Publications List |
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2020
310)
Metal-organic framework membranes and membrane reactors: Versatile separations and intensified processes
Y. Ban, N. Cao, W. S. Yang, Rearch, 2020, 41, doi: 1034133/2020/1583451.
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309)
CO2 electroreduction enhanced by transitional layer at cathode/electrolyte interface, L. X. Zhang, S. Q. Hu, W. P. Li, P. Zhang, Z. W. Cao, X. F. Zhu, W. S. Yang, J.Power Sources, 2020, 451, 227743.
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308)
Micro-nanostructural designs of bifunctional electrocatalysts for metal-air batteries
F. Shi, X. F. Zhu, W. S. Yang, J. Catal., 2020, 41: 390-403
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307)
Universally applicable kinetic model for mixed ionic-electronic conducting membranes
Y. Zhu, W. P. Li, L. L. Cai, X. F. Zhu, W. S. Yang, Chem. Eng. Sci., 2020, 215 115455
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306)
Molecular sieving mixed matrix membranes embodying nano-fllers with extremely narrow pore-openings A. Guo, Y. Ban, K. Yang, Y. Zhou, N. Cao, M. Zhao, W. Yang, J. Membr. Sci., 2020, 601,117880.
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305)
Metal-organic framework-based CO2 capture: From precise material design to high-efficiency membranes Y. Ban, M. Zhao, W. Yang, Front. Chem. Sci. Eng, 2020, doi.org/10.1007/s11705-019-1872-6
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304)
Oxygen transport kinetics affected by grain size – a permeation model study
Y. Zhu, J. J. Wang, A. I. Rykov, X. F. Zhu, W. S. Yang, 2020, 603, 118038
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303)
Effect of Ru and Ni nanocatalysts on water splitting and hydrogen oxidation reactions in oxygen-permeable membrane reactors
L. L. Cai, W. Liu, Z. W. Cao, H. B. Li, Y. Cong, X. F. Zhu, W. S. Yang, J. Membr. Sci., 2020, 599, 117702
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302)
Non-Noble Metal Catalysts Coated on Oxygen-Permeable Membrane Reactors for Hydrogen Separation L. L. Cai, Y. Zhu, Z. W. Cao, W. P. Li, H. B. Li, X. F. Zhu, W. S. Yang, J. Membr. Sci., 2020, 594, 117463
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2019
301)
Microstructural and Interfacial Designs of Oxygen-Permeable Membranes for Oxygen Separation and Reaction-Separation Coupling
X.F. Zhu, W. S. Yang, Adv. Mater., 2019, 31, 1902547., Adv. Mater., 2019, 31, 1902547.
300)
Carbon molecular sieving membranes for butane isomer separation
Zhou, Y. C. Wang, Y. J. Ban, A. Guo, K. Yang, N. Cao, W. S. Yang, AIChE Journal, 2019, 65, e16749.
299)
Detrimental phase evolution triggered by Ni in perovskite-type cathodes for CO2 electroreductionCathodes for S. Q. Hu, L. X. Zhang, H. Y. Liu, W. P. Li, Z. W. Cao, L. L. Cai, Y. Zhu, X. F. Zhu, W. S. Yang, J. Energy Chem., 2019, 36, 87-94.
298)
Alkaline-earth elements (Ca, Sr and Ba) doped LaFeO3-δ cathodes for CO2 electroreduction
S. Q. Hu, L. X. Zhang, H. Y. Liu, Z. W. Cao, W. G. Yu, X. F. Zhu, W. S. Yang, J. Power Sources, 2019, 443, 227268-227277.
297)
Nano-CeO2-Modified Cathodes for Direct Electrochemical CO2 Reduction in Solid Oxide Electrolysis Cells
L. X. Zhang, S. Q. Hu, W. P. Li, Z. W. Cao, H. Y. Liu, X. F. Zhu, W. S. Yang, ACS Sustainable Chem. Eng., 2019, 7, 9629-9636.
