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| 1 | Three dimensional porous frameworks for lithium dendrite suppression显示文摘Lithium metal is a promising anode material owing to its very low electrochemical potential and ultrahigh specific capacity.However,the growth of lithium dendrites could result in a short lifespan,low coulombic efficiency,and potential safety hazards during the progress of lithium plating/stripping.These factors drastically hinder its application in lithium metal batteries.This review focuses on the use of three dimensional(3D)porous host frameworks to improve Li plating/stripping behaviors,accommodate the change in volume,and suppress or block lithium dendrite growth.Various 3D porous frameworks,including the conductive carbon-based,metal-based,and lithiophilic inorganic-compound frameworks are introduced and summarized in detail.The particular functions,relative developments,and optimized strategies of various 3D porous frameworks for lithium deposition/dissolution behaviors are discussed.Moreover,the challenges and promising developments in the field of Li metal anodes will be discussed at the end of this review. | Shuyan Ni Shuangshuang Tan Qinyou An Liqiang Mai | 2020 | Journal of Energy Chemistry2020,29,5: | 11 |
| 2 | Rapid tooth movement through distraction osteogenesis of the periodontal ligament in dogs显示文摘背景:动物模型通过牙齿周围的系带的分心成骨为快速的牙齿运动的学习被需要进抽取窝。方法:修改分心设备在左边上被放在在第一和第三颗 mandible 的前臼齿之间的八条狗上;右边上的传统的笔直地明智的器具的类似的放置用作控制。试验性的错误答案被激活(0.25 mm/d ) 两次,一天和控制设备被激活(100 g ) 为有在星期的巩固时期的二个星期二,三,六,和十。二条狗在每个巩固时间点被牺牲;牙齿运动,抛锚的损失,和仙子的率和模式顶端的电影组织学地被评估,并且影响前臼齿和包围牙齿周围的纸巾被除去并且检验。一般观察, X 光检查仙子顶端的拍摄和组织学检查被执行。结果:远侧的运动((3.66+/-0.14 ) 公里) 在修改分心超过了完成那以后,二个星期测量了使用传统的设备((1.15+/-0.21 ) 公里;P<0.05 ) 。抛锚的损失最低限度地被平均(0.34+/-0.06 ) 公里并且(0.32+/-0.07 ) 公里在试验性并且控制分别地站在一起。由 X 光线照相术,双方上的顶端、侧面的表面根吸收是最小的。牙槽骨损害从来不是明显的。成纤维细胞在沿着分心的方向活跃地形成的牙齿周围的系带和骨针被充实。结论:犬的模型对通过牙齿周围的系带的分心成骨的快速的牙齿运动的学习合适。这种技术加速牙齿运动,牙齿周围的改变,牙槽骨吸收,并且,可以导致成纤维细胞形成与相比传统正牙方法没有不利地影响根吸收,骨头损失,牙动度和抛锚损失。 | AI Hong XU Qing-feng LU Hong-fei MAI Zhi-hui AN Ai-qun LIU Guo-ping | 2008 | Chinese Medical Journal2008,,5: | 9 |
| 3 | Three-dimensional porous V2O5 hierarchical octahedrons with adjustable pore architectures for long-life lithium batteries显示文摘三维(3D ) 多孔的 V < 潜水艇 class= “ a-plus-plus ” > 2 O < 潜水艇 class= “ a-plus-plus ” > 5 八面体成功地被制作了经由一固态刚准备的铵钒氧化物(AVO ) 的变换过程八面体。AVO 八面体的形成是盖住试剂和生长种类的赞成过度饱和的选择吸附的结果。随后, 3D 多孔的 V < 潜水艇 class= “ a-plus-plus ” > 2 O < 潜水艇 class= “ a-plus-plus ” > 5 八面体被 AVO 八面体的简单 thermolysis 经由一个锻烧处理获得。作为为锂电池的阴极材料,多孔的 V < 潜水艇 class= “ a-plus-plus ” > 2 O < 潜水艇 class= “ a-plus-plus ” > 5 八面体阴极在西班牙的北方展出 96 mAsga 盆的一个能力;并且(3 ) Zpy (n ?=? 17 ) , LV 质量从 226 被减少[178;306 ] g 到 220 [169;254 ] g (p ?=? 0.007 ) 在 13 点 ? 桴 ? 畦摮浡湥慴? 牦煥敵据敩 ? 景琠敨猠摥浩湥獴? 敢楳敤琠敨氠湯楧畴楤慮? 湡 ? 牴湡癳牥敳映湵慤敭瑮污映敲畱湥楣獥漠 ? 慥档戠極摬湩 ? 慢敳 ? 湯琠敨愠灭楬畴敤猠数瑣慲愠摮琠敨映潬牯猠数瑣慲? 慲楴?? 剓? 敭桴摯? | Qinyou An Pengfei Zhang Fangyu Xiong Qiulong Wei Jinzhi Sheng Qinqin Wang Liqiang Mai | 2015 | Nano Research2015,8,2: | 9 |
