用户名: 密码: 验证码:
Molybdenum and tungsten chalcogenides for lithium/sodium-ion batteries: Beyond MoS_2
详细信息    查看全文 | 推荐本文 |
  • 英文篇名:Molybdenum and tungsten chalcogenides for lithium/sodium-ion batteries: Beyond MoS_2
  • 作者:Junda ; Huang ; Zengxi ; Wei ; Jiaqin ; Liao ; Wei ; Ni ; Caiyun ; Wang ; Jianmin ; Ma
  • 英文作者:Junda Huang;Zengxi Wei;Jiaqin Liao;Wei Ni;Caiyun Wang;Jianmin Ma;School of Physics and Electronics, Hunan University;Faculty of Technology, University of Oulu;Panzhihua University;ARC Centre of Excellence for Electromaterials Science, Intelligent Polymer Research Institute, AIIM Facility, University of Wollongong;Institute of Advanced Electrochemical Energy, Xi'an University of Technology;
  • 英文关键词:MoSe2;;WS2;;WSe2;;Lithium-ion batteries;;Sodium-ion batteries
  • 中文刊名:TRQZ
  • 英文刊名:能源化学(英文版)
  • 机构:School of Physics and Electronics, Hunan University;Faculty of Technology, University of Oulu;Panzhihua University;ARC Centre of Excellence for Electromaterials Science, Intelligent Polymer Research Institute, AIIM Facility, University of Wollongong;Institute of Advanced Electrochemical Energy, Xi'an University of Technology;
  • 出版日期:2019-06-15
  • 出版单位:Journal of Energy Chemistry
  • 年:2019
  • 期:v.33
  • 基金:supported by the National Natural Science Foundation of China (Grant No. 51302079);; the Natural Science Foundation of Hunan Province (Grant No. 2017JJ1008)
  • 语种:英文;
  • 页:TRQZ201906013
  • 页数:25
  • CN:06
  • ISSN:10-1287/O6
  • 分类号:108-132
摘要
Molybdenum and tungsten chalcogenides have attracted tremendous attention in energy storage and conversion due to their outstanding physicochemical and electrochemical properties.There are intensive studies on molybdenum and tungsten chalcogenides for energy storage and conversion,however,there is no systematic review on the applications of WS_2,Mo Se_2and WSe_2as anode materials for lithium-ion batteries(LIBs)and sodium-ion batteries(SIBs),except Mo S_2.Considering the importance of these contents,it is extremely necessary to overview the recent development of novel layered WS_2,Mo Se_2and WSe_2beyond Mo S_2in energy storage.Here,we will systematically overview the recent progress of WS_2,Mo Se_2and WSe_2as anode materials in LIBs and SIBs.This review will also discuss the opportunities,and perspectives of these materials in the energy storage fields.
        Molybdenum and tungsten chalcogenides have attracted tremendous attention in energy storage and conversion due to their outstanding physicochemical and electrochemical properties.There are intensive studies on molybdenum and tungsten chalcogenides for energy storage and conversion,however,there is no systematic review on the applications of WS_2,Mo Se_2and WSe_2as anode materials for lithium-ion batteries(LIBs)and sodium-ion batteries(SIBs),except Mo S_2.Considering the importance of these contents,it is extremely necessary to overview the recent development of novel layered WS_2,Mo Se_2and WSe_2beyond Mo S_2in energy storage.Here,we will systematically overview the recent progress of WS_2,Mo Se_2and WSe_2as anode materials in LIBs and SIBs.This review will also discuss the opportunities,and perspectives of these materials in the energy storage fields.
引文
[1]J.Lu,Z.Chen,Z.Ma,F.Pan,L.A.Curtiss,K.Amine,Nat.Nanotechnol 11(2016)1031-1038.
    [2]J.J.Liang,Z.X.Wei,C.Y.Wang,J.M.Ma,Electrochim.Acta 285(2018)301-308.
    [3]P.J.Hall,E.J.Bain,Energy Policy 36(2008)4352-4355.
    [4]J.Xu,J.Ma,Q.Fan,S.Guo,S.Dou,Adv.Mater 29(2017)1606454.
    [5]W.Luo,F.Shen,C.Bommier,H.Zhu,X.Ji,L.Hu,Acc.Chem.Res.49(2016)231-240.
    [6]J.Mao,T.Zhou,Y.Zheng,H.Gao,H.k.Liu,Z.Guo,J.Mater.Chem.A 6(2018)3284-3303.
    [7]J.Xu,Y.Dou,Z.Wei,J.Ma,Y.Deng,Y.Li,H.Liu,S.Dou,Adv.Sci.4(2017)1700146.
    [8]Q.H.Wang,J.T.Xu,W.C.Zhang,M.L.Mao,Z.X.Wei,L.Wang,C.Y.Cui,Y.X.Zhu,J.M.Ma 6(2018)8815-8838.
    [9]P.Simon,Y.Gogotsi,Acc.Chem.Res.46(2013)1094-1103.
    [10]W.Li,J.Liu,D.Zhao,Nat.Rev.Mater 1(2016)16023.
