[1] Yuchen Wang*,Wenxuan Zhao*, Zhongyan Hu, Chen Zhang, Xiaoqiang Feng, Wei Zhao†, Guiren Wang, Kaige Wang†, Parametric study of the emission spectra and photobleaching timeconstants of a fluorescent dye in laser induced fluorescence photobleachinganemometer (LIFPA) applications, Experiments in Fluids. 2019, 60:106. [2] Wei Zhao† and Guiren Wang†, Cascade ofturbulent energy and scalar variance in DC electrokinetic turbulence, PhysicaD, 2019, DOI: 10.1016/j.physd.2019.04.003. [3] Yu Cheng, KaigeWang†, Yukun Zhou,Dan Sun, Chen Zhang, Wei Zhao and JintaoBai, Enhanced degradation effect of nano-PAA-CuCl2 with controllable 3Dstructure as heterogeneous Fenton-like catalyst over a wide pH range, Journalof Materials Science, 2019, 54(10), 7850-7866. [4] Wei Zhao and Guiren Wang†, Counter-rotatingvortex shedding generated by acoustic excitations in confined mixing layers,AIChE Journal, 2019, DOI: 10.1002/aic.16577. [5] Chao Xiao,Chen Zhang†, Jie Zhu, WeiZhao, Jintao Bai, Qingli He† and Kaige Wang, Influences of aberration onspatial resolution of STED microscope in probing a specimen with discontinuousrefraction indices, Applied Optics, 2019, DOI: 10.1364/AO.58.002112. [6] Jing Xue, Wei Zhao†, Ting Nie,Ce Zhang, Shenghua Ma, Guiren Wang, Shoupeng Liu, Junjie Li, Changzhi Gu,Jintao Bai, Kaige Wang†, Abnormal Rheological Phenomena in NewtonianFluids in Electroosmotic Flows in a Nanocapillary, Langmuir, 2018, 34(50), 15203-15210,DOI: 10.1021/acs.langmuir.8b03112. [7] Haiyun Qin, Wenxuan Zhao, Wei Zhao, Chen Zhang, Yong Liu, Guiren Wang and Kaige Wang†, Evaluation of saturation intensity based on the FWHM of CW stimulatedemission depletion microscopy, Optik, 2018, 166, 219-226, DOI:10.1016/j.ijleo.2018.04.036. [8] Haiyun Qin*, Wenxuan Zhao*, Wei Zhao†, Chen Zhang, Xiaoqiang Feng, Shoupeng Liu andKaige Wang†, Parametric Investigations on the SaturationIntensity of Coumarin 102 for Stimulated Emission Depletion Application,Journal of Microscopy, 2018, 271(2), 136-144. DOI: 10.1111/jmi.12703. [9] Wei Zhao, Xin Liu, Fang Yang, Kaige Wang, Jintao Bai, RuiQiao† and Guiren Wang†, Study ofOscillating Electroosmotic Flows with High Temporal and Spatial Resolution,Analytical Chemistry, 2018, 90 (3), 1652–1659 [10] Haiyun Qin*, Wei Zhao*, Chen Zhang, Yong Liu, GuirenWang and Kaige Wang†, Influence of fluorescence time characteristicson the spatial resolution of CW-stimulated emission depletion microscopy, ChinesePhysics B, 2018, 27(3), 037803. [11] Lianbin Fan,Chen Zhang†, Hongfu Li, Kaige Wang, Xiaoqiang Feng, Wei Zhao, Weichao Wang, Jintao Bai,Direct CW-Laser Writing Sub-Diffraction-Limit Nanopore Array Based on the LowOne-Photon Absorption of Polymer, Rare Metal Materials and Engineering, 2018,47(1): 0075-0081. [12] Qiang Yuan,Wen-Xuan Zhao, Rui Ma, Chen Zhang, WeiZhao, Shuang Wang, Xiao-Qiang Feng, Kai-Ge Wang†, Jin-TaoBai, Sub-diffraction-limit spatially structured light pattern based onpolarized beam phase modulation, Acta Physica Sinica, 2017, 66, 110201. DOI:10.7498/aps.66.110201. (Chinese edition) [13] W. Zhao and G. Wang†, Scaling ofvelocity and scalar structure functions in ac electrokinetic turbulence,Physical Review E, 2017, 95, 023111. [14] W. Zhao, F. Yang, K. Wang, J. Bai and G. Wang†, Rapid mixing by turbulent-like electrokinetic microflow, ChemicalEngineering Science, 2017, 165, 113-121. [15] Y. Duan*, W. Zhao*, J. Xue, D. Sun, K. Wang†, G. Wang, J. Li, J. Bai and C. Gu, Current characteristics of λ-DNAmolecules/polystyrene nanoparticles in TBE buffer solution throughmicro/nanofluidic capillaries under DC electric field, Journal of Physics D:Applied Physics, 2017, 50(12), 125401. [16] Yi-feiDuan, Hong-wei Ma, Ze-yang Gao, Kai-ge Wang†, Wei Zhao, Dan Sun, Gui-ren Wang,Jun-jie Li, Jin-tao Bai, Chang-zhi Gu, Reversal current observed inmicro- and submicro-channel flow under non-continuous DC electric