2021 Journal Article Perspective - what constitutes a quality analytical paper: microfluidics and flow analysisLee, Soo Min, Balakrishnan, Hari Kalathil, Yuan, Dan, Nai, Yi Heng and Guijt, Rosanne M. (2021). Perspective - what constitutes a quality analytical paper: microfluidics and flow analysis. Talanta Open, 4 100055, 1-5. doi: 10.1016/j.talo.2021.100055 |
2021 Journal Article Investigation of viscoelastic focusing of particles and cells in a zigzag microchannelYuan, Dan, Yadav, Sharda, Ta, Hang T., Fallahi, Hedieh, An, Hongjie, Kashaninejad, Navid, Ooi, Chin Hong, Nguyen, Nam‐Trung and Zhang, Jun (2021). Investigation of viscoelastic focusing of particles and cells in a zigzag microchannel. Electrophoresis, 42 (21-22), 2230-2237. doi: 10.1002/elps.202100126 |
2021 Journal Article Sheathless separation of cyanobacterial Anabaena by shape using viscoelastic microfluidicsYuan, Dan, Yan, Sheng, Zhang, Jun, Guijt, Rosanne M., Zhao, Qianbin and Li, Weihua (2021). Sheathless separation of cyanobacterial Anabaena by shape using viscoelastic microfluidics. Analytical Chemistry, 93 (37), 12648-12654. doi: 10.1021/acs.analchem.1c02389 |
2021 Journal Article Morphological indicator for directed evolution of euglena gracilis with a high heavy metal removal efficiencyIsozaki, Akihiro, Goda, Keisuke, Xu, Muzhen, Harmon, Jeffrey, Yuan, Dan, Yan, Sheng, Lei, Cheng, Hiramatsu, Kotaro, Zhou, Yuqi, Loo, Mun Hong and Hasunuma, Tomohisa (2021). Morphological indicator for directed evolution of euglena gracilis with a high heavy metal removal efficiency. Environmental Science and Technology, 55 (12), 7880-7889. doi: 10.1021/acs.est.0c05278 |
2021 Journal Article Continuous microfluidic 3D focusing enabling microflow cytometry for single-cell analysisYan, Sheng and Yuan, Dan (2021). Continuous microfluidic 3D focusing enabling microflow cytometry for single-cell analysis. Talanta, 221 121401, 1-15. doi: 10.1016/j.talanta.2020.121401 |
2020 Journal Article Modular off-chip emulsion generator enabled by a revolving needleZhang, Yuxin, Zhao, Qianbin, Yuan, Dan, Liu, Hangrui, Yun, Guolin, Lu, Hongda, Li, Ming, Guo, Jinhong, Li, Weihua and Tang, Shi-Yang (2020). Modular off-chip emulsion generator enabled by a revolving needle. Lab on a Chip, 20 (24), 4592-4599. doi: 10.1039/d0lc00939c |
2020 Journal Article Separation and enrichment of yeast Saccharomyces cerevisiae by shape using viscoelastic microfluidicsLiu, Ping, Liu, Hangrui, Yuan, Dan, Jang, Daniel, Yan, Sheng and Li, Ming (2020). Separation and enrichment of yeast Saccharomyces cerevisiae by shape using viscoelastic microfluidics. Analytical Chemistry, 93 (3), 1586-1595. doi: 10.1021/acs.analchem.0c03990 |
2020 Journal Article Liquid metal composites with anisotropic and unconventional piezoconductivityYun, Guolin, Tang, Shi-Yang, Zhao, Qianbin, Zhang, Yuxin, Lu, Hongda, Yuan, Dan, Sun, Shuaishuai, Deng, Lei, Dickey, Michael D. and Li, Weihua (2020). Liquid metal composites with anisotropic and unconventional piezoconductivity. Matter, 3 (3), 824-841. doi: 10.1016/j.matt.2020.05.022 |
2020 Journal Article Inertial microfluidic purification of floating cancer cells for drug screening and three-dimensional tumor modelsZhang, Jun, Chintalaramulu, Naveen, Vadivelu, Raja, An, Hongjie, Yuan, Dan, Jin, Jing, Ooi, Chin Hong, Cock, Ian Edwin, Li, Weihua and Nguyen, Nam-Trung (2020). Inertial microfluidic purification of floating cancer cells for drug screening and three-dimensional tumor models. Analytical Chemistry, 92 (17), 11558-11564. doi: 10.1021/acs.analchem.0c00273 |
2020 Journal Article A review of secondary flow in inertial microfluidicsZhao, Qianbin, Yuan, Dan, Zhang, Jun and Li, Weihua (2020). A review of secondary flow in inertial microfluidics. Micromachines, 11 (5) 461, 1-23. doi: 10.3390/MI11050461 |