    [11]R.Raccichini,A.Varzi,S.Passerini,B.Scrosati,Nat.Mater 14(2015)271-279.
    [12]F.Bonaccorso,L.Colombo,G.Yu,M.Stoller,V.Tozzini,A.C.Ferrari,R.S.Ruoff,V.Pellegrini,Science 347(2015)1246501.
    [13]E.Pomerantseva,Y.Gogotsi,Nat.Energy 2(2017)17089.
    [14]P.G.Bruce,B.Scrosati,J.M.Tarascon,Angew.Chem.Int.Ed.47(2008)2930-2946.
    [15]C.Liu,F.Li,L.P.Ma,H.M.Cheng,Adv.Mater.22(2010)E28-E62.
    [16]W.Choi,N.Choudhary,G.H.Han,J.Park,D.Akinwande,Y.H.Lee,Mater.Today20(2017)116-130.
    [17]X.Duan,J.Xu,Z.Wei,J.Ma,S.Guo,H.Liu,S.Dou,Small Methods 1(2017)1700156.
    [18]C.Tan,X.Cao,X.-J.Wu,Q.He,J.Yang,X.Zhang,J.Chen,W.Zhao,S.Han,G.-H.Nam,M.Sindoro,H.Zhang,Chem.Rev.117(2017)6225-6331.
    [19]X.Wang,Q.Weng,Y.Yang,Y.Bando,D.Golberg,Chemical Society Reviews45(2016)4042-4073.
    [20]D.L.Duong,S.J.Yun,Y.H.Lee,ACS Nano 11(2017)11803-11830.
    [21]Z.Wei,L.Wang,M.Zhuo,W.Ni,H.Wang,J.Ma,J.Mater.Chem.A 6(2018)12185-12214.
    [22]J.Shi,Q.Ji,Z.Liu,Y.Zhang,Adv.Energy Mater 6(2016)1600459.
    [23]C.Guerrero-Bermea,L.P.Rajukumar,A.Dasgupta,Y.Lei,Y.Hashimoto,S.Sepulveda-Guzman,R.Cruz-Silva,M.Endo,M.Terrones,Carbon 125(2017)437-453.
    [24]S.Wu,Y.Du,S.Sun,Chem.Eng.J.307(2017)189-207.
    [25]M.Pumera,Z.Sofer,A.Ambrosi,J.Mater.Chem.A 2(2014)8981-8987.
    [26]C.N.R.Rao,H.S.S.R.Matte,U.Maitra,Angew.Chem.Int.Ed.52(2013)13162-13185.
    [27]M.Samadi,N.Sarikhani,M.Zirak,H.Zhang,H.-L.Zhang,A.Z.Moshfegh,Nanoscale Horizons 3(2018)90-204.
    [28]W.Kang,Y.Wang,J.Xu,J.Mater.Chem.A 5(2017)7667-7690.
    [29]C.Tan,H.Zhang,Chem.Soc.Rev 44(2015)2713-2731.
    [30]X.Cao,C.Tan,X.Zhang,W.Zhao,H.Zhang,Adv.Mater 28(2016)6167-6196.
    [31]Y.-P.Gao,X.Wu,K.-J.Huang,L.-L.Xing,Y.-Y.Zhang,L.Liu,CrystEngComm 19(2017)404-418.
    [32]S.Balendhran,S.Walia,H.Nili,J.Z.Ou,S.Zhuiykov,R.B.Kaner,S.Sriram,M.Bhaskaran,K.Kalantar-zadeh,Adv.Funct.Mater 23(2013)3952-3970.
    [33]Z.Hai,S.Zhuiykov,Adv.Mater.Interfaces 5(2018)1701385.
    [34]M.Chhowalla,H.S.Shin,G.Eda,L.-J.Li,K.P.Loh,H.Zhang,Nat.Chem 5(2013)263-275.
    [35]M.Velicky,P.S.Toth,Appl.Mater.Today 8(2017)68-103.
    [36]Z.Wang,C.Zhao,R.Gui,H.Jin,J.Xia,F.Zhang,Y.Xia,Coord.Chem.Rev 326(2016)86-110.
    [37]A.Eftekhari,J.Mater.Chem.A 5(2017)18299-18325.
    [38]N.Choudhary,M.A.Islam,J.H.Kim,T.-J.Ko,A.Schropp,L.Hurtado,D.Weitzman,L.Zhai,Y.Jung,Nano Today 19(2018)16-40.
    [39]M.K.Jana,C.N.R.Rao,Philos.Trans.R.Soc.A 374(2016)20150318.
    [40]J.R.Brent,N.Savjani,P.O’Brien,Prog.Mater.Sci 89(2017)411-478.
    [41]A.Eftekhari,Appl.Mater.Today 8(2017)1-17.
    [42]X.Hu,W.Zhang,X.Liu,Y.Mei,Y.Huang,Chem.Soc.Rev.44(2015)2376-2404.
