP97A3 and TgLCYB were also reduced during the maturation of kernel. The contents of lutein or β-carotene were obviously increased in tobacco transiently overexpressing TgCYP97A3 or TgLCYB. Moreover, DPPH radical scavenging activity and FRAP were also significantly enhanced. In addition, several MYB and WRKY transcription factors TgMYBS3, TgMYB48 and TgWRKY11 were identified to positively regulate the TgCYP97A3 expression, while TgMYB48, TgWRKY2 and TgWRKY11 could upregulate the TgLCYB expression. The illustration of carotenoids biosynthesis and its molecular mechanism in kernels not only provides a basis for understanding carotenoids biosynthesis in kernels, but also enables the use of molecular biotechnology to develop new health products rich in carotenoids based on T. grandis nuts.Jingwei Yan Hao Zeng Weijie Chen Jiali Luo Congcong Kong Heqiang Lou Jiasheng Wu 2023Horticultural Plant Journal2023,9,6:0
18On the Linear Complexity of a Class of Periodic Sequences Derived from Euler Quotients显示文摘In this paper,a family of binary sequences derived from Euler quotients with RSA modulus pq is introduced.Here two primes p and q are distinct and satisfy gcd(pq,(p−1)(q−1))=1.The linear complexities and minimal polynomials of the proposed sequences are determined.Besides,this kind of sequences is shown not to have correlation of order four although there exist some special relations by the properties of Euler quotients.LUO Bingyu ZHANG Jingwei ZHAO Chang’an 2023Chinese Journal of Electronics2023,32,2:0
19Prophylaxis of posterior capsule opacification through autophagy activation with indomethacin-eluting intraocular lens显示文摘Posterior capsule opacification(PCO)is the most common long-term postoperative complication of cataract surgery,leading to secondary vision loss.Optimized intraocular lens(IOL)structure and appropriate pharmacological intervention,which provides physical barriers and biological inhibition,respectively,can block the migration,proliferation,and epithelial-mesenchymal transition(EMT)of lens epithelial cells(LECs)for PCO prophylaxis.Herein,a novel indomethacin-eluting IOL(INDOM-IOL)with an optimized sharper edge and a sustained drug release behavior was developed for PCO prevention.Indomethacin(INDOM),an ophthalmic non-steroidal anti-inflammatory drug(NSAID)used for postoperative ocular inflammation,was demonstrated to not only be able to suppress cell migration and down-regulate the expression of cyclooxygenase-2(COX-2)and EMT markers,including alpha-smooth muscle actin(α-SMA)and cyclin D1,but also promote the autophagy activation in LECs.Additionally,autophagy was also verified to be a potential therapeutic target for the down-regulation of EMT in LECs.The novel IOL,serving as a drug delivery platform,could carry an adjustable dose of hydrophobic indomethacin with sustained drug release ability for more than 28 days.In the rabbit PCO model,the indomethacin-eluting IOL showed excellent anti-inflammatory and anti-PCO effects.In summary,indomethacin is an effective pharmacological intervention in PCO prophylaxis,and the novel IOL we developed prevented PCO in vivo under its sustained indomethacin release property,which provided a promising approach for PCO prophylaxis in clinical application.Xiaobo Zhang Jing Wang Jingwei Xu Wen Xu Yin Zhang Chenqi Luo Shuang Ni Haijie Han Xingchao Shentu Juan Ye Jian Ji Ke Yao 2023Bioactive Materials2023,,5:0
20Zinc–Bromine Rechargeable Batteries:From Device Configuration,Electrochemistry,Material to Performance Evaluation显示文摘Zinc–bromine rechargeable batteries(ZBRBs)are one of the most powerful candidates for next-generation energy storage due to their potentially lower material cost,deep discharge capability,non-flammable electrolytes,relatively long lifetime and good reversibility.However,many opportunities remain to improve the efficiency and stability of these batteries for long-life operation.Here,we discuss the device configurations,working mechanisms and performance evaluation of ZBRBs.Both non-flow(static)and flow-type cells are highlighted in detail in this review.The fundamental electrochemical aspects,including the key challenges and promising solutions,are discussed,with particular attention paid to zinc and bromine half-cells,as their performance plays a critical role in determining the electrochemical performance of the battery system.The following sections examine the key performance metrics of ZBRBs and assessment methods using various ex situ and in situ/operando techniques.The review concludes with insights into future developments and prospects for high-performance ZBRBs.Norah S.Alghamdi Masud Rana Xiyue Peng Yongxin Huang Jaeho Lee Jingwei Hou Ian R.Gentle Lianzhou Wang Bin Luo 2023Nano-Micro Letters2023,15,11:0
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