Shing-Chung Wong

Affiliations: 
Mechanical Engineering University of Akron, Akron, OH, United States 
Area:
Mechanical Engineering
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"Shing-Chung Wong"
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Publications

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Wang Z, Zhang Y, Ma XYD, et al. (2020) Polymer/MOF-derived multilayer fibrous membranes for moisture-wicking and efficient capturing both fine and ultrafine airborne particles Separation and Purification Technology. 235: 116183
Huang Z, Liu X, Wong S, et al. (2019) A single step fabrication of bio-inspired high efficiency and durable water harvester made of polymer membranes Polymer. 183: 121843
Ma XYD, Ang JM, Zhang Y, et al. (2019) Highly porous polymer nanofibrous aerogels cross-linked via spontaneous inter-fiber stereocomplexation and their potential for capturing ultrafine airborne particles Polymer. 179: 121649
Chen C, Zhang C, Zhao Z, et al. (2019) Effect of fiber reinforcement and fabrication process on the dynamic compressive behavior of PEEK composites International Journal of Mechanical Sciences. 155: 170-177
Zhang Y, Zeng Z, Ma XYD, et al. (2019) Mussel-inspired approach to cross-linked functional 3D nanofibrous aerogels for energy-efficient filtration of ultrafine airborne particles Applied Surface Science. 479: 700-708
Chen C, Zhang C, Liu C, et al. (2018) Rate-dependent tensile failure behavior of short fiber reinforced PEEK Composites Part B: Engineering. 136: 187-196
Wang X, Wong SC, Jung YJ, et al. (2017) Measuring Interfacial Adhesion of Carbon Nanotube Bundles and Electrospun Polymer Fibers. Langmuir : the Acs Journal of Surfaces and Colloids
Huang Z, Liu X, Zhang X, et al. (2017) Electrospun polyvinylidene fluoride containing nanoscale graphite platelets as electret membrane and its application in air filtration under extreme environment Polymer. 131: 143-150
Huang Z, Liu X, Wong S, et al. (2017) Electrospinning polyvinylidene fluoride/expanded graphite composite membranes as high efficiency and reusable water harvester Materials Letters. 202: 78-81
Huang Z, Liu X, Wu J, et al. (2017) Electrospun poly(vinylidene fluoride) membranes functioning as static charge storage device with controlled crystalline phase by inclusions of nanoscale graphite platelets Journal of Materials Science. 53: 3038-3048
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