-
1
-
-
0035891289
-
Hydrogen-storage materials for mobile applications
-
Schlapbach, L., Zuttel, A., Hydrogen-storage materials for mobile applications. Nature 414 (2001), 353–358.
-
(2001)
Nature
, vol.414
, pp. 353-358
-
-
Schlapbach, L.1
Zuttel, A.2
-
2
-
-
84928654374
-
Hydrazine borane and hydrazinidoboranes as chemical hydrogen storage materials
-
Moury, R., Demirci, U.B., Hydrazine borane and hydrazinidoboranes as chemical hydrogen storage materials. Energies 8 (2015), 3118–3141.
-
(2015)
Energies
, vol.8
, pp. 3118-3141
-
-
Moury, R.1
Demirci, U.B.2
-
3
-
-
84896929652
-
Nanocatalysts for hydrogen generation from ammonia borane and hydrazine borane
-
Lu, Z.H., Yao, Q., Zhang, Z., Yang, Y., Chen, X., Nanocatalysts for hydrogen generation from ammonia borane and hydrazine borane. J Nanomater, 2014, 729029.
-
(2014)
J Nanomater
, pp. 729029
-
-
Lu, Z.H.1
Yao, Q.2
Zhang, Z.3
Yang, Y.4
Chen, X.5
-
4
-
-
77952893036
-
Liquid-phase chemical hydrogen storage: catalytic hydrogen generation under ambient conditions
-
Jiang, H.L., Singh, S.K., Yan, J.M., Zhang, X.B., Xu, Q., Liquid-phase chemical hydrogen storage: catalytic hydrogen generation under ambient conditions. ChemSusChem 3 (2010), 541–549.
-
(2010)
ChemSusChem
, vol.3
, pp. 541-549
-
-
Jiang, H.L.1
Singh, S.K.2
Yan, J.M.3
Zhang, X.B.4
Xu, Q.5
-
5
-
-
84880011201
-
Nanocatalysts for hydrogen generation from hydrazine
-
Singh, S.K., Xu, Q., Nanocatalysts for hydrogen generation from hydrazine. Catal Sci Technol 3 (2013), 1889–1900.
-
(2013)
Catal Sci Technol
, vol.3
, pp. 1889-1900
-
-
Singh, S.K.1
Xu, Q.2
-
6
-
-
84919382853
-
3 for chemical hydrogen storage
-
Yao, Q., Chen, X., Lu, Z.H., Catalytic dehydrogenation of NH3BH3, N2H4 and N2H4BH3 for chemical hydrogen storage. Energy Environ Focus 3 (2014), 236–245.
-
(2014)
Energy Environ Focus
, vol.3
, pp. 236-245
-
-
Yao, Q.1
Chen, X.2
Lu, Z.H.3
-
7
-
-
67651205182
-
Room-temperature hydrogen generation from hydrous hydrazine for chemical hydrogen storage
-
Singh, S.K., Zhang, X.B., Xu, Q., Room-temperature hydrogen generation from hydrous hydrazine for chemical hydrogen storage. J Am Chem Soc 131 (2009), 9894–9895.
-
(2009)
J Am Chem Soc
, vol.131
, pp. 9894-9895
-
-
Singh, S.K.1
Zhang, X.B.2
Xu, Q.3
-
8
-
-
72449195253
-
Complete conversion of hydrous hydrazine to hydrogen at room temperature for chemical hydrogen storage
-
Singh, S.K., Xu, Q., Complete conversion of hydrous hydrazine to hydrogen at room temperature for chemical hydrogen storage. J Am Chem Soc 131 (2009), 18032–18033.
-
(2009)
J Am Chem Soc
, vol.131
, pp. 18032-18033
-
-
Singh, S.K.1
Xu, Q.2
-
9
-
-
84884973010
-
Metal-organic framework supported bimetallic Ni–Pt nanoparticles as high-performance catalysts for hydrogen generation from hydrazine in aqueous solution
-
Singh, A.K., Xu, Q., Metal-organic framework supported bimetallic Ni–Pt nanoparticles as high-performance catalysts for hydrogen generation from hydrazine in aqueous solution. ChemCatChem 5 (2013), 3000–3004.
