Search Results - "Pu, Zhihua"

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  1. 1

    Effect of low-frequency ultrasonic field at different power on the dynamics of a single bubble near a rigid wall by Wu, Hao, Zhou, Cheng, Pu, Zhihua, Yu, Haixia, Li, Dachao

    Published in Ultrasonics sonochemistry (01-11-2019)
    “…•Micro-scaled bubbles are generated with a constant standoff distance to a rigid wall.•Effect mechanism of ultrasonic intensity on bubble dynamics is…”
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    Journal Article
  2. 2

    Editorial for the Special Issue on Physics in Micro/Nano Devices: From Fundamental to Application by Wang, Ridong, Pu, Zhihua

    Published in Micromachines (Basel) (01-08-2023)
    “…With the continuous miniaturization of micro/nano devices, it is of great importance to study the physics of these devices, both for fundamental and practical…”
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  3. 3

    Experimental investigation on the effects of the standoff distance and the initial radius on the dynamics of a single bubble near a rigid wall in an ultrasonic field by Wu, Hao, Zhou, Cheng, Pu, Zhihua, Lai, Xiaochen, Yu, Haixia, Li, Dachao

    Published in Ultrasonics sonochemistry (01-11-2020)
    “…•Micro bubble is generated with regulatable initial radius (R0) and standoff distance (γ).•Acoustic-driven bubble evolution under various R0 and γ near a rigid…”
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  4. 4

    A thermal activated and differential self-calibrated flexible epidermal biomicrofluidic device for wearable accurate blood glucose monitoring by Pu, Zhihua, Zhang, Xingguo, Yu, Haixia, Tu, Jiaan, Chen, Hailong, Liu, Yuncong, Su, Xiao, Wang, Ridong, Zhang, Lei, Li, Dachao

    Published in Science advances (01-01-2021)
    “…This paper reports a flexible electronics-based epidermal biomicrofluidics technique for clinical continuous blood glucose monitoring, overcoming the drawback…”
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  5. 5

    Electrically Inspired Flexible Electrochemical Film Power Supply for Long-Term Epidermal Sensors by Zheng, Hao, Zhang, Xingguo, Li, Chengcheng, Zhu, Wangwang, Li, Dachao, Pu, Zhihua

    Published in Micromachines (Basel) (01-03-2023)
    “…This paper, for the first time, reports an electrically inspired flexible electrochemical film power supply for long-term epidermal sensors. This device can…”
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  6. 6

    A continuous glucose monitoring device by graphene modified electrochemical sensor in microfluidic system by Pu, Zhihua, Zou, Chongwei, Wang, Ridong, Lai, Xiaochen, Yu, Haixia, Xu, Kexin, Li, Dachao

    Published in Biomicrofluidics (01-01-2016)
    “…This paper presents a continuous glucose monitoring microsystem consisting of a three-electrode electrochemical sensor integrated into a microfluidic chip. The…”
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  7. 7

    A Rubik’s microfluidic cube by Lai, Xiaochen, Shi, Zhi, Pu, Zhihua, Zhang, Penghao, Zhang, Xingguo, Yu, Haixia, Li, Dachao

    Published in Microsystems & nanoengineering (15-06-2020)
    “…A Rubik’s cube as a reconfigurable microfluidic system is presented in this work. Composed of physically interlocking microfluidic blocks, the microfluidic…”
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  8. 8

    A breathable flexible glucose biosensor with embedded electrodes for long-term and accurate wearable monitoring by Zheng, Hao, Chen, Hailong, Pu, Zhihua, Li, Dachao

    Published in Microchemical journal (01-10-2022)
    “…[Display omitted] •A breathable flexible glucose biosensor with excellent flexibility and moisture/air permeability was developed.•The porous structure of this…”
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  9. 9

    Inkjet Pattern-Guided Liquid Templates on Superhydrophobic Substrates for Rapid Prototyping of Microfluidic Devices by Lai, Xiaochen, Pu, Zhihua, Yu, Haixia, Li, Dachao

    Published in ACS applied materials & interfaces (08-01-2020)
    “…This paper presents a novel method of rapidly customizing microfluidic systems using a consumer-grade inkjet printer and a commercially available…”
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  10. 10

    Flexible organic field-effect transistors-based biosensors: progress and perspectives by Zhang, Xingguo, Pu, Zhihua, Su, Xiao, Li, Chengcheng, Zheng, Hao, Li, Dachao

    Published in Analytical and bioanalytical chemistry (01-04-2023)
    “…Organic field-effect transistors (OFETs) have been proposed beyond three decades while becoming a research hotspot again in recent years because of the fast…”
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  11. 11

