-
2
-
-
80053452430
-
The origin of wrinkles on transferred graphene
-
Liu, N.; Pan, Z. H.; Fu, L.; Zhang, C. H.; Dai, B. Y.; Liu, Z. F. The origin of wrinkles on transferred graphene. Nano Res.2011, 4, 996–1004.
-
(2011)
Nano Res.
, vol.4
, pp. 996-1004
-
-
Liu, N.1
Pan, Z.H.2
Fu, L.3
Zhang, C.H.4
Dai, B.Y.5
Liu, Z.F.6
-
3
-
-
77953651476
-
Band gap of strained graphene nanoribbons
-
Lu, Y.; Guo, J. Band gap of strained graphene nanoribbons. Nano Res.2010, 3, 189–199.
-
(2010)
Nano Res.
, vol.3
, pp. 189-199
-
-
Lu, Y.1
Guo, J.2
-
4
-
-
84866642671
-
Photothermally reduced graphene as high-power anodes for lithium-ion batteries
-
Mukherjee, R.; Thomas, A. V.; Krishnamurthy, A.; Koratkar, N. Photothermally reduced graphene as high-power anodes for lithium-ion batteries. ACS Nano2012, 6, 7867–7878.
-
(2012)
ACS Nano
, vol.6
, pp. 7867-7878
-
-
Mukherjee, R.1
Thomas, A.V.2
Krishnamurthy, A.3
Koratkar, N.4
-
5
-
-
77953023797
-
Facile synthesis and application of Ag-chemically converted graphene nanocomposite
-
Shen, J. F.; Shi, M.; Li, N.; Yan, B.; Ma, H. W.; Hu, Y. Z.; Ye, M. X. Facile synthesis and application of Ag-chemically converted graphene nanocomposite. Nano Res.2010, 3, 339–349.
-
(2010)
Nano Res.
, vol.3
, pp. 339-349
-
-
Shen, J.F.1
Shi, M.2
Li, N.3
Yan, B.4
Ma, H.W.5
Hu, Y.Z.6
Ye, M.X.7
-
6
-
-
79954818115
-
4 octahedral colloidal crystals
-
4 octahedral colloidal crystals. Nano Res.2011, 4, 370–375.
-
(2011)
Nano Res.
, vol.4
, pp. 370-375
-
-
Meng, L.R.1
Chen, W.M.2
Tan, Y.W.3
Zou, L.4
Chen, C.P.5
Zhou, H.P.6
Peng, Q.7
Li, Y.D.8
-
8
-
-
84943356540
-
Basic science of water: Challenges and current status towards a molecular picture
-
Meng, S.; Greenlee, L. F.; Shen, Y. R.; Wang, E. G. Basic science of water: Challenges and current status towards a molecular picture. Nano Res.2015, 8, 3085–3110.
-
(2015)
Nano Res.
, vol.8
, pp. 3085-3110
-
-
Meng, S.1
Greenlee, L.F.2
Shen, Y.R.3
Wang, E.G.4
-
9
-
-
84929178784
-
4@carbon nanocomposites for high-performance lithium-ion batteries
-
4@carbon nanocomposites for high-performance lithium-ion batteries. ACS Appl. Mater. Interfaces2015, 7, 9709–9715.
-
(2015)
ACS Appl. Mater. Interfaces
, vol.7
, pp. 9709-9715
-
-
Zhao, L.1
Gao, M.M.2
Yue, W.B.3
Jiang, Y.4
Wang, Y.5
Ren, Y.6
Hu, F.Q.7
-
10
-
-
84878599483
-
4 nanospheres for enhanced lithium storage
-
4 nanospheres for enhanced lithium storage. Adv. Mater.2013, 25, 2909–2914.
-
(2013)
Adv. Mater.
, vol.25
, pp. 2909-2914
-
-
Wei, W.1
Yang, S.B.2
Zhou, H.X.3
Lieberwirth, I.4
Feng, X.L.5
Müllen, K.6
-
13
-
-
79952177809
-
Toward N-doped graphene via solvothermal synthesis
-
Deng, D. H.; Pan, X. L.; Yu, L.; Cui, Y.; Jiang, Y. P.; Qi, J.; Li, W. X.; Fu, Q.; Ma, X. C.; Xue, Q. K. et al. Toward N-doped graphene via solvothermal synthesis. Chem. Mater.2011, 23, 1188–1193.
-
(2011)
Chem. Mater.