296)
A poly(amidoamine) nanoparticle cross-linked two-dimensional metal–organic framework nanosheet membrane for water purification
Y. Peng, R. Yao, W. S. Yang, Chem. Commun., 2019, 55, 3935-3938.
295)
Dual-phase membrane reactor for hydrogen separation with high tolerance to CO2 and H2S impurities
L. L. Cai, S. Q. Hu, Z. W. Cao, H. B. Li, X. F. Zhu, W. S. Yang, AIChE J., 2019, 65, 1088–1096.
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294)
Application of in situ techniques for the characterization of NiFe-based oxygen evolution reaction (OER) electrocatalysts
K. Y. Zhu, X. F. Zhu, W. S. Yang, Angew. Chem. Int. Ed. 2019, 58, 1252-1265
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293)
Asymmetric dual-phase MIEC membrane reactor for energy-efficient coproduction of two kinds of synthesis gases
W. P. Li, Z. W. Cao, H. B. Li, X. F. Zhu, W. S. Yang, Int. J. Hydrogen Energy, 2019, 44, 4218-4227.
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292)
Effects of membrane thickness and structural type on the hydrogen separation performance of oxygen-permeable membrane reactors
W. P. Li, Z. W. Cao, X. F. Zhu, W. S. Yang, J. Membr. Sci., 2019, 573, 370-376.
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2018
291)
Polyoxometalate catalysts with co-substituted VO2+ and transition metals and their catalytic performance for the oxidation of isobutane
Y. Liu, J. He, W. Chu, W. Yang, Catal. Sci. Technol., 2018, 8, 5774–5781.
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290)
Highly Efficient Removal of CO in Effluent Streams from Real‐Life Propane Oxidation Process over CuO−CeO2−Based Catalysts
W. Chu, Y. Liu, H. Wang, R. Cai, W. Yang, ChemCatChem 2018, 10, 4292-4299.
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289)
Metal-organic framework-based mixed matrix membranes: Synergetic effect of adsorption and diffusion for CO2/CH4 separation
A. Guo, Y. Ban, K. Yang, W. Yang, J. Membr. Sci., 2018, 562, 76-84
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288)
Effect of V-containing precursors on the structure and catalytic performance of Cs-substituted phosphomolybdates for isobutane oxidation
J. F He, Y. C. Liu, W. L. Chu, W. S. Yang, Appl. Catal. A: General, 2018, 556, 104-112.
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287)
One-step ionothermal synthesis of oriented molecular sieve corrosion-resistant coatings
T. W. Yu, Y. C. Liu, W. L. Chu, R. Cai, W. S. Yang, Micropor. Mesopor. Mater., 2018, 265, 70-76.
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2017
286)
Microstructural engineering and architectural design of metal-organic framework membranes Y. Liu, Y. J. Ban, W. S. Yang, Adv. Mater., 2017, 29, 1606949. Full Article Link
285)
Two-dimensional metal-organic framework nanosheets for membrane-based gas separation Y. Peng, Y. S. Li, Y. J. Ban, W. S. Yang, Angew. Chem. Int. Ed., 2017, 33, 9757–9761.
284)
Insights into the interplay between electric fields and microstructures of AEL films under ionothermal conditions
T. W. Yu, Y. Liu, W. L. Chu, Y. C. Liu, R. Cai, W. S. Yang, Chem. Commun., 2017, 53, 1836–1839.
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283)
Perovskite decorated with oxygen vacancies and Fe-Ni Alloy nanoparticles as high-efficiency electrocatalyst for the oxygen evolution reaction
K. Y. Zhu, T. Wu, M. R. Li, R. F. Lu, X. F. Zhu, W. S. Yang, J. Mater. Chem. A, 2017, 5, 19836-19845
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282)
Electrochemical reduction of CO
2 in solid oxide electrolysis cells
L. X. Zhang, S. Q. Hu, X. F. Zhu, W. S. Yang, J. Energy Chem., 2017, 26, 593–601.
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281)
Layered Fe-substituted LiNiO
2 electrocatalysts for high-efficiency oxygen evolution reaction
K. Y. Zhu, T. Wu, Y. Zhu, X. N. Li, M. R. Li, R. F. Lu, J. H. Wang, X. F. Zhu, W. S. Yang, ACS Energy Lett., 2017, 2, 1654−1660.
