World's Best Scientists 2026 revealed!

D-Index & Metrics

Electronics and Electrical Engineering

D-Index
36
Citations
6859
World Ranking
5282
National Ranking
774

Overview

Huiying Xu is a researcher affiliated with Xiamen University in China, with a focus primarily in the fields of Engineering and Physics and Astronomy. Their work spans several subfields, including Electrical and Electronic Engineering, Atomic and Molecular Physics and Optics, Molecular Biology, Materials Chemistry, and Computer Vision and Pattern Recognition.

The researcher's work broadly covers topics such as Solid State Laser Technologies, Advanced Fiber Laser Technologies, Photonic Crystal and Fiber Optics, Laser Design and Applications, Luminescence Properties of Advanced Materials, Photorefractive and Nonlinear Optics, and Extracellular Vesicles in Disease.

Huiying Xu has contributed notable publications, including:

  • A Novel Peptide-Equipped Exosomes Platform for Delivery of Antisense Oligonucleotides (2021, ACS Applied Materials & Interfaces)

Their frequent coauthors include Zhiping Caï, Bo Xiao, Shuaihao Ji, Zhiping Cai, and Run Fang. Collaboration with these researchers indicates an interdisciplinary approach to their area of study.

Xu's work has appeared repeatedly in several publication venues, showing consistency in certain journals and conferences. These venues include:

  • Optics & Laser Technology (13 publications)
  • SSRN Electronic Journal (11 publications)
  • Journal of Luminescence (6 publications)
  • Optics Letters (5 publications)
  • Chinese Optics Letters (4 publications)

Among the recent papers in related fields, apart from Xu's own publications, there are works such as "Rapid On-Chip Isolation of Cancer-Associated Exosomes and Combined Analysis of Exosomes and Exosomal Proteins" (2022, Analytical Chemistry) and "Membrane-Decorated Exosomes for Combination Drug Delivery and Improved Glioma Therapy" (2021, Langmuir), which highlight the relevance of extracellular vesicles research within the biomedical domain intersecting with Xu's focus.

The breadth of Huiying Xu's research emphasizes advancing technologies and applications in lasers and optics, alongside biological applications particularly relating to molecular delivery systems and extracellular vesicles. The combination of engineering principles with molecular biology applications is evident in their publication record and collaboration network.

Best Publications

  • Graphene-based passively Q-switched dual-wavelength erbium-doped fiber laser.

    Zhengqian Luo;Min Zhou;Jian Weng;Guoming Huang

  • 1.06 μm Q-switched ytterbium-doped fiber laser using few-layer topological insulator Bi₂Se₃ as a saturable absorber.

    Zhengqian Luo;Yizhong Huang;Jian Weng;Huihui Cheng

  • 1-, 1.5-, and 2-μm Fiber Lasers Q-Switched by a Broadband Few-Layer MoS 2 Saturable Absorber

    Zhengqian Luo;Yizhong Huang;Min Zhong;Yingyue Li

  • 1.06 {\mu}m Q-switched ytterbium-doped fiber laser using few-layer topological insulator Bi2Se3 as a saturable absorber

    Zhengqian Luo;Yizhong Huang;Jian Weng;Huihui Cheng

  • Two-dimensional material-based saturable absorbers: towards compact visible-wavelength all-fiber pulsed lasers

    Zhengqian Luo;Duanduan Wu;Bin Xu;Huiying Xu

  • Widely-tunable, passively Q-switched erbium-doped fiber laser with few-layer MoS2 saturable absorber.

    Yizhong Huang;Zhengqian Luo;Yingyue Li;Min Zhong

  • Topological-Insulator Passively Q-Switched Double-Clad Fiber Laser at 2 $\mu$ m Wavelength

    Zhengqian Luo;Chun Liu;Yizhong Huang;Duanduan Wu

  • Passively Q-switched Nd:YAlO_3 nanosecond laser using MoS_2 as saturable absorber

    Bin Xu;Yongjie Cheng;Yi Wang;Yizhong Huang

  • Evanescent-Light Deposition of Graphene Onto Tapered Fibers for Passive Q-Switch and Mode-Locker

    Jinzhang Wang;Zhengqian Luo;Min Zhou;Chenchun Ye

  • Gold nanoparticles as a saturable absorber for visible 635 nm Q-switched pulse generation.

    Duanduan Wu;Jian Peng;Zhiping Cai;Jian Weng

  • Multiwavelength mode-locked erbium-doped fiber laser based on the interaction of graphene and fiber-taper evanescent field

    Z.Q. Luo;J.Z. Wang;M. Zhou;H.Y. Xu

  • Power scaling of blue-diode-pumped Pr:YLF lasers at 523.0, 604.1, 606.9, 639.4, 697.8 and 720.9 nm

    Saiyu Luo;Xigun Yan;Qin Cui;Bin Xu

  • Graphene-Induced Nonlinear Four-Wave-Mixing and Its Application to Multiwavelength Q-Switched Rare-Earth-Doped Fiber Lasers

    Zhengqian Luo;Min Zhou;Duanduan Wu;Chenchun Ye

  • Laser characteristics at 1535 nm and thermal effects of an Er : Yb phosphate glass microchip pumped by Ti : sapphire laser

    Zhiping Cai;Alain Chardon;Huiying Xu;Patrice Féron

  • Topological insulator Bi₂Se₃ based Q-switched Nd:LiYF₄ nanosecond laser at 1313 nm.

    Bin Xu;Yi Wang;Jian Peng;Zhengqian Luo

  • Super-long photonic nanojet generated from liquid-filled hollow microcylinder.

    Guoqiang Gu;Rui Zhou;Zaichun Chen;Huiying Xu

  • 1.2-W average-power, 700-W peak-power, 100-ps dissipative soliton resonance in a compact Er:Yb co-doped double-clad fiber laser.

    Tuanjie Du;Zhengqian Luo;Runhua Yang;Yizhong Huang

  • New Fluoride Glasses for Laser Applications

    Michel Mortier;P. Goldner;Patrice Feron;Guy M. Stephan

  • Diode-pumped Pr^3+:LiYF_4 continuous-wave deep red laser at 698 nm

    Zhe Liu;Zhiping Cai;Shunlin Huang;Chenghang Zeng

  • Determining topological charge based on an improved Fizeau interferometer.

    Shengwei Cui;Bin Xu;Saiyu Luo;Huiying Xu

Frequent Co-Authors

Zhiping Cai
Zhiping Cai Xiamen University
Zhengqian Luo
Zhengqian Luo Xiamen University
Richard Moncorgé
Richard Moncorgé Université de Caen Normandie
Jean-Louis Doualan
Jean-Louis Doualan Université de Caen Normandie
Weiwei Cai
Weiwei Cai Xiamen University
Fengqiu Wang
Fengqiu Wang Nanjing University
Minghui Hong
Minghui Hong National University of Singapore
Jun Wang
Jun Wang University of Central Florida
Han Zhang
Han Zhang Shenzhen University
Zhipei Sun
Zhipei Sun Aalto University

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