    Electrode manufacturing based on printing: a mini review by Zheng, Hao, Guo, Zijing, Zhu, Wangwang, Li, Dachao, Pu, Zhihua

    “…With the advent of printed electronics, electrode manufacturing has made significant progress. In contrast to the traditional lift-off method, printing methods…”
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  12. 12

    Reverse iontophoresis with the development of flexible electronics: A review by Zheng, Hao, Pu, Zhihua, Wu, Hao, Li, Chengcheng, Zhang, Xingguo, Li, Dachao

    Published in Biosensors & bioelectronics (01-03-2023)
    “…Skin-centric diagnosis techniques, such as epidermal physiological parameter monitoring, have developed rapidly in recent years. The analysis of interstitial…”
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  13. 13

    Effect of interstitial fluid pH on transdermal glucose extraction by reverse iontophoresis by Zhu, Wangwang, Yu, Haixia, Pu, Zhihua, Guo, Zijing, Zheng, Hao, Li, Chengcheng, Zhang, Xingguo, Li, Jun, Li, Dachao

    Published in Biosensors & bioelectronics (01-09-2023)
    “…Reverse iontophoresis (RI) is a promising technology in the field of continuous glucose monitoring (CGM), offering significant advantages such as…”
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  14. 14

    Fabricating 1D stretchable fiber-shaped electronics based on inkjet printing technology for wearable applications by Zhang, Chi, Zhang, Lei, Pu, Zhihua, Bao, Bo, Ouyang, Wenyu, Li, Dachao

    Published in Nano energy (01-08-2023)
    “…Advanced microfabrication on small and curved fiber surfaces remains a critical challenge and an urgent need to develop high-performance fiber-shaped…”
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  15. 15

    A wearable microfluidic system for efficient sweat collection and real-time detection by Yin, Yingda, Tan, Zhiguang, Zhu, Wangwang, Pu, Zhihua, Yu, Haixia, Wang, Ridong, Li, Dachao

    Published in Talanta (Oxford) (01-07-2024)
    “…Sweat is an important biofluid with rich physiological information that can evaluate human health condition. Wearable sweat sensors have received widespread…”
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  16. 16

    A flexible glucose biosensor modified by reduced-swelling and conductive zwitterionic hydrogel enzyme membrane by Li, Chengcheng, Zhu, Wangwang, Ma, Yuxiao, Zheng, Hao, Zhang, Xingguo, Li, Dachao, Pu, Zhihua

    Published in Analytical and bioanalytical chemistry (01-09-2024)
    “…This paper reports a flexible glucose biosensor which is modified by a reduced-swelling and conductive zwitterionic hydrogel enzyme membrane that contains two…”
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  17. 17

    A flexible electrochemical glucose sensor with composite nanostructured surface of the working electrode by Pu, Zhihua, Wang, Ridong, Wu, Jianwei, Yu, Haixia, Xu, Kexin, Li, Dachao

    Published in Sensors and actuators. B, Chemical (01-07-2016)
    “…•A flexible electrochemical sensor was fabricated into the ISF extraction chip to build a wearable micro device for continuous glucose monitoring.•Composite…”
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  18. 18

    An adaptive-conforming biodegradable flexible power supply based on continuous glucose oxidation by Li, Chengcheng, Zheng, Hao, Zhang, Xingguo, Pu, Zhihua, Li, Dachao

    Published in Journal of the Indian Chemical Society (01-10-2024)
    “…This paper reports an adaptive degradable flexible power supply. The power supply is produced using a batch-printed, easy-to-operate screen-printing technique…”
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  19. 19

    An inkjet-printed bendable antenna for wearable electronics by Yu, Hang, Zhang, Xingguo, Zheng, Hao, Li, Dachao, Pu, Zhihua

    Published in International journal of bioprinting (01-01-2023)
    “…104Flexible antennas, which can conform to the skin and transfer signals to terminals, are particularly useful for wearable electronics. Bending, which…”
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  20. 20

    A flexible precise volume sensor based on metal-on-polyimide electrodes sandwiched by PDMS channel for microfluidic systems by Pu, Zhihua, Ma, Jiaming, Li, Wenwen, Lai, Xiaochen, Su, Xiao, Yu, Haixia, Li, Dachao

    Published in Microfluidics and nanofluidics (01-12-2019)
    “…This paper reports a flexible precise volume sensor with metal-on-polyimide (PI) electrodes to substitute for the peripheral ration pump of a microfluidic…”
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