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| 1 | Geological analysis and FT dating of the large-scale right-lateral strike-slip movement of the Red River fault zone显示文摘Tectonically, the large-scale right-lateral strike-slip movement along the Red River fault zone is char-acterized at its late phase with the southeastward extension and deformation of the Northwestern Yunnan normal fault depression on its northern segment, and the dextral shear displacement on its central-southern segment. Research of the relations between stratum deformation and fault movement on the typical fault segments, such as Jianchuan, southeast Midu, Yuanjiang River, Yuanyang, etc. since the Miocene Epoch shows that there are two times dextral faulting dominated by normal shearing occurring along the Red River fault zone since the Miocene Epoch. The fission track dating (abbrevi-ated to FT dating, the same below) is conducted on apatite samples collected from the above fault segments and relating to these movements. Based on the measured single grain’s age and the con-fined track length, we choose the Laslet annealing model to retrieve the thermal history of the samples, and the results show that the fault zone experienced two times obvious shear displacement, one in 5.5 ± 1.5 MaBP and the other in 2.1± 0.8 MaBP. The central-southern segment sees two intensive uplifts of mountain mass in the Yuanjiang River-Yuanyang region at 3.6―3.8 MaBP and 1.6―2.3 MaBP, which correspond to the above-mentioned two dextral normal displacement events since the late Miocene Epoch. | XIANG HongFa WAN JingLin HAN ZhuJun GUO ShunMin ZHANG WanXia CHEN LiChun DONG XingQuan | 2007 | Science China Earth Sciences2007,50,3: | 10 |
| 2 | Longling-Lancang fault zone in southwest Yunnan, China——A newly-generated rupture zone in Continental crust显示文摘The Longling-Lancang fault zone, consisting of sets of en echelon or clustered faults, is a newly-generated rupture zone. it is characterized by the distribution of active faults, earthquake faults and earthguakes in zones. Formed in the Early-Middle Pleistocene, stili active in the late, it moves dextrally and extensionally. it tends to cut off the locked segments and discontinuous segments at first, then pervades totally along the zone, accompanied by strong earthguakes. | QUO Shunmin XIANG Hongfa ZHOU Ruiqi XU Xiwei DONG Xingquan ZHANG Wanxia | 2000 | Chinese Science Bulletin2000,45,4: | 5 |
| 3 | A multi-layered Ti3C2/Li2S composite as cathode material for advanced lithium-sulfur batteries显示文摘Lithium-sulfur(Li-S)batteries with lithium sulfide(Li2S)as cathode have attracted great attention recently,because of high specific capacity(1166 mA h g^-1)of Li2S and potential safety of using Li metal-free anode.Li2S cathode has lower volume expansion and higher thermal stability than the traditional sulfur cathode.However,the problems of'shuttle effect'and poor electrical conductivity of the cathode material still need to be overcome.In this work,multi-layered Ti3C2/Li2S(ML-Ti3C2/Li2S)composite has been prepared and applied as a cathode in advanced Li-S batteries.The unique multi-layer sheet structure of Ti3 C2 provides space for the storage of Li2S,and its good conductivity greatly enhances the usage ratio of Li2 S and improves the conductivity of the whole Li2S cathode.Compared with commonly used graphene,ML-Ti3C2 can trap polysulfides effectively by chemical adsorption and also activate the reaction of Li2S to polysulfides by forming Ti-S bond.As a result,during the cycling of the batteries with ML-Ti3C2/Li2S cathodes,the activation voltage barrier of the first cycle has decreased to 2.8 V,and the'shuttle effect'has been suppressed effectively.The cycling and rate performances of the ML-Ti3C2/Li2S cathodes have been significantly improved compared to that of graphene/Li2 S cathodes.They maintain a capacity of 450 mAh g^-1 at 0.2 C after 100 cycles,and deliver attractive rate performances of 750,630,540,470 and 360 mAh g^-1 at 0.1 C,0.2 C,0.5 C,1 C,and 2 C,respectively. | Xin Liang Jufeng Yun Kun Xu Hongfa Xiang Yong Wang Yi Sun Yan Yu | 2019 | Journal of Energy Chemistry2019,28,12: | 4 |
