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2018

Journal Article

Simple, low-cost fabrication of semi-circular channel using the surface tension of solder paste and its application to microfluidic valves

Yan, Sheng, Li, Yuxing, Zhu, Yuanqing, Liu, Minsu, Zhao, Qianbin, Yuan, Dan, Yun, Guolin, Zhang, Shiwu, Wen, Weijia, Tang, Shi-Yang and Li, Weihua (2018). Simple, low-cost fabrication of semi-circular channel using the surface tension of solder paste and its application to microfluidic valves. Electrophoresis, 39 (12), 1460-1465. doi: 10.1002/elps.201800064

Simple, low-cost fabrication of semi-circular channel using the surface tension of solder paste and its application to microfluidic valves

2018

Journal Article

Enhanced particle self-ordering in a double-layer channel

Yan, Sheng, Li, Yuxing, Zhao, Qianbin, Yuan, Dan, Yun, Guolin, Tang, Shi-Yang and Li, Weihua (2018). Enhanced particle self-ordering in a double-layer channel. Biomedical Microdevices, 20 (2) 23, 1-7. doi: 10.1007/s10544-018-0269-5

Enhanced particle self-ordering in a double-layer channel

2018

Journal Article

Microfluidic mass production of stabilized and stealthy liquid metal nanoparticles

Tang, Shi-Yang, Qiao, Ruirui, Yan, Sheng, Yuan, Dan, Zhao, Qianbin, Yun, Guolin, Davis, Thomas P. and Li, Weihua (2018). Microfluidic mass production of stabilized and stealthy liquid metal nanoparticles. Small, 14 (21) 1800118, 1-8. doi: 10.1002/smll.201800118

Microfluidic mass production of stabilized and stealthy liquid metal nanoparticles

2018

Journal Article

A rapid, maskless 3D prototyping for fabrication of capillary circuits: toward urinary protein detection

Yan, Sheng, Zhu, Yuanqing, Tang, Shi-Yang, Li, Yuxing, Zhao, Qianbin, Yuan, Dan, Yun, Guolin, Zhang, Jun, Zhang, Shiwu and Li, Weihua (2018). A rapid, maskless 3D prototyping for fabrication of capillary circuits: toward urinary protein detection. Electrophoresis, 39 (7), 957-964. doi: 10.1002/elps.201700449

A rapid, maskless 3D prototyping for fabrication of capillary circuits: toward urinary protein detection

2018

Journal Article

Liquid metal-based amalgamation-assisted lithography for fabrication of complex channels with diverse structures and configurations

Yan, Sheng, Li, Yuxing, Zhao, Qianbin, Yuan, Dan, Yun, Guolin, Zhang, Jun, Wen, Weijia, Tang, Shi-Yang and Li, Weihua (2018). Liquid metal-based amalgamation-assisted lithography for fabrication of complex channels with diverse structures and configurations. Lab on a Chip, 18 (5), 785-792. doi: 10.1039/c8lc00047f

Liquid metal-based amalgamation-assisted lithography for fabrication of complex channels with diverse structures and configurations

2018

Journal Article

Recent progress of particle migration in viscoelastic fluids

Yuan, Dan, Zhao, Qianbin, Yan, Sheng, Tang, Shi-Yang, Alici, Gursel, Zhang, Jun and Li, Weihua (2018). Recent progress of particle migration in viscoelastic fluids. Lab on a Chip, 18 (4), 551-567. doi: 10.1039/c7lc01076a

Recent progress of particle migration in viscoelastic fluids

2018

Journal Article

Versatile microfluidic platforms enabled by novel magnetorheological elastomer microactuators

Tang, Shi-Yang, Zhang, Xuchun, Sun, Shuaishuai, Yuan, Dan, Zhao, Qianbin, Yan, Sheng, Deng, Lei, Yun, Guolin, Zhang, Jun, Zhang, Shiwu and Li, Weihua (2018). Versatile microfluidic platforms enabled by novel magnetorheological elastomer microactuators. Advanced Functional Materials, 28 (8) 1705484, 1-10. doi: 10.1002/adfm.201705484

Versatile microfluidic platforms enabled by novel magnetorheological elastomer microactuators

2018

Journal Article

A portable, hand-powered microfluidic device for sorting of biological particles

Yan, Sheng, Tan, Say Hwa, Li, Yuxing, Tang, Shiyang, Teo, Adrian J. T., Zhang, Jun, Zhao, Qianbin, Yuan, Dan, Sluyter, Ronald, Nguyen, N. T. and Li, Weihua (2018). A portable, hand-powered microfluidic device for sorting of biological particles. Microfluidics and Nanofluidics, 22 (1) 8, 1-10. doi: 10.1007/s10404-017-2026-0

A portable, hand-powered microfluidic device for sorting of biological particles

2017

Journal Article

High-throughput separation of white blood cells from whole blood using inertial microfluidics

Zhang, Jun, Yuan, Dan, Sluyter, Ronald, Yan, Sheng, Zhao, Qianbin, Xia, Huanming, Tan, Say Hwa, Nguyen, Nam-Trung and Li, Weihua (2017). High-throughput separation of white blood cells from whole blood using inertial microfluidics. IEEE Transactions on Biomedical Circuits and Systems, 11 (6) 8017537, 1422-1430. doi: 10.1109/TBCAS.2017.2735440

High-throughput separation of white blood cells from whole blood using inertial microfluidics

2017

Journal Article

Double-mode microparticle manipulation by tunable secondary flow in microchannel with arc-shaped groove arrays

Zhao, Qianbin, Yan, Sheng, Yuan, Dan, Zhang, Jun, Du, Haiping, Alici, Gursel and Li, Weihua (2017). Double-mode microparticle manipulation by tunable secondary flow in microchannel with arc-shaped groove arrays. IEEE Transactions on Biomedical Circuits and Systems, 11 (6) 8010314, 1406-1412. doi: 10.1109/TBCAS.2017.2722012

