Meng, X.W.
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1

Metallic slurry preparation and printability assessment for..:

Li, Z. ; Hu, X.G. ; Zhou, Y....
Additive Manufacturing Letters.  8 (2024)  - p. 100189 , 2024
 
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2

Enhanced thermal and electrical conductivity of Cu-BTC meta..:

Chang, M. ; Meng, X.X. ; Wang, Y..
International Journal of Hydrogen Energy.  44 (2019)  56 - p. 29583-29589 , 2019
 
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3

Sodium chloride solution transport through a carbon nanotub..:

Meng, X.W. ; Wang, L.Y.
Chemical Physics Letters.  849 (2024)  - p. 141424 , 2024
 
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4

Asymmetric nanochannels for efficient saltwater transport d..:

Meng, X.W. ; Wang, L.Y.
Journal of Molecular Liquids.  398 (2024)  - p. 124258 , 2024
 
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5

Unexpected water transfer enhancement through nanochannels ..:

Meng, X.W. ; Wang, L.Y.
Chemical Physics Letters.  829 (2023)  - p. 140765 , 2023
 
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7

Water molecules jump through non-aligned disjoint nanochann..:

Kang, X. ; Meng, X.W.
Chemical Physics Letters.  827 (2023)  - p. 140693 , 2023
 
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9

Monolayer MoS2 synaptic devices synergistically modulated b..:

Liu, Y.B. ; Cai, D. ; Zhao, T.C....
Journal of Materials Science & Technology.  163 (2023)  - p. 121-131 , 2023
 
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11

Reducing water transfer rate through a carbon nanotube effi..:

Meng, X.W. ; Kang, X.
Chemical Physics Letters.  787 (2022)  - p. 139281 , 2022
 
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12

Accelerating water unidirectional transport efficiency thro..:

Meng, X.W. ; Kang, X.
Chemical Physics Letters.  804 (2022)  - p. 139912 , 2022
 
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13

Accelerating water transport through a disjoint nanochannel..:

Meng, X.W. ; Li, Y.
Physica E: Low-dimensional Systems and Nanostructures.  135 (2022)  - p. 114980 , 2022
 
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