Academic literature on the topic 'Nanofils'

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Journal articles on the topic "Nanofils"

1

Patolsky, F. "Des nanofils pour détecter les virus." Revue Française des Laboratoires 2005, no. 369 (2005): 15. http://dx.doi.org/10.1016/s0338-9898(05)80063-0.

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2

Pichon, L., J. P. Landesman, and H. Lhermite. "La microscopie confocale : un support de formation en micro- et nano-électronique au CCMO, pôle CFM de Rennes." J3eA 21 (2022): 1007. http://dx.doi.org/10.1051/j3ea/20221007.

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L’article présente de l’apport de la microscopie confocale dans les formations en micro- et nano-technologies proposées par le CCMO (Centre Commun de Microélectronique de l’Ouest), pôle CFNM de Rennes. Un focus particulier est porté sur l’observation et la caractérisation à l’échelle micro et nanométrique d’objets (composants, nanofils,…) ou de systèmes microélectroniques (architecture physique de microprocesseurs).
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3

Croquette, Michael, Francesco Fogliano, Chao Zhang, et al. "Explorer la nano-optomécanique avec des nanofils suspendus." Photoniques, no. 129 (2024): 42–46. https://doi.org/10.1051/photon/202412742.

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L’utilisation de nanorésonateurs mécaniques ultrasensibles de taille sub-longueur d’onde permet de cartographier la structure du champ électromagnétique à petite échelle grâce à la mesure des forces et des gradients de force qu’il génère. En mesurant optiquement les vibrations transverses de nanofils suspendus en carbure de silicium, il est possible d’établir le champ de force produit par un faisceau laser focalisé ou par un seul photon peuplant une microcavité, mais aussi par les champs électrostatiques à la surface de nanostructures métalliques.
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4

Harmel, J., R. Tan, Ch Capello, et al. "Les principes de la chimie verte pour une électronique plus durable : une nouvelle approche de la synthèse chimique de nanoparticules d’oxyde de tungstène WO3 intégrées dans un capteur de gaz." J3eA 23 (2024): 1010. http://dx.doi.org/10.1051/j3ea/20241010.

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Cet article présente une nouvelle approche pour la synthèse de nanofils d’oxyde métallique pour la réalisation de Capteur de gaz à base de nanoparticules. Le nouveau procédé de synthèse chimique est plus fiable et plus facilement réalisable par les étudiants. De plus, le procédé est en accord avec des grands principes de la chimie verte réduisant au minimum le recours et la production des produits dangereux et potentiellement toxiques pour l’homme et l’environnement.
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5

Landesman, J. P., L. Pichon, and F. Gouttefangeas. "Manipulation de nanofils de silicium à partir de nano robots." J3eA 16 (2017): 1010. http://dx.doi.org/10.1051/j3ea/20171010.

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6

Zhang, Kaixuan, Wei Fang, Cunjing Lv, and Xi-Qiao Feng. "Evaporation of liquid nanofilms: A minireview." Physics of Fluids 34, no. 2 (2022): 021302. http://dx.doi.org/10.1063/5.0082191.

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Evaporation of virus-loaded droplets and liquid nanofilms plays a significant role in the pandemic of COVID-19. The evaporation mechanism of liquid nanofilms has attracted much attention in recent decades. In this minireview, we first introduce the relationship between the evaporation process of liquid nanofilms and the pandemic of COVID-19. Then, we briefly provide the frontiers of liquid droplet/nanofilm evaporation on solid surfaces. In addition, we discuss the potential application of machine learning in liquid nanofilm evaporation studies, which is expected to be helpful to build up a mor
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7

Alrajhi, Adnan H., Naser M. Ahmed, Mohd Mahadi Halim, Abeer S. Altowyan, Mohamad Nurul Azmi, and Munirah A. Almessiere. "Distinct Optical and Structural (Nanoyarn and Nanomat-like Structure) Characteristics of Zinc Oxide Nanofilm Derived by Using Salvia officinalis Leaves Extract Made without and with PEO Polymer." Materials 16, no. 13 (2023): 4510. http://dx.doi.org/10.3390/ma16134510.

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This paper reports the optical properties of zinc oxide nanofilm fabricated by using organic natural products from Salvia officinalis leaves (SOL) extract and discusses the effect of the nanocrystal (NC) structure (nanoyarn and nanomat-like structure) on nanofilm optical properties. The surface-active layer of the nanofilm of ZnO nanoparticles (ZnO NPs) was passivated with natural organic SOL leaves hydrothermally, then accumulated on zinc oxide nanorods (ZnO NRs). The nanofilms were fabricated (with and without PEO) on glass substrate (at 85 °C for 16 h) via chemical solution deposition (CSD)
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8

Chen, Zhen, Huiqi Xie, Linfeng Hu, Min Chen, and Limin Wu. "Fabrication of novel lamellar alternating nitrogen-doped microporous carbon nanofilm/MoS2 composites with high electrochemical properties." Journal of Materials Chemistry A 5, no. 43 (2017): 22726–34. http://dx.doi.org/10.1039/c7ta07136a.

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Nitrogen-doped microporous carbon nanofilm/MoS<sub>2</sub> composites (NMC-nanofilm@MoS<sub>2</sub>) were synthesized by immersing MOP nanofilms in (NH<sub>4</sub>)<sub>2</sub>MoS<sub>4</sub> methanol solution and a subsequent annealing process.
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9

Huo, Jiabin, Wei Li, and Teng Wang. "Effect of Cr Doping Concentration on the Structural, Optical, and Electrical Properties of Lead Sulfide (PbS) Nanofilms." Coatings 9, no. 6 (2019): 376. http://dx.doi.org/10.3390/coatings9060376.

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In this paper, pristine and Cr-doped lead sulfide (PbS) nanofilms were prepared by chemical and deposition methods. From X-ray diffraction (XRD) analysis, all nanofilm samples possessed good crystallinity with a preferential orientation of the (200) crystal plane. As the Cr doping concentration increased, the nanofilm grain size decreased from 71.5 to 18.9 nm. The SEM results revealed that the variation in Cr concentration led to different grain shapes, and the grain size became smaller with the increasing doping concentrations. Optical studies showed that the optical band gap of PbS films inc
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10

Zhang, Juan, Donghui Li, and Bo Zhang. "Study on Cavitation and Tribological of TiO2 Nano-Film on Bearing Pads Surface." Journal of Nanoscience and Nanotechnology 21, no. 12 (2021): 5906–11. http://dx.doi.org/10.1166/jnn.2021.19506.

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Bearings play a vital role in the operation of a two-axis system. Long-term bearing use inevitably produce bubbles and frictional damage. Therefore, the protection of bearings is critical for the stable operation of a two-axis system. In this study, a TiO2 nanofilm is used to physically protect a bearing. The discretization method is used to analyse the cavitation process. Cavitation primarily occurs on the front surface of the pad during bearing operation. A finite element analysis of a bearing pad coated and not coated with TiO2 nanofilms shows that TiO2 nanofilms can effectively absorb the
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