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| 1 | Hierarchical 3D mesoporous silicon@graphene nanoarchitectures for lithium ion batteries with superior performance显示文摘硅为高能力锂离子电池作为最有希望的阳极材料被认出了。然而,大体积变化在骑车上在充电和分泌物期间导致 Si 电极和快能力损失的弄成粉。Si 电极的这个缺点能被联合与组织良好的 graphene 泡沫克服。在这个工作,层次三维的碳涂的 mesoporous Si nanospheres@graphene 泡沫(C@Si@GF ) nanoarchitectures 被热水泡喷射成功地综合帮助 chemical-vapor-deposition 和 magnesiothermic 减小方法。同样准备的 nanocomposites 的形态学和结构被扫描电子显微镜学,传播电子显微镜学和拉曼光谱学的地排放描绘。当在锂离子电池作为阳极材料采用了时, C@Si@GF nanocomposites 在 1 A/g,优秀的高率能力和突出的 cyclability 的当前的密度包括 1,200 mAh/g 的一个高特定的能力展出了优异电气化学的性能。验尸,分析鉴别在 200 个周期以后的 3D C@Si@GF 电极的形态学很好被维持。从 mesoporous Si nanospheres 和 graphene 泡沫 nanoarchitectures 的联合产生的 synergistic 效果可以处理 Si 电极的难处理的弄成粉问题。 | Shuangqiang Chen Peite Bao Xiaodan Huang Bing Sun Guoxiu Wang | 2014 | Nano Research2014,7,1: | 19 |
| 2 | Mesocrystal Co3O4 nanoplatelets as high capacity anode materials for Li-ion batteries显示文摘 | Dawei Su Shixue Dou Guoxiu Wang | 2014 | Nano Research2014,7,5: | 11 |
| 3 | Hierarchical sodium-rich Prussian blue hollow nanospheres as high-performance cathode for sodium-ion batteries显示文摘最近,因为他们的好骑车表演,低费用,和环境友好,普鲁士的蓝色和它的类似物(PBA ) 为钠离子电池作为阴极材料吸引了巨大的注意。然而,他们仍然受不了与联系的运动问题固态钠离子的散开在充电和分泌物期间处理表演,它导致低特定的能力和差的率。在这个工作,有层次空体系结构的新奇的钠铁 hexacyanoferrate nanospheres 被一个灵巧的模板方法为钠离子电池作为阴极材料制作了。由于唯一的空范围形态学,钠铁 hexacyanoferrate nanospheres 能为钠离子提供大量活跃地点和高散开动力学,因此交付高度特定的能力(142 mAh/g ) ,一个优异的率能力,和优秀骑车稳定性。而且,钠插入 / 抽取机制被学习了由在 situ X 光检查衍射,它在充电和分泌物过程期间提供进一步的卓见进钠铁 hexacyanoferrate nanosphere 阴极材料的水晶结构变化。 | Xiao Tang Hao Liu Dawei Su Peter H. L. Notten Guoxiu wang | 2018 | Nano Research2018,11,8: | 9 |
| 4 | Recent developments of aprotic lithium-oxygen batteries: functional materials determine the electrochemical performance显示文摘Lithium oxygen battery has the highest theoretical capacity among the rechargeable batteries and it can reform energy storage technology if it comes to commercialization. However,many critical challenges,mainly embody as low charge/discharge round-trip efficiency and poor cycling stability,impede the development of Li-O_2 batteries. The electrolyte decomposition,lithium metal anode corrosion and sluggish oxygen reaction kinetics at cathode are all responsible for poor electrochemical performances.Particularly,the catalytic cathode of Li-O_2 batteries,playing a crucial role to reduce the oxygen during discharging and to decompose discharge products during charging,is regarded as a breakthrough point that has been comprehensive investigated. In this review,the progress and issues of electrolyte,anode and cathode,especially the catalysts used at cathode,are systematically summarized and discussed.Then the perspectives toward the developments of a long life Li-O_2 battery are also presented at last. | Xin Guo Bing Sun Dawei Su Xiaoxue Liu Hao Liu Yong Wang Guoxiu Wang | 2017 | Science Bulletin2017,62,6: | 8 |
| 5 | Effects of Mahuang(Herba Ephedra Sinica) and Wuweizi(Fructus Schisandrae Chinensis) medicated serum on chemotactic migration of alveolar macrophages and inters regions macrophages in rats显示文摘OBJECTIVE: To observe the effects of serum containing Mahuang(Herba Ephedra Sinica) or Wuweizi(Fructus Schisandrae Chinensis) on the migration of alveolar macrophages(AM) and interstitial macrophages(IM) from normal rats, and to analyze and compare the mechanisms leading to cell migration differences.METHODS: Rats were randomly divided into three groups: Mahuang(Herba Ephedra Sinica), Wuweizi(Fructus Schisandrae Chinensis), and blank serum. After treatment with the herbs, serum was extracted from the rats. AM and IM were isolated from normal rats and cultured. The effects of Mahuang(Herba Ephedra Sinica) and Wuweizi(Fructus Schisandrae Chinensis) medicated serum on normal rat AM and IM chemotactic migration were determined by transwell assays. The CC chemokine receptor(CCR) 2, CCR5, voltage-gated Kvl. 3 K^+channel(Kv1. 