-
(2013)
ChemCatChem
, vol.5
, pp. 3000-3004
-
-
Singh, A.K.1
Xu, Q.2
-
10
-
-
84876515264
-
Mesoporous multiwalled carbon nanotubes as supports for monodispersed iron–boron catalysts: improved hydrogen generation from hydrous hydrazine decomposition
-
Tong, D.G., Chu, W., Wu, P., Gu, G.F., Zhang, L., Mesoporous multiwalled carbon nanotubes as supports for monodispersed iron–boron catalysts: improved hydrogen generation from hydrous hydrazine decomposition. J Mater Chem A 1 (2013), 358–366.
-
(2013)
J Mater Chem A
, vol.1
, pp. 358-366
-
-
Tong, D.G.1
Chu, W.2
Wu, P.3
Gu, G.F.4
Zhang, L.5
-
11
-
-
84860382311
-
Rhodium–nickel nanoparticles grown on graphene as highly efficient catalyst for complete decomposition of hydrous hydrazine at room temperature for chemical hydrogen storage
-
Wang, J., Zhang, X.B., Wang, Z.L., Wang, L.M., Zhang, Y., Rhodium–nickel nanoparticles grown on graphene as highly efficient catalyst for complete decomposition of hydrous hydrazine at room temperature for chemical hydrogen storage. Energy Environ Sci 5 (2012), 6885–6888.
-
(2012)
Energy Environ Sci
, vol.5
, pp. 6885-6888
-
-
Wang, J.1
Zhang, X.B.2
Wang, Z.L.3
Wang, L.M.4
Zhang, Y.5
-
12
-
-
84905676955
-
Mesoporous Co–B–N–H nanowires: superior catalysts for decomposition of hydrous hydrazine to generate hydrogen
-
Yang, F., Li, Y.Z., Chu, W., Li, C., Tong, D.G., Mesoporous Co–B–N–H nanowires: superior catalysts for decomposition of hydrous hydrazine to generate hydrogen. Catal Sci Technol 4 (2014), 3168–3179.
-
(2014)
Catal Sci Technol
, vol.4
, pp. 3168-3179
-
-
Yang, F.1
Li, Y.Z.2
Chu, W.3
Li, C.4
Tong, D.G.5
-
13
-
-
84930614190
-
Ultrafine Ni–Pt alloy nanoparticles grown on graphene as highly efficient catalyst for complete hydrogen generation from hydrazine borane
-
Zhang, Z., Lu, Z.H., Chen, X., Ultrafine Ni–Pt alloy nanoparticles grown on graphene as highly efficient catalyst for complete hydrogen generation from hydrazine borane. SCS Sustain Chem Eng 3 (2015), 1255–1261.
-
(2015)
SCS Sustain Chem Eng
, vol.3
, pp. 1255-1261
-
-
Zhang, Z.1
Lu, Z.H.2
Chen, X.3
-
14
-
-
84879878503
-
Facile synthesis of Pd–Ir bimetallic octapods and nanocages through galvanic replacement and co-reduction, and their use for hydrazine decomposition
-
Liu, M., Zheng, Y., Xie, S., Li, N., Lu, N., Wang, J., et al. Facile synthesis of Pd–Ir bimetallic octapods and nanocages through galvanic replacement and co-reduction, and their use for hydrazine decomposition. Phys Chem Chem Phys 15 (2013), 11822–11829.
-
(2013)
Phys Chem Chem Phys
, vol.15
, pp. 11822-11829
-
-
Liu, M.1
Zheng, Y.2
Xie, S.3
Li, N.4
Lu, N.5
Wang, J.6
-
15
-
-
84901240804
-
Highly-dispersed surfactant-free bimetallic Ni–Pt nanoparticles as high-performance catalyst for hydrogen generation from hydrous hydrazine
-
Singh, A.K., Xu, Q., Highly-dispersed surfactant-free bimetallic Ni–Pt nanoparticles as high-performance catalyst for hydrogen generation from hydrous hydrazine. Int J Hydrogen Energy 39 (2014), 9128–9134.
-
(2014)
Int J Hydrogen Energy
, vol.39
, pp. 9128-9134
-
-
Singh, A.K.1
Xu, Q.2
-
16
-
-
84892631912
-
0.85Se/graphene hybrid nanosheets: controlled synthesis and enhanced performances for the oxygen reduction reaction and decomposition of hydrazine hydrate
-
Zhang, L., Zhang, C., Multifunctional Co0.85Se/graphene hybrid nanosheets: controlled synthesis and enhanced performances for the oxygen reduction reaction and decomposition of hydrazine hydrate. Nanoscale 6 (2014), 1782–1789.
