-
1
-
-
17144397132
-
Synthesis and Rate Performance of Monolithic Macroporous Carbon Electrodes for Lithium-Ion Secondary Batteries
-
Lee, K. T.; Lytle, J. C.; Ergang, N. S.; Oh, S. M.; Stein, A. Synthesis and Rate Performance of Monolithic Macroporous Carbon Electrodes for Lithium-Ion Secondary Batteries Adv. Funct. Mater. 2005, 15, 547-556 10.1002/adfm.200400186
-
(2005)
Adv. Funct. Mater.
, vol.15
, pp. 547-556
-
-
Lee, K.T.1
Lytle, J.C.2
Ergang, N.S.3
Oh, S.M.4
Stein, A.5
-
2
-
-
33644948290
-
2 Hollow Spheres: Synthesis and Performance in Reversible Li-Ion Storage
-
2 Hollow Spheres: Synthesis and Performance in Reversible Li-Ion Storage Chem. Mater. 2006, 18, 1347-1353 10.1021/cm052219o
-
(2006)
Chem. Mater.
, vol.18
, pp. 1347-1353
-
-
Wang, Y.1
Su, F.2
Lee, J.Y.3
Zhao, X.4
-
3
-
-
9244220077
-
2 Octahedra Based on Two-Dimensional Aggregation of Nanocrystallites
-
2 Octahedra Based on Two-Dimensional Aggregation of Nanocrystallites Angew. Chem. 2004, 116, 6056-6059 10.1002/ange.200461129
-
(2004)
Angew. Chem.
, vol.116
, pp. 6056-6059
-
-
Yang, H.G.1
Zeng, H.C.2
-
4
-
-
33749533288
-
TEM-Induced Structural Evolution in Amorphous Fe Oxide Nanoparticles
-
Latham, A. H.; Wilson, M. J.; Schiffer, P.; Williams, M. E. TEM-Induced Structural Evolution in Amorphous Fe Oxide Nanoparticles J. Am. Chem. Soc. 2006, 128, 12632-12633 10.1021/ja064666q
-
(2006)
J. Am. Chem. Soc.
, vol.128
, pp. 12632-12633
-
-
Latham, A.H.1
Wilson, M.J.2
Schiffer, P.3
Williams, M.E.4
-
6
-
-
49449095846
-
Hematite Hollow Spheres with a Mesoporous Shell: Controlled Synthesis and Applications in Gas Sensor and Lithium Ion Batteries
-
Wu, Z.; Yu, K.; Zhang, S.; Xie, Y. Hematite Hollow Spheres with a Mesoporous Shell: Controlled Synthesis and Applications in Gas Sensor and Lithium Ion Batteries J. Phys. Chem. C 2008, 112, 11307-11313 10.1021/jp803582d
-
(2008)
J. Phys. Chem. C
, vol.112
, pp. 11307-11313
-
-
Wu, Z.1
Yu, K.2
Zhang, S.3
Xie, Y.4
-
7
-
-
2342433390
-
Formation of Hollow Nanocrystals through the Nanoscale Kirkendall Effect
-
Yin, Y.; Rioux, R. M.; Erdonmez, C. K.; Hughes, S.; Somorjai, G. A.; Alivisatos, A. P. Formation of Hollow Nanocrystals through the Nanoscale Kirkendall Effect Science 2004, 304, 711-714 10.1126/science.1096566
-
(2004)
Science
, vol.304
, pp. 711-714
-
-
Yin, Y.1
Rioux, R.M.2
Erdonmez, C.K.3
Hughes, S.4
Somorjai, G.A.5
Alivisatos, A.P.6
-
8
-
-
67650688097
-
Carbon-Encapsulated Metal Oxide Hollow Nanoparticles and Metal Oxide Hollow Nanoparticles: A General Synthesis Strategy and Its Application to Lithium-Ion Batteries
-
Zhou, J.; Song, H.; Chen, X.; Zhi, L.; Yang, S.; Huo, J.; Yang, W. Carbon-Encapsulated Metal Oxide Hollow Nanoparticles and Metal Oxide Hollow Nanoparticles: a General Synthesis Strategy and Its Application to Lithium-Ion Batteries Chem. Mater. 2009, 21, 2935-2940 10.1021/cm9006266
-
(2009)
Chem. Mater.