| 4 | Metastable amorphous chromium-vanadium oxide nanoparticles with superior performance as a new lithium battery cathode显示文摘钒氧化物的主要缺点作为阴极材料是它的低传导性,低实际能力和差的骑车稳定性。补充说 Cr 能改进它的传导性和一个亚稳的非结晶的状态可以提供更高的能力和稳定性。在这个工作,亚稳的非结晶的 Cr-V-O nanoparticles 成功地通过反应由退火跟随了的灵巧的一起沉淀被准备了处理。作为为锂电池的阴极材料,亚稳的非结晶的 Cr-V-O nanoparticles 展览高度能力(在在 1.54 V 之间的 100 mA/g 的 260 mAh/g ) ,低能力损失(超过 80% 在 100 mA/g 在 200 个周期以后被保留) 并且高率能力(多达 3 A/g ) 。 | Jinzhi Sheng Qidong Li Qiulong Wei Pengfei Zhang Qinqin Wang Fan Lv Qinyou An Wei Chen Liqiang Mai | 2014 | Nano Research2014,7,11: | 5 |
| 5 | Low-strain TiP_(2)O_(7) withthree-dimensionalionchannelsas long-life and high-rate anode material for Mg-ion batteries显示文摘Rechargeable magnesium batteries are identified as a promising next-generation energy storage system,but their development is hindered by the anode−electrolyte−cathode incompatibilities and passivation of magnesium metal anode.To avoid or alleviate these problems,the exploitation of alternative anode materials is a promising choice.Herein,we present titanium pyrophosphate(TiP_(2)O_(7))as anode materials for magnesium-ion batteries(MIBs)and investigate the effect of the crystal phase on its magnesium storage performance.Compared with the me-tastable layered TiP_(2)O_(7),the thermodynamically stable cubic TiP_(2)O_(7) displays a better rate capability of 72 mAh g^(−1) at 5000 mA g^(−1).Moreover,cubic TiP_(2)O_(7) exhibits excellent cycling stability with the capacity of 60 mAh g^(−1) after 5000 cycles at 1000 mA g^(−1),which are better than pre-viously reported Ti-based anode materials for MIBs.In situ X-ray diffraction technology confirms the single-phase magnesiumion inter-calation/deintercalation reaction mechanism of cubic TiP_(2)O_(7) with a low volume change of 3.2%.In addition,the density functional theory calcu-lation results demonstrate that three-dimensional magnesiumion diffu-sion can be allowed in cubic TiP_(2)O_(7) with a low migration energy barrier of 0.62 eV.Our work demonstrates the promise of TiP_(2)O_(7) as high-rate and long-life anode materials for MIBs and may pave the way for further development of MIBs. | Fangyu Xiong Yalong Jiang Li Cheng Ruohan Yu Shuangshuang Tan Chen Tang Chunli Zuo Qinyou An Yunlong Zhao Jean-Jacques Gaumet Liqiang Mai | 2022 | Interdisciplinary Materials2022,1,1: | 3 |
| 6 | FeSe2 clusters with excellent cyclability and rate capabilityfor sodium-ion batteries显示文摘Sodium-ion batteries (SIBs) have great promise for sustainable and economicalenergy-storage applications. Nevertheless, it is a major challenge to developanode materials with high capacity, high rate capability, and excellent cyclingstability for them. In this study, FeSe2 clusters consisting of nanorods weresynthesized by a facile hydrothermal method, and their sodium-storage propertieswere investigated with different electrolytes. The FeSe2 clusters delivered highelectrochemical performance with an ether-based electrolyte in a voltage rangeof 0.5-2.9 V. A high discharge capacity of 515 mAh.g-1 was obtained after 400 cyclesat 1 A.g-1, with a high initial columbic efficiency of 97.4%. Even at an ultrahighrate of 35 A-g-1 a specific capacity of 128 mAh.g-1 was achieved. Using calculations,we revealed that the pseudocapacitance significantly contributed to the sodium-ionstorage, especially at high current rates, leading to a high rate capability. Thehigh comprehensive performance of the FeSe2 clusters makes them a promisinganode material for SIBs. | Xiujuan Wei Chunjuan Tang Qinyou An Mengyu Yan Xuanpeng Wang Ping Hu Xinyin Cai Liqiang Mai | 2017 | Nano Research2017,10,9: | 3 |