-
(2014)
Nanoscale
, vol.6
, pp. 1782-1789
-
-
Zhang, L.1
Zhang, C.2
-
17
-
-
20444423295
-
2 production via catalytic decomposition of hydrazine
-
Zheng, M., Cheng, R., Chen, X., Li, N., Li, L., Wang, X., et al. A novel approach for CO-free H2 production via catalytic decomposition of hydrazine. Int J Hydrogen Energy 30 (2005), 1081–1089.
-
(2005)
Int J Hydrogen Energy
, vol.30
, pp. 1081-1089
-
-
Zheng, M.1
Cheng, R.2
Chen, X.3
Li, N.4
Li, L.5
Wang, X.6
-
18
-
-
84887012960
-
2 generation via hydrous hydrazine decomposition
-
He, L., Huang, Y., Liu, X.Y., Li, L., Wang, A., Wang, X., et al. Structural and catalytic properties of supported Ni–Ir alloy catalysts for H2 generation via hydrous hydrazine decomposition. Appl Catal B Environ 147 (2014), 779–788.
-
(2014)
Appl Catal B Environ
, vol.147
, pp. 779-788
-
-
He, L.1
Huang, Y.2
Liu, X.Y.3
Li, L.4
Wang, A.5
Wang, X.6
-
19
-
-
84947803313
-
x-modified RhNi nanoparticles grown on rGO as highly efficient catalysts for complete hydrogen generation from hydrazine borane and hydrazine
-
Zhang, Z., Lu, Z.H., Tan, H., Chen, X., Yao, Q., CeOx-modified RhNi nanoparticles grown on rGO as highly efficient catalysts for complete hydrogen generation from hydrazine borane and hydrazine. J Mater Chem A 3 (2015), 23520–23529.
-
(2015)
J Mater Chem A
, vol.3
, pp. 23520-23529
-
-
Zhang, Z.1
Lu, Z.H.2
Tan, H.3
Chen, X.4
Yao, Q.5
-
20
-
-
84927144498
-
High performance nickel–palladium nanocatalyst for hydrogen generation from alkaline hydrous hydrazine at room temperature
-
Bhattacharjee, D., Mandal, K., Dasgupta, S., High performance nickel–palladium nanocatalyst for hydrogen generation from alkaline hydrous hydrazine at room temperature. J Power Sources 287 (2015), 96–99.
-
(2015)
J Power Sources
, vol.287
, pp. 96-99
-
-
Bhattacharjee, D.1
Mandal, K.2
Dasgupta, S.3
-
21
-
-
84877664257
-
3Fe single-crystalline nanospheres as a highly efficient catalyst for the complete conversion of hydrous hydrazine to hydrogen at room temperature
-
Tong, D.G., Tang, D.M., Chu, W., Gu, G.F., Wu, P., Monodisperse Ni3Fe single-crystalline nanospheres as a highly efficient catalyst for the complete conversion of hydrous hydrazine to hydrogen at room temperature. J Mater Chem A 1 (2013), 6425–6432.
-
(2013)
J Mater Chem A
, vol.1
, pp. 6425-6432
-
-
Tong, D.G.1
Tang, D.M.2
Chu, W.3
Gu, G.F.4
Wu, P.5
-
22
-
-
84908120275
-
Hollow nickel-coated silica microspheres containing rhodium nanoparticles for highly selective production of hydrogen from hydrous hydrazine
-
Yoo, J.B., Kim, H.S., Kang, S.H., Lee, B., Hur, N.H., Hollow nickel-coated silica microspheres containing rhodium nanoparticles for highly selective production of hydrogen from hydrous hydrazine. J Mater Chem A 2 (2014), 18929–18937.
-
(2014)
J Mater Chem A
, vol.2
, pp. 18929-18937
-
-
Yoo, J.B.1
Kim, H.S.2
Kang, S.H.3
Lee, B.4
Hur, N.H.5
-
23
-
-
83055161393
-
Noble-metal-free bimetallic nanoparticle-catalyzed selective hydrogen generation from hydrous hydrazine for chemical hydrogen storage
-
Singh, S.K., Singh, A.K., Aranishi, K., Xu, Q., Noble-metal-free bimetallic nanoparticle-catalyzed selective hydrogen generation from hydrous hydrazine for chemical hydrogen storage. J Am Chem Soc 133 (2011), 19638–19641.
