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1

Seyed-Talebi, Seyedeh Mozhgan, Mehrnaz Mahmoudi, and Chih-Hao Lee. "A Comprehensive Study of CsSnI3-Based Perovskite Solar Cells with Different Hole Transporting Layers and Back Contacts." Micromachines 14, no. 8 (2023): 1562. http://dx.doi.org/10.3390/mi14081562.

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By an abrupt rise in the power conservation efficiency (PCE) of perovskite solar cells (PSCs) within a short span of time, the instability and toxicity of lead were raised as major hurdles in the path toward their commercialization. The usage of an inorganic lead-free CsSnI3-based halide perovskite offers the advantages of enhancing the stability and degradation resistance of devices, reducing the cost of devices, and minimizing the recombination of generated carriers. The simulated standard device using a 1D simulator like solar cell capacitance simulator (SCAPS) with Spiro-OMeTAD hole transp
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2

Watjanatepin, Napat, Khanittha Wannakam, Paiboon Kiatsookkanatorn, Chaiyant Boonmee, and Patcharanan Sritanauthaikorn. "Improved spectral mismatch and performance of a phosphor-converted light-emitting diode solar simulator." International Journal of Electrical and Computer Engineering (IJECE) 13, no. 5 (2023): 4931. http://dx.doi.org/10.11591/ijece.v13i5.pp4931-4941.

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<span lang="EN-US">A phosphor-converted light-emitting diode (LED) solar simulator is an illuminance device that produced irradiance intensity and spectral close to the sunlight. It is determined as spectral mismatch, non-uniformity of irradiance, and temporal instability. This paper has improved the LED solar simulator (LSS) system to have a spectral distribution consistent with the AM1.5G spectrum at 100%. It was developed as a new prototype to have the AAA class spectral characteristics, time instability, and inconsistency according to IEC 60904-9. The results showed that an optimal a
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3

He, Zhaowen, Dongyang Li, Wei Ji та T. Chow. "Single Event Burnout Robustness Evaluation for β-Ga2O3 Vertical Schottky Barrier Diodes". ECS Meeting Abstracts MA2025-01, № 35 (2025): 1704. https://doi.org/10.1149/ma2025-01351704mtgabs.

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Single-event burnout (SEB) induced by cosmic radiation poses a significant risk to wide bandgap (WBG) and extreme bandgap (EBG) semiconductor power devices in high altitude and space applications, as it can irreversibly destroy these devices thermally through mesoplasma formation originating from collapsing current filaments (microplasmas) prior to avalanche breakdown. Experimental [1] and simulation [2] studies have shown that SEB in commercially available vertical 4H-SiC power devices occurs at voltages less than half of the rated blocking voltage (BVrate) under heavy-ion strikes, with bulk
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4

Patsamanis, Georgios, Dimitra Ketzaki, Dimitrios Chatzitheocharis, and Konstantinos Vyrsokinos. "Design and Optimization of a Compact Ultra-Broadband Polarization Beam Splitter for the SCL-Band Based on a Thick Silicon Nitride Platform." Photonics 9, no. 8 (2022): 552. http://dx.doi.org/10.3390/photonics9080552.

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The polarization beam splitter is an essential photonic integrated circuit in applications where a high-performing on-chip polarization diversity scheme is required. The lower refractive index contrast of the silicon nitride material platform compared to silicon-on-insulator constitutes the separation of polarized light states a challenging task since for this purpose a large difference between the effective refractive indices of the fundamental TE and TM modes is highly desirable. In this paper, we present the design and optimization analysis of an ultra-broadband polarization beam splitter b
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5

Lukosius, Mindaugas, Rasuole Lukose, Pawan Kumar Dubey, et al. "Advancing Graphene Integration in Si CMOS Technology: Challenges, Solutions, and Modulator Exploration." ECS Meeting Abstracts MA2024-02, no. 11 (2024): 1455. https://doi.org/10.1149/ma2024-02111455mtgabs.

