The operating principle of Pirani pressure sensors is based on the pressure dependence of a suspended strip's electrical conductivity, caused by the thermal conductance of the surrounding gas which changes the Joule heating of the strip. To realize such sensors, not only materials with high temperature dependent electrical conductivity are required, but also minimization of the suspended strip dimensions is essential to maximize the responsivity and minimize the power consumption. Due to this, nanomaterials are especially attractive for this application. Here, we demonstrate the use of a multi-layer suspended graphene strip as a Pirani pressure sensor and compare its behavior with existing models. A clear pressure dependence of the strip's electrical resistance is observed, with a maximum relative change of 2.75% between 1 and 1000 mbar and a power consumption of 8.5 mW. The use of graphene enables miniaturization of the device footprint by 100 times compared to state-of-the-art. Moreover, miniaturization allows for lower power consumption and/or higher responsivity and the sensor's nanogap enables operation near atmospheric pressure that can be used in applications such as barometers for altitude measurement. Furthermore, we demonstrate that the sensor response depends on the type of gas molecules, which opens up the way to selective gas sensing applications. Finally, the graphene synthesis technology is compatible with wafer-scale fabrication, potentially enabling future chip-level integration with readout electronics.
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http://dx.doi.org/10.1088/1361-6528/abff8e | DOI Listing |
J Pediatr Orthop B
October 2024
Department of General Surgery and Medical Surgical Specialties, Section of Orthopaedics and Traumatology, A.O.U.P. Policlinico Rodolico - San Marco, University of Catania, Catania.
This study evaluated the static, postural, dynamic, and clinical outcomes among five groups of patients: a bilateral CTEV (congenital talipes equinovarus) group treated with tenotomy (n = 14), bilateral CTEV group treated conservatively (n = 6), unilateral CTEV group treated with tenotomy (n = 7), unilateral CTEV group treated conservatively (n = 3), and control group (n = 20). Data were collected through baropodometric examinations and clinical evaluations using Pirani, clubfoot assessment protocol, foot and ankle disability index (FADI), and American Orthopedic Foot and Ankle Society scores. Bilateral CTEV patients treated with tenotomy showed no statistically significant differences compared to healthy controls.
View Article and Find Full Text PDFJ Curr Glaucoma Pract
October 2024
Department of Ophthalmology, Hospital of San Severino Marche, AV3- Asur Marche, Macerata, Italy.
PLoS Negl Trop Dis
September 2024
Laboratory of Spatial Analysis in Health, Department of Epidemiology, School of Public Health, University of São Paulo, São Paulo, Brazil.
Background: Seasonal fluctuations in weather are recognized as factors that affect both Aedes (Ae.) aegypti mosquitoes and the diseases they carry, such as dengue fever. The El Niño-Southern Oscillation (ENSO) is widely regarded as one of the most impactful atmospheric phenomena on Earth, characterized by the interplay of shifting ocean temperatures, trade wind intensity, and atmospheric pressure, resulting in extensive alterations in climate conditions.
View Article and Find Full Text PDFMicromachines (Basel)
July 2024
MikroSens Elektronik San ve Tic A.S., Ankara 06530, Turkey.
This paper introduces a cost-effective, high-performance approach to achieving wafer level vacuum packaging (WLVP) for MEMS-based uncooled infrared sensors. Reliable and hermetic packages for MEMS devices are achieved using a cap wafer that is formed using two silicon wafers, where one wafer has precise grating/moth-eye structures on both sides of a double-sided polished wafer for improved transmission of over 80% in the long-wave infrared (LWIR) wavelength region without the need for an AR coating, while the other wafer is used to form a cavity. The two wafers are bonded using Au-In transient liquid phase (TLP) bonding at low temperature to form the cap wafer, which is then bondelectrical and Electronics d to the sensor wafer using glass frit bonding at high temperature to activate the getter inside the cavity region.
View Article and Find Full Text PDFJ Clin Med
December 2023
ASUR-Area Vasta 3, Ospedale di San Severino Marche, Via Del Glorioso, 8, 62027 San Severino Marche, Italy.
The XEN45 is a minimally invasive glaucoma surgery device commonly used in clinical practice. This retrospective study included consecutive patients with open-angle glaucoma who underwent a XEN45 implant with mitomycin C, either alone or in combination with phacoemulsification, between June 2015 and March 2021. The primary end point was the mean change in intraocular pressure (IOP) from the baseline to month 6.
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