-
(2011)
J Am Chem Soc
, vol.133
, pp. 19638-19641
-
-
Singh, S.K.1
Singh, A.K.2
Aranishi, K.3
Xu, Q.4
-
24
-
-
84894609762
-
2O
-
Gao, W., Li, C., Chen, H., Wu, M., He, S., Wei, M., et al. Supported nickel–iron nanocomposites as a bifunctional catalyst towards hydrogen generation from N2H4·H2O. Green Chem 16 (2014), 1560–1568.
-
(2014)
Green Chem
, vol.16
, pp. 1560-1568
-
-
Gao, W.1
Li, C.2
Chen, H.3
Wu, M.4
He, S.5
Wei, M.6
-
25
-
-
84897771036
-
Low temperature decomposition of hydrous hydrazine over FeNi/Cu nanoparticles
-
Manukyan, K.V., Cross, A., Rouvimov, S., Miller, J., Mukasyan, A.S., Wolf, E.E., Low temperature decomposition of hydrous hydrazine over FeNi/Cu nanoparticles. Appl Catal A 476 (2014), 47–53.
-
(2014)
Appl Catal A
, vol.476
, pp. 47-53
-
-
Manukyan, K.V.1
Cross, A.2
Rouvimov, S.3
Miller, J.4
Mukasyan, A.S.5
Wolf, E.E.6
-
26
-
-
84913536499
-
Precious-metal-free nanocatalysts for highly efficient hydrogen production from hydrous hydrazine
-
Wang, J., Li, Y., Zhang, Y., Precious-metal-free nanocatalysts for highly efficient hydrogen production from hydrous hydrazine. Adv Funct Mater 24 (2014), 7073–7077.
-
(2014)
Adv Funct Mater
, vol.24
, pp. 7073-7077
-
-
Wang, J.1
Li, Y.2
Zhang, Y.3
-
27
-
-
84895902649
-
2
-
Gao, K., Zhu, Y.Y., Tong, D.Q., Tian, L., Wang, Z.H., Wang, X.Z., Hydrothermal synthesis of single-crystal CeCO3OH and their thermal conversion to CeO2. Chin Chem Lett 25 (2014), 383–386.
-
(2014)
Chin Chem Lett
, vol.25
, pp. 383-386
-
-
Gao, K.1
Zhu, Y.Y.2
Tong, D.Q.3
Tian, L.4
Wang, Z.H.5
Wang, X.Z.6
-
28
-
-
84855379778
-
2
-
Qian, L.W., Wang, X., Zheng, H.G., Controlled synthesis of three-fold dendrites of Ce(OH)CO3 with multilayer caltrop and their thermal conversion to CeO2. Cryst Growth Des 12 (2012), 271–280.
-
(2012)
Cryst Growth Des
, vol.12
, pp. 271-280
-
-
Qian, L.W.1
Wang, X.2
Zheng, H.G.3
-
29
-
-
84887781771
-
3 nanocatalyst at room temperature
-
Wang, H.L., Yan, J.M., Wang, Z.L., Song-Il, O., Jiang, Q., Highly efficient hydrogen generation from hydrous hydrazine over amorphous Ni0.9Pt0.1/Ce2O3 nanocatalyst at room temperature. J Mater Chem A 1 (2013), 14957–14962.
-
(2013)
J Mater Chem A
, vol.1
, pp. 14957-14962
-
-
Wang, H.L.1
Yan, J.M.2
Wang, Z.L.3
Song-Il, O.4
Jiang, Q.5
-
30
-
-
84884149154
-
3 catalyst for hydrogen generation from decomposition of alkaline hydrous hydrazine solution
-
Zhang, J., Kang, Q., Yang, Z., Dai, H., Zhuang, D., Wang, P., A cost-effective NiMoB-La(OH)3 catalyst for hydrogen generation from decomposition of alkaline hydrous hydrazine solution. J Mater Chem A 1 (2013), 11623–11628.