    [43]S.Fan,X.Zou,H.Du,L.Gan,C.Xu,W.Lv,Y.-B.He,Q.-H.Yang,F.Kang,J.Li,J.Phys.Chem.C 121(2017)13599-13605.
    [44]R.Schmuch,R.Wagner,G.H?rpel,T.Placke,M.Winter,Nat.Energy 3(2018)267-278.
    [45]Editorial,Nat.Energy 3(2018)245.
    [46]A.Kwade,W.Haselrieder,R.Leithoff,A.Modlinger,F.Dietrich,K.Droeder,Nat.Energy 3(2018)290-300.
    [47]X.Xu,W.Liu,Y.Kim,J.Cho,Nano Today 9(2014)604-630.
    [48]C.M.Julien,Mater.Sci.Eng.R 40(2003)47-102.
    [49]M.Zheng,H.Tang,Q.Hu,S.Zheng,L.Li,J.Xu,H.Pang,Adv.Funct.Mater 28(2018)1707500.
    [50]H.Pan,Y.-S.Hu,L.Chen,Energy Environ.Sci.6(2013)2338-2360.
    [51]L.Peng,Y.Zhu,D.Chen,R.S.Ruoff,G.Yu,Adv.Energy Mater 6(2016)1600025.
    [52]M.á.Mu?oz-Márquez,D.Saurel,J.L.Gómez-Cámer,M.Casas-Cabanas,E.Castillo-Martínez,T.Rojo,Adv.Energy Mater.7(2017)1700463.
    [53]M.Lao,Y.Zhang,W.Luo,Q.Yan,W.Sun,S.X.Dou,Adv.Mater.29(2017)1700622.
    [54]S.W.Kim,D.H.Seo,X.Ma,G.Ceder,K.Kang,Adv.Energy Mater.2(2012)710-721.
    [55]X.Zhang,Z.Lai,C.Tan,H.Zhang,Angew.Chem.Int.Ed.55(2016)8816-8838.
    [56]H.Li,Y.Shi,M.-H.Chiu,L.-J.Li,Nano Energy 18(2015)293-305.
    [57]X.Y.Yu,L.Yu,X.W.Lou,Small Methods 1(2017)1600020.
    [58]Z.Lei,J.Zhan,L.Tang,Y.Zhang,Y.Wang,Adv.Energy Mater 8(2018)1703482.
    [59]C.Zhu,X.Mu,P.A.van Aken,Y.Yu,J.Maier,Angew.Chem.Int.Ed 53(2014)2152-2156.
    [60]L.Yang,S.Wang,J.Mao,J.Deng,Q.Gao,Y.Tang,O.G.Schmidt,Adv.Mater.25(2013)1180-1184.
    [61]Y.M.Chen,X.Y.Yu,Z.Li,U.Paik,X.W.D.Lou,Sci.Adv 2(2016)e1600021.
    [62]Y.Wang,L.Yu,X.W.D.Lou,Angew.Chem.Int.Ed 55(2016)7423-7426.
    [63]X.-Y.Yu,L.Yu,X.W.Lou,Adv.Energy Mater 6(2016)1501333.
    [64]Y.Y.Lee,G.O.Park,Y.S.Choi,J.K.Shon,J.Yoon,K.H.Kim,W.-S.Yoon,H.Kim,J.M.Kim,RSC Adv.6(2016)14253-14260.
    [65]Y.Ge,C.Wang,Y.Zhao,Y.Liu,Y.Chao,T.Zheng,G.G.Wallace,Small 14(2018)1703096.
    [66]Y.Chao,R.Jalili,Y.Ge,C.Wang,T.Zheng,K.Shu,G.G.Wallace,Adv.Funct.Mater.27(2017)1700234.
    [67]Y.Wang,D.Kong,W.Shi,B.Liu,G.J.Sim,Q.Ge,H.Y.Yang,Adv.Energy Mater.6(2016)1601057.
    [68]R.Chen,T.Zhao,W.Wu,F.Wu,L.Li,J.Qian,R.Xu,H.Wu,H.M.Albishri,A.S.Al-Bogami,D.A.El-Hady,J.Lu,K.Amine,Nano Lett 14(2014)5899-5904.
    [69]W.Yang,J.Wang,C.Si,Z.Peng,J.Frenzel,G.Eggeler,Z.Zhang,J.Mater.Chem.A 3(2015)17811-17819.
    [70]D.Chen,G.Ji,B.Ding,Y.Ma,B.Qu,W.Chen,J.Y.Lee,Nanoscale 5(2013)7890-7896.
    [71]P.D.Antunez,D.H.Webber,R.L.Brutchey,Chem.Mater 25(2013)2385-2387.
    [72]W.-H.Ryu,H.Wilson,S.Sohn,J.Li,X.Tong,E.Shaulsky,J.Schroers,M.Elimelech,A.D.Taylor,ACS Nano 10(2016)3257-3266.
    [73]Y.L.Ding,P.Kopold,K.Hahn,P.A.van Aken,J.Maier,Y.Yu,Adv.Mater.28(2016)7774-7782.