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280)
Atomic-scale topochemical preparation of crystalline Fe
3+-doped β-Ni(OH)
2 for ultrahigh-rate oxygen evolution reaction
K. Y. Zhu, H. Y. Liu, M. R. Li, X. N. Li, J. H. Wang, X. F. Zhu, W. S. Yang, J. Mater. Chem. A, 2017, 33, 7753-7758.
Full Article Link
279)
Selection of oxygen permeation models for different mixed ionic-electronic conducting membranes
Y. Zhu, W. P. Li, Y. Liu, X. F. Zhu, W. S. Yang, AIChE J., 2017, 63, 4043–4053.
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278)
High-rate Hydrogen Separation using an MIEC Oxygen Permeable Membrane Reactor
W. P. Li, Z. W. Cao, X. F Zhu, W. S. Yang, AIChE J., 2017, 63, 1278-1286.
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277)
H
2S-tolerant oxygen-permeable ceramic membranes for hydrogen separation with a performance comparable to those of palladium-based membranes
W. Li, Z. Cao, L. Cai, L. Zhang, X. Zhu, W. Yang, Energy Environ. Sci., 2017, 10, 101–106.
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276) Insights into the interplay between electric fields and microstructures of AEL films under ionothermal conditions T. Yu, Y. Liu, W. Chu, Y. Liu, R. Cai, W. Yang, Chem. Commun., 2017, 53, 1836–1839. Full Article Link
2016
275) Dual-ligand zeolitic imidazolate framework crystals and oriented films derived from metastable mono-ligand ZIF-108 Y. Ban, Y. Peng, Y. Zhang, H. Jin, W. Jiao, A. Guo, P. Wang, Y. Li, W. Yang, Micropor. Mesopor. Mat., 2016, 219, 190–198. Full Article Link
274) Improving oxygen permeation of MIEC membrane reactor by enhancing the electronic conductivity under intermediate-low oxygen partial pressures L. Cai, W. Li, Z. Cao, X. Zhu, W. Yang, J. Membr. Sci., 2016, 520, 607–615. Full Article Link
273) Gel-type shell contributing to the high proton conductivity of pyrophosphates F. Ge, M. Li, X. Zhu, W. Yang, Ceram. Int., 2016, 42(8), 9913–9920. Full Article Link
272) High performance carbon molecular sieving membranes derived from pyrolysis of metal-organic framework ZIF-108 doped polyimide matrices W. Jiao, Y. Ban, Z. Shi, X. Jiang, Y. Li, W. Yang, Chem. Commun., 2016, 52, 13779–13782. Full Article Link
271) Conversion of xylose into furfural in a MOF-based mixed matrix membrane reactor H. Jin, X. Liu, Y. Ban, Y. Peng, W. Jiao, P. Wang, A. Guo, Y. Li, W. Yang, Chem. Eng. J., 2016, 305, 12–18. Full Article Link
270) A novel CAU-10-H MOF membrane for hydrogen separation under hydrothermal conditions H. Jin, A. Wollbrink, R. Yao, Y. Li, J. Caro, W. Yang, J. Membr. Sci., 2016, 513, 40–46. Full Article Link
269) Integration of nine steps into one membrane reactor to produce synthesis gases for ammonia and liquid fuel W. Li, X. Zhu, S. Chen, W. Yang, Angew. Chem. Int. Ed., 2016, 55(30), 8566–8570. Full Article Link
268) A “Copolymer-co-morphology” conception for shape-controlled synthesis of Prussian blue analogues and as-derived spinel oxides X. Li, L. Yuan, J. Wang, L. Jiang, A. Rykov, D. Nagy, C. Bogdán, M. Ahmed, K. Zhu, G. Sun, W. Yang, Nanoscale, 2016, 8(4), 2333–2342. Full Article Link
267)
Stability of sulfate doped SrCoO
3-delta MIEC membrane
Y. Liu, X. Zhu, W. Yang, J. Membr. Sci., 2016, 501, 53–59.
Full Article Link
266)
Oxygen transport kinetics of MIEC membranes coated with different catalysts
Y. Liu, Y. Zhu, M. Li, X. Zhu, W. Yang, Aiche J., 2016, 62(8), 2803–2812.
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265)
Enhancement of oxygen evolution performance through synergetic action between NiFe metal core and NiFeO
xshell
K. Zhu, M. Li, X. Li, X. Zhu, J. Wang, W. Yang, Chem. Commun., 2016, 52, 11803–11806.
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2015
264)
Confinement of ionic liquids in nanocages: Tailoring the molecular sieving properties of ZIF-8 for membrane-based CO
2 capture
Y. Ban, Z. Li, Y. Li, Y. Peng, H. Jin, W. Jiao, A. Guo, P. Wang, Q. Yang, C. Zhong, W. Yang, Angew. Chem. Int. Ed., 2015, 54(51), 15483–15487.