, vol.21
, pp. 2935-2940
-
-
Zhou, J.1
Song, H.2
Chen, X.3
Zhi, L.4
Yang, S.5
Huo, J.6
Yang, W.7
-
9
-
-
68149136800
-
Oxidation Conversion of Carbon-Encapsulated Metal Nanoparticles to Hollow Nanoparticles
-
Zhou, J.; Song, H.; Chen, X.; Zhi, L.; Huo, J.; Cheng, B. Oxidation Conversion of Carbon-Encapsulated Metal Nanoparticles to Hollow Nanoparticles Chem. Mater. 2009, 21, 3730-3737 10.1021/cm901222j
-
(2009)
Chem. Mater.
, vol.21
, pp. 3730-3737
-
-
Zhou, J.1
Song, H.2
Chen, X.3
Zhi, L.4
Huo, J.5
Cheng, B.6
-
10
-
-
84861909740
-
4 Nanoparticles as Efficient Electrocatalysts for the Oxygen Reduction Reaction
-
4 Nanoparticles as Efficient Electrocatalysts for the Oxygen Reduction Reaction J. Am. Chem. Soc. 2012, 134, 9082-9085 10.1021/ja3030565
-
(2012)
J. Am. Chem. Soc.
, vol.134
, pp. 9082-9085
-
-
Wu, Z.-S.1
Yang, S.2
Sun, Y.3
Parvez, K.4
Feng, X.5
Müllen, K.6
-
11
-
-
84960089169
-
2N-Based Oxygen Reduction Catalyst Derived from Seaweed Biomass
-
2N-Based Oxygen Reduction Catalyst Derived from Seaweed Biomass Small 2016, 12, 1295-1301 10.1002/smll.201503305
-
(2016)
Small
, vol.12
, pp. 1295-1301
-
-
Liu, L.1
Yang, X.2
Ma, N.3
Liu, H.4
Xia, Y.5
Chen, C.6
Yang, D.7
Yao, X.8
-
12
-
-
84909594457
-
Molybdenum Sulfide Clusters-Nitrogen-Doped Graphene Hybrid Hydrogel Film as an Efficient Three-Dimensional Hydrogen Evolution Electrocatalyst
-
Chen, S.; Duan, J.; Tang, Y.; Jin, B.; Zhang Qiao, S. Molybdenum Sulfide Clusters-Nitrogen-Doped Graphene Hybrid Hydrogel Film as an Efficient Three-Dimensional Hydrogen Evolution Electrocatalyst Nano Energy 2015, 11, 11-18 10.1016/j.nanoen.2014.09.022
-
(2015)
Nano Energy
, vol.11
, pp. 11-18
-
-
Chen, S.1
Duan, J.2
Tang, Y.3
Jin, B.4
Zhang Qiao, S.5
-
13
-
-
84865330675
-
Graphene Hydrogels Deposited in Nickel Foams for High-Rate Electrochemical Capacitors
-
Chen, J.; Sheng, K.; Luo, P.; Li, C.; Shi, G. Graphene Hydrogels Deposited in Nickel Foams for High-Rate Electrochemical Capacitors Adv. Mater. 2012, 24, 4569-4573 10.1002/adma.201201978
-
(2012)
Adv. Mater.
, vol.24
, pp. 4569-4573
-
-
Chen, J.1
Sheng, K.2
Luo, P.3
Li, C.4
Shi, G.5
-
14
-
-
84904570657
-
Highly Compressible Macroporous Graphene Monoliths via an Improved Hydrothermal Process
-
Li, Y.; Chen, J.; Huang, L.; Li, C.; Hong, J. D.; Shi, G. Highly Compressible Macroporous Graphene Monoliths via an Improved Hydrothermal Process Adv. Mater. 2014, 26, 4789-4793 10.1002/adma.201400657
-
(2014)
Adv. Mater.
, vol.26
, pp. 4789-4793
-
-
Li, Y.1
Chen, J.2
Huang, L.3
Li, C.4
Hong, J.D.5
Shi, G.6
-
15
-
-
34548825669
-
Single Sheet Functionalized Graphene by Oxidation and Thermal Expansion of Graphite
-
McAllister, M. J.; Li, J.-L.; Adamson, D. H.; Schniepp, H. C.; Abdala, A. A.; Liu, J.; Herrera-Alonso, M.; Milius, D. L.; Car, R.; Prud'homme, R. K.; Aksay, I. A. Single Sheet Functionalized Graphene by Oxidation and Thermal Expansion of Graphite Chem. Mater. 2007, 19, 4396-4404 10.1021/cm0630800
-
(2007)
Chem. Mater.