| 4 | Solid-state electrolytes for solid-state lithium-sulfur batteries:Comparisons,advances and prospects显示文摘Compared with other secondary batteries,lithium-sulfur batteries(LSBs)have unparalleled advantages such as high energy density,low cost,etc.In liquid LSB systems,it is extremely easy to cause severe‘‘shuttle effecto and safety issues.Hence,the development of solid-state LSBs(SSLSBs)has been attracting much more attention.As the most essential part of the SSLSBs,the solid-state electrolyte(SSE)has received significant attention from researchers.In this review,we concentrate on discussing the core of SSLSBs,which is the SSE.Moreover,we also highlight the differences in the properties of the different SSEs,which are polymer-based electrolytes and ceramic-based electrolytes.In addition,the challenges and advances in different types of SSEs are also compared and described systematically.Furthermore,the prospects for new SSE systems and the design of effective SSE structures to achieve highperformance SSLSBs are also discussed.Thus,this review is expected to give readers a comprehensive and systematic understanding of SSEs for SSLSBs. | Xin Liang Lulu Wang Xiaolong Wu Xuyong Feng Qiujie Wu Yi Sun Hongfa Xiang Jiazhao Wang | 2022 | Journal of Energy Chemistry2022,31,10: | 2 |
| 5 | 显示文摘 | Xiang Hongfa Tian Bingbing Lian Peichao | 2011 | Alloys and Compounds2011,509,26: | 1 |
| 6 | En- hanced cycling performance of Fea 04 -graphene nanocom- posite as an anode material for lithium- ion batteries显示文摘 | Peichao Lian Xuefeng Zhu Hongfa Xiang | 2010 | Electroehimica Acta2010,56,: | 1 |
| 7 | 查看详情显示文摘 | Tian Bingbing Xiang Hongfa Zhang Le | | 0,,19: | 1 |
| 8 | Active thrusting and folding in the Qilian Shah, and decoupling between upper crust and mantle in north eastern Tibet显示文摘 | Tapponnier P Neyer B Avouae J P Pehzer G Gaudemer Y Guo Shunmin Xiang Hongfa Yin Kelun Chen Zhitai Cai Shuahua Dai Huagang | 1990 | Earth Planet gel Lett1990,97,34: | 1 |
| 9 | An inorganic membrane as a separator for lithium-ion battery显示文摘 | Xiang Hongfa Chen Jingjuan Li Zhong | 2011 | J Power Sources2011,196,20: | 1 |
| 10 | Niobium doped lithium titanate as a high rate anode material for Li- ion batteries显示文摘 | Bingbing Tian Hongfa Xiang Le Zhang | 2010 | Electrochimica Acta2010,55,: | 1 |
| 11 | Niobium doped lithium titanate as a high rate anode material for Liion batteries显示文摘 | Tian Bingbing Xiang Hongfa Zhang Le | 2010 | Electrochim Aeta2010,55,: | 1 |
| 12 | Free-standing vanadium pentoxide nanoribbon film as a high-performance cathode for rechargeable sodium batteries显示文摘Vanadium pentoxide(V_2O_5·nH_2O) nanoribbons are synthesized via a hydrothermal process. These ribbons are 20 nm thick, 200 nm to 1 μm wide and several tens of micrometers long. Free-standing binder-free films are prepared by using these nanoribbons with multi-walled carbon nanotubes(MWCNTs) and used as the cathode for rechargeable sodium batteries. The large interlayer space between the V_2O_5 bilayers can enhance the kinetics of sodium ion intercalation/deintercalation. In addition, the intertwining network of the V_2O_5·0.34 H_2O film provides efficient electron conduction pathways and shortens diffusion distances of sodium ion. The electrochemical tests prove that the freestanding V_2O_5 · 0.34 H_2O film cathode delivers high reversible specific capacities(190 mAh/g) and good cycling stabilities(170 mAh/g after 150 cycles) in the voltage range between 1.5 V and 3.5 V. | Yi Sun Xin Liang Hongfa Xiang Yan YU | 2017 | Chinese Chemical Letters2017,28,12: | 1 |
| 13 | Research on Tectonic Features and Dynamics in the Northwestern Yunnan Extensional Region显示文摘The paper discusses the features of active tectonics,seismicity and neotectonic environment in the Northwestern Yunnan extensional region.The intensity of both tectonic activity and seismicity is strong near the south and north boundaries in the areas,but weak in the middle.The distribution of the strongest subsided areas,lacustrine terrace and Quaternary fold is characterized by the diagonal symmetry.Formation of extensional tectonics in the Northwestern Yunnan can be explained by passive model,experiencing the action of compressional force in the N-S direction and shear force in the SW-NE direction,and classified as a special pull-apart tectonics.The direction of the composite force is NNE,which is coincided with the results acquired by the methods of water-compressed rupture and physical modelling. | Han Zhujun,Xu Jie,Guo Shunming,Yang Zhu’en,Xiang Hongfa,and Wu DaningInstitute of Geology,SSB,Beijing 100029,China | 1995 | Earthquake Research in China1995,9,2: | 1 |