Full Article Link
263)
Asymmetric dual-phase membranes prepared via tape-casting and co-lamination for oxygen permeation
Z. Cao, X. Zhu, W. Li, B. Xu, L. Yang, W. Yang, Mater. Lett., 2015, 147, 88–91.
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262)
Mixed matrix membranes incorporated with amine-functionalized titanium-based metal-organic framework for CO
2/CH
4 separation
X. Guo, H. Huang, Y. Ban, Q. Yang, Y. Xiao, Y. Li, W. Yang, C. Zhong, J. Membr. Sci., 2015, 478, 130–139.
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261)
Recovery of HMF from aqueous solution by zeolitic imidazolate frameworks
H. Jin, Y. Li, X. Liu, Y. Ban, Y. Peng, W. Jiao, W. Yang, Chem. Eng. Sci., 2015, 124, 170–178.
Full Article Link
260)
Mixed ionic-electronic conducting (MIEC) membranes for hydrogen production from water splitting
W. Li, X. Zhu, Z. Cao, W. Wang, W. Yang, Int. J. Hydrogen Energ., 2015, 40(8), 3452–3461.
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259)
Molecular sieve membranes: From 3D zeolites to 2D MOFs
Y. Li, W. Yang, Chinese J. Catal., 2015, 36(5), 692–697.
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258)
Degradation and stabilization of perovskite membranes containing silicon impurity at low temperature
Y. Liu, X. Zhu, M. Li, W. Li, W. Yang, J. Membr. Sci., 2015, 492, 173–180.
Full Article Link
257)
Nanoparticles at grain boundaries inhibit the phase transformation of perovskite membrane
Y. Liu, X. Zhu, M. Li, R. O’Hayre, W. Yang, Nano. Lett., 2015, 15(11), 7678–7683.
Full Article Link
256)
Degradation mechanism analysis of Ba
0.5Sr
0.5Co
0.8Fe
0.2O
3-delta membranes at intermediate-low temperatures
Y. Liu, X. Zhu, W. Yang, Aiche J., 2015, 61(11), 3879–3888.
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255)
Significantly enhanced separation using ZIF-8 membranes by partial conversion of calcined layered double hydroxide precursors
Y. Liu, Y. Peng, N. Wang, Y. Li, J. Pan, W. Yang, J. Caro, ChemSusChem, 2015, 8(21), 3582–3586.
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254)
One-pot synthesis of NiAl-CO
3 LDH anti-corrosion coatings from CO
2-saturated precursors
Y. Liu, T. Yu, R. Cai, Y. Li, W. Yang, J. Caro, RSC Adv., 2015, 5(37), 29552–29557.
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253)
Pd and Pd-Ni alloy composite membranes fabricated by electroless plating method on capillary alpha-Al
2O
3 substrates
H. Lu, L. Zhu, W. Wang, W. Yang, J. Tong, Int. J. Hydrogen Energ., 2015, 40(8), 3548–3556.
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252)
Mixed-matrix membranes containing functionalized porous metal-organic polyhedrons for the effective separation of CO
2-CH
4 mixture
J. Ma, Y. Ying, Q. Yang, Y. Ban, H. Huang, X. Guo, Y. Xiao, D. Liu, Y. Li, W. Yang, C. Zhong, Chem. Commun., 2015, 51, 4249–4251.