, vol.19
, pp. 4396-4404
-
-
McAllister, M.J.1
Li, J.-L.2
Adamson, D.H.3
Schniepp, H.C.4
Abdala, A.A.5
Liu, J.6
Herrera-Alonso, M.7
Milius, D.L.8
Car, R.9
Prud'homme, R.K.10
Aksay, I.A.11
-
16
-
-
84946134664
-
4 Nanoparticle Embedded Carbonaceous Fibres: A Nanoconfinement Effect on Enhanced Lithium-Ion Storage
-
4 Nanoparticle Embedded Carbonaceous Fibres: A Nanoconfinement Effect on Enhanced Lithium-Ion Storage Chem. Commun. 2015, 51, 16267-16270 10.1039/C5CC06160A
-
(2015)
Chem. Commun.
, vol.51
, pp. 16267-16270
-
-
Sun, J.1
Li, D.2
Xia, Y.3
Zhu, X.4
Zong, L.5
Ji, Q.6
Jia, Y.A.7
Yang, D.8
-
17
-
-
84908129712
-
4/C Nano/Microstructures for a High-performance Lithium Ion Battery Anode
-
4/C Nano/Microstructures for a High-performance Lithium Ion Battery Anode J. Mater. Chem. A 2014, 2, 18761-18766 10.1039/C4TA03052D
-
(2014)
J. Mater. Chem. A
, vol.2
, pp. 18761-18766
-
-
Li, D.1
Yang, D.2
Zhu, X.3
Jing, D.4
Xia, Y.5
Ji, Q.6
Cai, R.7
Li, H.8
Che, Y.9
-
18
-
-
84946143456
-
Egg-Box Structure in Cobalt Alginate: A New Approach to Multifunctional Hierarchical Mesoporous N-Doped Carbon Nanofibers for Efficient Catalysis and Energy Storage
-
Li, D.; Lv, C.; Liu, L.; Xia, Y.; She, X.; Guo, S.; Yang, D. Egg-Box Structure in Cobalt Alginate: A New Approach to Multifunctional Hierarchical Mesoporous N-Doped Carbon Nanofibers for Efficient Catalysis and Energy Storage ACS Cent. Sci. 2015, 1, 261-269 10.1021/acscentsci.5b00191
-
(2015)
ACS Cent. Sci.
, vol.1
, pp. 261-269
-
-
Li, D.1
Lv, C.2
Liu, L.3
Xia, Y.4
She, X.5
Guo, S.6
Yang, D.7
-
19
-
-
84946908216
-
y (M= Ni, Fe, Cu) Microfibres from Seaweed Biomass for High-Performance Lithium Ion Battery Anodes
-
y (M= Ni, Fe, Cu) Microfibres from Seaweed Biomass for High-Performance Lithium Ion Battery Anodes J. Mater. Chem. A 2015, 3, 22708-22715 10.1039/C5TA06393K
-
(2015)
J. Mater. Chem. A
, vol.3
, pp. 22708-22715
-
-
Lv, C.1
Yang, X.2
Umar, A.3
Xia, Y.4
Jia, Y.A.5
Shang, L.6
Zhang, T.7
Yang, D.8
-
20
-
-
0002164666
-
Thermal Properties of Water Insoluble Alginate Films Containing Di-and Trivalent Cations
-
Nakamura, K.; Nishimura, Y.; Hatakeyama, T.; Hatakeyama, H. Thermal Properties of Water Insoluble Alginate Films Containing Di-and Trivalent Cations Thermochim. Acta 1995, 267, 343-353 10.1016/0040-6031(95)02491-3
-
(1995)
Thermochim. Acta
, vol.267
, pp. 343-353
-
-
Nakamura, K.1
Nishimura, Y.2
Hatakeyama, T.3
Hatakeyama, H.4
-
21
-
-
80054874056
-
Preparation and Catalytic Activity of Fe Alginate Gel Beads for Oxidative Degradation of Azo Dyes under Visible Light Irradiation
-
Dong, Y.; Dong, W.; Cao, Y.; Han, Z.; Ding, Z. Preparation and Catalytic Activity of Fe Alginate Gel Beads for Oxidative Degradation of Azo Dyes Under Visible Light Irradiation Catal. Today 2011, 175, 346-355 10.1016/j.cattod.2011.03.035
-
(2011)
Catal. Today
, vol.175
, pp. 346-355
-
-
Dong, Y.1
Dong, W.2
Cao, Y.3
Han, Z.4
Ding, Z.5
-
22
-
-
65549130589
-
3 Nanowires under Ambient Conditions
-
3 Nanowires under Ambient Conditions Nano Res. 2009, 2, 373-379 10.1007/s12274-009-9036-5
-
(2009)
Nano Res.