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The potential of graphene-based devices in enhancing Si CMOS technology functionalities has been widely recognized [1,2]. Nevertheless, the successful integration of graphene into novel microelectronic devices encounters significant challenges. These include: i) The attainment of wafer-scale, high-quality graphene on CMOS-compatible materials (e.g., dielectrics or semiconductors) and subsequent transfer. ii) Developing reliable methods for applying a passivation layer on the graphene surface. iii) Ensuring the entire wafer processing with graphene can adhere to the standard Si CMOS pilot line
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Li, Wenlong, Hailong Li, Yong Yin, et al. "Particle-In-Cell Simulations of High Efficiency 12-Vanes 2.45 GHz Continuous Wave Magnetron." Electronics 12, no. 5 (2023): 1073. http://dx.doi.org/10.3390/electronics12051073.

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As an essential vacuum electronic device for producing the microwave, the magnetron has various applications. This study developed a novel high-efficiency 12-vanes CW magnetron and anode resonance system that improved mode separation, expanded the working space of π-mode and made other modes more challenging to trigger, ultimately eliminating the possibility of mode jumping. A magnetron was simultaneously supplied with a particular quantity of anode voltage, and the cathode was generated by the electron, and high-frequency field interaction of a homogeneous magnetic field. The work efficiency
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7

Meng, Jun, Md Sariful Sheikh, Ryan Jacobs, et al. "Multiple New Families of Fast Oxygen Interstitial Conductor Discovered by High-Throughput Computational Screening." ECS Meeting Abstracts MA2024-02, no. 48 (2024): 3300. https://doi.org/10.1149/ma2024-02483300mtgabs.

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Discovery and design of highly efficient oxygen-active materials that react with, absorb, and transport oxygen is essential for the development of improved fuel cells, electrolyzers and related applications.Currently, the predominant families of oxygen-active materials used in commercial fuel cell and electrolyzer devices are perovskites and fluorites, which diffuse oxygen via a vacancy mechanism and only have adequate oxygen diffusivity and surface exchange at high temperatures (e.g., ~800 ˚C), impeding their use at lower temperatures desirable for more cost-effective and long-lasting device
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8

Kwieciński, K., J. Żmudzki, G. Chladek, et al. "FEM simulation of a novel medical device for TMJ therapy." Archives of Materials Science and Engineering 122, no. 1 (2023): 34–41. http://dx.doi.org/10.5604/01.3001.0053.8846.

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Temporomandibular disorders (TMD) are one of the leading health problems in dentistry. The work aimed to evaluate, using FEM, the influence of the material elastic properties of the flexible obstacle of the tongue trainer on the range of deflection and strength.In prototyping the trainer tongue, the starting point was real models with different extents of the tongue obstacle. moulded from dental wax on a dental stone model. Then versions were tested intraorally for the perception of the space occupied by the tongue. The models were scanned on a 3D scanner, and then a parametric CAD model (NX S
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9

Meng, Jun, Md Sariful Sheikh, Ryan Jacobs, Jian Liu, William O. Nachlas, and Dane Morgan. "New Family of Interstitial Oxygen Ion Conductor Discovered By High-Throughput Computational Screening." ECS Meeting Abstracts MA2023-01, no. 40 (2023): 2782. http://dx.doi.org/10.1149/ma2023-01402782mtgabs.

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Discovery and design of highly efficient oxygen-active materials which react with, absorb, and transport oxygen is essential for fuel cells and related applications. Currently, the predominant families of oxygen-active materials used in commercial devices are perovskites and fluorites, which diffuse oxygen via a vacancy mechanism and only have adequate oxygen diffusivity and surface exchange at high temperatures (e.g., ~800 ˚C), impeding their use at lower temperatures desirable for more cost-effective and long-lasting device operation. The development of alternative electrolyte/electrode mate
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10

Ruiz-Barquero, Anibal, Adrián José Quesada-Martínez, Randall Chacon-Cerdas, et al. "Design and implementation of a controlled low-cost ventilator for emergency use on ICU patients." Revista Tecnología en Marcha, June 28, 2024. http://dx.doi.org/10.18845/tm.v37i3.6838.

