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Yonghai Zhang, Hongqiang Chen, Xiong Zhao, Xiang Ma, Lei Huang, Yinan Qiu, Jinjia Wei, Nanjing Hao*, Acoustofluidic bubble-driven micromixers for the rational engineering of multifunctional ZnO nanoarray. Chemical Engineering Journal, 2022, 450, 138273. [Link

►Granted Patent: Xiong Zhao, Nanjing Hao. A microreaction channel structure, and its microreactor and nanomaterial synthesis system. 

授权专利:赵雄, 郝南京. 一种微反应通道结构及基于其的微反应器和纳米材料合成系统. ZL 2021 1 1584796.6 [PDF

Xiong Zhao, Hongqiang Chen, Yaxuan Xiao, Jinhua Zhang, Yinan Qiu, Jinjia Wei, Nanjing Hao*, Rational design of robust flower-like sharp-edge acoustic micromixers towards efficient engineering of functional 3D ZnO nanorod array. Chemical Engineering Journal, 2022, 447, 137547. [Link

Xiong Zhao, Zhenzhen Chen, Yinan Qiu, Nanjing Hao*, Acoustic microfluidics for colloidal materials and interface engineering. Materials Advances, 2023, 4, 988-994. [Link

Yaxuan Xiao, Jinhua Zhang*, Bin Fang, Xiong Zhao, Nanjing Hao*, Acoustics-Actuated Microrobots. Micromachines, 2022, 13, 481.[Link]

 

Zhenzhen Chen, Hongqiang Chen, Lei Huang, Nanjing Hao*, Research progress on fractal microchannels for heat transfer process intensification. Chinese Journal of Engineering, 2022, 44, 1966-1977.[Link

Zhenzhen Chen, Liang Shen, Xiong Zhao, Hongqiang Chen, Yaxuan Xiao, Yonghai Zhang, Xiaoping Yang, Jinhua Zhang, Jinjia Wei, Nanjing Hao*, Acoustofluidic micromixers: from rational design to lab-on-a-chip applications. Applied Materials Today, 2022, 26, 101356.[Link]

Zhenzhen Chen, Hongqiang Chen, Lei Huang, Nanjing Hao*, Research progress on the intensification of heat transfer by ultrasound. Chinese Journal of Engineering, 2022, 44, 2164-2176. [Link]

Zhenzhen Chen, Zhichao Pei, Xiong Zhao, Jinhua Zhang, Jinjia Wei, Nanjing Hao*, Acoustic Microreactors for Chemical Engineering. Chemical Engineering Journal, 2022, 433, 133258.[Link]

 

Zhenzhen Chen, Hongqiang Chen, Lei Huang, Yonghai Zhang, Nanjing Hao*, Research progress on silica nanofluids for convective heat transfer enhancement. Chinese Journal of Engineering, 2022, 44, 812-825. [Link]

Zhenzhen Chen, Pengzhan Liu, Xiong Zhao, Lei Huang, Yaxuan Xiao, Yonghai Zhang, Jinhua Zhang, Nanjing Hao*, Sharp-edge acoustic microfluidics: principles, structures, and applications. Applied Materials Today, 2021, 25, 101239.[Link]

Nanjing Hao, Zeyu Wang, Pengzhan Liu, Ryan Becker, Shujie Yang, Kaichun Yang, Zhichao Pei, Peiran Zhang, Jianping Xia, Liang Shen, Lin Wang, Kathleen A. Welsh-Bohmer, Laurie Sanders, Luke P. Lee, and Tony Jun Huang*, Acoustofluidic Multimodal Diagnostic System for Alzheimer’s Disease, Biosensors and Bioelectronics, 2022, 196, 113730.[Link]

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Nanjing Hao, Pengzhan Liu, Hunter Bachman, Zhichao Pei, Peiran Zhang, Joseph Rufo, Zeyu Wang, Shuaiguo Zhao, and Tony Jun Huang, Acoustofluidics-Assisted Engineering of Multifunctional Three-Dimensional Zinc Oxide Nanoarrays. ACS Nano, 2020, 14, 6150–6163. [Link]