-
(2013)
J Mater Chem A
, vol.1
, pp. 11623-11628
-
-
Zhang, J.1
Kang, Q.2
Yang, Z.3
Dai, H.4
Zhuang, D.5
Wang, P.6
-
31
-
-
84924238659
-
Cerium-oxide-modified nickel as a non-noble metal catalyst for selective decomposition of hydrous hydrazine to hydrogen
-
He, L., Liang, B., Li, L., Yang, X., Huang, Y., Wang, A., et al. Cerium-oxide-modified nickel as a non-noble metal catalyst for selective decomposition of hydrous hydrazine to hydrogen. ACS Catal 5 (2015), 1623–1628.
-
(2015)
ACS Catal
, vol.5
, pp. 1623-1628
-
-
He, L.1
Liang, B.2
Li, L.3
Yang, X.4
Huang, Y.5
Wang, A.6
-
32
-
-
84876583046
-
3 nanorods
-
Zhu, F., Chen, G., Sun, S., Sun, X., In situ growth of Au@CeO2 core-shell nanoparticles and CeO2 nanotubes from Ce(OH)CO3 nanorods. J Mater Chem A 1 (2013), 288–294.
-
(2013)
J Mater Chem A
, vol.1
, pp. 288-294
-
-
Zhu, F.1
Chen, G.2
Sun, S.3
Sun, X.4
-
33
-
-
61349185743
-
4: Tb nanotubes
-
Chen, G., Sun, S., Zhao, W., Xu, S., You, T., Template synthesis and luminescence properties of CePO4: Tb nanotubes. J Phys Chem C 112 (2008), 20217–20221.
-
(2008)
J Phys Chem C
, vol.112
, pp. 20217-20221
-
-
Chen, G.1
Sun, S.2
Zhao, W.3
Xu, S.4
You, T.5
-
34
-
-
84869504603
-
2 hierarchical microstructures: facile synthesis and catalytic activity evaluation
-
Wang, L., Zhang, L.F., Zhong, S.L., Xu, A.W., Highly uniform CeO2 hierarchical microstructures: facile synthesis and catalytic activity evaluation. Appl Surf Sci 263 (2012), 769–776.
-
(2012)
Appl Surf Sci
, vol.263
, pp. 769-776
-
-
Wang, L.1
Zhang, L.F.2
Zhong, S.L.3
Xu, A.W.4
-
35
-
-
84869835679
-
Temperature-induced selectivity enhancement in hydrogen generation from Rh–Ni nanoparticle-catalyzed decomposition of hydrous hydrazine
-
Singh, A.K., Yadav, M., Aranishi, K., Xu, Q., Temperature-induced selectivity enhancement in hydrogen generation from Rh–Ni nanoparticle-catalyzed decomposition of hydrous hydrazine. Int J Hydrogen Energy 37 (2012), 18915–18919.
-
(2012)
Int J Hydrogen Energy
, vol.37
, pp. 18915-18919
-
-
Singh, A.K.1
Yadav, M.2
Aranishi, K.3
Xu, Q.4
-
36
-
-
84929943388
-
Rh–Ni–B nanoparticles as highly efficient catalysts for hydrogen generation from hydrous hydrazine
-
Wang, J., Li, W., Wen, Y., Gu, L., Zhang, Y., Rh–Ni–B nanoparticles as highly efficient catalysts for hydrogen generation from hydrous hydrazine. Adv Energy Mater, 5, 2015, 1401879.
-
(2015)
Adv Energy Mater
, vol.5
, pp. 1401879
-
-
Wang, J.1
Li, W.2
Wen, Y.3
Gu, L.4
Zhang, Y.5
-
37
-
-
84894047165
-
2 generation from hydrous hydrazine
-
Song-Il, O., Yan, J.M., Wang, H.L., Wang, Z.L., Jiang, Q., High catalytic kinetic performance of amorphous CoPt NPs induced on CeOx for H2 generation from hydrous hydrazine. Int J Hydrogen Energy 39 (2014), 3755–3761.
-
(2014)
Int J Hydrogen Energy
, vol.39
, pp. 3755-3761
-
-
Song-Il, O.1
Yan, J.M.2
Wang, H.L.3
Wang, Z.L.4
Jiang, Q.5
-
38
-
-
84866055569
-
2O decomposition
-
He, L., Huang, Y., Wang, A., Wang, X., Chen, X., Delgado, J.J., et al. A noble-metal-free catalyst derived from Ni–Al hydrotalcite for hydrogen generation from N2H4·H2O decomposition. Angew Chem 124 (2012), 6295–6298.