Double-mode microparticle manipulation by tunable secondary flow in microchannel with arc-shaped groove arrays

2017

Journal Article

The continuous concentration of particles and cancer cell line using cell margination in a groove-based channel

Yan, Sheng, Yuan, Dan, Zhao, Qianbin, Zhang, Jun and Li, Weihua (2017). The continuous concentration of particles and cancer cell line using cell margination in a groove-based channel. Micromachines, 8 (11) 315, 1-11. doi: 10.3390/mi8110315

The continuous concentration of particles and cancer cell line using cell margination in a groove-based channel

2017

Journal Article

On-chip microparticle and cell washing using coflow of viscoelastic fluid and Newtonian fluid

Yuan, Dan, Tan, Say Hwa, Sluyter, Ronald, Zhao, Qianbin, Yan, Sheng, Nguyen, N. T., Guo, Jinhong, Zhang, Jun and Li, Weihua (2017). On-chip microparticle and cell washing using coflow of viscoelastic fluid and Newtonian fluid. Analytical Chemistry, 89 (17), 9574-9582. doi: 10.1021/acs.analchem.7b02671

On-chip microparticle and cell washing using coflow of viscoelastic fluid and Newtonian fluid

2017

Journal Article

Analysis of hydrodynamic mechanism on particles focusing in micro-channel flows

Wang, Qikun, Yuan, Dan and Li, Weihua (2017). Analysis of hydrodynamic mechanism on particles focusing in micro-channel flows. Micromachines, 8 (7) 197, 1-11. doi: 10.3390/mi8070197

Analysis of hydrodynamic mechanism on particles focusing in micro-channel flows

2017

Journal Article

High throughput cell-free extraction of plasma by an integrated microfluidic device combining inertial focusing and membrane

Zhang, Jun, Yan, Sheng, Yuan, Dan, Alici, Gursel, Nguyen, Nam-Trung and Li, Weihua (2017). High throughput cell-free extraction of plasma by an integrated microfluidic device combining inertial focusing and membrane. Journal of Heat Transfer, 139 (5) 052404, 1-7. doi: 10.1115/1.4035588

High throughput cell-free extraction of plasma by an integrated microfluidic device combining inertial focusing and membrane

2017

Journal Article

Flow rate-insensitive microparticle separation and filtration using a microchannel with arc-shaped groove arrays

Zhao, Qianbin, Yuan, Dan, Yan, Sheng, Zhang, Jun, Du, Haiping, Alici, Gursel and Li, Weihua (2017). Flow rate-insensitive microparticle separation and filtration using a microchannel with arc-shaped groove arrays. Microfluidics and Nanofluidics, 21 (3) 55, 1-11. doi: 10.1007/s10404-017-1890-y

Flow rate-insensitive microparticle separation and filtration using a microchannel with arc-shaped groove arrays

2017

Journal Article

High-throughput sheathless and three-dimensional microparticle focusing using a microchannel with arc-shaped groove arrays

Zhao, Qianbin, Zhang, Jun, Yan, Sheng, Yuan, Dan, Du, Haiping, Alici, Gursel and Li, Weihua (2017). High-throughput sheathless and three-dimensional microparticle focusing using a microchannel with arc-shaped groove arrays. Scientific Reports, 7 (1) 41153, 1-11. doi: 10.1038/srep41153

High-throughput sheathless and three-dimensional microparticle focusing using a microchannel with arc-shaped groove arrays

2017

Journal Article

Sheathless Dean-flow-coupled elasto-inertial particle focusing and separation in viscoelastic fluid

Yuan, Dan, Tan, Say Hwa, Zhao, Qianbin, Yan, Sheng, Sluyter, Ronald, Nguyen, N. T., Zhang, Jun and Li, Weihua (2017). Sheathless Dean-flow-coupled elasto-inertial particle focusing and separation in viscoelastic fluid. RSC Advances, 7 (6), 3461-3469. doi: 10.1039/C6RA25328H

Sheathless Dean-flow-coupled elasto-inertial particle focusing and separation in viscoelastic fluid

2017

Journal Article

Hybrid microfluidics combined with active and passive approaches for continuous cell separation

Yan, Sheng, Zhang, Jun, Yuan, Dan and Li, Weihua (2017). Hybrid microfluidics combined with active and passive approaches for continuous cell separation. Electrophoresis, 38 (2), 238-249. doi: 10.1002/elps.201600386

Hybrid microfluidics combined with active and passive approaches for continuous cell separation

2016

Journal Article

Characteristics of a dynamic atomic force microscopy based on a higher-order resonant silicon cantilever and experiments

Huang, Qiangxian, Zhao, Yang, Yuan, Dan, Zhang, Liansheng and Cheng, Zhenying (2016). Characteristics of a dynamic atomic force microscopy based on a higher-order resonant silicon cantilever and experiments. Measurement: Journal of the International Measurement Confederation, 94, 31-36. doi: 10.1016/j.measurement.2016.07.081

Characteristics of a dynamic atomic force microscopy based on a higher-order resonant silicon cantilever and experiments

2016

Journal Article

High-throughput, sheathless, magnetophoretic separation of magnetic and non-magnetic particles with a groove-based channel

Yan, S., Zhang, J., Yuan, D., Zhao, Q., Ma, J. and Li, W. H. (2016). High-throughput, sheathless, magnetophoretic separation of magnetic and non-magnetic particles with a groove-based channel. Applied Physics Letters, 109 (21) 214101, 214101. doi: 10.1063/1.4968835

High-throughput, sheathless, magnetophoretic separation of magnetic and non-magnetic particles with a groove-based channel