This work was supported by the National Natural Science Foundation of China(No.61965008);Guangxi Natural Science Foundation(No.AD21220086);Scientific Research Project for Guangxi University(No.2020KY05022);Guangxi Key Laboratory(Nos.YQ21109 and GD21103).
Optical line tweezers have been an efficient tool for the manipulation of large micron particles. In this paper, we propose to create line traps with transformable configurations by using the transverse electromagneti...
The diffraction of a dielectric microline pair is optimized by numerical simulations to generate an efficient focusing pattern with a micron-scale footprint. Microlines separated by 1.12 μm are fabricated by two-phot...
the National Natural Science Foundation of China (21036002, 20876084, and 20976096);the National Basic Research Program of China (2007CB714302)
This paper reviews recent development and achievements in controllable preparation of nanoparticles, micron spherical and non-spherical particles, using microfluidics. A variety of synthesis strategies are presented a...
the financial support received from Ontario Research Fund for this study
The fluidization behavior of nano and sub-micron powders belonging to group C of Geldart's classification was studied in a mechanically vibrated fluidized bed (vibro-fluidized bed) at room temperature. Pretreated a...