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251)
Catalytic oxidative dehydrogenation of n-butane over V
2O
5/MO-Al
2O
3 (M = Mg, Ca, Sr, Ba) catalysts
B. Xu, X. Zhu, Z. Cao, L. Yang, W. Yang, Chinese J. Catal., 2015, 36(7), 1060–1067.
Full Article Link
250)
In situ electrochemical synthesis of oriented and defect-free AEL molecular-sieve films using ionic liquids
T. Yu, W. Chu, R. Cai, Y. Liu, W. Yang, Angew. Chem. Int. Ed., 2015, 53(44), 13032–13035.
Full Article Link
249)
Enhanced performance of solid oxide fuel cells by introducing a transition layer between nanostructured cathode and electrolyte
K. Zhu, H. Liu, X. Zhu, Y. Liu, W. Yang, Int. J. Hydrogen Energ., 2015, 40(1), 501–508.
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2014
248)
Comparative permeation studies on three supported membranes: Pure ZIF-8, pure polymethylphenylsiloxane, and mixed matrix membranes
L. Diestel, X. Liu, Y. Li, W. Yang, J. Caro, Micropor. Mesopor. Mat., 2014, 189, 210–215.
Full Article Link
247)
Metal-substituted zeolitic imidazolate framework ZIF-108: Gas-sorption and membrane-separation properties
Y. Ban, Y. Li, Y. Peng, H. Jin, W. Jiao, X. Liu, W. Yang, Chem-Eur. J., 2014, 20(36), 11402–11409.
Full Article Link
246)
Comparative investigation of dual-phase membranes containing cobalt and iron-based mixed conducting perovskite for oxygen permeation
H. Li, X. Zhu, Y. Liu, W. Wang, W. Yang, J. Membr. Sci., 2014, 462, 170–177.
Full Article Link
245)
Single crystal (Mn,Co)
3O
4 octahedra for highly efficient oxygen reduction reactions
H. Liu, X. Zhu, M. Li, Q. Tang, G. Sun, W. Yang, Electrochim. Acta, 2014, 144, 31-41.
Full Article Link
244)
Synthesis of zeolitic imidazolate framework nanocrystals
X. Liu, Y. Li, Y. Ban, Y. Peng, H. Jin, W. Yang, K. Li, Mater. Lett., 2014, 136, 341–344.
Full Article Link
243)
Metal-organic framework nanosheets as building blocks for molecular sieving membranes
Y. Peng, Y. Li, Y. Ban, H. Jin, W. Jiao, X. Liu, W. Yang, Science, 2014, 346(6215), 1356–1359.
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242)
New membrane architecture with high Performance: ZIF-8 membrane supported on vertically aligned ZnO nanorods for gas permeation and separation
X. Zhang, Y. Liu, S. Li, L. Kong, H. Liu, Y. Li, W. Han, K. Yeung, W. Zhu, W. Yang, J. Qiu, Chem. Mater., 2014, 26(5), 1975-1981.
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2013
241)
Solvothermal synthesis of mixed-ligand metal-organic framework ZIF-78 with controllable size and morphology
Y. Ban, Y. Li, X. Liu, Y. Peng, W. Yang, Micropor. Mesopor. Mat., 2013, 173, 29–36.
Full Article Link
240)
High rate capability of TiO
2/nitrogen-doped graphene nanocomposite as an anode material for lithium-ion batteries
D. Cai, D. Li, S. Wang, X. Zhu, W. Yang, S. Zhang, H. Wang, J. Alloy. Compd., 2013, 561, 54–58.
Full Article Link
239)
Superhigh capacity and rate capability of high-level nitrogen-doped graphene sheets as anode materials for lithium-ion batteries
D. Cai, S. Wang, P. Lian, X. Zhu, D. Li, W. Yang, H. Wang, Electrochim. Acta, 2013, 90, 492–497.
Full Article Link
238)
Oxygen permeation through Ca-contained dual-phase membranes for oxyfuel CO
2 capture
H. Li, Y. Liu, X. Zhu, Y. Cong, S. Xu, W. Xu, W. Yang, Sep. Purif. Technol., 2013, 114, 31-37.
Full Article Link
237)
Electrochemical performances of spinel oxides as cathodes for intermediate temperature solid oxide fuel cells
H. Liu, X. Zhu, M. Cheng, Y. Cong, W. Yang, Int. J. Hydrogen Energ., 2013, 38(2), 1052–1057.
Full Article Link
236)
Metal-organic framework ZIF-8 nanocomposite membrane for efficient recovery of furfural via pervaporation and vapor permeation