3), and voltage-gated Kvl. 5 K^+channel(Kv1. 5) protein levels were analyzed by western blotting.RESULTS: The migration quantities of AM and IM in the Mahuang(Herba Ephedra Sinica) and Wuweizi(Fructus Schisandrae Chinensis) medicated serum groups were significantly higher than those in the blank serum group(P < 0.01). Compared with the Wuweizi(Fructus Schisandrae Chinensis) medicated serum group, the migration quantity of cultured rat AM in the Mahuang(Herba Ephedra Sinica) medicated serum group was significantly increased(P <0.01). Meanwhile, compared with the Mahuang(Herba Ephedra Sinica) medicated serum group, the migration quantity of cultured rat IM in the Wuweizi(Fructus Schisandrae Chinensis) medicated serum group was significantly increased(P < 0.01).CCR2, CCR5, Kv1. 3, and Kv1. 5 proteins were expressed on the AM cell surface, and showed significantly higher expression in the Mahuang(Herba Ephedra Sinica) medicated serum group compared with the Wuweizi(Fructus Schisandrae Chinensis)medicated serum group. In contrast, CCR5, Kv1.3,and Kv1.5 proteins were expressed on the IM cell surface, and showed significantly higher expression in the Wuweizi(Fructus Schisandrae Chinensis)medicated serum group compared with the Mahuang(Herba Ephedra Sinica) medicated serum group.CONCLUSION: Mahuang(Herba Ephedra Sinica)and Wuweizi(Fructus Schisandrae Chinensis) can promote AM and IM migration ability, with Mahuang(Herba Ephedra Sinica) targeting AM more apparently and Wuweizi(Fructus Schisandrae Chinensis) targeting IM more apparently. The mechanism may be that, by stimulating cells, Mahuang(Herba Ephedra Sinica) and Wuweizi(Fructus Schisandrae Chinensis) promote expression of CCR2 and CCR5 receptors on the AM and IM cell surface,which pass signals to Kvl.3 and Kvl.5 ion channels,leading to changes in the cytoskeleton, and ultimately promoting chemotactic cell migration. | Yuan Yiping Zhai Huaqiang Zhang Tian Guo Zhaojuan Kong Liting Jia Xiaoyu Wang Ningning Dai Ying Liu Guoxiu Wang Yanping | 2017 | Journal of Traditional Chinese Medicine2017,37,5: | 3 |
| 6 | High 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 | 2023 | Journal of Energy Chemistry2023,,1: | 3 |
| 7 | A functional hyperbranched binder enabling ultra-stable sulfur cathode for high-performance lithium-sulfur battery显示文摘Binders are of vital importance in stabilizing the cathodes to enhance the cycling stability of lithiumsulfur(Li-S) batteries. However, conventional binders are typically confronted with the drawback of inability for adsorbing lithium polysulfide(Li PS), thus resulting in severe active material losing and rapid capacity fading. Herein, a novel water-soluble hyperbranched poly(amidoamine)(HPAA) binder with controllable hyperbranched molecular structure and abundant amino end groups for Li-S battery is designed and fabricated, which can improve efficient adsorption for Li PS and stability of the sulfur cathodes. Besides, the strong intermolecular hydrogen bonds in HPAA binder can contribute to the structural stability of S cathode and integration of the conductive paths. Therefore, the Li-S battery with this functional binder exhibits excellent cycle performance with a capacity retention of 91% after 200 cycles at 0.1 C.Even at a high sulfur loading of 5.3 mg cm-2, a specific capacity of 601 mA h g-1 can also be achieved.Density functional theory(DFT) calculation further demonstrates that the enhanced electrochemical stability derives from the high binding energy between amino groups and LiP S and the wide electrochemical window(6.87 e V) of HPAA molecule. Based on the above all, this functional polymer will lighten a new species of binders for eco-friendly sulfur cathodes and significantly promote the practical applications of high-performance Li-S batteries. | Xiang Luo Xianbo Lu Xiaodong Chen Ya Chen Chunyang Yu Dawei Su Guoxiu Wang Lifeng Cui | 2020 | Journal of Energy Chemistry2020,29,11: | 2 |