| 7 | Amine-assisted synthesis of FeS@N-C porous nanowires for highly reversible lithium storage显示文摘Iron sulfide is an attractive anode material for lithium-ion batteries (LIBs) due to its high specific capacity,environmental benignity,and abundant resources.However,its application is hindered by poor cyclability and rate performance,caused by a large volume variation and low conductivity.Herein,iron sulfide porous nanowires confined in an N-doped carbon matrix (FeS@N-C nanowires) are fabricated through a simple amine-assisted solvothermal reaction and subsequent calcination strategy.The as-obtained FeS@N-C nanowires,as an LIB anode,exhibit ultrahigh reversible capacity,superior rate capability,and long-term cycling performance.In particular,a high specific capacity of 1,061 mAh·g-1 can be achieved at 1 A·g-1 after 500 cycles.Most impressively,it exhibits a high specific capacity of 433 mAh·g-1 even at 5 A·g-1.The superior electrochemical performance is ascribed to the synergistic effect of the porous nanowire structure and the conductive N-doped carbon matrix.These results demonstrate that the synergistic strategy of combining porous nanowires with an N-doped carbon matrix holds great potential for energy storage. | Xiujuan Wei Xin Tan Jiasheng Meng XuanpengWang Ping Hu Wei Yang Shuangshuang Tan Qinyou An Liqiang Mai | 2018 | Nano Research2018,11,12: | 3 |
| 8 | Novel hollow Ni0.33Co0.67Se nanoprisms for high capacity lithium storage显示文摘In this work,homogeneous Ni0.33Co0.67Se hollow nanoprisms were synthesized successfully in virtue of Kirkendall effect.It is the first time for bimetallic Ni-Co compounds Ni0.33Co0.67Se to be used in lithium-ion batteries (LIBs).Impressively,the Ni0.33Co0.67Se hollow nanoprisms show superior specific capacity (1,575 mAh/g at the current density of 100 mA/g) and outstanding rate performance (850 mAh/g at 2,000 mA/g) as anode material for LIBs.This work proves the potential of bimetallic chalcogenide compounds as high performance anode materials for LIBs. | Shaohua Zhu Cheng Chen Pan He Shuangshuang Tan Fangyu Xiong Ziang Liu Zhuo Peng Qinyou An Liqiang Mai | 2019 | Nano Research2019,12,6: | 3 |
| 9 | Surface pseudocapacitance of mesoporous Mo_(3)N_(2) nanowire anode toward reversible high-rate sodium-ion storage显示文摘Sodium-ion storage devices are highly desirable for large-scale energy storage applications owing to the wide availability of sodium resources and low cost.Transition metal nitrides(TMNs)are promising anode materials for sodium-ion storage,while their detailed reaction mechanism remains unexplored.Herein,we synthesize the mesoporous Mo3N2 nanowires(Meso-Mo_(3)N_(2)-NWs).The sodium-ion storage mechanism of Mo3N2 is systematically investigated through in-situ XRD,ex-situ experimental characterizations and detailed kinetics analysis.Briefly,the Mo_(3)N_(2) undergoes a surface pseudocapacitive redox charge storage process.Benefiting from the rapid surface redox reaction,the Meso-Mo_(3)N_(2)-NWs anode delivers high specific