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Transitioning from horizontal surfaces to vertical walls is crucial for terrestrial robots to navigate complex environments. Replicating such impressive surface transitions in artificial insect-scale robots has been particularly challenging. Here, innovative control schemes are introduced that enable ZoBorg (a cyborg beetle from Zophobas morio) to successfully climb walls from horizontal planes. The flex-rigid structure, flexible footpads, sharp claws, and embedded sensors of the living insect enable ZoBorg to achieve agile locomotion with exceptional adaptability, all at low power and low cost. ZoBorg crosses low-profile obstacles (5 and 8 mm steps) with a success rate exceeding 92% in less than one second. Most importantly, electrical stimulation of the elytron enables Zoborg to transition onto vertical walls with a success rate of 71.2% within 5 s. ZoBorg has potential applications for search and rescue missions due to its ability to traverse complex environments by crossing various obstacles, including low-profile steps, inclines, and vertical walls.
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http://dx.doi.org/10.1002/advs.202502095 | DOI Listing |
J Environ Manage
September 2025
Department of Mechanical Engineering, University of Colorado Boulder, 1111 Engineering Drive, Boulder, CO, USA. Electronic address:
This study assesses the performance of the ADMS-Urban dispersion model in estimating 1-h mean nitrogen dioxide (NO) concentrations within the street canyons of Prague. While traditional air quality modeling that relies on sparse data from localized monitoring stations, this approach pioneers the integration of traffic, background, and rooftop sensor network, to archive a more granular validation of model outputs. The results demonstrate robust model performance, with FAC2 values ranging from 0.
View Article and Find Full Text PDFJ Clin Periodontol
August 2025
School of Dental Medicine, University of Bern, Bern, Switzerland.
Aim: To assess buccal vertical bone resorption following implant placement in healed sites with varying buccal bone wall thicknesses.
Materials And Methods: In 11 miniature pigs, three tapered hybrid titanium implants were placed per hemi-maxilla in healed bone. Sites were randomised into three groups based on buccal bone wall thickness: G1 (< 1.
Philos Trans A Math Phys Eng Sci
August 2025
Department of Mathematical Sciences, New Jersey Institute of Technology, Newark, NJ, USA.
We present domain decomposition (DD) numerical approaches for the simulation of scattering involving semi-infinite, infinite but not necessarily periodic, as well as large finite arrays of identical obstacles in free space in two dimensions. The DD approach relies on dividing the array computational domain into infinite/finite non-overlapping copies of a unit cell structure consisting of obstacles enclosed by fictitious infinite vertical walls and subsequently solving the array scattering problem via connecting Robin data on vertical walls through Robin-to-Robin (RtR) maps. The unit cell RtR maps, in turn, are computed in the Fourier domain using layer potentials and their associated Boundary Integral Operators.
View Article and Find Full Text PDFNanomaterials (Basel)
July 2025
School of Integrated Circuits, Jiangnan University, Wuxi 214122, China.
Carbon nanotube field-effect transistors (CNTFETs) are becoming a strong competitor for the next generation of high-performance, energy-efficient integrated circuits due to their near-ballistic carrier transport characteristics and excellent suppression of short-channel effects. However, CNT FETs with large diameters and small band gaps exhibit obvious bipolarity, and gate-induced drain leakage (GIDL) contributes significantly to the off-state leakage current. Although the asymmetric gate strategy and feedback gate (FBG) structures proposed so far have shown the potential to suppress CNT FET leakage currents, the devices still lack scalability.
View Article and Find Full Text PDFMikrochim Acta
August 2025
Fujian Provincial Key Laboratory of Pollution Monitoring and Control, Fujian Provincial Key Laboratory of Modern Analytical Science and Separation Technology, College of Chemistry, Chemical Engineering and Environment, Minnan Normal University, 36 Xianqian Street, Zhangzhou, 363000, China. yangwq1@1
An innovative amine-enriched vertically-ordered mesoporous silica film (VMSF) on indium tin oxide (ITO) electrodes (A-VMSF/ITO) utilizing an anionic template strategy was successfully developed, resulting in the inner walls of the nanochannel being adorned with well-ordered and abundant tertiary amine groups. In the context of A-VMSF/ITO, the elevated solution conductivity not only facilitates the permeation of Ru(bpy) within nanochannels by compressing the inner electric double layer (EDL), but also greatly improves the electron-transfer efficiency that is critical for enhanced electrochemiluminescence (ECL) generation. Therefore, the A-VMSF/ITO platform exhibited a consistent increase in ECL intensity with rising ionic strength.
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