-
(2012)
Angew Chem
, vol.124
, pp. 6295-6298
-
-
He, L.1
Huang, Y.2
Wang, A.3
Wang, X.4
Chen, X.5
Delgado, J.J.6
-
39
-
-
77956023296
-
Bimetallic nickel–iridium nanocatalysts for hydrogen generation by decomposition of hydrous hydrazine
-
Singh, S.K., Xu, Q., Bimetallic nickel–iridium nanocatalysts for hydrogen generation by decomposition of hydrous hydrazine. Chem Commun 46 (2010), 6545–6547.
-
(2010)
Chem Commun
, vol.46
, pp. 6545-6547
-
-
Singh, S.K.1
Xu, Q.2
-
40
-
-
84915771465
-
Noble-metal-free NiFeMo nanocatalyst for hydrogen generation from the decomposition of hydrous hydrazine
-
Wang, H.L., Yan, J.M., Li, S.J., Zhang, X.W., Jiang, Q., Noble-metal-free NiFeMo nanocatalyst for hydrogen generation from the decomposition of hydrous hydrazine. J Mater Chem A 3 (2015), 121–124.
-
(2015)
J Mater Chem A
, vol.3
, pp. 121-124
-
-
Wang, H.L.1
Yan, J.M.2
Li, S.J.3
Zhang, X.W.4
Jiang, Q.5
-
41
-
-
84899460291
-
2O at room temperature
-
Song-Il, O., Yan, J.M., Wang, H.L., Wang, Z.L., Jiang, Q., Ni/La2O3 catalyst containing low content platinum–rhodium for the dehydrogenation of N2H4·H2O at room temperature. J Power Sources 262 (2014), 386–390.
-
(2014)
J Power Sources
, vol.262
, pp. 386-390
-
-
Song-Il, O.1
Yan, J.M.2
Wang, H.L.3
Wang, Z.L.4
Jiang, Q.5
-
42
-
-
85027937803
-
Bimetallic nickel–rhodium nanoparticles supported on ZIF-8 as highly efficient catalysts for hydrogen generation from hydrazine in alkaline solution
-
Xia, B., Cao, N., Dai, H., Su, J., Wu, X., Luo, W., et al. Bimetallic nickel–rhodium nanoparticles supported on ZIF-8 as highly efficient catalysts for hydrogen generation from hydrazine in alkaline solution. ChemCatChem 6 (2014), 2549–2552.
-
(2014)
ChemCatChem
, vol.6
, pp. 2549-2552
-
-
Xia, B.1
Cao, N.2
Dai, H.3
Su, J.4
Wu, X.5
Luo, W.6
-
43
-
-
85027952020
-
Metal nanoparticles immobilized on carbon nanodots as highly active catalysts for hydrogen generation from hydrazine in aqueous solution
-
Sun, J.K., Xu, Q., Metal nanoparticles immobilized on carbon nanodots as highly active catalysts for hydrogen generation from hydrazine in aqueous solution. ChemCatChem 7 (2015), 526–531.
-
(2015)
ChemCatChem
, vol.7
, pp. 526-531
-
-
Sun, J.K.1
Xu, Q.2
-
44
-
-
84880936899
-
Dendrimer-encapsulated bimetallic Pt–Ni nanoparticles as highly efficient catalysts for hydrogen generation from chemical hydrogen storage materials
-
Aranishi, K., Singh, A.K., Xu, Q., Dendrimer-encapsulated bimetallic Pt–Ni nanoparticles as highly efficient catalysts for hydrogen generation from chemical hydrogen storage materials. ChemCatChem 5 (2013), 2248–2252.
-
(2013)
ChemCatChem
, vol.5
, pp. 2248-2252
-
-
Aranishi, K.1
Singh, A.K.2
Xu, Q.3
-
45
-
-
84907828260
-
Immobilization of ultrafine bimetallic Ni–Pt nanoparticles inside the pores of metal-organic frameworks as efficient catalysts for dehydrogenation of alkaline solution of hydrazine
-
Cao, N., Yang, L., Dai, H., Liu, T., Su, J., Wu, X., et al. Immobilization of ultrafine bimetallic Ni–Pt nanoparticles inside the pores of metal-organic frameworks as efficient catalysts for dehydrogenation of alkaline solution of hydrazine. Inorg Chem 53 (2014), 10122–10128.