capacity(282 m Ah g^(-1) at 0.1 A g^(-1)),excellent rate capability(87 m Ah g^(-1) at 16 A g^(-1))and long cycling stability(a capacity retention of 78.6%after 800 cycles at 1 A g^(-1)).The present work highlights that the surface pseudocapacitive sodium-ion storage mechanism enables to overcome the sluggish sodium-ion diffusion process,which opens a new direction to design and synthesize high-rate sodiumion storage materials. | Yalong Jiang Jun Dong Shuangshuang Tan Qiulong Wei Fangyu Xiong Wei Yang Yuanhao Shen Qingxun Zhang Zi'ang Liu Qinyou An Liqiang Mai | 2021 | Journal of Energy Chemistry2021,30,4: | 2 |
| 10 | Meta-synthesis management framework of a complex project: A case study of the deck pavement project of the Hong Kong-Zhuhai-Macao Bridge显示文摘Innovative technology and deep uncertainty during the design and construction process of complex projects introduce great challenges to their organization and management.The traditional methods,represented in the project management body of knowledge(PMBOK)guide,can solve systematic problems;however,they cannot solve complex problems.Based on the management practice implemented in the deck pavement project of the Hong Kong-Zhuhai-Macao Bridge(HZMB),in this work,we propose a meta-synthesis management framework for a complex project from the perspective of the science of complexity.The method deems that the complexity of the project has the characteristic of being multi-scale both in the design phase and the construction phase.These problems can be classified into different categories,each of which requires a different strategy.As a result,it is first necessary to adopt the'exploration'strategy to reduce project complexity and to transform the deep uncertainty problems into systematic problems.Then,the'exploitation'strategy should be used to apply the PMBOK and other traditional methods to achieve the design and construction goals of the project and to improve its efficiency.More specifically,in the design phase of a complex project,the'innovative integration'process is used for the exploration of the new engineering technology and knowledge;then,the'functional integration'process is employed to define the system architecture,the interface relationship,the technical index,and other functions.In the construction phase,the'adaptive integration'process is used for the construction of the engineering organization system;next,the'efficient integration'process is employed to improve the actual construction performance.The meta-synthesis management framework proposed in this work reveals the multi-scale principle of solving complex problems in the management practice of a complex project,and develops the methodology of metasynthesis. | Qiang MAI Xing-lin GAO Shi AN Ding LIU Ming LIU | 2018 | Frontiers of Engineering Management2018,5,1: | 2 |