, vol.23
, pp. 1188-1193
-
-
Deng, D.H.1
Pan, X.L.2
Yu, L.3
Cui, Y.4
Jiang, Y.P.5
Qi, J.6
Li, W.X.7
Fu, Q.8
Ma, X.C.9
Xue, Q.K.10
-
14
-
-
66449118468
-
Synthesis of N-doped graphene by chemical vapor deposition and its electrical properties
-
Wei, D.; Liu, Y.; Wang, Y.; Zhang, H. L.; Huang, L. P.; Yu, G. Synthesis of N-doped graphene by chemical vapor deposition and its electrical properties. Nano Lett.2009, 9, 1752–1758.
-
(2009)
Nano Lett.
, vol.9
, pp. 1752-1758
-
-
Wei, D.1
Liu, Y.2
Wang, Y.3
Zhang, H.L.4
Huang, L.P.5
Yu, G.6
-
15
-
-
84908146094
-
Phosphorus-doped graphene-wrapped molybdenum disulfide hollow spheres as anode material for lithium-ion batteries
-
Qiu, W. D.; Jiao, J. Q.; Xia, J.; Zhong, H. M.; Chen, L. P. Phosphorus-doped graphene-wrapped molybdenum disulfide hollow spheres as anode material for lithium-ion batteries. RSC Adv.2014, 4, 50529–50535.
-
(2014)
RSC Adv.
, vol.4
, pp. 50529-50535
-
-
Qiu, W.D.1
Jiao, J.Q.2
Xia, J.3
Zhong, H.M.4
Chen, L.P.5
-
17
-
-
80455126107
-
4/graphene composites with high lithium storage capacity and for controlled drug delivery
-
4/graphene composites with high lithium storage capacity and for controlled drug delivery. J. Phys. Chem. C2011, 115, 21567–21573.
-
(2011)
J. Phys. Chem. C
, vol.115
, pp. 21567-21573
-
-
Li, X.Y.1
Huang, X.L.2
Liu, D.P.3
Wang, X.4
Song, S.Y.5
Zhou, L.6
Zhang, H.J.7
-
18
-
-
84937731744
-
4–graphene nanoribbons as anode materials
-
4–graphene nanoribbons as anode materials. Adv. Energy Mater.2015, 5, 1500171.
-
(2015)
Adv. Energy Mater.
, vol.5
, pp. 1500171
-
-
Li, L.1
Kovalchuk, A.2
Fei, H.L.3
Peng, Z.W.4
Li, Y.L.5
Kim, N.D.6
Xiang, C.S.7
Yang, Y.8
Ruan, G.D.9
Tour, J.M.10
-
19
-
-
84878358850
-
4 magnetic nanoparticles/reduced graphene oxide nanosheets as a novel electrochemical and bioeletrochemical sensing platform
-
4 magnetic nanoparticles/reduced graphene oxide nanosheets as a novel electrochemical and bioeletrochemical sensing platform. Biosens. Bioelectron.2013, 49, 1–8.
-
(2013)
Biosens. Bioelectron.
, vol.49
, pp. 1-8
-
-
Teymourian, H.1
Salimi, A.2
Khezrian, S.3
-
20
-
-
80052526478
-
4–graphene nanocomposites for Li ion battery anodes
-
4–graphene nanocomposites for Li ion battery anodes. Chem. Commun.2011, 47, 10371–10373.
-
(2011)
Chem. Commun.
, vol.47
, pp. 10371-10373
-
-
Behera, S.K.1
-
21
-
-
79959603231
-
2 nanowall hybrids
-
2 nanowall hybrids. Nano Res.2011, 4, 648–657.
-
(2011)
Nano Res.
, vol.4
, pp. 648-657
-
-
Zhu, C.Z.1
Guo, S.J.2
Fang, Y.X.3
Han, L.4
Wang, E.K.5
Dong, S.J.6
-
22
-
-
77949307809
-
Radical addition of perfluorinated alkyl iodides to multi-layered graphene and single-walled carbon nanotubes
-
Hamilton, C. E.; Lomeda, J. R.; Sun, Z. Z.; Tour, J. M.; Barron, A. R. Radical addition of perfluorinated alkyl iodides to multi-layered graphene and single-walled carbon nanotubes. Nano Res.2010, 3, 138–145.
-
(2010)
Nano Res.
