-
1
-
-
38949102073
-
Building Better Batteries
-
Armand, M.; Tarascon, J. M. Building Better Batteries Nature 2008, 451, 652-657
-
(2008)
Nature
, vol.451
, pp. 652-657
-
-
Armand, M.1
Tarascon, J.M.2
-
3
-
-
62249143548
-
Battery Materials for Ultrafast Charging and Discharging
-
Byoungwoo, K.; Ceder, G. Battery Materials for Ultrafast Charging and Discharging Nature 2009, 458, 190-3
-
(2009)
Nature
, vol.458
, pp. 190-193
-
-
Byoungwoo, K.1
Ceder, G.2
-
4
-
-
84880855688
-
2@Carbon Nanocluster Anode Material with Superior Cyclability and Rate Capability for Lithium-Ion batteries
-
2@Carbon Nanocluster Anode Material with Superior Cyclability and Rate Capability for Lithium-Ion batteries Nanoscale 2013, 5, 3298-3305
-
(2013)
Nanoscale
, vol.5
, pp. 3298-3305
-
-
He, M.1
Yuan, L.2
Hu, X.L.3
Zhang, W.X.4
Shu, J.5
Huang, Y.H.6
-
5
-
-
79961005781
-
Recent Developments in Nanostructured Anode Materials for Rechargeable Lithium-ion Batteries
-
Ji, L. W.; Zhan, L.; Alcoutlabi, M.; Zhang, X. W. Recent Developments in Nanostructured Anode Materials for Rechargeable Lithium-ion Batteries Energy Environ. Sci. 2011, 4, 2682-2699
-
(2011)
Energy Environ. Sci.
, vol.4
, pp. 2682-2699
-
-
Ji, L.W.1
Zhan, L.2
Alcoutlabi, M.3
Zhang, X.W.4
-
7
-
-
78149463525
-
Self-Wound Composite Nanomembranes as Electrode Materials for Lithium Ion Batteries
-
Ji, H. X.; Wu, X. L.; Fan, L. Z.; Krien, C.; Fiering, I.; Guo, Y. G.; Mei, Y.; Schmidt, O. G. Self-Wound Composite Nanomembranes as Electrode Materials for Lithium Ion Batteries Adv. Mater. 2010, 22, 4591-4595
-
(2010)
Adv. Mater.
, vol.22
, pp. 4591-4595
-
-
Ji, H.X.1
Wu, X.L.2
Fan, L.Z.3
Krien, C.4
Fiering, I.5
Guo, Y.G.6
Mei, Y.7
Schmidt, O.G.8
-
8
-
-
84895930789
-
Reversible High-Capacity Si Nanocomposite Anodes for Lithium-Ion Batteries Enabled by Molecular Layer Deposition
-
Piper, D. M.; Travis, J. J.; Young, M.; Son, S. B.; Kim, S. C.; Oh, K. H.; George, S. M.; Ban, C. Reversible High-Capacity Si Nanocomposite Anodes for Lithium-Ion Batteries Enabled by Molecular Layer Deposition Adv. Mater. 2014, 26, 1596-1601
-
(2014)
Adv. Mater.
, vol.26
, pp. 1596-1601
-
-
Piper, D.M.1
Travis, J.J.2
Young, M.3
Son, S.B.4
Kim, S.C.5
Oh, K.H.6
George, S.M.7
Ban, C.8
-
9
-
-
84882631059
-
2 Coating Layer on Core@Shell Bulk@Nanowire Si Anode Materials for Li-Ion Batteries
-
2 Coating Layer on Core@Shell Bulk@Nanowire Si Anode Materials for Li-Ion Batteries Adv. Mater. 2013, 25, 4498-4503
-
(2013)
Adv. Mater.
