Page 149 - Read Online
P. 149

Page 26 of 26                           Sun et al. Soft Sci. 2025, 5, 18  https://dx.doi.org/10.20517/ss.2024.77

               111.      Ji, Z.; Zhu, H.; Liu, H.; et al. The design and characterization of a flexible tactile sensing array for robot skin. Sensors 2016, 16, 2001.
                    DOI  PubMed  PMC
               112.      Chen, S.; Zhou, Z.; Hou, K.; et al. Artificial organic afferent nerves enable closed-loop tactile feedback for intelligent robot. Nat.
                    Commun. 2024, 15, 7056.  DOI  PubMed  PMC
               113.      de Oliveira, T. E.; Cretu, A.; Petriu, E. M. Multimodal bio-inspired tactile sensing module. IEEE. Sensors. J. 2017, 17, 3231-43.  DOI
               114.      Zhang, C.; Ye, W. B.; Zhou, K.; et al. Bioinspired artificial sensory nerve based on nafion memristor. Adv. Funct. Mater. 2019, 29,
                    1808783.  DOI
               115.      Hui, X.; Tang, L.; Zhang, D.; et al. Acoustically enhanced triboelectric stethoscope for ultrasensitive cardiac sounds sensing and
                    disease diagnosis. Adv. Mater. 2024, 36, e2401508.  DOI
               116.      Zhao, D.; Zhuo, J.; Chen, Z.; et al. Eco-friendly in-situ gap generation of no-spacer triboelectric nanogenerator for monitoring
                    cardiovascular activities. Nano. Energy. 2021, 90, 106580.  DOI
               117.      Sun, Y.; Mao, J.; Cao, L.; et al. Intelligent cardiovascular disease diagnosis system combined piezoelectric nanogenerator based on
                    2D Bi O Se with deep learning technique. Nano. Energy. 2024, 128, 109878.  DOI
                        2  2
               118.      Chen, Z.; Xu, M.; Zhou, C.; et al. Phase transformation enabled textile triboelectric nanogenerators for wearable energy harvesting
                    and personal thermoregulation. Nano. Energy. 2024, 132, 110361.  DOI
               119.      Sengupta, D.; Mastella, M.; Chicca, E.; Kottapalli, A. G. P. Skin-inspired flexible and stretchable electrospun carbon nanofiber
                    sensors for neuromorphic sensing. ACS. Appl. Electron. Mater. 2022, 4, 308-15.  DOI  PubMed  PMC
               120.      Sengupta, D.; Romano, J.; Kottapalli, A. G. P. Electrospun bundled carbon nanofibers for skin-inspired tactile sensing, proprioception
                    and gesture tracking applications. npj. Flex. Electron. 2021, 5, 126.  DOI
               121.      Kim, S.; Lee, S.; Park, J. A skin-inspired, self-powered tactile sensor. Nano. Energy. 2022, 101, 107608.  DOI
               122.      Jiang, C.; Tan, D.; Sun, N.; et al. 60 nm Pixel-size pressure piezo-memory system as ultrahigh-resolution neuromorphic tactile sensor
                    for in-chip computing. Nano. Energy. 2021, 87, 106190.  DOI
   144   145   146   147   148   149   150   151   152   153   154