| 11 | Serrated lithium fluoride nanofibers-woven interlayer enables uniform lithium deposition for lithium-metal batteries显示文摘The uncontrollable formation of Li dendrites has become the biggest obstacle to the practical application of Li-metal anodes in high-energy rechargeable Li batteries.Herein,a unique LiF interlayer woven by millimeter-level,single-crystal and serrated LiF nanofibers(NFs)was designed to enable dendrite-free and highly efficient Li-metal deposition.This high-conductivity Li F interlayer can increase the Li^(+)transference number and induce the formation of’Li F–NFs-rich’solid–electrolyte interface(SEI).In the’Li F–NFs-rich’SEI,the ultra-long Li F nanofibers provide a continuously interfacial Li^(+)transport path.Moreover,the formed Li–LiF interface between Li-metal and SEI film renders low Li nucleation and high Li^(+)migration energy barriers,leading to uniform Li plating and stripping processes.As a result,steady charge–discharge in a Li//Li symmetrical cell for 1600 h under 4 m Ah cm^(-2)and 400 stable cycles under a high area capacity of 5.65 mAh cm^(-2)in a high-loading Li//rGO–S cell at 17.9 mA cm^(-2)could be achieved.The free-standing LiF–NFs interlayer exhibits superior advantages for commercial Li batteries and displays significant potential for expanding the applications in solid Li batteries. | Shuangshuang Tan Yalong Jiang Shuyan Ni Hao Wang Fangyu Xiong Lianmeng Cui Xuelei Pan Chen Tang Yaoguang Rong Qinyou An Liqiang Mai | 2022 | National Science Review2022,9,11: | 2 |
| 12 | Persistent organic pollutants in environment of the Pearl River Delta, China: an overview显示文摘 | Jiamo Fu Bixian Mai Guoying Sheng Gan Zhang Xinming Wang Ping’an Peng Xianming Xiao Rong Ran Fanzhong Cheng Xianzhi Peng Zhishi Wang U Wa Tang | 2003 | Chemosphere2003,,9: | 2 |
| 13 | Persistent organic pollutants in environment of the Pearl River Delta, China: an overview显示文摘 | Jiamo Fu Bixian Mai Guoying Sheng Gan Zhang Xinming Wang Ping’an Peng Xianming Xiao Rong Ran Fanzhong Cheng Xianzhi Peng Zhishi Wang U Wa Tang | 2003 | Chemosphere2003,,9: | 2 |
| 14 | Microwave-assisted pretreatment of cellulose in ionic liquid for accelerated enzymatic hydrolysis 显示文摘 | Ha S H Mai N L An G | 2011 | Bioresource Technology2011,102,2: | 1 |
| 15 | S-methyl-N, N-diethyhhiocarbamate sulfoxide and S-methyl-N, N-diethylthiocarbamate sulfone, wo candidates for the active metabolite of disulfiram显示文摘 | Mays DC Nelson AN Lam-Hoh J | 1996 | Alcohol Clin Exp Res1996,20,3: | 1 |
| 16 | Microwave-assisted pretreatment ofcellulose in ionic liquid for accelerated enzymatic hydrolysis显示文摘 | Ha SH Mai NL An G Koo YM | 2011 | BioresourTechnol2011,102,2: | 1 |
| 17 | Evidence for direct involvement of epiubicin in the formation of chomosomal translocations in t ( 15 ; 17 ) therapy-related acute promyelocytic leukemia 显示文摘 | Mays AN Osheroff N Xiao Y | 2010 | Blood2010,115,2: | 1 |
| 18 | Photolysis of sulfiram : a mechanism for its disulfiram-like reaction显示文摘 | Mays DC Nelson AN Benson LM | 1994 | Biochem Pharmacol1994,48,10: | 1 |
| 19 | Nanoscroll Buffered Hybrid Nanostructural VO<sub>2</sub> (B) Cathodes for High‐Rate and Long‐Life Lithium Storage显示文摘 | Liqiang Mai Qiulong Wei Qinyou An Xiaocong Tian Yunlong Zhao Xu Xu Lin Xu Liang Chang Qingjie Zhang | 2013 | Adv Mater2013,,21: | 1 |
| 20 | Particle-bound polychlorinated dibenzo- p -dioxins and dibenzofurans in the atmosphere of Guangzhou, China显示文摘 | Liping Yu Bixian Mai Xiangzhou Meng Xinhui Bi Guoying Sheng Jiamo Fu Ping’an Peng | 2005 | Atmospheric Environment2005,,1: | 1 |