, vol.25
, pp. 4498-4503
-
-
Sim, S.1
Oh, P.2
Park, S.3
Cho, J.4
-
10
-
-
33845622840
-
Nano- and Bulk-Silicon-Based Insertion Anodes for Lithium-Ion Secondary Cells
-
Kasavajjula, U.; Wang, C.; Appleby, A. J. Nano- and Bulk-Silicon-Based Insertion Anodes for Lithium-Ion Secondary Cells J. Power Sources 2007, 163, 1003-1039
-
(2007)
J. Power Sources
, vol.163
, pp. 1003-1039
-
-
Kasavajjula, U.1
Wang, C.2
Appleby, A.J.3
-
11
-
-
84856976715
-
Engineering Empty Space between Si Nanoparticles for Lithium-Ion Battery Anodes
-
Wu, H.; Zheng, G. Y.; Liu, N.; Carney, T. J.; Yang, Y.; Cui, Y. Engineering Empty Space between Si Nanoparticles for Lithium-Ion Battery Anodes Nano Lett. 2012, 12, 904-909
-
(2012)
Nano Lett.
, vol.12
, pp. 904-909
-
-
Wu, H.1
Zheng, G.Y.2
Liu, N.3
Carney, T.J.4
Yang, Y.5
Cui, Y.6
-
12
-
-
77953141927
-
Reversible Storage of Lithium in Silver-Coated Three-Dimensional Macroporous Silicon
-
Yu, Y.; Gu, L.; Zhu, C. B.; Tsukimoto, S.; van Aken, P. A.; Maier, J. Reversible Storage of Lithium in Silver-Coated Three-Dimensional Macroporous Silicon Adv. Mater. 2010, 22, 2247-2250
-
(2010)
Adv. Mater.
, vol.22
, pp. 2247-2250
-
-
Yu, Y.1
Gu, L.2
Zhu, C.B.3
Tsukimoto, S.4
Van Aken, P.A.5
Maier, J.6
-
13
-
-
33750430832
-
Highly Reversible Lithium Storage in Spheroidal Carbon-Coated Silicon Nanocomposites as Anodes for Lithium-Ion Batteries
-
Ng, S. H.; Wang, J.; Wexler, D.; Konstantinov, K.; Guo, Z. P.; Liu, H. K. Highly Reversible Lithium Storage in Spheroidal Carbon-Coated Silicon Nanocomposites as Anodes for Lithium-Ion Batteries Angew. Chem., Int.Ed. 2006, 45, 6896-6899
-
(2006)
Angew. Chem., Int.Ed.
, vol.45
, pp. 6896-6899
-
-
Ng, S.H.1
Wang, J.2
Wexler, D.3
Konstantinov, K.4
Guo, Z.P.5
Liu, H.K.6
-
14
-
-
84861418034
-
Efficient 3D Conducting Networks Built by Graphene Sheets and Carbon Nanoparticles for High-Performance Silicon Anode
-
Zhou, X.; Yin, Y. X.; Cao, A. M.; Wan, L. J.; Guo, Y. G. Efficient 3D Conducting Networks Built by Graphene Sheets and Carbon Nanoparticles for High-Performance Silicon Anode ACS Appl. Mater. Interfaces 2012, 4, 2824-2828
-
(2012)
ACS Appl. Mater. Interfaces
, vol.4
, pp. 2824-2828
-
-
Zhou, X.1
Yin, Y.X.2
Cao, A.M.3
Wan, L.J.4
Guo, Y.G.5
-
15
-
-
84858720707
-
Silicon Nanowire Core Aluminum Shell Coaxial Nanocomposites for Lithium ion Battery Anodes Grown with and without a TiN Interlayer
-
Memarzadeh, E. L.; Kalisvaart, W. P.; Kohandehghan, A.; Zahiri, B.; Holt, C. M. B.; Mitlin, D. Silicon Nanowire Core Aluminum Shell Coaxial Nanocomposites for Lithium ion Battery Anodes Grown with and without a TiN Interlayer J. Mater. Chem. 2012, 22, 6655-6668
-
(2012)