    [74]J.Zou,C.Liu,Z.Yang,C.Qi,X.Wang,Q.Qiao,X.Wu,T.Ren,ChemElectro Chem 4(2017)2232-2236.
    [75]T.Wang,C.Sun,M.Yang,L.Zhang,Y.Shao,Y.Wu,X.Hao,Electrochim.Acta259(2018)1-8.
    [76]X.Zeng,Z.Ding,C.Ma,L.Wu,J.Liu,L.Chen,D.G.Ivey,W.Wei,ACS Appl.Mater.Interfaces 8(2016)18841-18848.
    [77]C.Wu,X.Zeng,P.He,L.Chen,W.Wei,Adv.Mater.Interfaces 5(2018)1701080.
    [78]Y.Liu,W.Wang,H.Huang,L.Gu,Y.Wang,X.Peng,Chem.Commun 50(2014)4485-4488.
    [79]H.Liu,D.Su,G.Wang,S.Z.Qiao,J.Mater.Chem 22(2012)17437-17440.
    [80]J.Zhou,J.Qin,L.Guo,N.Zhao,C.Shi,E.-z.Liu,F.He,L.Ma,J.Li,C.He,J.Mater.Chem.A 4(2016)17370-17380.
    [81]X.H.Zhang,H.Tan,Z.Fan,M.Z.Ge,X.Ye,M.Q.Xue,Chalcogenide Lett 14(2017)419-423.
    [82]X.Fang,C.Hua,C.Wu,X.Wang,L.Shen,Q.Kong,J.Wang,Y.Hu,Z.Wang,L.Chen,Chem.Eur.J.19(2013)5694-5700.
    [83]C.Feng,L.Huang,Z.Guo,H.Liu,Electrochem.Commun 9(2007)119-122.
    [84]G.X.Wang,S.Bewlay,J.Yao,H.K.Liu,S.X.Dou,Electrochem.Solid-State Lett7(2004)A321-A323.
    [85]R.Bhandavat,L.David,G.Singh,J.Phys.Chem.Lett 3(2012)1523-1530.
    [86]J.Qian,Z.Peng,P.Wang,X.Fu,ACS Appl.Mater.Interfaces 8(2016)16876-16884.
    [87]J.w.Seo,Y.w.Jun,S.w.Park,H.Nah,T.Moon,B.Park,J.G.Kim,Y.J.Kim,J.Cheon,Angew.Chem.Int.Ed.46(2007)8828-8831.
    [88]J.Jamnik,J.Maier,Phys.Chem.Chem.Phys 5(2003)5215-5220.
    [89]Z.-Q.Duan,Y.-C.Sun,Y.-T.Liu,X.-M.Xie,X.-D.Zhu,RSC Adv 4(2014)41543-41550.
    [90]L.Zhou,S.Yan,L.Pan,X.Wang,Y.Wang,Y.Shi,Nano Res.9(2016)857-865.
    [91]D.K.Nandi,U.K.Sen,A.Dhara,S.Mitra,S.K.Sarkar,RSC Adv 6(2016)38024-38032.
    [92]W.Lv,J.Xiang,F.Wen,Z.Jia,R.Yang,B.Xu,D.Yu,J.He,Z.Liu,Electrochim.Acta 153(2015)49-54.
    [93]J.Huang,X.Wang,J.Li,L.Cao,Z.Xu,H.Wei,J.Alloys Compd 673(2016)60-66.
    [94]S.H.Choi,S.J.Boo,J.-H.Lee,Y.C.Kang,Sci.Rep 4(2014)5755.
    [95]S.Yu,J.-W.Jung,I.-D.Kim,Nanoscale 7(2015)11945-11950.
    [96]Q.Pang,Y.Gao,Y.Zhao,Y.Ju,H.Qiu,Y.Wei,B.Liu,B.Zou,F.Du,G.Chen,Chem.Eur.J.23(2017)7074-7080.
    [97]J.Li,X.Shi,J.Fang,J.Li,Z.Zhang,ChemNanoMat 2(2016)997-1002.
    [98]Z.Yuan,Q.Jiang,C.Feng,X.Chen,Z.Guo,J.Electron.Mater.47(2018)251-260.
    [99]Y.Liu,W.Wang,Y.Wang,X.Peng,Electrochim.Acta 148(2014)73-78.
    [100]B.Kartick,S.K.Srivastava,S.Mahanty,J.Nanosci.Nanotechnol.14(2014)3758-3764.
    [101]X.Li,J.Zhang,Z.Liu,C.Fu,C.Niu,J.Alloys Compd 766(2018)656-662.
    [102]S.Liu,B.Shen,Y.Niu,M.Xu,J.Colloid Interface Sci 488(2017)20-25.
    [103]X.Xu,C.S.Rout,J.Yang,R.Cao,P.Oh,H.S.Shin,J.Cho,J.Mater.Chem.A 1(2013)14548-14554.
    [104]Y.Du,X.Zhu,L.Si,Y.Li,X.Zhou,J.Bao,J.Phys.Chem.C 119(2015)15874-15881.