| 8 | Metal-organic-framework-derived formation of Co–N-doped carbon materials for efficient oxygen reduction reaction显示文摘Non-precious metal nitrogen-doped carbonaceous materials have attracted tremendous attention in the field of electrochemical energy storage and conversion.Herein,we report the designed synthesis of a novel series of Co-N-C nanocomposites and their evaluation of electrochemical properties.Novel yolkshell structured Co nanoparticles@polymer materials are fabricated from the facile coating polymer strategy on the surface of ZIF-67.After calcination in nitrogen atmosphere,the Co–N–C nanocomposites in which cobalt metal nanoparticles are embedded in the highly porous and graphitic carbon matrix are successfully achieved.The cobalt nanoparticles containing cobalt metal crystallites with an oxidized shell and/or smaller(or amorphous)cobalt-oxide deposits appear on the surface of graphitic carbons.The prepared Co–N–C nanoparticles showed favorable electrocatalytic activity for oxygen reduction reactions,which is attributed to its high graphitic degree,large surface area and the large amount existence of Co–N active sites. | Hao Tian Chi Zhang Panpan Su Zhangfeng Shen Hao Liu Guoxiu Wang Shaomin Liu Jian Liu | 2020 | Journal of Energy Chemistry2020,29,1: | 2 |
| 9 | Towards High-Energy and Anti-Self-Discharge Zn-Ion Hybrid Supercapacitors with New Understanding of the Electrochemistry显示文摘Aqueous Zn-ion hybrid supercapacitors(ZHSs)are increasingly being studied as a novel electrochemical energy storage system with prominent electrochemical performance,high safety and low cost.Herein,high-energy and anti-self-discharge ZHSs are realized based on the fibrous carbon cathodes with hierarchically porous surface and O/N heteroatom functional groups.Hierarchically porous surface of the fabricated free-standing fibrous carbon cathodes not only provides abundant active sites for divalent ion storage,but also optimizes ion transport kinetics.Consequently,the cathodes show a high gravimetric capacity of 156 mAh g^(−1),superior rate capability(79 mAh g^(−1)with a very short charge/discharge time of 14 s)and exceptional cycling stability.Meanwhile,hierarchical pore structure and suitable surface functional groups of the cathodes endow ZHSs with a high energy density of 127 Wh kg−1,a high power density of 15.3 kW kg^(−1)and good anti-self-discharge performance.Mechanism investigation reveals that ZHS electrochemistry involves cation adsorption/desorption and Zn_(4)SO_(4)(OH)_(6)·5H_(2)O formation/dissolution at low voltage and anion adsorption/desorption at high voltage on carbon cathodes.The roles of these reactions in energy storage of ZHSs are elucidated.This work not only paves a way for high-performance cathode materials of ZHSs,but also provides a deeper understanding of ZHS electrochemistry. | Yang Li Wang Yang Wu Yang Ziqi Wang Jianhua Rong Guoxiu Wang Chengjun Xu Feiyu Kang Liubing Dong | 2021 | Nano-Micro Letters2021,13,6: | 2 |
| 10 | Traditional Chinese Medicine guidelines for coronavirus disease 2019显示文摘OBJECTIVE:To summarize the evidence from Traditional Chinese Medicine(TCM)practice in the treatment of coronavirus disease 2019(COVID-19)and provide timely clinical practice guidance.METHODS:The guidelines were developed in accordance with the World Health Organization rapid guideline process.The evidence on TCM for COVID-19 from published guidelines,direct and indirect published clinical evidence,first hand clinical data,and expert experience and consensus were collected.The grading of recommendations assessment,development and evaluation(GRADE)method was used to grade the evidence and make the recommendations.RESULTS:Based on the available evidence,the guidelines recommended 17 Chinese medicines for COVID-19:2 Chinese herbal granules,7 Chinese patent medicines,and 8 Chinese herbal