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Leveraging Nanotechnology for Addressing COVID-19: Revealing Antiviral Approaches and Hurdles
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作者 Mehrnaz Mostafavi Mahtab Shabani 《World Journal of Nano Science and Engineering》 CAS 2024年第1期1-14,共14页
The emergence of COVID-19 has caused extensive harm and is recognized as a significant threat to human life worldwide. Currently, the application of nanomedicine techniques in pre-clinical studies related to various i... The emergence of COVID-19 has caused extensive harm and is recognized as a significant threat to human life worldwide. Currently, the application of nanomedicine techniques in pre-clinical studies related to various infections, such as respiratory viruses, herpes viruses, human papillomavirus, and HIV, has demonstrated success. Nanoparticles, due to their specific attributes, have garnered considerable attention in combating COVID-19. Strategies employing nanomaterials for COVID-19 prevention encompass the development of rapid, precise diagnostic tools, the creation of effective disinfectants, the delivery of mRNA vaccines to the biological system, and the administration of antiretroviral medications within the body. This article focuses on recent research regarding the effectiveness of nano platforms as antiviral measures against coronaviruses. It delves into the molecular characteristics of coronaviruses and the affected target systems, highlighting challenges and limitations in combating SARS-CoV-2. Additionally, it explores potential nanotechnology-based treatments to confront current and future variants of coronaviruses associated with COVID-19 infections. 展开更多
关键词 COVID-19 CORONAVIRUS nanoMATERIALS nano-Based Vaccine SARS-CoV-2
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Ignition processes and characteristics of charring conductive polymers with a cavity geometry in precombustion chamber for applications in micro/nano satellite hybrid rocket motors
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作者 Zhiyuan Zhang Hanyu Deng +2 位作者 Wenhe Liao Bin Yu Zai Yu 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2024年第2期55-66,共12页
The arc ignition system based on charring polymers has advantages of simple structure,low ignition power consumption and multiple ignitions,which bringing it broadly application prospect in hybrid propulsion system of... The arc ignition system based on charring polymers has advantages of simple structure,low ignition power consumption and multiple ignitions,which bringing it broadly application prospect in hybrid propulsion system of micro/nano satellite.However,charring polymers alone need a relatively high input voltage to achieve pyrolysis and ignition,which increases the burden and cost of the power system of micro/nano satellite in practical application.Adding conductive substance into charring polymers can effectively decrease the conducting voltage which can realize low voltage and low power consumption repeated ignition of arc ignition system.In this paper,a charring conductive polymer ignition grain with a cavity geometry in precombustion chamber,which is composed of PLA and multiwall carbon nanotubes(MWCNT)was proposed.The detailed ignition processes were analyzed and two different ignition mechanisms in the cavity of charring conductive polymers were revealed.The ignition characteristics of charring conductive polymers were also investigated at different input voltages,ignition grain structures,ignition locations and injection schemes in a visual ignition combustor.The results demonstrated that the ignition delay and external energy required for ignition were inversely correlated with the voltages applied to ignition grain.Moreover,the incremental depth of cavity shortened the ignition delay and external energy required for ignition while accelerated the propagation of flame.As the depth of cavity increased from 2 to 6 mm(at 50 V),the time of flame propagating out of ignition grain changed from 235.6 to 108 ms,and values of mean ignition delay time and mean external energy required for ignition decreased from 462.8 to 320 ms and 16.2 to 10.75 J,respectively.The rear side of the cavity was the ideal ignition position which had a shorter ignition delay and a faster flame propagation speed in comparison to other ignition positions.Compared to direct injection scheme,swirling injection provided a more favorable flow field environment in the cavity,which was beneficial to ignition and initial flame propagation,but the ignition position needed to be away from the outlet of swirling injector.At last,the repeated ignition characteristic of charring conductive polymers was also investigated.The ignition delay time and external energy required for ignition decreased with repeated ignition times but the variation was decreasing gradually. 展开更多
关键词 Micro/nano satellite hybrid propulsion Arc ignition Charring conductive polymer Ignition mechanism Ignition characteristic Repeated ignition
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An Investigation into Forced Convection of a Nanofluid Flowing in a Rectangular Microchannel under the Influence of a Magnetic Field