    [105]D.H.Youn,C.Jo,J.Y.Kim,J.Lee,J.S.Lee,J.Power Sources 295(2015)228-234.
    [106]S.Lin,Z.Yang,H.Yue,D.He,Mater.Lett.158(2015)9-12.
    [107]L.Zhou,S.Yan,Z.Lin,Y.Shi,Mater.Chem.Phys.171(2016)16-21.
    [108]L.Yu,H.B.Wu,X.W.D.Lou,Acc.Chem.Res.50(2017)293-301.
    [109]L.Zhou,Z.Zhuang,H.Zhao,M.Lin,D.Zhao,L.Mai,Adv.Mater.29(2017)1602914.
    [110]L.Yu,H.Hu,H.B.Wu,X.W.Lou,Adv.Mater.29(2017)1604563.
    [111]G.Huang,H.Liu,S.Wang,X.Yang,B.Liu,H.Chen,M.Xu,J.Mater.Chem.A3(2015)24128-24138.
    [112]H.Li,K.Yu,H.Fu,B.Guo,X.Lei,Z.Zhu,Phys.Chem.Chem.Phys.17(2015)29824-29833.
    [113]K.Shiva,H.S.S.Ramakrishna Matte,H.B.Rajendra,A.J.Bhattacharyya,C.N.R.Rao,Nano Energy 2(2013)787-793.
    [114]S.Stankovich,D.A.Dikin,G.H.B.Dommett,K.M.Kohlhaas,E.J.Zimney,E.A.Stach,R.D.Piner,S.T.Nguyen,R.S.Ruoff,Nature 442(2006)282-286.
    [115]Y.Wang,J.W.Shan,G.J.Weng,J.Appl.Phys.118(2015)065101.
    [116]Z.S.Wu,W.C.Ren,L.Xu,F.Li,H.M.Cheng,ACS Nano 5(2011)5463-5471.
    [117]X.L.Li,H.L.Wang,J.T.Robinson,H.Sanchez,G.Diankov,H.J.Dai,J.Am.Chem.Soc.131(2009)15939-15944.
    [118]Y.Song,S.Bai,L.Zhu,M.Zhao,D.Han,S.Jiang,Y.-N.Zhou,ACS Appl.Mater.Interfaces 10(2018)13606-13613.
    [119]D.Chen,G.Ji,B.Ding,Y.Ma,B.Qu,W.Chen,J.Y.Lee,Ind.Eng.Chem.Res 53(2014)17901-17908.
    [120]W.Liu,M.S.Song,B.Kong,Y.Cui,Adv.Mater 29(2017)1603436.
    [121]Y.He,B.Matthews,J.Wang,L.Song,X.Wang,G.Wu,J.Mater.Chem.A 6(2018)735-753.
    [122]X.Guo,S.Zheng,G.Zhang,X.Xiao,X.Li,Y.Xu,H.Xue,H.Pang,Energy Storage Mater 9(2017)150-169.
    [123]M.Yousaf,H.T.H.Shi,Y.Wang,Y.Chen,Z.Ma,A.Cao,H.E.Naguib,R.P.Han,Adv.Energy Mater.6(2016)1600490.
    [124]X.Wang,X.Lu,B.Liu,D.Chen,Y.Tong,G.Shen,Adv.Mater.26(2014)4763-4782.
    [125]L.Li,Z.Wu,S.Yuan,X.-B.Zhang,Energy Environ.Sci.7(2014)2101-2122.
    [126]H.Gwon,J.Hong,H.Kim,D.-H.Seo,S.Jeon,K.Kang,Energy Environ.Sci.7(2014)538-551.
    [127]S.Zhou,J.Chen,L.Gan,Q.Zhang,Z.Zheng,H.Li,T.Zhai,Sci.Bull.61(2016)227-235.
    [128]L.Zhang,W.Fan,T.Liu,Nanoscale 8(2016)16387-16394.
    [129]D.Kong,X.Qiu,B.Wang,Z.Xiao,X.Zhang,R.Guo,Y.Gao,Q.-H.Yang,L.Zhi,Sci.China Mater 61(2018)671-678.
    [130]J.Ren,Z.Wang,F.Yang,R.-P.Ren,Y.-K.Lv,Electrochim.Acta 267(2018)133-140.
    [131]L.Pan,Y.T.Liu,X.M.Xie,X.Y.Ye,Small 12(2016)6703-6713.
    [132]J.Liu,H.Cao,B.Jiang,Y.Xue,L.Fu,Sci.China Mater 59(2016)459-474.
    [133]Y.Liu,W.Wang,Y.Wang,X.Peng,Nano Energy 7(2014)25-32.
    [134]Y.V.Lim,Z.X.Huang,Y.Wang,F.H.Du,J.Zhang,T.P.Chen,L.K.Ang,H.Y.Yang,RSC Adv.6(2016)107768-107775.
    [135]F.Béguin,F.Chevallier,C.Vix-Guterl,S.Saadallah,V.Bertagna,J.N.Rouzaud,E.Frackowiak,Carbon 43(2005)2160-2167.