, vol.3
, pp. 138-145
-
-
Hamilton, C.E.1
Lomeda, J.R.2
Sun, Z.Z.3
Tour, J.M.4
Barron, A.R.5
-
23
-
-
79961069864
-
4–graphene nanocomposites with improved lithium storage and magnetism properties
-
4–graphene nanocomposites with improved lithium storage and magnetism properties. J. Phys. Chem. C2011, 115, 14469–14477.
-
(2011)
J. Phys. Chem. C
, vol.115
, pp. 14469-14477
-
-
Su, J.1
Cao, M.H.2
Ren, L.3
Hu, C.W.4
-
24
-
-
84902205015
-
Hierarchical tree-like heterostructure arrays for enhanced photoeletrochemical activity
-
Jiao, J. Q.; Xia, J.; Qiu, W. D.; Tang, J. G.; Li, G. R.; Kuang, D. B.; Tong, Y. X.; Chen, L. P. Hierarchical tree-like heterostructure arrays for enhanced photoeletrochemical activity. Electrochim. Acta2014, 136, 217–222.
-
(2014)
Electrochim. Acta
, vol.136
, pp. 217-222
-
-
Jiao, J.Q.1
Xia, J.2
Qiu, W.D.3
Tang, J.G.4
Li, G.R.5
Kuang, D.B.6
Tong, Y.X.7
Chen, L.P.8
-
25
-
-
84937501515
-
Synthesis of photocatalytic hematite nanotube array using a template-free solvothermal approach
-
Jiao, J. Q.; Tang, J. G.; Wang, G. M.; Wang, Y.; Huang, L. J.; Huang, Z.; Liu, J. X.; Zhu, Y. K.; Belfiore, L. A. Synthesis of photocatalytic hematite nanotube array using a template-free solvothermal approach. RSC Adv.2015, 5, 60920–60925.
-
(2015)
RSC Adv.
, vol.5
, pp. 60920-60925
-
-
Jiao, J.Q.1
Tang, J.G.2
Wang, G.M.3
Wang, Y.4
Huang, L.J.5
Huang, Z.6
Liu, J.X.7
Zhu, Y.K.8
Belfiore, L.A.9
-
26
-
-
80051633745
-
Facile synthesis of highly photoactive a-Fe2O3-based films for water oxidation
-
Wang, G. M.; Ling, Y. C.; Wheeler, D. A.; George, K. E. N.; Horsley, K.; Heske, C.; Zhang, J. Z.; Li, Y. Facile synthesis of highly photoactive a-Fe2O3-based films for water oxidation. Nano Lett.2011, 11, 3503–3509.
-
(2011)
Nano Lett.
, vol.11
, pp. 3503-3509
-
-
Wang, G.M.1
Ling, Y.C.2
Wheeler, D.A.3
George, K.E.N.4
Horsley, K.5
Heske, C.6
Zhang, J.Z.7
Li, Y.8
-
27
-
-
84887653809
-
3 nanocrystals dispersed into a porous carbon matrix as a high performance cathode material for lithium ion batteries
-
3 nanocrystals dispersed into a porous carbon matrix as a high performance cathode material for lithium ion batteries. J. Mater. Chem. A2013, 1, 15060–15067.
-
(2013)
J. Mater. Chem. A
, vol.1
, pp. 15060-15067
-
-
Ma, R.G.1
Wang, M.2
Tao, P.P.3
Wang, Y.4
Cao, C.W.5
Shan, G.C.6
Yang, S.L.7
Xi, L.J.8
Chung, J.C.Y.9
Lu, Z.G.10
-
29
-
-
17044382223
-
3
-
3. Mater. Trans.2005, 46, 155–158.
-
(2005)
Mater. Trans.
, vol.46
, pp. 155-158
-
-
Kwon, S.K.1
Kimijima, K.2
Kanie, K.3
Muramatsu, A.4
Suzuki, S.5
Matsubara, E.6
Waseda, Y.7
-
31
-
-
84856953141
-
3 nanowires for photoelectrochemical application
-
3 nanowires for photoelectrochemical application. Nano Lett.2012, 12, 724–731.
-
(2012)
Nano Lett.
, vol.12
, pp. 724-731
-
-
Li, L.S.1
Yu, Y.H.2
Meng, F.3
Tan, Y.Z.4
Hamers, R.J.5
Jin, S.6
-
32
-
-
84872718074
-
4 composites as superior lithium ion anodes
-
4 composites as superior lithium ion anodes. Nanoscale2013, 5, 1168–1175.