Nanjing Hao, Zhichao Pei, Pengzhan Liu, Hunter Bachman, Ty Downing Naquin, Peiran Zhang, Jinxin Zhang, Liang Shen, Shujie Yang, Kaichun Yang, Shuaiguo Zhao, and Tony Jun Huang, Acoustofluidics-Assisted Fluorescence-SERS Bimodal Biosensors. Small, 2020, 16, 2005179. [Link]

Nanjing Hao, Michael Zhang, and John X. J. Zhang, Microfluidics for ZnO Micro-/Nanomaterials Development: Rational Design, Controllable Synthesis, and On-Chip Applications. Biomaterials Science, 2020, 8, 1783-1801. [Link]

Nanjing Hao, Yuan Nie, Zhe Xu, Thomas Jacob Fyda, and John X. J. Zhang, Microfluidics-enabled on-chip acceleration of Fenton catalytic degradation of organic dyes with rod-like zero-valent iron nanoassemblies.  Journal of Colloid and Interface Science, 2020, 559, 254-262. [Link]

Nanjing Hao, Zhe Xu, Yuan Nie, Congran Jin, Andrew B. Closson, Michael Zhang, and John X. J. Zhang, Microfluidics-enabled rational design of ZnO micro-/nanoparticles with enhanced photocatalysis, cytotoxicity, and piezoelectric properties. Chemical Engineering Journal, 2019, 378, 122222.[Link]

Nanjing Hao, Yuan Nie, Zhe Xu, Andrew B. Closson, Thomas Usherwood, and John X. J. Zhang, Microfluidic continuous flow synthesis of functional hollow spherical silica with hierarchical sponge-like large porous shell. Chemical Engineering Journal, 2019, 366, 433-438. [Link]

Nanjing Hao, Yuan Nie, Zhe Xu, and John X. J. Zhang, Ultrafast microfluidic synthesis of hierarchical triangular silver core-silica shell nanoplatelet toward enhanced cellular internalization. Journal of Colloid and Interface Science, 2019, 542, 370-378. [Link]

Nanjing Hao, Yuan Nie, Andrew B. Closson, and John X. J. Zhang, Microfluidic synthesis and on-chip enrichment application of two-dimensional hollow sandwich-like mesoporous silica nanosheet with water ripple-like surface. Journal of Colloid and Interface Science, 2019, 539, 87-94.[Link]

Nanjing Hao, Yuan Nie, and John X. J. Zhang, Microfluidics for Silica Biomaterials Synthesis: Opportunities and Challenges. Biomaterials Science, 2019, 7, 2218-2240. [Link][PDF]

 

Nanjing Hao and John X. J. Zhang, Magnetic Nanomaterials for Circulating Tumor Biomarkers Screening: Rational Design, Microfluidics Integration and Applications. Biomicrofluidics, 2019, 13, 051501.[Link][PDF]

 

Nanjing Hao, Yuan Nie, Ting Shen, and John X. J. Zhang, Microfluidics-enabled rational design of immunomagnetic nanomaterial and its shape effect in liquid biopsy. Lab on a Chip, 2018, 18, 1997-2002.[Link]

Nanjing Hao, Yuan Nie, Amogha Tadimety, Ting Shen, and John X. J. Zhang, Microfluidics-enabled rapid manufacturing of hierarchical silica-magnetic microflower toward enhanced circulating tumor cells screening. Biomaterials Science, 2018, 6, 3121 - 3125.[Link]

Nanjing Hao, Yuan Nie, and John X. J. Zhang, Microfluidic Synthesis of Functional Inorganic Micro-/Nanoparticles and Applications in Biomedical Engineering. International Materials Review, 2018, 63, 461-487.[Link][PDF]

Nanjing Hao, Yuan Nie, and John X. J. Zhang, Microfluidic flow synthesis of functional mesoporous silica nanofibers with tunable aspect ratios. ACS Sustainable Chemistry & Engineering, 2018, 6, 1522–1526.[Link]

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