    [136]B.Zhao,F.Chen,Z.Wang,S.Huang,Y.Jiang,Z.Chen,Nanoscale 9(2017)17922-17932.
    [137]Y.Shi,C.Hua,B.Li,X.Fang,C.Yao,Y.Zhang,Y.S.Hu,Z.Wang,L.Chen,D.Zhao,G.D.Stucky,Adv.Funct.Mater 23(2013)1832-1838.
    [138]J.Morales,J.Santos,J.L.Tirado,Solid State Ionics 83(1996)57-64.
    [139]T.Xiang,S.Tao,W.Xu,Q.Fang,C.Wu,D.Liu,Y.Zhou,A.Khalil,Z.Muhammad,W.Chu,Z.Wang,H.Xiang,Q.Liu,L.Song,ACS Nano 11(2017)6483-6491.
    [140]M.Zhu,Z.Luo,A.Pan,H.Yang,T.Zhu,S.Liang,G.Cao,Chem.Eng.J.334(2018)2190-2200.
    [141]Y.Liu,M.Zhu,D.Chen,J.Mater.Chem.A 3(2015)11857-11862.
    [142]X.Yang,Z.Zhang,Y.Fu,Q.Li,Nanoscale 7(2015)10198-10203.
    [143]L.Ma,X.Zhou,L.Xu,X.Xu,L.Zhang,W.Chen,J.Power Sources 285(2015)274-280.
    [144]Y.Yang,S.Wang,J.Zhang,H.Li,Z.Tang,X.Wang,Inorg.Chem.Front 2(2015)931-937.
    [145]M.Q.Xue,Chalcogenide Lett 13(2016)73-78.
    [146]S.Zhang,G.Wang,J.Jin,L.Zhang,Z.Wen,J.Yang,ACS Nano 12(2018)4010-4018.
    [147]N.Tian,A.-m Qin,L.Liao,K.-y.Zhang,M.-p.Wang,Key Eng.Mater.727(2017)645-652.
    [148]W.Tang,D.Xie,T.Shen,X.Wang,D.Wang,X.Zhang,X.Xia,J.Wu,J.Tu,Chem.Eur.J.23(2017)12924-12929.
    [149]C.Zheng,C.Chen,L.Chen,M.Wei,J.Mater.Chem.A 5(2017)19632-19638.
    [150]L.Wu,P.Tan,Y.Liu,X.Xiong,J.Pan,ChemistrySelect 2(2017)8101-8107.
    [151]J.Wang,C.Peng,L.Zhang,Y.Fu,H.Li,X.Zhao,J.Zhu,X.Wang,Electrochim.Acta 256(2017)19-27.
    [152]B.Mendoza-Sánchez,J.Coelho,A.Pokle,V.Nicolosi,Electrochim.Acta 192(2016)1-7.
    [153]J.Yao,B.Liu,S.Ozden,J.Wu,S.Yang,M.-T.F.Rodrigues,K.Kalaga,P.Dong,P.Xiao,Y.Zhang,R.Vajtai,P.M.Ajayan,Electrochim.Act 176(2015)103-111.
    [154]Z.Luo,J.Zhou,L.Wang,G.Fang,A.Pan,S.Liang,J.Mater.Chem.A 4(2016)15302-15308.
    [155]H.Wang,X.Wang,L.Wang,J.Wang,D.Jiang,G.Li,Y.Zhang,H.Zhong,Y.Jiang,J.Phys.Chem.C 119(2015)10197-10205.
    [156]S.Xin,Y.G.Guo,L.J.Wan,Acc.Chem.Res 45(2012)1759-1769.
    [157]H.Nishihara,T.Kyotani,Adv.Mater.24(2012)4473-4498.
    [158]G.Y.Zheng,S.W.Lee,Z.Liang,H.W.Lee,K.Yan,H.B.Yao,H.T.Wang,W.Y.Li,S.Chu,Y.Cui,Nat.Nanotechnol 9(2014)618-623.
    [159]W.Ni,Y.Wang,R.Xu,Part.Part.Syst.Charact 30(2013)873-880.
    [160]X.Yang,Z.Zhang,X.Shi,J.Alloys Compd 686(2016)413-420.
    [161]L.Wu,P.Tan,Y.Liu,Y.Shang,W.Liu,X.Xiong,J.Pan,J.Colloid Interface Sci491(2017)279-285.
    [162]C.Zhao,H.Song,Q.Zhuang,Q.Ma,J.Liang,H.Peng,C.Mao,Z.Zhang,G.Li,Inorg.Chem.Front 5(2018)1026-1032.
    [163]P.Ge,H.Hou,C.E.Banks,C.W.Foster,S.Li,Y.Zhang,J.He,C.Zhang,X.Ji,Energy Storage Mater.12(2018)310-323.
    [164]Z.Zhang,Y.Fu,X.Yang,Y.Qu,Z.Zhang,Chem Nano Mat 1(2015)409-414.