J. Mater. Chem.
, vol.22
, pp. 6655-6668
-
-
Memarzadeh, E.L.1
Kalisvaart, W.P.2
Kohandehghan, A.3
Zahiri, B.4
Holt, C.M.B.5
Mitlin, D.6
-
16
-
-
0242593918
-
Reaction of Li with Alloy Thin Films Studied by in Situ AFM
-
Beaulieu, L. Y.; Hatchard, T. D.; Bonakdarpour, A.; Fleischauer, M. D.; Dahn, J. R. Reaction of Li with Alloy Thin Films Studied by In Situ AFM J. Electrochem. Soc. 2003, 150, A1457-A1464
-
(2003)
J. Electrochem. Soc.
, vol.150
-
-
Beaulieu, L.Y.1
Hatchard, T.D.2
Bonakdarpour, A.3
Fleischauer, M.D.4
Dahn, J.R.5
-
17
-
-
84864691519
-
Conductive Rigid Skeleton Supported Silicon as High-Performance Li-Ion Battery Anodes
-
Chen, X.; Li, X. L.; Ding, F.; Xu, W.; Xiao, J.; Cao, Y. L.; Meduri, P.; Liu, J.; Graff, G. L.; Zhang, J. G. Conductive Rigid Skeleton Supported Silicon as High-Performance Li-Ion Battery Anodes Nano Lett. 2012, 12, 4124-4130
-
(2012)
Nano Lett.
, vol.12
, pp. 4124-4130
-
-
Chen, X.1
Li, X.L.2
Ding, F.3
Xu, W.4
Xiao, J.5
Cao, Y.L.6
Meduri, P.7
Liu, J.8
Graff, G.L.9
Zhang, J.G.10
-
18
-
-
61849085165
-
Nanocomposites Derived from Phenol-Functionalized Si Nanoparticles for High Performance Lithium Ion Battery Anodes
-
Lee, J. K.; Kung, M. C.; Trahey, L.; Missaghi, M. N.; Kung, H. H. Nanocomposites Derived from Phenol-Functionalized Si Nanoparticles for High Performance Lithium Ion Battery Anodes Chem. Mater. 2009, 21, 6-8
-
(2009)
Chem. Mater.
, vol.21
, pp. 6-8
-
-
Lee, J.K.1
Kung, M.C.2
Trahey, L.3
Missaghi, M.N.4
Kung, H.H.5
-
19
-
-
84867296807
-
High-Performance Macroporous Bulk Silicon Anodes Synthesized by Template-Free Chemical Etching
-
Bang, B. M.; Lee, J. I.; Kim, H.; Cho, J.; Park, S. High-Performance Macroporous Bulk Silicon Anodes Synthesized by Template-Free Chemical Etching Adv. Energy. Mater. 2012, 2, 878-883
-
(2012)
Adv. Energy. Mater.
, vol.2
, pp. 878-883
-
-
Bang, B.M.1
Lee, J.I.2
Kim, H.3
Cho, J.4
Park, S.5
-
20
-
-
84862281347
-
A Yolk-Shell Design for Stabilized and Scalable Li-Ion Battery Alloy Anodes
-
Liu, N.; Wu, H.; McDowell, M. T.; Yao, Y.; Wang, C. M.; Cui, Y. A Yolk-Shell Design for Stabilized and Scalable Li-Ion Battery Alloy Anodes Nano Lett. 2012, 12, 3315-3321
-
(2012)
Nano Lett.