-
(2013)
Nanoscale
, vol.5
, pp. 1168-1175
-
-
Lei, C.1
Han, F.2
Li, D.3
Li, W.C.4
Sun, Q.5
Zhang, X.Q.6
Lu, A.H.7
-
34
-
-
79952532177
-
4 nanoparticles with 3D laminated structure as superior anode in lithium ion batteries
-
4 nanoparticles with 3D laminated structure as superior anode in lithium ion batteries. Chem.—Eur. J.2011, 17, 661–667.
-
(2011)
Chem.—Eur. J.
, vol.17
, pp. 661-667
-
-
Wang, J.-Z.1
Zhong, C.2
Wexler, D.3
Idris, N.H.4
Wang, Z.X.5
Chen, L.Q.6
Liu, H.K.7
-
35
-
-
84908374875
-
Plasmonic silver nanoparticles matched with vertically aligned nitrogen-doped titanium dioxide nanotube arrays for enhanced photoelectrochemical activity
-
Jiao, J. Q.; Tang, J. G.; Gao, W.; Kuang, D. B.; Tong, Y. X.; Chen, L. P. Plasmonic silver nanoparticles matched with vertically aligned nitrogen-doped titanium dioxide nanotube arrays for enhanced photoelectrochemical activity. J. Power Sources2015, 274, 464–470.
-
(2015)
J. Power Sources
, vol.274
, pp. 464-470
-
-
Jiao, J.Q.1
Tang, J.G.2
Gao, W.3
Kuang, D.B.4
Tong, Y.X.5
Chen, L.P.6
-
36
-
-
79960391169
-
4/carbon core/shell nanorods: Synthesis and electromagnetic properties
-
4/carbon core/shell nanorods: Synthesis and electromagnetic properties. J. Phys. Chem. C2011, 115, 13603–13608.
-
(2011)
J. Phys. Chem. C
, vol.115
, pp. 13603-13608
-
-
Chen, Y.J.1
Xiao, G.2
Wang, T.S.3
Ouyang, Q.Y.4
Qi, L.H.5
Ma, Y.6
Gao, P.7
Zhu, C.-L.8
Cao, M.S.9
Jin, H.B.10
-
39
-
-
84890404566
-
4 lithium battery anodes with long cycle life and high rate capability
-
4 lithium battery anodes with long cycle life and high rate capability. Nano Lett.2013, 13, 6136–6143.
-
(2013)
Nano Lett.
, vol.13
, pp. 6136-6143
-
-
Luo, J.S.1
Liu, J.L.2
Zeng, Z.Y.3
Ng, C.F.4
Ma, L.J.5
Zhang, H.6
Lin, J.Y.7
Shen, Z.X.8
Fan, H.J.9
-
40
-
-
79960985557
-
4 nanoparticleintegrated graphene sheets for high-performance half and full lithium ion cells
-
4 nanoparticleintegrated graphene sheets for high-performance half and full lithium ion cells. Phys. Chem. Chem. Phys.2011, 13, 7170–7177.
-
(2011)
Phys. Chem. Chem. Phys.
, vol.13
, pp. 7170-7177
-
-
Ji, L.W.1
Tan, Z.K.2
Kuykendall, T.R.3
Aloni, S.4
Xun, S.D.5
Lin, E.6
Battaglia, V.7
Zhang, Y.Q.8
-
41
-
-
84911999444
-
4/graphene composites at elevated temperature and their application as anode materials for lithium-ion batteries
-
4/graphene composites at elevated temperature and their application as anode materials for lithium-ion batteries. RSC Adv.2014, 4, 59981–59989.
-
(2014)
RSC Adv.
, vol.4
, pp. 59981-59989
-
-
Jing, L.Y.1
Fu, A.P.2
Li, H.L.3
Liu, J.Q.4
Guo, P.Z.5
Wang, Y.Q.6
Zhao, X.S.7
-
42
-
-
84867910265
-
Flexible graphene-based lithium ion batteries with ultrafast charge and discharge rates
-
Li, N.; Chen, Z. Q.; Ren, W. C.; Li, F.; Cheng, H. M. Flexible graphene-based lithium ion batteries with ultrafast charge and discharge rates. Proc. Natl. Acad. Sci. USA2012, 109, 17360–17365.
-
(2012)
Proc. Natl. Acad. Sci. USA
, vol.109
, pp. 17360-17365
-
-
Li, N.1
Chen, Z.Q.2
Ren, W.C.3
Li, F.4
Cheng, H.M.5
|