, vol.2
, pp. 373-379
-
-
Nasibulin, A.G.1
Rackauskas, S.2
Jiang, H.3
Tian, Y.4
Mudimela, P.R.5
Shandakov, S.D.6
Nasibulina, L.I.7
Jani, S.8
Kauppinen, E.I.9
-
23
-
-
84863720819
-
An Oxygen Reduction Electrocatalyst Based on Carbon Nanotube-Graphene Complexes
-
Li, Y.; Zhou, W.; Wang, H.; Xie, L.; Liang, Y.; Wei, F.; Idrobo, J.-C.; Pennycook, S. J.; Dai, H. An Oxygen Reduction Electrocatalyst Based on Carbon Nanotube-Graphene Complexes Nat. Nanotechnol. 2012, 7, 394-400 10.1038/nnano.2012.72
-
(2012)
Nat. Nanotechnol.
, vol.7
, pp. 394-400
-
-
Li, Y.1
Zhou, W.2
Wang, H.3
Xie, L.4
Liang, Y.5
Wei, F.6
Idrobo, J.-C.7
Pennycook, S.J.8
Dai, H.9
-
24
-
-
55849104293
-
Catalyst-Free Efficient Growth, Orientation and Biosensing Properties of Multilayer Graphene Nanoflake Films with Sharp Edge Planes
-
Shang, N. G.; Papakonstantinou, P.; McMullan, M.; Chu, M.; Stamboulis, A.; Potenza, A.; Dhesi, S. S.; Marchetto, H. Catalyst-Free Efficient Growth, Orientation and Biosensing Properties of Multilayer Graphene Nanoflake Films with Sharp Edge Planes Adv. Funct. Mater. 2008, 18, 3506-3514 10.1002/adfm.200800951
-
(2008)
Adv. Funct. Mater.
, vol.18
, pp. 3506-3514
-
-
Shang, N.G.1
Papakonstantinou, P.2
McMullan, M.3
Chu, M.4
Stamboulis, A.5
Potenza, A.6
Dhesi, S.S.7
Marchetto, H.8
-
26
-
-
84863644771
-
3 Xerogel Used as the Anode Material for Lithium Ion Batteries with Excellent Electrochemical Performance
-
3 Xerogel Used as the Anode Material for Lithium Ion Batteries with Excellent Electrochemical Performance Chem. Commun. 2012, 48, 7410-7412 10.1039/c2cc33469k
-
(2012)
Chem. Commun.
, vol.48
, pp. 7410-7412
-
-
Xin, J.1
Jia-Jia, C.2
Jian-Hui, X.3
Yi-Ning, S.4
You-Zuo, F.5
Min-Sen, Z.6
Quan-Feng, D.7
-
27
-
-
78649614247
-
Synthesis of Nitrogen-Doped Graphene Films for Lithium Battery Application
-
Reddy, A. L. M.; Srivastava, A.; Gowda, S. R.; Gullapalli, H.; Dubey, M.; Ajayan, P. M. Synthesis of Nitrogen-Doped Graphene Films for Lithium Battery Application ACS Nano 2010, 4, 6337-6342 10.1021/nn101926g
-
(2010)
ACS Nano
, vol.4
, pp. 6337-6342
-
-
Reddy, A.L.M.1
Srivastava, A.2
Gowda, S.R.3
Gullapalli, H.4
Dubey, M.5
Ajayan, P.M.6
-
28
-
-
84892804041
-
Porous Nitrogen-Doped Carbon Vegetable-Sponges with Enhanced Lithium Storage Performance
-
Li, X.; Zhu, X.; Zhu, Y.; Yuan, Z.; Si, L.; Qian, Y. Porous Nitrogen-Doped Carbon Vegetable-Sponges with Enhanced Lithium Storage Performance Carbon 2014, 69, 515-524 10.1016/j.carbon.2013.12.059
-
(2014)
Carbon
, vol.69
, pp. 515-524
-
-
Li, X.1
Zhu, X.2
Zhu, Y.3
Yuan, Z.4
Si, L.5
Qian, Y.6
-
29
-
-
84934324321
-
Sustainable Seaweed-Based One-Dimensional (1D) Nanofibers as High-Performance Electrocatalysts for Fuel Cells
-
Zhao, W.; Yuan, P.; She, X.; Xia, Y.; Komarneni, S.; Xi, K.; Che, Y.; Yao, X.; Yang, D. Sustainable Seaweed-Based One-Dimensional (1D) Nanofibers as High-Performance Electrocatalysts for Fuel Cells J. Mater. Chem. A 2015, 3, 14188-14194 10.1039/C5TA03199K