, vol.12
, pp. 3315-3321
-
-
Liu, N.1
Wu, H.2
McDowell, M.T.3
Yao, Y.4
Wang, C.M.5
Cui, Y.6
-
21
-
-
84874432208
-
Adaptable Silicon-Carbon Nanocables Sandwiched between Reduced Graphene Oxide Sheets as Lithium Ion Battery Anodes
-
Wang, B.; Li, X. L.; Zhang, X. F.; Luo, B.; Jin, M. H.; Liang, M. H.; Dayeh, S. A.; Picraux, S. T.; Zhi, L. J. Adaptable Silicon-Carbon Nanocables Sandwiched between Reduced Graphene Oxide Sheets as Lithium Ion Battery Anodes ACS Nano 2013, 7, 1437-1445
-
(2013)
ACS Nano
, vol.7
, pp. 1437-1445
-
-
Wang, B.1
Li, X.L.2
Zhang, X.F.3
Luo, B.4
Jin, M.H.5
Liang, M.H.6
Dayeh, S.A.7
Picraux, S.T.8
Zhi, L.J.9
-
22
-
-
84872504929
-
Directing Silicon-Graphene Self-Assembly as a Core/Shell Anode for High-Performance Lithium-Ion Batteries
-
Zhu, Y. H.; Liu, W.; Zhang, X. Y.; He, J. C.; Chen, J. T.; Wang, Y. P.; Cao, T. B. Directing Silicon-Graphene Self-Assembly as a Core/Shell Anode for High-Performance Lithium-Ion Batteries Langmuir 2013, 29, 744-749
-
(2013)
Langmuir
, vol.29
, pp. 744-749
-
-
Zhu, Y.H.1
Liu, W.2
Zhang, X.Y.3
He, J.C.4
Chen, J.T.5
Wang, Y.P.6
Cao, T.B.7
-
23
-
-
79960213953
-
Interconnected Silicon Hollow Nanospheres for Lithium-Ion Battery Anodes with Long Cycle Life
-
Yao, Y.; McDowell, M. T.; Ryu, I.; Wu, H.; Liu, N.; Hu, L.; Nix, W. D.; Cui, Y. Interconnected Silicon Hollow Nanospheres for Lithium-Ion Battery Anodes with Long Cycle Life Nano Lett. 2011, 11, 2949-2954
-
(2011)
Nano Lett.
, vol.11
, pp. 2949-2954
-
-
Yao, Y.1
McDowell, M.T.2
Ryu, I.3
Wu, H.4
Liu, N.5
Hu, L.6
Nix, W.D.7
Cui, Y.8
-
24
-
-
84879908569
-
Contact-Engineered and Void-Involved Silicon/Carbon Nanohybrids as Lithium-Ion-Battery Anodes
-
Wang, B.; Li, X. L.; Zhang, X. F.; Luo, B.; Zhang, Y. B.; Zhi, L. J. Contact-Engineered and Void-Involved Silicon/Carbon Nanohybrids as Lithium-Ion-Battery Anodes Adv. Mater. 2013, 25, 3560-5
-
(2013)
Adv. Mater.
, vol.25
, pp. 3560-3565
-
-
Wang, B.1
Li, X.L.2
Zhang, X.F.3
Luo, B.4
Zhang, Y.B.5
Zhi, L.J.6
-
25
-
-
77952372071
-
Arrays of Sealed Silicon Nanotubes As Anodes for Lithium Ion Batteries
-
Song, T.; Xia, J.; Lee, J. H.; Lee, D. H.; Kwon, M. S.; Choi, J. M.; Wu, J.; Doo, S. K.; Chang, H.; Il Park, W.; Zang, D. S.; Kim, H.; Huang, Y.; Hwang, K. C.; Rogers, J. A.; Paik, U. Arrays of Sealed Silicon Nanotubes As Anodes for Lithium Ion Batteries Nano Lett. 2010, 10, 1710-1716
-
(2010)
Nano Lett.
, vol.10
, pp. 1710-1716
-
-
Song, T.1
Xia, J.2
Lee, J.H.3
Lee, D.H.4
Kwon, M.S.5
Choi, J.M.6
Wu, J.7
Doo, S.K.8
Chang, H.9
Il Park, W.10
Zang, D.S.11
Kim, H.12
Huang, Y.13
Hwang, K.C.14
Rogers, J.A.15
Paik, U.16
-
26
-
-
72849145531
-
Silicon Nanotube Battery Anodes
-
Park, M. H.; Kim, M. G.; Joo, J.; Kim, K.; Kim, J.; Ahn, S.; Cui, Y.; Cho, J. Silicon Nanotube Battery Anodes Nano Lett. 2009, 9, 3844-3847
-
(2009)
Nano Lett.