X. Liu, H. Jin, Y. Li, H. Bux, Z. Hu, Y. Ban, W. Yang, J. Membr. Sci., 2013, 428, 498–506.
Full Article Link
235)
Improvement of hydrothermal stability of zeolitic imidazolate frameworks
X. Liu, Y. Li, Y. Ban, Y. Peng, H. Jin, H. Bux, L. Xu, J. Caro, W. Yang, Chem. Commun., 2013, 49, 9140–9142.
Full Article Link
234)
Stabilization of low-temperature degradation in mixed ionic and electronic conducting perovskite oxygen permeation membranes
Y. Liu, X. Zhu, M. Li, H. Liu, Y. Cong, W. Yang, Angew. Chem. Int. Ed., 2013, 52(11), 3232–3236.
Full Article Link
233)
Dense ceramic oxygen permeable membranes and catalytic membrane reactors
Y. Wei, W. Yang, J. Caro, H. Wang, Chem. Eng. J., 2013, 220, 185-203.
Full Article Link
232)
Li
3V
2(PO
4)
3@C/Graphene composite with improved cycling performance as cathode material for lithium-ion batteries
L. Zhang, S. Wang, D. Cai, P. Lian, X. Zhu, W. Yang, H. Wang, Electrochim. Acta, 2013, 91, 108-113.
Full Article Link
231)
Ce
0.85Sm
0.15O
1.925-Sm
0.6Sr
0.4Al
0.3Fe
0.7O
3 dual-phase membranes: One-pot synthesis and stability in a
CO2 atmosphere
X. Zhu, Y. Liu, Y. Cong, W. Yang, Solid State Ionics, 2013, 253, 57-63.
Full Article Link
2012
230)
High specific capacity of TiO
2-Graphene nanocomposite as an anode material for lithium-ion batteries in an enlarged potential window
D. Cai, P. Lian, X. Zhu, S. Liang, W. Yang, H. Wang, Electrochim. Acta, 2012, 74, 65-72.
Full Article Link
229)
Remarkable dependence of electrochemical performance of SrCo
0.8Fe
0.2O
3-
delta on A-site nonstoichiometry
H. Liu, X. Zhu, Y. Cong, T. Zhang, W. Yang, Phys. Chem. Chem. Phys., 2012, 14 (20), 7234-7239.
Full Article Link
228)
Suppression of twins in b-oriented MFI molecular sieve films under microwave irradiation
Y. Liu, Y. Li, R. Cai, W. Yang, Chem. Commun., 2012, 48, 6782-6784.
Full Article Link
227)
Synthesis of LiFeP
PO4/C composite as a cathode material for lithium-ion battery by a novel two-step method
L. Zhang, H. Xiang, X. Zhu, W. Yang, H. Wang, J. Mater. Sci., 2012, 47, 3076-3081.
226) High-performance low-temperature solid oxide fuel cells using thin proton-conducting electrolyte with novel cathode L. Zhang, W. Yang, Int. J. Hydrogen Energy, 2012, 37(10), 8635-8640. Full Article Link
225) Design and experimental investigation of oxide ceramic dual-phase membranes X. Zhu, M. Li, H. Liu, T. Zhang, Y. Cong, W. Yang, J. Membr. Sci., 2012, 394, 120-130. Full Article Link
224) Novel dual-Phase membranes for CO2 capture via an oxyfuel route X. Zhu, H. Liu, Y. Cong, W. Yang, Chem. Commun., 2012, 48, 251-253. Full Article Link
223) Permeation model and experimental investigation of mixed conducting membranes X. Zhu, H. Liu, Y. Cong, W. Yang, AIChE J., 2012, 58(6), 1744-1754. Full Article Link
2011
222)
Preparation of high selectivity silicalite-1 membranes by two-step in situ hydrothermal synthesis
H. Chen, Y. Li, J. Yang, Y. Hou, X. Song, X. Hu, W. Yang, Chin. Sci. Bull., 2011, 56(33), 3578-3582.
Full Article Link
221)
Hydrothermal stability of meso-microporous composites and their catalytic cracking performance
W. Han, Y. Jia, G. Xiong, W. Yang, Chin. J. Catal., 2011, 32(3), 418-427.
Full Article Link
220)