2020 Journal Article Intelligent image-activated cell sorting 2.0Isozaki, Akihiro, Mikami, Hideharu, Tezuka, Hiroshi, Matsumura, Hiroki, Huang, Kangrui, Akamine, Marino, Hiramatsu, Kotaro, Iino, Takanori, Ito, Takuro, Karakawa, Hiroshi, Kasai, Yusuke, Li, Yan, Nakagawa, Yuta, Ohnuki, Shinsuke, Ota, Tadataka, Qian, Yong, Sakuma, Shinya, Sekiya, Takeichiro, Shirasaki, Yoshitaka, Suzuki, Nobutake, Tayyabi, Ehsen, Wakamiya, Tsubasa, Xu, Muzhen, Yamagishi, Mai, Yan, Haochen, Yu, Qiang, Yan, Sheng, Yuan, Dan, Zhang, Wei ... Goda, Keisuke (2020). Intelligent image-activated cell sorting 2.0. Lab on a Chip, 20 (13), 2263-2273. doi: 10.1039/d0lc00080a |
2019 Journal Article Liquid metal-filled magnetorheological elastomer with positive piezoconductivityYun, Guolin, Tang, Shi-Yang, Sun, Shuaishuai, Yuan, Dan, Zhao, Qianbin, Deng, Lei, Yan, Sheng, Du, Haiping, Dickey, Michael D. and Li, Weihua (2019). Liquid metal-filled magnetorheological elastomer with positive piezoconductivity. Nature Communications, 10 (1) 1300, 1-9. doi: 10.1038/s41467-019-09325-4 |
2019 Journal Article Sheathless separation of microalgae from bacteria using a simple straight channel based on viscoelastic microfluidicsYuan, Dan, Zhao, Qianbin, Yan, Sheng, Tang, Shi-Yang, Zhang, Yuxin, Yun, Guolin, Nguyen, Nam-Trung, Zhang, Jun, Li, Ming and Li, Weihua (2019). Sheathless separation of microalgae from bacteria using a simple straight channel based on viscoelastic microfluidics. Lab on a Chip, 19 (17), 2811-2821. doi: 10.1039/c9lc00482c |
2019 Journal Article Phase separation in liquid metal nanoparticlesTang, Shi-Yang, Mitchell, David R. G., Zhao, Qianbin, Yuan, Dan, Yun, Guolin, Zhang, Yuxin, Qiao, Ruirui, Lin, Yiliang, Dickey, Michael D. and Li, Weihua (2019). Phase separation in liquid metal nanoparticles. Matter, 1 (1), 192-204. doi: 10.1016/j.matt.2019.03.001 |
2019 Journal Article High-throughput production of uniformly sized liquid metal microdroplets using submerged electrodispersionZhang, Yuxin, Tang, Shi-Yang, Zhao, Qianbin, Yun, Guolin, Yuan, Dan and Li, Weihua (2019). High-throughput production of uniformly sized liquid metal microdroplets using submerged electrodispersion. Applied Physics Letters, 114 (15) 154101, 154101. doi: 10.1063/1.5086376 |
2019 Journal Article Fundamentals of differential particle inertial focusing in symmetric sinusoidal microchannelsZhang, Jun, Yuan, Dan, Zhao, Qianbin, Teo, Adrian J. T., Yan, Sheng, Ooi, Chin Hong, Li, Weihua and Nguyen, Nam-Trung (2019). Fundamentals of differential particle inertial focusing in symmetric sinusoidal microchannels. Analytical Chemistry, 91 (6), 4077-4084. doi: 10.1021/acs.analchem.8b05712 |
2019 Journal Article High-throughput, off-chip microdroplet generator enabled by a spinning conical frustumTang, Shi-Yang, Wang, Kun, Fan, Kai, Feng, Zilong, Zhang, Yuxin, Zhao, Qianbin, Yun, Guolin, Yuan, Dan, Jiang, Lianmei, Li, Ming and Li, Weihua (2019). High-throughput, off-chip microdroplet generator enabled by a spinning conical frustum. Analytical Chemistry, 91 (5), 3725-3732. doi: 10.1021/acs.analchem.9b00093 |
2019 Journal Article Dean-flow-coupled elasto-inertial particle and cell focusing in symmetric serpentine microchannelsYuan, Dan, Sluyter, Ronald, Zhao, Qianbin, Tang, Shiyang, Yan, Sheng, Yun, Guolin, Li, Ming, Zhang, Jun and Li, Weihua (2019). Dean-flow-coupled elasto-inertial particle and cell focusing in symmetric serpentine microchannels. Microfluidics and Nanofluidics, 23 (3) 41, 1-9. doi: 10.1007/s10404-019-2204-3 |
2019 Journal Article Functional liquid metal nanoparticles produced by liquid-based nebulizationTang, Shi-Yang, Qiao, Ruirui, Lin, Yiliang, Li, Yuhuan, Zhao, Qianbin, Yuan, Dan, Yun, Guolin, Guo, Jinhong, Dickey, Michael D., Huang, Tony Jun, Davis, Thomas P., Kalantar-Zadeh, Kourosh and Li, Weihua (2019). Functional liquid metal nanoparticles produced by liquid-based nebulization. Advanced Materials Technologies, 4 (2) 1800420, 1-9. doi: 10.1002/admt.201800420 |
2019 Journal Article Top sheath flow-assisted secondary flow particle manipulation in microchannels with the slanted groove structureZhao, Qianbin, Yuan, Dan, Tang, Shi-Yang, Yun, Guolin, Yan, Sheng, Zhang, Jun and Li, Weihua (2019). Top sheath flow-assisted secondary flow particle manipulation in microchannels with the slanted groove structure. Microfluidics and Nanofluidics, 23 (1) 6, 1-8. doi: 10.1007/s10404-018-2174-x |