injections.CONCLUSION:As the literature search was conducted on March,any subsequent versions of these guidelines require an up-to-date literature review.We hope that the evidence summary in these guidelines will be helpful in global efforts to address COVID-19. | Liang Ning Ma Yanfang Wang Jingya Li Huizhen Wang Xiaohui Jiao Liwen Liu Bin Ma Yan Zhao Chen Luo Xufei Zhao Siya Lu Meng Cao Jin Hu Wenpin Zhang Hairong Liu Guoxiu Lu Cheng Liu Mengyu Li Li Han Xuejie Liu Yuqi Wang Liying Zhao Xueyao Wei Dongfeng Bai Jing Sun Mingyu Yang Yong Wu Xiaodan Chen Yaolong Shi Nannan Wang Yanping Wang Yongyan | 2020 | Journal of Traditional Chinese Medicine2020,40,6: | 2 |
| 11 | Graphene Nanosheets for Enhanced Lithium Storage in Lithium Ion Batteries 显示文摘 | Wang Guoxiu Shen Xiaoping Yao Jane | 2009 | Carbon2009,47,8: | 1 |
| 12 | Facile synthesis and characterization of graphene nanosheets显示文摘 | Wang Guoxiu Yang Juan Park J | 2008 | J Phys Chem(C)2008,112,4: | 1 |
| 13 | Highly efficient and large-scale synthesis of graphene by electrolytic exfoliation显示文摘 | Guoxiu Wang Bei Wang Jinsoo Park Ying Wang Bing Sun Jane Yao | 2009 | Carbon2009,,14: | 1 |
| 14 | Hydrothermal synthesis and optical, magnetic, and supercapacitance properties of nanoporous cobalt oxide nanorods 显示文摘 | Wang Guoxiu Shen Xiaoping Horvat J | 2009 | Journal of Physical Chemistry C2009,113,11: | 1 |
| 15 | Electrochemical performance of α-Fe 2 O 3 nanorods as anode material for lithium-ion cells显示文摘 | Hao Liu Guoxiu Wang Jinsoo Park Jiazhao Wang Huakun Liu Chao Zhang | 2008 | Electrochimica Acta2008,,6: | 1 |
| 16 | Highly Ordered Mesoporous MoS2 with Expanded Spacing of the (002) Crystal Plane for Ultrafast Lithium Ion Storage显示文摘 | Hao Liu Dawei Su Ruifeng Zhou Bing Sun Guoxiu Wang Shi Zhang Qiao | 2012 | Adv. Energy Mater2012,,8: | 1 |
| 17 | Recent advances in “water in salt” electrolytes for aqueous rechargeable monovalent-ion(Li^(+), Na^(+), K^(+)) batteries显示文摘Aqueous rechargeable batteries have attracted enormous attention owning to their intrinsic characteristics of non-flammability, low cost, and the superior ionic conductivity of the aqueous electrolyte.However, the narrow electrochemical stability window(1.23 V), imposed by hydrogen and oxygen evolution, constrains the overall energy density of batteries. The revolutionary 'water-in-salt” electrolytes considerably expand the electrochemical stability window to 3 or even 4 volts, giving rise to a new series of high-voltage aqueous metal-ion chemistries. Herein, the recent advances in 'water-in-salt” electrolytes for aqueous monovalent-ion(Li^(+), Na^(+), K^(+)) rechargeable batteries have been systematically reviewed. Meanwhile, the corresponding reaction mechanisms, electrochemical performances and the existing challenges and opportunities are also highlighted. | Hong Gao Kaikai Tang Jun Xiao Xin Guo Weihua Chen Hao Liu Guoxiu Wang | 2022 | Journal of Energy Chemistry2022,31,6: | 1 |
| 18 | Solvothermal synthesis and gas-sensing performance of Co304 hollow nanospheres显示文摘 | Park Jinsoo Shen Xiaoping Wang Guoxiu | 2009 | Sensors and Actuators B: Chemical2009,136,: | 1 |
| 19 | Facile synthesis and characterization of graphene nanosheets显示文摘 | Wang Guoxiu Yang Juan Park J | | 0,,22: | 1 |
| 20 | Digital gene expression profiling analysis of DNA repair pathways in colon cancer stem population of HT29 cells显示文摘癌症干细胞(CSC ) 贡献新瘤损害的恶化和发展。当很可得到的临床的途径例如化学药品和放射治疗,将杀死癌症房间的多数时,他们都不杀死他们。一些抵抗房间象 CSC 一样,能由于他们的优秀自我维持的能力幸存,甚至在挑战性的环境。在现在的学习,我们响应单个海滨的损坏和双海滨从 HT29 房间线调查了冒号 CSC 的 DNA 修理基因的 mRNA 水平裂缝,以及在基础切除的关键基因的明显的 upregulation 修理,失配修理,非相应加入结束,并且在这些房间的相应再结合小径。数字基因表示分析在可以在 DNA 修理起重要作用的 CD44 + HT29 房间识别了 upregulated 基因。我们的结果表明冒号 CSC 忍受有效 DNA 修理能力,它可能在重复化学药品和放射治疗以后解释冒号 CSC 的幸存。 | Wenxue Wang Guoxiu Zhang Jing Yang Huan Gu Lei Ding Haijing Yu Min Yu Qinghua Cui Xinglai Ji Meizhang Li | 2017 | Acta Biochimica et Biophysica Sinica2017,49,1: | 1 |