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Xinyao Ma

City University of Hong Kong - Department of Materials Science and Engineering

Centre for Applied One Health Research and Policy

九龍

Hong Kong

SCHOLARLY PAPERS

6

DOWNLOADS

467

TOTAL CITATIONS

9

Scholarly Papers (6)

Highly Efficient and Tunable Desalination Membrane with Porous Mxene Controlled by the Thickness of the Transition Metal Carbides

Number of pages: 28 Posted: 19 Feb 2024
City University of Hong Kong (CityU), City University of Hong Kong - Department of Materials Science and Engineering, City University of Hong Kong (CityU), City University of Hong Kong (CityU), City University of Hong Kong (CityU), City University of Hong Kong (CityU) and City University of Hong Kong (CityU) - Department of Materials Science and Engineering
Downloads 96 (715,783)

Abstract:

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nanopore, MXene membrane, desalination, Molecular dynamics simulations

Highly Efficient and Tunable Desalination Membrane with Porous Mxene Controlled by the Thickness of the Transition Metal Carbides

Number of pages: 28 Posted: 10 May 2024
City University of Hong Kong (CityU), City University of Hong Kong - Department of Materials Science and Engineering, City University of Hong Kong (CityU), City University of Hong Kong (CityU), City University of Hong Kong (CityU), City University of Hong Kong (CityU) and City University of Hong Kong (CityU) - Department of Materials Science and Engineering
Downloads 41 (1,196,631)

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Nanopore, MXene membrane, desalination, Molecular dynamics simulations

2.

Revealing the Effects of Terminal Groups of Mxene on the Water Desalination Performance

Number of pages: 32 Posted: 20 Dec 2021
City University of Hong Kong - Department of Materials Science and Engineering, City University of Hong Kong (CityU), City University of Hong Kong (CityU) and City University of Hong Kong (CityU) - Department of Materials Science and Engineering
Downloads 84 (783,685)
Citation 6

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Water desalination, MXene membrane, Surface termination, Molecular dynamics simulations

Highly Efficient Porous Mxene Desalination Membranes Controlled by the Thickness of the Transition Metal Carbides

Number of pages: 31 Posted: 04 Sep 2024
City University of Hong Kong (CityU), City University of Hong Kong - Department of Materials Science and Engineering, City University of Hong Kong (CityU), City University of Hong Kong (CityU), City University of Hong Kong (CityU), City University of Hong Kong (CityU) and City University of Hong Kong (CityU) - Department of Materials Science and Engineering
Downloads 41 (1,210,354)

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Nanopore, MXene membrane, Desalination, Molecular dynamics simulations

Highly Efficient Porous Mxene Desalination Membranes Controlled by the Thickness of the Transition Metal Carbides

Number of pages: 29 Posted: 01 Jul 2024
City University of Hong Kong (CityU), City University of Hong Kong - Department of Materials Science and Engineering, City University of Hong Kong (CityU), City University of Hong Kong (CityU), City University of Hong Kong (CityU), City University of Hong Kong (CityU) and City University of Hong Kong (CityU) - Department of Materials Science and Engineering
Downloads 40 (1,210,354)

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Keywords: Nanopore, MXene membrane, Desalination, Molecular dynamics simulations

4.

Molecular Insights into Geometric and Electrophoretic Effects on DNA Translocation Speed Through Graphene Nanoslit Sensor

Number of pages: 32 Posted: 05 Nov 2021
City University of Hong Kong (CityU), City University of Hong Kong (CityU), China University of Petroleum (East China), City University of Hong Kong - Department of Materials Science and Engineering, City University of Hong Kong (CityU), City University of Hong Kong (CityU) and City University of Hong Kong (CityU) - Department of Materials Science and Engineering
Downloads 69 (891,180)

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nanopore sequencing, graphene nanoslit, translocation speed, electrophoretic effects, Molecular dynamics simulation

5.

Distinct Roles of Graphene and Graphene Oxide Nanosheets in Regulating Phospholipid Flip-Flopcover Letter

Number of pages: 31 Posted: 28 Oct 2021
City University of Hong Kong (CityU), City University of Hong Kong (CityU), City University of Hong Kong (CityU), City University of Hong Kong - Department of Materials Science and Engineering, China University of Petroleum (East China) and City University of Hong Kong (CityU) - Department of Materials Science and Engineering
Downloads 53 (1,031,043)

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graphene, graphene oxide, lipid flip-flop, membrane properties, free energy barrier, molecular dynamics simulations

6.

Intrinsic Voltage Plateau of a Nb 2CT x MXene Cathode in an Aqueous Electrolyte Induced by High-Voltage-Scanning

Number of pages: 27 Posted: 05 Aug 2021
City University of Hong Kong - Department of Materials Science and Engineering, City University of Hong Kong - Department of Materials Science and Engineering, City University of Hong Kong - Department of Materials Science and Engineering, Hangzhou Dianzi University - Key Laboratory of Novel Materials for Sensor of Zhejiang Province, Beijing University of Technology - Beijing Key Laboratory of Microstructure and Properties of Solids, City University of Hong Kong (CityU) - Department of Materials Science and Engineering, City University of Hong Kong - Department of Materials Science and Engineering, Chinese Academy of Sciences (CAS) - Engineering Laboratory of Advanced Energy Materials, City University of Hong Kong - Department of Materials Science and Engineering, University of Science and Technology of China (USTC) - Hefei National Laboratory for Physical Sciences at the Microscale, City University of Hong Kong - Department of Materials Science and Engineering, Zhengzhou University - National Engineering Research Centre for Advanced Polymer Processing Technology, Chinese Academy of Sciences (CAS) - Engineering Laboratory of Advanced Energy Materials, City University of Hong Kong - Department of Materials Science and Engineering, City University of Hong Kong (CityU) - Department of Materials Science and Engineering and City University of Hong Kong (CityU) - Department of Materials Science and Engineering
Downloads 43 (1,145,425)
Citation 3

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