field, ChinesePhysics B, 2017, 26(6): 068203 [17] Wei Zhaoand Guiren Wang†, Influence of acoustic resonance on mixingenhancement in confined mixing layers, Chemical Engineering and Processing:Process Intensification, 2017, 111, 67-78 [18] Weichao Wang, Wei Zhao, Kaige Wang†,Lei Wang, Xuewen Wang, Shuang Wang, Chen Zhang, Jintao Bai, On hydrophilicityimprovement of the porous anodic alumina film by hybrid nano/micro structuring,Applied Surface Science, 2017, 416, 710–715 [19] Fang Yang, Cuifang Kuang, Wei Zhao and Guiren Wang†.AC electrokinetic fast mixing in non-parallel microchannels. Chemical Engineering Communications. 2017,204:2, 190-197. [20] G.R. Wang†,Fang Yang*, Wei Zhao*. Microelectrokinetic turbulence inmicrofluidics at low Reynolds number. Physical Review E. 2016, 93,013106. [21] G.R. Wang†,Fang Yang*, Wei Zhao* and Chien-PinChen. On micro-electrokinetic scalar turbulence in microfluidics at a lowReynolds number. Lab on a Chip. 2016, 16, 1030-1038. [22] Wei Zhao,Fang Yang, Jamil Khan, Ken Reifsnider, G.R Wang†. Measurement of velocityfluctuations in microfluidics with simultaneously ultrahigh spatial andtemporal resolution.Experimentsin Fluids. 2016, 57:11. [23] Chen Zhang, Hongfu Li, Shuang Wang, Wei Zhao, Xiaoqiang Feng, Kaige Wang,Guiren Wang and Jintao Bai, Study ofGenerating Sub-Diffraction-Limit Patterns with the Phase Modulation ofPolarized Beams, Journalof Laser Micro/Nanoengineering, 2016, 11:3, 290-295 [24] Fengyun Yang, Kaige Wang†, Dan Sun, Wei Zhao, Hai-qing Wang, Xin He, Gui-ren Wang, and Jin-tao Bai, Direct observation of λ-DNA molecule reversal movement within microfluidic channels under electricfield with single molecule imaging technique. Chinese physics B.2016. 25:7, 78201. [25] Qing-Qing Wu, Kai-Ge Wang†, Dan Sun, Shuang Wang, Chen Zhang, Wei Zhao, Pairing Mismatched ssDNA to dsDNA Studied withReflectometric Interference Spectroscopy Sensor, Chinese Physics Letters, 2016,33:8, 088701. [26] Wei Zhao,Fang Yang, Jamil Khan, Ken Reifsnider, G.R Wang†. Correctionson LIFPA velocity measurements in microchannel with moderate velocityfluctuations. Experimentsin Fluids. 2015, 56:39. [27] G.R. Wang†,Fang Yang*, Wei Zhao*. There canbe turbulence in microfluidics at low Reynolds number. Lab on a Chip, 2014, 14,1452-1458. [28] Chen Zhang, Kaige Wang, Shuang Wang, Yong Liu, Wei Zhao, Xiaoming Chen, Baole Lu,Changzhi Gu, Yong Sun, Guiren Wang and Jintao Bai. Multipleprimary aberrations effect on donutshaped laser beam in high NA focusing system.Journal of Optics. 2014, 16, 125701. [29] Chen Zhang, Kaige Wang, Jintao Bai, Shuang Wang,Wei Zhao, Fang Yang, Changzhi Gu andGuiren Wang. Nanopillar array with a λ/11 diameterfabricated by a kind of visible CW laser direct lithography, Nanoscale Research Letters, 2013, 8:280. [30] Kuang, C, W.Zhao, G. Wang†, Far-fieldoptical nanoscopy based on continuous wave laser stimulated emission depletion.Review of Scientific Instruments.2010, 81, 053709. [31] CuifangKuang, Fang Yang, Wei Zhao andGuiren Wang†, Study of the Rise Time in Electroosmotic Flowwithin a Microcapillary. Analytical Chemistry. 2009, 81, 6590–6595. [32] Kuang, CF; Zhao, W; Yang, F. and Wang, G. † Measuring flow velocity distribution in microchannels using moleculartracers. Microfluidics and Nanofluidics. 2009, 7, 509-517. [33]赵伟,李万平†,壁湍流相干结构尺度及边界层内的SL标度律,力学学报,2007,39卷1期,23-36页。(Wei Zhao and Wanping Li†, Experimental studies on SLscaling law and spatial scales of coherent structures in near-wall turbulentboundary layer, Chinese Journal ofTheoretical and Applied Mechanics, 2007, Vol.39, No.1, pp:23-36.) [34] Shuang-xiGuo, Wan-ping Li†, Wei Zhao, Bo Chen, Sandaccumulation on a wall in flows around a near-wall circular cylinder, ActaMechanica, 2008, 196:175-185 [35]郭双喜,李万平†,赵伟近壁圆柱绕流的壁面积沙现象机理分析,2006,水动力学研究与进展,A辑,21(5):108-112 * 同等贡献(Equal contribution) † 通讯作者(Corresponding author) |