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The worldwide outbreak of the SARS-CoV-2 virus led to a shortage of hospital ventilators worldwide. During recovery, these devices were crucial for patients in Intensive Care Units (ICUs). However, countries like Costa Rica faced difficulties acquiring these devices due to high demand in the world. To address this issue, professionals and students from the Costa Rica Institute of Technology have developed a prototype of a mechanical ventilator. This ventilator incorporates PIDs and Fuzzy Logic algorithms and features a user-friendly graphic interface based on PyQt5/GraphicsView, designed with
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11

Cotter, Trevor R., Rosaire Mongrain, and Mark Driscoll. "Design Synthesis of a Robotic Uniaxial Torque Device for Orthopedic Haptic Simulation." Journal of Medical Devices, April 14, 2022. http://dx.doi.org/10.1115/1.4054344.

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Abstract Robotic devices are commonly used in surgical simulators to provide tactile, or haptic, feedback. They can provide customized feedback that can be rapidly modified with minimal hardware changes in comparison to non-robotic systems. This work describes the design, development, and evaluation of one such tool: a novel uniaxial torque haptic device for a surgical training simulator. The objective of the work was to design a single connection haptic device that could augment an existing six degree of freedom haptic device to mimic a Concorde Clear vacuum curette. Design and evaluations fo
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12

Gruslova, Aleksandra B., Nitesh Katta, Andrew G. Cabe, et al. "Data automated bag breathing unit for COVID-19 ventilator shortages." Intensive Care Medicine Experimental 9, no. 1 (2021). http://dx.doi.org/10.1186/s40635-021-00419-2.

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Abstract Background The COVID-19 pandemic has caused a global mechanical ventilator shortage for treatment of severe acute respiratory failure. Development of novel breathing devices has been proposed as a low cost, rapid solution when full-featured ventilators are unavailable. Here we report the design, bench testing and preclinical results for an 'Automated Bag Breathing Unit' (ABBU). Output parameters were validated with mechanical test lungs followed by animal model testing. Results The ABBU design uses a programmable motor-driven wheel assembled for adult resuscitation bag-valve compressi
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13

Shaw, Priyanka, Naresh Kumar, Sohail Mumtaz, et al. "Evaluation of non-thermal effect of microwave radiation and its mode of action in bacterial cell inactivation." Scientific Reports 11, no. 1 (2021). http://dx.doi.org/10.1038/s41598-021-93274-w.

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AbstractA growing body of literature has recognized the non-thermal effect of pulsed microwave radiation (PMR) on bacterial systems. However, its mode of action in deactivating bacteria has not yet been extensively investigated. Nevertheless, it is highly important to advance the applications of PMR from simple to complex biological systems. In this study, we first optimized the conditions of the PMR device and we assessed the results by simulations, using ANSYS HFSS (High Frequency Structure Simulator) and a 3D particle-in-cell code for the electron behavior, to provide a better overview of t
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14

Gwerder, Corsin, Lukas Lötscher, Jason Podhradsky, et al. "Horizontal Inlets of Water Storage Tanks With Low Disturbance of Stratification." Journal of Solar Energy Engineering 138, no. 5 (2016). http://dx.doi.org/10.1115/1.4034228.

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Solar combi-storages are used in many countries for storing solar heat for space heating and domestic hot water (DHW) in one device. When a combi-storage is used in combination with a heat pump, the temperature stratification efficiency of the storage is a decisive factor for the overall efficiency and thus, for the consumed end-energy of the system. In particular, fluid that is entering the storage with a high velocity may cause considerable mixing, thus, destroying stratification and leading to poor system performance. This work presents computational fluid dynamics (CFD) simulations of dire
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15

baghdadi, shahriar, and mazdak rad malekshahi. "Numerical comparison and design of magnets arrays for particle separating, based on magnetophoresis." Physica Scripta, January 31, 2023. http://dx.doi.org/10.1088/1402-4896/acb7a7.

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Abstract In this paper, based on magnetophoresis, the effects of magnets arrays changings on particle tracing are analyzed. The changing of magnets arrays are included the changings of magnets dimensions and also the changing of the space between them.Magnets arrays with different styles, have generated dissimilar magnetic field. Hence, in some cases the magnetic force is stronger. In these cases, the manipulation on particles are done in less time. The importance of this problem is related to increase the throughput of the microsystem.To conquer to this challenge analytical methods (mathemati
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