    [165]J.Yang,J.Zhu,J.Xu,C.Zhang,T.Liu,ACS Appl.Mater.Interfaces 9(2017)44550-44559.
    [166]T.Niu,A.Li,Prog.Surf.Sci 90(2015)21-45.
    [167]D.Wang,L.-M.Liu,S.-J.Zhao,Z.-Y.Hu,H.Liu,J.Phys.Chem.C 120(2016)4779-4788.
    [168]T.Li,A.Wang,X.Li,J.Wang,J.Zhang,G.Fu,L.Xu,D.Sun,Y.Tang,Adv.Mater.Interfaces 5(2018)1701604.
    [169]W.Kang,Y.Wang,D.Cao,Z.Kang,D.Sun,J.Alloys Compd.743(2018)410-418.
    [170]X.Zhao,J.Sui,F.Li,H.Fang,H.Wang,J.Li,W.Cai,G.Cao,Nanoscale 8(2016)17902-17910.
    [171]H.Wu,Y.Wu,X.Chen,Y.Ma,M.Xu,W.Wei,J.Pan,X.Xiong,RSC Adv 6(2016)23161-23168.
    [172]S.Wang,B.Liu,G.Zhi,X.Gong,Z.Gao,J.Zhang,Electrochim.Acta 268(2018)424-434.
    [173]F.Ersan,G.G?ko?glu,E.Aktürk,J.Phys.Chem.C 119(2015)28648-28653.
    [174]X.Chen,Z.Wang,Y.Qiu,J.Zhang,G.Liu,W.Zheng,W.Feng,W.Cao,P.Hu,W.Hu,J.Mater.Chem.A 4(2016)18060-18066.
    [175]R.Jin,X.Liu,L.Yang,G.Li,S.Gao,Electrochim.Acta 259(2018)841-849.
    [176]R.Jin,Y.Cui,Q.Wang,G.Li,J.Colloid Interface Sci.508(2017)435-442.
    [177]J.Wang,L.Chen,L.Zeng,Q.Wei,M.Wei,ACS Sustainable Chem.Eng.6(2018)4688-4694.
    [178]F.Chen,J.Wang,B.Li,C.Yao,H.Bao,Y.Shi,Mater.Lett.136(2014)191-194.
    [179]W.Yang,J.Wang,C.Si,Z.Peng,Z.Zhang,Nano Res.10(2017)2584-2598.
    [180]E.Vasilyeva,A.Nasibulin,O.Tolochko,A.Rudskoy,A.Sachdev,X.Xiao,Z.Phys.Chem 229(2015)1429-1437.
    [181]X.Rui,H.Tan,Q.Yan,Nanoscale 6(2014)9889-9924.
    [182]J.Stejskal,M.Mrlík,T.Plachy,M.Trchová,J.Kováˇrová,Y.Li,React.Funct.Polym 120(2017)30-37.
    [183]X.Wang,J.Huang,J.Li,L.Cao,W.Hao,Z.Xu,Q.Kang,J.Alloys Compd 696(2017)22-27.
    [184]Y.V.Lim,Y.Wang,D.Kong,L.Guo,J.I.Wong,L.K.Ang,H.Y.Yang,J.Mater.Chem.A 5(2017)10406-10415.
    [185]X.Wang,J.Huang,J.Li,L.Cao,W.Hao,Z.Xu,Q.Kang,Electrochim.Acta 222(2016)1724-1732.
    [186]Y.Liu,N.Zhang,H.Kang,M.Shang,L.Jiao,J.Chen,Chem.Eur.J.21(2015)11878-11884.
    [187]X.Wang,J.Huang,J.Li,L.Cao,W.Hao,Z.Xu,ACS Appl.Mater.Interfaces 8(2016)23899-23908.
    [188]B.Y.Xia,Y.Yan,N.Li,H.B.Wu,X.W.D.Lou,X.Wang,Nat.Energy 1(2016)15006.
    [189]H.Wang,D.Kong,P.Johanes,J.J.Cha,G.Zheng,K.Yan,N.Liu,Y.Cui,Nano Lett 13(2013)3426-3433.
    [190]D.Kong,H.Wang,J.J.Cha,M.Pasta,K.J.Koski,J.Yao,Y.Cui,Nano Lett 13(2013)1341-1347.
    [191]D.Su,S.Dou,G.Wang,Chem.Commun 50(2014)4192-4195.
    [192]S.H.Choi,Y.C.Kang,Nanoscale 7(2015)3965-3970.
    [193]H.G.Wang,W.Li,D.P.Liu,X.L.Feng,J.Wang,X.Y.Yang,X.B.Zhang,Y.Zhu,Y.Zhang,Adv.Mater 29(2017)1703012.
    [194]Y.Wang,D.Kong,S.Huang,Y.Shi,M.Ding,Y.Von Lim,T.Xu,F.Chen,X.Li,H.Y.Yang,J.Mater.Chem.A 6(2018)10813-10824.
    [195]C.Zhu,P.Kopold,W.Li,P.A.van Aken,J.Maier,Y.Yu,J.Mater.Chem.A 3(2015)20487-20493.