The role of A-site ion nonstoichiometry in the oxygen absorption properties of
Sr1+xCo0.8Fe0.2O3 oxides
Y. He, X. Zhu, W. Yang, AIChE J., 2011, 57(1), 87-95.
Full Article Link
219)
Effects of sintering temperature on properties of dual-phase oxygen permeable membranes
Q. Li, X. Zhu, Y. He, Y. Cong, W. Yang, J. Membr. Sci., 2011, 367, 134-140.
Full Article Link
218)
A Novel
Fe3O4-SnO2-Graphene ternary nanocomposite as an anode material for lithium-ion batteries
P. Lian, S. Liang, X. Zhu, W. Yang, H. Wang, Electrochim. Acta, 2011, 58, 81-88.
Full Article Link
217)
High reversible capacity of
SnO
2/Graphene nanocomposite as an anode material for lithium-ion batteries
P. Lian, X. Zhu, S. Liang, Z. Li, W. Yang, H. Wang, Electrochim. Acta, 2011, 56, 4532-4539.
Full Article Link
216)
Superior cycle performance of Sn@C/Graphene nanocomposite as an anode material for lithium-ion batteries
S. Liang, X. Zhu, P. Lian, W. Yang, H. Wang, J. Solid State Chem., 2011, 184(6), 1400-1404.
Full Article Link
215)
Novel
Mn
1.5Co1.5O4 spinel cathodes for intermediate temperature solid oxide fuel cells
H. Liu, X. Zhu, M. Cheng, Y. Cong, W. Yang, Chem. Commun., 2011, 47, 2378-2380.
Full Article Link
214)
An organophilic pervaporation membrane derived from metal-organic framework nanoparticles for efficient recovery of bio-alcohols
X. Liu, Y. Li, G. Zhu, Y. Ban, L. Xu, W. Yang, Angew. Chem. Int. Ed., 2011, 50(45), 10636-10639.
Full Article Link
213)
Capillary supported ultrathin homogeneous silicalite-poly(dimethylsiloxane) nanocomposite membrane for bio-butanol recovery
X. Liu, Y. Li, Y. Liu, G. Zhu, J. Liu, W. Yang, J. Membr. Sci., 2011, 369, 228-232.
Full Article Link
212)
Effective manipulation of the microstructure of zeolite film by hydrothermal pretreatment
Y. Liu, Y. Li, W. Yang, J. Mater. Sci., 2011, 46, 3942-3951.
Full Article Link
211)
Phase-segregation-induced self-assembly of anisotropic MFI microbuilding blocks into compact and highly b-oriented monolayers
Y. Liu, Y. Li, W. Yang, Langmuir, 2011, 27(6), 2327-2333.
Full Article Link
210)
Unsteady-state permeation and surface exchange of dual-phase membranes
X. Zhu, H. Liu, Q. Li, Y. Cong, W. Yang, Solid State Ionics, 2011, 185, 27-31.
Full Article Link
2010
209)
Oxygen permeability and stability of
BaCe0.1Co0.4Fe0.5O3-delta oxygen permeable membrane
Q. Li, X. Zhu, Y. He, W. Yang, Sep. Purif. Technol., 2010, 73, 38-43.
Full Article Link
208)
Partial oxidation of methane in
BaCe0.1Co0.4Fe0.5O3-delta membrane reactor
Q. Li, X. Zhu, Y. He, W. Yang, Catal. Today, 2010, 149(1-2), 185-190.
Full Article Link
207)
Phase transitions in
Sr1+xCo0.8Fe0.2O3-delta oxides
Y. He, X. Zhu, Z. Guo, W. Yang, Mater. Lett., 2010, 64, 1618-1621.
Full Article Link
206) Investigation of structure and oxygen permeability of Ba-Ce-Co-Fe-O system Q. Li, X. Zhu, W. Yang, Mater. Res. Bull., 2010, 45(9), 1112-1117. Full Article Link
205) Controllable synthesis of metal-organic frameworks: From MOF nanorods to oriented MOF membranes Y. Li, H. Bux, A. Feldhoff, G. Li, W. Yang, J. Caro, Adv. Mater., 2010, 22(30), 3322-3326. Full Article Link
204) Molecular sieve membrane: Supported metal-organic framework with high hydrogen selectivity Y. Li, F. Liang, H. Bux, A. Feldhoff, W. Yang, J. Caro, Angew. Chem. Int. Ed., 2010, 49(3), 548-551. Full Article Link
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