-
(2015)
J. Mater. Chem. A
, vol.3
, pp. 14188-14194
-
-
Zhao, W.1
Yuan, P.2
She, X.3
Xia, Y.4
Komarneni, S.5
Xi, K.6
Che, Y.7
Yao, X.8
Yang, D.9
-
31
-
-
84898004965
-
Iron Oxide Nanoparticle and Graphene Nanoribbon Composite as an Anode Material for High-Performance Li-Ion Batteries
-
Lin, J.; Raji, A. R. O.; Nan, K.; Peng, Z.; Yan, Z.; Samuel, E. L.; Natelson, D.; Tour, J. M. Iron Oxide Nanoparticle and Graphene Nanoribbon Composite as an Anode Material for High-Performance Li-Ion Batteries Adv. Funct. Mater. 2014, 24, 2044-2048 10.1002/adfm.201303023
-
(2014)
Adv. Funct. Mater.
, vol.24
, pp. 2044-2048
-
-
Lin, J.1
Raji, A.R.O.2
Nan, K.3
Peng, Z.4
Yan, Z.5
Samuel, E.L.6
Natelson, D.7
Tour, J.M.8
-
32
-
-
79955384613
-
3 Composite as a High-Performance Anode Material for Lithium Ion Batteries
-
3 Composite as a High-Performance Anode Material for Lithium Ion Batteries ACS Nano 2011, 5, 3333-3338 10.1021/nn200493r
-
(2011)
ACS Nano
, vol.5
, pp. 3333-3338
-
-
Zhu, X.1
Zhu, Y.2
Murali, S.3
Stoller, M.D.4
Ruoff, R.S.5
-
33
-
-
71949124253
-
2 Materials with Highly Reversible Lithium Storage Capacity
-
2 Materials with Highly Reversible Lithium Storage Capacity Nano Lett. 2009, 9, 4215-4220 10.1021/nl902423a
-
(2009)
Nano Lett.
, vol.9
, pp. 4215-4220
-
-
Shi, Y.1
Guo, B.2
Corr, S.A.3
Shi, Q.4
Hu, Y.-S.5
Heier, K.R.6
Chen, L.7
Seshadri, R.8
Stucky, G.D.9
-
34
-
-
0036572026
-
On the Origin of the Extra Electrochemical Capacity Displayed by MO/Li Cells at Low Potential
-
Laruelle, S.; Grugeon, S.; Poizot, P.; Dolle, M.; Dupont, L.; Tarascon, J. On the Origin of the Extra Electrochemical Capacity Displayed by MO/Li Cells at Low Potential J. Electrochem. Soc. 2002, 149, A627-A634 10.1149/1.1467947
-
(2002)
J. Electrochem. Soc.
, vol.149
, pp. A627-A634
-
-
Laruelle, S.1
Grugeon, S.2
Poizot, P.3
Dolle, M.4
Dupont, L.5
Tarascon, J.6
-
35
-
-
84866328109
-
3 Anode Material Prepared from MOF Template for High-Rate Lithium Batteries
-
3 Anode Material Prepared from MOF Template for High-Rate Lithium Batteries Nano Lett. 2012, 12, 4988-4991 10.1021/nl302618s
-
(2012)
Nano Lett.
, vol.12
, pp. 4988-4991
-
-
Xu, X.1
Cao, R.2
Jeong, S.3
Cho, J.4
-
37
-
-
84867769396
-
3 Microboxes with Hierarchical Shell Structures from Metal-Organic Frameworks and Their Lithium Storage Properties
-
3 Microboxes with Hierarchical Shell Structures from Metal-Organic Frameworks and Their Lithium Storage Properties J. Am. Chem. Soc. 2012, 134, 17388-17391 10.1021/ja307475c
-
(2012)
J. Am. Chem. Soc.
, vol.134
, pp. 17388-17391
-
-
Zhang, L.1
Wu, H.B.2
Madhavi, S.3
Hng, H.H.4
Lou, X.W.5
-
38
-
-
84943153032
-
3 Nanocubes/Nitrogen-Doped Graphene Aerogels: Nucleation Mechanism and Lithium Storage Properties
-
3 Nanocubes/Nitrogen-Doped Graphene Aerogels: Nucleation Mechanism and Lithium Storage Properties Sci. Rep. 2014, 4, 7171 10.1038/srep07171
-
(2014)
Sci. Rep.