| 14 | Adifferentiated shared Protection algorithm supporting traffic groo- ming in WDM Mesh Network显示文摘 | Bing Xiang Hongfa Yu Sheng Wang | 2004 | ICCAS2004,1,: | 1 |
| 15 | Niobium doped lithium titanate as a high rate anode material for Li-ion batteries显示文摘 | Bingbing Tian Hongfa Xiang Le Zhang | | 0,,: | 1 |
| 16 | Stable sodium anodes for sodium metal batteries(SMBs) enabled by in-situ formed quasi solid-state polymer electrolyte显示文摘A high-performance quasi-solid polymer electrolyte for sodium metal batteries(SMBs)based on in-situ polymerized poly(1,3-dioxolane)(DOL)with 20%volume ratio of fluoroethylene carbonate(FEC),termed'PDFE-20',is proposed in this work.It is demonstrated PDFE-20 possesses a room-temperature ionic conductivity of 3.31×10^(-3) S cm^(-1),an ionic diffusion activation energy of 0.10 eV,and an oxidation potential of 4.4 V.SMBs based on PDFE-20 and Na_(3)V_(2)(PO_(4))_(3)(NVP)cathodes were evaluated with an active material mass loading of 6.8 mg cm^(-2).The cell displayed an initial discharge specific capacity of 104 mA h g^(-1),and97.1%capacity retention after 100 cycles at 0.5 C.In-situ polymerization conformally coats the anode/-cathode interfaces,avoiding geometrical gaps and high charge transfer resistance with ex-situ polymerization of the same chemistry.FEC acts as a plasticizer during polymerization to suppress crystallization and significantly improves ionic transport.During battery cycling FEC promotes mechanical congruence of electrolyte-electrode interfaces while forming a stable NaF-rich solid electrolyte interphase(SEI)at the anode.Density functional theory(DFT)calculations were also performed to further understand the role FEC in the poly(DOL)-FEC electrolytes.This work broadens the application of in-situ prepared poly(DOL)electrolytes to sodium storage and demonstrates the crucial role of FEC in improving the electrochemical performance. | Jian Ma Xuyong Feng Yueyue Wu Yueda Wang Pengcheng Liu Ke Shang Hao Jiang Xianglong Hou David Mitlin Hongfa Xiang | 2023 | Journal of Energy Chemistry2023,,2: | 0 |
| 17 | In Situ Directional Polymerization of Poly(1,3-dioxolane)Solid Electrolyte Induced by Cellulose Paper-Based Composite Separator for Lithium Metal Batteries显示文摘In traditional in situ polymerization preparation for solid-state electrolytes,initiators are directly added to the liquid precursor.In this article,a novel cellulose paper-based composite separator is fabricated,which employs alumina as the inorganic reinforcing material and is loaded with polymerization initiator aluminum trifluoromethanesulfonate.Based upon this,a separator-induced in situ directional polymerization technique is demonstrated,and the extra addition of initiators into liquid precursors is no longer required.The polymerization starts from the surface and interior of the separator and extends outward with the gradually dissolving of initiators into the precursor.Compared with its traditional counterpart,the separator-induced poly(1,3-dioxolane)electrolyte shows improved interfacial contact as well as appropriately mitigated polymerization rate,which are conducive to practical applications.Electrochemical measurement results show that the prepared poly(1,3-dioxolane)solid electrolyte possesses an oxidation potential up to 4.4 V and a high Li+transference number of 0.72.After 1000 cycles at 2 C rate(340 mA g^(−1)),the assembled Li||LiFePO_(4)solid battery possesses a 106.8 mAh g^(−1)discharge capacity retention and 83.5%capacity retention ratio,with high average Coulombic efficiency of 99.5%achieved.Our work may provide new ideas for the design and application of in situ polymerization technique for solid electrolytes and solid batteries. | Jian Ma Yueyue Wu Hao Jiang Xin Yao Fan Zhang Xianglong Hou Xuyong Feng Hongfa Xiang | 2023 | Energy & Environmental Materials2023,6,3: | 0 |