, vol.9
, pp. 3844-3847
-
-
Park, M.H.1
Kim, M.G.2
Joo, J.3
Kim, K.4
Kim, J.5
Ahn, S.6
Cui, Y.7
Cho, J.8
-
27
-
-
84866325201
-
Stable Li-ion Battery Anodes by In-Situ Polymerization of Conducting Hydrogel to Conformally Coat Silicon Nanoparticles
-
Wu, H.; Chan, G.; Choi, J. W.; Ryu, I.; Yao, Y.; McDowell, M. T.; Lee, S. W.; Jackson, A.; Yang, Y.; Hu, L.; Cui, Y. Stable Li-ion Battery Anodes by In-Situ Polymerization of Conducting Hydrogel to Conformally Coat Silicon Nanoparticles Nat. Nanotechnol. 2012, 7, 309-314
-
(2012)
Nat. Nanotechnol.
, vol.7
, pp. 309-314
-
-
Wu, H.1
Chan, G.2
Choi, J.W.3
Ryu, I.4
Yao, Y.5
McDowell, M.T.6
Lee, S.W.7
Jackson, A.8
Yang, Y.9
Hu, L.10
Cui, Y.11
-
28
-
-
84883136936
-
Graphene Encapsulated and SiC Reinforced Silicon Nanowires as an Anode Material for Lithium Ion Batteries
-
Yang, Y.; Ren, J. G.; Wang, X.; Chui, Y. S.; Wu, Q. H.; Chen, X.; Zhang, W. Graphene Encapsulated and SiC Reinforced Silicon Nanowires as an Anode Material for Lithium Ion Batteries Nanoscale 2013, 5, 8689-8694
-
(2013)
Nanoscale
, vol.5
, pp. 8689-8694
-
-
Yang, Y.1
Ren, J.G.2
Wang, X.3
Chui, Y.S.4
Wu, Q.H.5
Chen, X.6
Zhang, W.7
-
30
-
-
84882739434
-
Synthesis of Core-Shell Architectures of Silicon Coated on Controllable Grown Ni-Silicide Nanostructures and Their Lithium-Ion Battery Application
-
Li, F.; Yue, H. W.; Wang, P.; Yang, Z. B.; Wang, D. S.; Liu, D. Q.; Qiao, L.; He, D. Y. Synthesis of Core-Shell Architectures of Silicon Coated on Controllable Grown Ni-Silicide Nanostructures and Their Lithium-Ion Battery Application CrystEngComm 2013, 15, 7298-7306
-
(2013)
CrystEngComm
, vol.15
, pp. 7298-7306
-
-
Li, F.1
Yue, H.W.2
Wang, P.3
Yang, Z.B.4
Wang, D.S.5
Liu, D.Q.6
Qiao, L.7
He, D.Y.8
-
31
-
-
84886012072
-
2 Yolk-Shell Nanoarchitecture with Internal Void Space for Long-cycle Lithium-Sulphur Batteries
-
2 Yolk-Shell Nanoarchitecture with Internal Void Space for Long-cycle Lithium-Sulphur Batteries Nat. Commun. 2013, 4, 1331
-
(2013)
Nat. Commun.
, vol.4
, pp. 1331
-
-
Seh, Z.W.1
Li, W.Y.2
Cha, J.J.3
Zheng, G.Y.4
Yang, Y.5
McDowell, M.T.6
Hsu, P.C.7
Cui, Y.8
-
32
-
-
84884194070
-
2 Coated Silicon Nanowires for Lithium ion Battery Anodes with Enhanced Cycling Stability and Coulombic Efficiency
-
2 Coated Silicon Nanowires for Lithium ion Battery Anodes with Enhanced Cycling Stability and Coulombic Efficiency Phys. Chem. Chem. Phys. 2013, 15, 13646-13657
-
(2013)
Phys. Chem. Chem. Phys.