, vol.4
, pp. 7171
-
-
Wang, R.1
Xu, C.2
Sun, J.3
Gao, L.4
-
39
-
-
84928969759
-
3-Carbon Nanofibers as Advanced Anode Material for Li-Ion Batteries
-
3-Carbon Nanofibers as Advanced Anode Material for Li-Ion Batteries ACS Nano 2015, 9, 4026-4035 10.1021/acsnano.5b00088
-
(2015)
ACS Nano
, vol.9
, pp. 4026-4035
-
-
Cho, J.S.1
Hong, Y.J.2
Kang, Y.C.3
-
40
-
-
84938600963
-
3 Nanoellipsoids as an Anode Material for High-Performance Lithium-Ion Batteries
-
3 Nanoellipsoids as an Anode Material for High-Performance Lithium-Ion Batteries ChemElectroChem 2015, 2, 503-507 10.1002/celc.201402402
-
(2015)
ChemElectroChem
, vol.2
, pp. 503-507
-
-
Ma, R.1
Wang, M.2
Dam, D.T.3
Yoon, Y.J.4
Chen, Y.5
Lee, J.M.6
-
42
-
-
85030682177
-
Gelatin-Derived Sustainable Carbon-Based Functional Materials for Energy Conversion and Storage with Controllability of Structure and Component
-
Wang, Z.-L.; Xu, D.; Zhong, H.-X.; Wang, J.; Meng, F.-L.; Zhang, X.-B. Gelatin-Derived Sustainable Carbon-Based Functional Materials for Energy Conversion and Storage with Controllability of Structure and Component Sci. Adv. 2015, 1, e1400035 10.1126/sciadv.1400035
-
(2015)
Sci. Adv.
, vol.1
-
-
Wang, Z.-L.1
Xu, D.2
Zhong, H.-X.3
Wang, J.4
Meng, F.-L.5
Zhang, X.-B.6
-
43
-
-
84869495842
-
3/Carbon Composite for Use in a High-Performance Lithium Ion Battery
-
3/Carbon Composite for Use in a High-Performance Lithium Ion Battery Carbon 2013, 52, 565-573 10.1016/j.carbon.2012.10.015
-
(2013)
Carbon
, vol.52
, pp. 565-573
-
-
Li, Y.1
Zhu, C.2
Lu, T.3
Guo, Z.4
Zhang, D.5
Ma, J.6
Zhu, S.7
-
44
-
-
84923336506
-
3 Nanosheets for High-Performance Lithium-Ion Batteries
-
3 Nanosheets for High-Performance Lithium-Ion Batteries Adv. Energy Mater. 2015, 5, 1401421 10.1002/aenm.201401421
-
(2015)
Adv. Energy Mater.
, vol.5
, pp. 1401421
-
-
Cao, K.1
Jiao, L.2
Liu, H.3
Liu, Y.4
Wang, Y.5
Guo, Z.6
Yuan, H.7
-
45
-
-
84877351363
-
3/Graphene Aerogel with High Lithium Storage Performance
-
3/Graphene Aerogel with High Lithium Storage Performance ACS Appl. Mater. Interfaces 2013, 5, 3764-3769 10.1021/am400387t
-
(2013)
ACS Appl. Mater. Interfaces
, vol.5
, pp. 3764-3769
-
-
Xiao, L.1
Wu, D.2
Han, S.3
Huang, Y.4
Li, S.5
He, M.6
Zhang, F.7
Feng, X.8
-
46
-
-
84873649427
-
Strongly Coupled Inorganic/Nanocarbon Hybrid Materials for Advanced Electrocatalysis
-
Liang, Y.; Li, Y.; Wang, H.; Dai, H. Strongly Coupled Inorganic/Nanocarbon Hybrid Materials for Advanced Electrocatalysis J. Am. Chem. Soc. 2013, 135, 2013-2036 10.1021/ja3089923
-
(2013)
J. Am. Chem. Soc.
, vol.135
, pp. 2013-2036
-
-
Liang, Y.1
Li, Y.2
Wang, H.3
Dai, H.4
|