| 18 | 2-(Trifluoroacetyl) thiophene as an electrolyte additive for high-voltage lithium-ion batteries using LiCoO_(2) cathode显示文摘The development of high voltage electrolytes plays a critical role to achieve advanced lithium ion batteries with high energy density.Application of suitable electrolyte additives is a facile and effective way to achieve enhanced electrochemical perfo rmance at high voltage operation.In this work,2-(tri fluoroacetyl)thiophene(TFPN) was investigated as a functional electrolyte additive for high performance lithium ion batteries using high-voltage LiCoO2 cathode.When cycled between 3.0 V and 4.4 V at 0.5 C,the capacity retention of the LiCoO2 cathode significantly increases from 33.2 %-90.6 % by the addition of 0.5 wt%TFPN into the baseline electrolyte.Based on the measurements on impedance spectra and X-ray photoelectron spectra,the improved cycling performance is attributed to the preferential oxidation of TFPN on the cathode surface and thus form a protective layer to suppress the decomposition of both electrolyte solvent and lithium salt.This work presents that TFPN has great potential as functional additive for the development of high-voltage and high-energy-density lithium ion batteries. | Yi Sun Jian Huang Hongfa Xiang Xin Liang Yuezhan Feng Yan Yu | 2020 | Journal of Materials Science & Technology2020,52,20: | 0 |
| 19 | Large-Scale Dextral Strike-Slip Movement and Associated Tectonic Deformation Along the Red-River Fault Zone显示文摘Field investigation has revealed that the large-scale dextral strike-slip movement and the associated tectonic deformation along the Red River fault zone have the following features: geometrically, the Red River fault zone can be divided into three deformation regions, namely, the north, central and south regions. The north region lies on the eastern side of the Northwest Yunnan extensional taphrogenic belt, which is characterized by the 3 sets of rift-depression basins striking NNW, NNE and near N-S since the Pliocene time, and on its western side is the Lanping-Yunlong compressive deformation belt of the Paleogene to Neogene; the deformation in the central region is characterized by dextral strike-slip or shearing. The east Yunnan Miocene compressive deformation belt lies on the eastern side of the fault in the south, and the Tengtiaohe tensile fault depression belt is located on its west. In terms of tectonic geomorphology, the aforementioned deformation is represented by basin-range tectonics in the north, linear faulted valley-basins in the central part and compressive (or tensional) basins in the south. Among them, the great variance in elevation of the planation surfaces on both sides of the Cangshan-Erhai fault suggests prominent normal faulting along the Red River fault since the Pliocene. From the viewpoint of spatial-temporal evolution, the main active portion of the fault was the southern segment in the Paleogene-Miocene-Pliocene, which is represented by “tearing” from south to north. The main active portion of the fault has migrated to the northern segment since the Pliocene, especially in the late Quaternary, which is characterized by extensional slip from north to southeast. The size of the deformation region and the magnitude of deformation show that the eastern plate of the Red River fault has been an active plate of the relative movement of blocks. | Xiang Hongfa Han Zhujun Guo Shunmin Zhang Wanxia Chen Lichun | 2005 | Earthquake Research in China2005,19,2: | 0 |
| 20 | The Principle and Method for Delineation of Potential Seismic Sources in Northwest Yunnan显示文摘Based on the collection and analysis of achievements of other scholars, and by consulting the results of seismic safety evaluation of engineering sites and field surveys of recent years, the seismotectonic indicators are determined for northwest Yunnan and its vicinity, and then potential seismic sources are further delineated. In practice, the following principles are applied: for areas with strong historical earthquakes, the recurrence principle is used to determine the upper bound magnitude; for areas with distinct seismogenic structure but no historical strong earthquake records, the tectonic analogy principle is used in the light of the size and activity behavior of the structure; for areas where the segmentation of the active fault is well studied, the potential sources will be demarcated more precisely; and for areas with buried fault, the seismicity pattern and geophysical abnormity are used to determine the direction of the major axis of the potential seismic source. | Zhou Qing Guo Shunmin Xiang Hongfa | 2005 | Earthquake Research in China2005,19,2: | 0 |