Zhiguang Guo
Papers
2
Total Citations
76
H-Index
2
About
Zhiguang Guo is a versatile researcher whose work spans two distinctly innovative fields: industrial robotics and advanced functional materials. In robotics, Guo has made significant contributions to precision engineering, most notably through the development of a plane kinematic calibration method for industrial robots using dynamic double ball bar measurements — a technique that has garnered 70 citations since its 2019 publication, underscoring its practical relevance in improving robotic accuracy and manufacturing efficiency. More recently, Guo has ventured into the cutting-edge domain of smart textiles and nanotechnology, exploring the integration of bioinspired metal-organic frameworks (MOFs) with wearable systems. His 2025 work on superhydrophobic AgTCNQ-MOF hybrid fabrics, which mimics cactus spine architecture through in situ self-assembly, represents a frontier-pushing contribution to multifunctional smart textile design with implications for next-generation wearables. This breadth of expertise — from precision mechanical systems to bio-inspired nanomaterials — reflects Guo's capacity to bridge engineering disciplines and address real-world challenges. His growing citation record highlights an emerging research profile with meaningful impact across both robotics and materials science communities.
Research Focus
Key Achievements
Top Papers
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- 2