-
(2014)
Inorg Chem
, vol.53
, pp. 10122-10128
-
-
Cao, N.1
Yang, L.2
Dai, H.3
Liu, T.4
Su, J.5
Wu, X.6
-
46
-
-
84907888693
-
High-performance nickel–platinum nanocatalyst supported on mesoporous alumina for hydrogen generation from hydrous hydrazine
-
Jiang, Y., Kang, Q., Zhang, J., Dai, H.B., Wang, P., High-performance nickel–platinum nanocatalyst supported on mesoporous alumina for hydrogen generation from hydrous hydrazine. J Power Sources 273 (2015), 554–560.
-
(2015)
J Power Sources
, vol.273
, pp. 554-560
-
-
Jiang, Y.1
Kang, Q.2
Zhang, J.3
Dai, H.B.4
Wang, P.5
-
47
-
-
84947769777
-
Monodispersed PtNi nanoparticles deposited on diaminealkalized graphene for highly efficient dehydrogenation of hydrous hydrazine at room temperature
-
Song, Z.F., Zhu, Q.L., Xu, Q., Monodispersed PtNi nanoparticles deposited on diaminealkalized graphene for highly efficient dehydrogenation of hydrous hydrazine at room temperature. J Mater Chem A 3 (2015), 23090–23094.
-
(2015)
J Mater Chem A
, vol.3
, pp. 23090-23094
-
-
Song, Z.F.1
Zhu, Q.L.2
Xu, Q.3
-
48
-
-
84881477895
-
Control of metal nanocrystal size reveals metal-support interface role for ceria catalysts
-
Cargnello, M., Doan-Nguyen, V.V.T., Gordon, T.R., Diaz, R.E., Stach, E.A., Gorte, R.J., et al. Control of metal nanocrystal size reveals metal-support interface role for ceria catalysts. Science 341 (2013), 771–773.
-
(2013)
Science
, vol.341
, pp. 771-773
-
-
Cargnello, M.1
Doan-Nguyen, V.V.T.2
Gordon, T.R.3
Diaz, R.E.4
Stach, E.A.5
Gorte, R.J.6
-
49
-
-
84925378861
-
2 production
-
Chen, J., Lu, Z.H., Wang, Y., Chen, X., Zhang, L., Magnetically recyclable Ag/SiO2–CoFe2O4 nanocomposite as a highly active and reusable catalyst for H2 production. Int J Hydrogen Energy 40 (2015), 4777–4785.
-
(2015)
Int J Hydrogen Energy
, vol.40
, pp. 4777-4785
-
-
Chen, J.1
Lu, Z.H.2
Wang, Y.3
Chen, X.4
Zhang, L.5
-
50
-
-
84896991785
-
Facile in situ synthesis of copper nanoparticles supported on reduced graphene oxide for hydrolytic dehydrogenation of ammonia borane
-
Yang, Y., Lu, Z.H., Hu, Y., Zhang, Z., Shi, W., Chen, X., et al. Facile in situ synthesis of copper nanoparticles supported on reduced graphene oxide for hydrolytic dehydrogenation of ammonia borane. RSC Adv 4 (2014), 13749–13752.
-
(2014)
RSC Adv
, vol.4
, pp. 13749-13752
-
-
Yang, Y.1
Lu, Z.H.2
Hu, Y.3
Zhang, Z.4
Shi, W.5
Chen, X.6
-
51
-
-
84933059723
-
2 nanospheres in hydrolytic dehydrogenation of ammonia borane
-
Yao, Q., Lu, Z.H., Wang, Y., Chen, X., Feng, G., Synergetic catalysis of non-noble bimetallic Cu–Co nanoparticles embedded in SiO2 nanospheres in hydrolytic dehydrogenation of ammonia borane. J Phys Chem C 119 (2015), 14167–14174.
-
(2015)
J Phys Chem C
, vol.119
, pp. 14167-14174
-
-
Yao, Q.1
Lu, Z.H.2
Wang, Y.3
Chen, X.4
Feng, G.5
-
52
-
-
84945530347
-
A seed-mediated approach to the general and mild synthesis of non-noble metal nanoparticles stabilized by a metal-organic framework for highly efficient catalysis
-
Chen, Y.Z., Liang, L., Yang, Q., Hong, M., Xu, Q., Yu, S.H., et al. A seed-mediated approach to the general and mild synthesis of non-noble metal nanoparticles stabilized by a metal-organic framework for highly efficient catalysis. Mater Horiz 2 (2015), 606–612.
