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Yuejun Kang

Showing results (11-20 of 182) with videos related to

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Biomedical Microdevices|March 10, 2015
Highly efficient capture and harvest of circulating tumor cells on a microfluidic chip integrated with herringbone and micropost arraysPeng Xue, Yafeng Wu, Jinhong Guo, et al.
Nanoscale|March 12, 2015
Glutathione- and pH-responsive nonporous silica prodrug nanoparticles for controlled release and cancer therapyZhigang Xu, Shiying Liu, Yuejun Kang, et al.
Electrophoresis|December 31, 2005
Continuous separation of microparticles by size with direct current-dielectrophoresisKwan Hyoung Kang, Yuejun Kang, Xiangchun Xuan, et al.
Analytical Chemistry|August 14, 2013
Paper-based microfluidic electrochemical immunodevice integrated with nanobioprobes onto graphene film for ultrasensitive multiplexed detection of cancer biomarkersYafeng Wu, Peng Xue, Yuejun Kang, et al.
Analytical Chemistry|February 14, 2013
Highly specific and ultrasensitive graphene-enhanced electrochemical detection of low-abundance tumor cells using silica nanoparticles coated with antibody-conjugated quantum dotsYafeng Wu, Peng Xue, Yuejun Kang, et al.
Analytica Chimica Acta|September 2, 2008
On-chip fluorescence-activated particle counting and sorting systemYuejun Kang, Xudong Wu, Yao-Nan Wang, et al.
Biosensors & Bioelectronics|September 24, 2013
A paper-based microfluidic electrochemical immunodevice integrated with amplification-by-polymerization for the ultrasensitive multiplexed detection of cancer biomarkersYafeng Wu, Peng Xue, Kam M Hui, et al.
Biomedical Microdevices|February 6, 2015
Simple and low cost integration of highly conductive three-dimensional electrodes in microfluidic devicesSrinivasu Valagerahally Puttaswamy, Peng Xue, Yuejun Kang, et al.
Journal of Nanoscience and Nanotechnology|April 5, 2018
Porous Prussian Blue Nanocubes as Photothermal Ablation Agents for Efficient Cancer TherapyPeng Xue, Jingnan Bao, Yafeng Wu, et al.
Electrophoresis|January 1, 2019
A novel microfluidic capture and monitoring method for assessing physiological damage of C. elegans under microgravityJunsheng Wang, Jie Meng, Gege Ding, et al.
Pageof 19

Showing results (11-20 of 182) with videos related to

Sort By:
Pageof 19
Biomedical Microdevices|March 10, 2015
Highly efficient capture and harvest of circulating tumor cells on a microfluidic chip integrated with herringbone and micropost arraysPeng Xue, Yafeng Wu, Jinhong Guo, et al.
Nanoscale|March 12, 2015
Glutathione- and pH-responsive nonporous silica prodrug nanoparticles for controlled release and cancer therapyZhigang Xu, Shiying Liu, Yuejun Kang, et al.
Electrophoresis|December 31, 2005
Continuous separation of microparticles by size with direct current-dielectrophoresisKwan Hyoung Kang, Yuejun Kang, Xiangchun Xuan, et al.
Analytical Chemistry|August 14, 2013
Paper-based microfluidic electrochemical immunodevice integrated with nanobioprobes onto graphene film for ultrasensitive multiplexed detection of cancer biomarkersYafeng Wu, Peng Xue, Yuejun Kang, et al.
Analytical Chemistry|February 14, 2013
Highly specific and ultrasensitive graphene-enhanced electrochemical detection of low-abundance tumor cells using silica nanoparticles coated with antibody-conjugated quantum dotsYafeng Wu, Peng Xue, Yuejun Kang, et al.
Analytica Chimica Acta|September 2, 2008
On-chip fluorescence-activated particle counting and sorting systemYuejun Kang, Xudong Wu, Yao-Nan Wang, et al.
Biosensors & Bioelectronics|September 24, 2013
A paper-based microfluidic electrochemical immunodevice integrated with amplification-by-polymerization for the ultrasensitive multiplexed detection of cancer biomarkersYafeng Wu, Peng Xue, Kam M Hui, et al.
Biomedical Microdevices|February 6, 2015
Simple and low cost integration of highly conductive three-dimensional electrodes in microfluidic devicesSrinivasu Valagerahally Puttaswamy, Peng Xue, Yuejun Kang, et al.
Journal of Nanoscience and Nanotechnology|April 5, 2018
Porous Prussian Blue Nanocubes as Photothermal Ablation Agents for Efficient Cancer TherapyPeng Xue, Jingnan Bao, Yafeng Wu, et al.
Electrophoresis|January 1, 2019
A novel microfluidic capture and monitoring method for assessing physiological damage of C. elegans under microgravityJunsheng Wang, Jie Meng, Gege Ding, et al.
Pageof 19