, vol.15
, pp. 13646-13657
-
-
Lotfabad, E.M.1
Kalisvaart, P.2
Cui, K.3
Kohandehghan, A.4
Kupsta, M.5
Olsen, B.6
Mitlin, D.7
-
33
-
-
84878737608
-
2 Nanocomposites with High Grain Boundary Density as Anode Materials for Lithium-Ion Batteries
-
2 Nanocomposites with High Grain Boundary Density as Anode Materials for Lithium-Ion Batteries J. Mater. Chem. A 2013, 1, 7360-7369
-
(2013)
J. Mater. Chem. A
, vol.1
, pp. 7360-7369
-
-
Zhang, J.J.1
Wei, Z.2
Huang, T.3
Liu, Z.L.4
Yu, A.-S.5
-
35
-
-
54849435686
-
Tin-Nanoparticles Encapsulated in Elastic Hollow Carbon Spheres for High-Performance Anode Material in Lithium-Ion Batteries
-
Zhang, W. M.; Hu, J. S.; Guo, Y. G.; Zheng, S. F.; Zhong, L. S.; Song, W. G.; Wan, L. J. Tin-Nanoparticles Encapsulated in Elastic Hollow Carbon Spheres for High-Performance Anode Material in Lithium-Ion Batteries Adv. Mater. 2008, 20, 1160-1165
-
(2008)
Adv. Mater.
, vol.20
, pp. 1160-1165
-
-
Zhang, W.M.1
Hu, J.S.2
Guo, Y.G.3
Zheng, S.F.4
Zhong, L.S.5
Song, W.G.6
Wan, L.J.7
-
36
-
-
84858025686
-
Fabrication and Enhanced Photocatalytic Activity of Inorganic Core-Shell Nanofibers Produced by Coaxial Electrospinning
-
Peng, X.; Santulli, A. C.; Sutter, E.; Wong, S. S. Fabrication and Enhanced Photocatalytic Activity of Inorganic Core-Shell Nanofibers Produced by Coaxial Electrospinning Chem. Sci. 2012, 3, 1262-1272
-
(2012)
Chem. Sci.
, vol.3
, pp. 1262-1272
-
-
Peng, X.1
Santulli, A.C.2
Sutter, E.3
Wong, S.S.4
-
37
-
-
84883450290
-
Porous Nitrogen-Doped Carbon Nanotubes Derived from Tubular Polypyrrole for Energy-Storage Applications
-
Xu, G. Y.; Ding, B.; Nie, P.; Shen, L. F.; Wang, J.; Zhang, X. G. Porous Nitrogen-Doped Carbon Nanotubes Derived from Tubular Polypyrrole for Energy-Storage Applications Chem.-Eur. J. 2013, 19, 12306-12312
-
(2013)
Chem.-Eur. J.
, vol.19
, pp. 12306-12312
-
-
Xu, G.Y.1
Ding, B.2
Nie, P.3
Shen, L.F.4
Wang, J.5
Zhang, X.G.6
-
38
-
-
0041414881
-
Highly Reversible Lithium Storage in Nanostructured Silicon
-
Graetz, J.; Ahn, C. C.; Yazami, R.; Fultz, B. Highly Reversible Lithium Storage in Nanostructured Silicon Electrochem.Solid-State Lett. 2003, 6, A194-A197
-
(2003)
Electrochem.Solid-State Lett.
, vol.6
-
-
Graetz, J.1
Ahn, C.C.2
Yazami, R.3
Fultz, B.4
-
40
-
-
45749118728
-
2
-
2 J. Chem. Mater. 2008, 20, 3435-3442
-
(2008)
J. Chem. Mater.
, vol.20
, pp. 3435-3442
-
-
Wang, D.1
Choi, D.2
Yang, Z.3
Viswanathan, V.V.4
Nie, Z.5
Wang, C.6
Song, Y.7
Zhang, J.G.8
Liu9
-
43
-
-
67749111685
-
2 Nanorods on Transparent Conducting Substrates for Dye-Sensitized Solar Cells
-
2 Nanorods on Transparent Conducting Substrates for Dye-Sensitized Solar Cells J. Am. Chem. Soc. 2009, 131, 3985-3990
-
(2009)
J. Am. Chem. Soc.
, vol.131
, pp. 3985-3990
-
-
Liu, B.1
Aydil, E.S.2
|