-
(2015)
Mater Horiz
, vol.2
, pp. 606-612
-
-
Chen, Y.Z.1
Liang, L.2
Yang, Q.3
Hong, M.4
Xu, Q.5
Yu, S.H.6
-
53
-
-
84905923818
-
Synergistic catalysis of MCM-41 immobilized Cu–Ni nanoparticles in hydrolytic dehydrogeneration of ammonia borane
-
Lu, Z.H., Li, J., Feng, G., Yao, Q., Zhang, F., Zhou, R., et al. Synergistic catalysis of MCM-41 immobilized Cu–Ni nanoparticles in hydrolytic dehydrogeneration of ammonia borane. Int J Hydrogen Energy 39 (2014), 13389–13395.
-
(2014)
Int J Hydrogen Energy
, vol.39
, pp. 13389-13395
-
-
Lu, Z.H.1
Li, J.2
Feng, G.3
Yao, Q.4
Zhang, F.5
Zhou, R.6
-
54
-
-
84876286297
-
Catalytic hydrolysis of ammonia borane via magnetically recyclable copper iron nanoparticles for chemical hydrogen storage
-
Lu, Z.H., Li, J., Zhu, A., Yao, Q., Huang, W., Zhou, R., et al. Catalytic hydrolysis of ammonia borane via magnetically recyclable copper iron nanoparticles for chemical hydrogen storage. Int J Hydrogen Energy 38 (2013), 5330–5337.
-
(2013)
Int J Hydrogen Energy
, vol.38
, pp. 5330-5337
-
-
Lu, Z.H.1
Li, J.2
Zhu, A.3
Yao, Q.4
Huang, W.5
Zhou, R.6
-
55
-
-
84920556340
-
Tiny Pd@Co core-shell nanoparticles confined inside a metal-organic framework for highly efficient catalysis
-
Chen, Y.Z., Xu, Q., Yu, S.H., Jiang, H.L., Tiny Pd@Co core-shell nanoparticles confined inside a metal-organic framework for highly efficient catalysis. Small 11 (2015), 71–76.
-
(2015)
Small
, vol.11
, pp. 71-76
-
-
Chen, Y.Z.1
Xu, Q.2
Yu, S.H.3
Jiang, H.L.4
-
56
-
-
84921514672
-
Graphene-supported nickel-platinum nanoparticles as efficient catalyst for hydrogen generation from hydrous hydrazine at room temperature
-
Du, Y., Su, J., Luo, W., Cheng, G., Graphene-supported nickel-platinum nanoparticles as efficient catalyst for hydrogen generation from hydrous hydrazine at room temperature. ACS Appl Mater Interfaces 7 (2015), 1031–1034.
-
(2015)
ACS Appl Mater Interfaces
, vol.7
, pp. 1031-1034
-
-
Du, Y.1
Su, J.2
Luo, W.3
Cheng, G.4
-
57
-
-
84902259626
-
Ni–Pt nanoparticles supported on MIL-101 as highly efficient catalysts for hydrogen generation from aqueous alkaline solution of hydrazine for chemical hydrogen storage
-
Cao, N., Su, J., Luo, W., Cheng, G., Ni–Pt nanoparticles supported on MIL-101 as highly efficient catalysts for hydrogen generation from aqueous alkaline solution of hydrazine for chemical hydrogen storage. Int J Hydrogen Energy 39 (2014), 9726–9734.
-
(2014)
Int J Hydrogen Energy
, vol.39
, pp. 9726-9734
-
-
Cao, N.1
Su, J.2
Luo, W.3
Cheng, G.4
-
58
-
-
84929147697
-
2 nanocomposite as an efficient catalyst for hydrogen generation from hydrazine borane
-
Zhang, Z., Wang, Y., Chen, X., Lu, Z.H., Facile synthesis of NiPt–CeO2 nanocomposite as an efficient catalyst for hydrogen generation from hydrazine borane. J Power Sources 291 (2015), 14–19.
-
(2015)
J Power Sources
, vol.291
, pp. 14-19
-
-
Zhang, Z.1
Wang, Y.2
Chen, X.3
Lu, Z.H.4
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