    [196]H.Liu,H.Guo,B.Liu,M.Liang,Z.Lv,K.R.Adair,X.Sun,Adv.Funct.Mater.28(2018)1707480.
    [197]G.Jia,H.Wang,D.Chao,H.He,N.H.Tiep,Y.Zhang,Z.Zhang,H.J.Fan,Nanotechnology 28(2017)42LT01.
    [198]H.Wang,X.Lan,D.Jiang,Y.Zhang,H.Zhong,Z.Zhang,Y.Jiang,J.Power Sources 283(2015)187-194.
    [199]Z.T.Shi,W.Kang,J.Xu,L.L.Sun,C.Wu,L.Wang,Y.Q.Yu,D.Y.W.Yu,W.Zhang,C.S.Lee,Small 11(2015)5667-5674.
    [200]J.Zhang,W.Kang,M.Jiang,Y.You,Y.Cao,T.-W.Ng,D.Y.W.Yu,C.-S.Lee,J.Xu,Nanoscale 9(2017)1484-1490.
    [201]J.Zhang,M.Wu,T.Liu,W.Kang,J.Xu,J.Mater.Chem.A 5(2017)24859-24866.
    [202]H.Wang,L.Wang,X.Wang,J.Quan,L.Mi,L.Yuan,G.Li,B.Zhang,H.Zhong,Y.Jiang,J.Electrochem.Soc 163(2016)A1627-A1632.
    [203]Y.N.Ko,S.H.Choi,S.B.Park,Y.C.Kang,Nanoscale 6(2014)10511-10515.
    [204]B.Mao,D.Guo,J.Qin,T.Meng,X.Wang,M.Cao,Angew.Chem.Int.Ed.57(2018)446-450.
    [205]Y.Tang,Z.Zhao,Y.Wang,Y.Dong,Y.Liu,X.Wang,J.Qiu,ACS Appl.Mater.Interfaces 8(2016)32324-32332.
    [206]J.-S.Park,Y.Chan Kang,J.Mater.Chem.A 5(2017)8616-8623.
    [207]J.Li,H.Hu,F.Qin,P.Zhang,L.Zou,H.Wang,K.Zhang,Y.Lai,Chem.Eur.J.23(2017)14004-14010.
    [208]J.Liu,S.Z.Qiao,J.S.Chen,X.W.Lou,X.Xing,G.Q.Lu,Chem.Commun 47(2011)12578-12591.
    [209]G.D.Park,J.H.Kim,S.-K.Park,Y.C.Kang,ACS Appl.Mater.Interfaces 9(2017)10673-10683.
    [210]Z.Zhang,X.Yang,Y.Fu,K.Du,J.Power Sources 296(2015)2-9.
    [211]S.H.Choi,Y.C.Kang,Nanoscale 8(2016)4209-4216.
    [212]D.Chen,W.Chen,L.Ma,G.Ji,K.Chang,J.Y.Lee,Mater.Today 17(2014)184-193.
    [213]X.Zhao,H.-E.Wang,Y.Yang,Z.G.Neale,R.C.Massé,J.Cao,W.Cai,J.Sui,G.Cao,Energy Storage Mater.12(2018)241-251.
    [214]X.Zhao,W.Cai,Y.Yang,X.Song,Z.Neale,H.-E.Wang,J.Sui,G.Cao,Nano Energy 47(2018)224-234.
    [215]Z.Liu,Y.Zhang,H.Zhao,N.Li,Y.Du,Sci.China Mater 60(2017)167-177.
    [216]F.Niu,J.Yang,N.Wang,D.Zhang,W.Fan,J.Yang,Y.Qian,Adv.Funct.Mater27(2017)1700522.
    [217]D.Xie,W.Tang,Y.Wang,X.Xia,Y.Zhong,D.Zhou,D.Wang,X.Wang,J.Tu,Nano Res.9(2016)1618-1629.
    [218]C.Cui,G.Zhou,W.Wei,L.Chen,C.Li,J.Yue,J.Alloys Compd 727(2017)1280-1287.
    [219]Y.Zhang,Z.Liu,H.Zhao,Y.Du,RSC Adv.6(2016)1440-1444.
    [220]G.Jia,D.Chao,N.H.Tiep,Z.Zhang,H.J.Fan,Energy Storage Mater 14(2018)136-142.
    [221]D.Xie,X.Xia,Y.Zhong,Y.Wang,D.Wang,X.Wang,J.Tu,Adv.Energy Mater.7(2017)1601804.
    [222]Z.Zhang,X.Yang,Y.Fu,RSC Adv.6(2016)12726-12729.
    [223]K.Share,J.Lewis,L.Oakes,R.E.Carter,A.P.Cohn,C.L.Pint,RSC Adv.5(2015)101262-101267.

© 2004-2018 中国地质图书馆版权所有 京ICP备05064691号 京公网安备11010802017129号

地址:北京市海淀区学院路29号 邮编:100083

电话:办公室:(+86 10)66554848;文献借阅、咨询服务、科技查新:66554700