Papers
6
Total Citations
267
H-Index
4
About
Zhenghao Long is pioneering the next generation of bio-inspired sensory systems, with a research focus on artificial vision and tactile perception. His most impactful work, the 2024 study on biomimetic olfactory chips integrating large-scale nanotube sensor arrays, has already garnered 151 citations, establishing a new paradigm for electronic noses. Long’s contributions extend to revolutionizing robot vision through an ultrawide field-of-view pinhole compound eye using hemispherical nanowire arrays (72 citations), directly emulating biological compound eyes to overcome the limitations of transformable electronics. He has also developed a dual-mode image sensor based on all-inorganic perovskite nanowire arrays (32 citations), enabling both standard and neuromorphic imaging by mimicking the retina’s high-density neuronal architecture. Notably, Long’s artificial vision systems achieve geometric shape recognition with ultra-high density perovskite nanowire arrays, while his sub-milliscale-resolution bimodal tactile sensor arrays replicate human-skin-like graphesthesia. By integrating sensing, memory, and preprocessing in compact, high-resolution platforms, Long is advancing visual prosthetics and embodied intelligent robotics, demonstrating how nanomaterial engineering can unlock unprecedented sensory capabilities for autonomous systems.
Research Focus
Key Achievements
Top Papers
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