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作者 Muataz S.Alhassan Ameer A.Alameri +4 位作者 Andrés Alexis Ramírez-Coronel I.B.Sapaev Azher M.Abed David-Juan Ramos-Huallpartupa Rahman S.Zabibah 《Fluid Dynamics & Materials Processing》 EI 2024年第2期311-323,共13页
In line with recent studies,where it has been shown that nanofluids containing graphene have a stronger capacity to boost the heat transfer coefficient with respect to ordinary nanofluids,experiments have been conducted ... In line with recent studies,where it has been shown that nanofluids containing graphene have a stronger capacity to boost the heat transfer coefficient with respect to ordinary nanofluids,experiments have been conducted using water with cobalt ferrite/graphene nanoparticles.In particular,a circular channel made of copper subjected to a constant heatflux has been considered.As nanoparticles are sensitive to the presence of a magneticfield,different conditions have been examined,allowing both the strength and the frequency of such afield to span relatively wide ranges and assuming different concentrations of nanoparticles.According to thefindings,the addition of nanoparticles to thefluid causes its rotation speed to increase by a factor of two,whereas ultraviolet radiation plays a negligible role.The amount of time required to attain the maximum rotation speed of the nanofluid and the Nusselt number have been measured under both constant and alternating magneticfields for a ferrofluid with a concentration of 0.5%and atflow Reynolds number of 550 and 1750. 展开更多
关键词 nano fluid rectengular tube magnetic field
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Research on the Development of Fibroin and Nano-Fiber from Silk Cocoons for Regenerated Tissue Engineering Applications by Electro-Spinning
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作者 Md Kamrul Hasan Xinbo Ding 《Advances in Nanoparticles》 CAS 2024年第1期1-9,共9页
In this paper, the main goal is to prepare silk fibroin nano-fiber, which is used for regenerated tissue applications. Silk scaffold nano-fibers made by electro-spinning technology can be used in regenerated tissue ap... In this paper, the main goal is to prepare silk fibroin nano-fiber, which is used for regenerated tissue applications. Silk scaffold nano-fibers made by electro-spinning technology can be used in regenerated tissue applications. The purpose of the research is to prepare a silk-fibroin nano-fiber solution for potential applications in tissue engineering. Using a degumming process, pure silk fibroin protein is extracted from silk cocoons. The protein solution for fibroin is purified, and the protein content is determined. The precise chemical composition, exact temperature, time, voltage, distance, ratio, and humidity all have a huge impact on degumming, solubility, and electro-spinning nano-fibers. The SEM investigates the morphology of silk fibroin nano-fibres at different magnifications. It also reveals the surface condition, fiber orientation, and fiber thickness of the silk fibroin nano-fiber. The results show that regenerated silk fibroin and nano-fiber can be used in silk fibroin scaffolds for various tissue engineering applications. 展开更多
关键词 Silk fibroin SCAFFOLD electro-spinning nano-fiber Tissue Engineering
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基于Jetson Nano的人脸口罩识别系统设计
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作者 叶光泽 童宣科 侯保冀 《电子产品世界》 2024年第1期44-47,共4页
人脸和口罩识别在许多现代应用中有广泛需求,包括安全检查、身份认证以及工业安全等方面。探讨了基于Jetson Nano的人脸口罩识别系统,旨在实现对个体是否佩戴口罩的准确判断。该系统使用先进的人脸识别算法来定位图像中的人脸区域,然后... 人脸和口罩识别在许多现代应用中有广泛需求,包括安全检查、身份认证以及工业安全等方面。探讨了基于Jetson Nano的人脸口罩识别系统,旨在实现对个体是否佩戴口罩的准确判断。该系统使用先进的人脸识别算法来定位图像中的人脸区域,然后应用深度学习模型对人脸区域进行口罩检测。所有的数据处理和模型推理均在Jetson Nano上实现,从而使系统具有较高的运行效率和可移植性。在多个不同环境和视角下进行测试,结果显示该系统在各种复杂条件下都展示出较高的识别准确率,并能处理高达30帧/s的实时图像。不仅证明了Jetson Nano在图像识别和实时数据处理方面的高性能,还为开发多种人脸识别应用提供了有力的技术支持。 展开更多
关键词 人脸识别 口罩识别 Jetson nano 深度学习
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Development of Modified Glasses by Transparent, Functional Hybrid Sol-Gel Nano-Ceramic Coatings, a Comparative Study
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作者 Md. Barkat Ullah Yeasmin Akter +1 位作者 Khodeja Afrin Md. Saiful Quddus 《World Journal of Engineering and Technology》 2024年第1期170-184,共15页
This paper concentrates on the development of glasses with self-cleaning surfaces exhibiting high water contact angles. In this study, we prepared super-hydrophobic nano-ceramic coated glass based on titania & sil... This paper concentrates on the development of glasses with self-cleaning surfaces exhibiting high water contact angles. In this study, we prepared super-hydrophobic nano-ceramic coated glass based on titania & silica using simple sol-gel & dip coating methods and studied the best composition of the coatings by altering ratios of titanium tetraisopropoxide (TTIP)/tetraethyl orthosilicate (TEOS) with different homogenizing agents. We characterized the coatings by surface roughness measurement, percentage of optical transmission, static contact angle, near-infrared (NIR) transmission, and diffuse reflectance. The fabrication of coatings on glass substrates played an important role in increasing the water contact angle of about 95° and visible & NIR transmission of about 90%. We compared our modified glass substrate with commercial low emissivity (Low E) glass using X-ray diffraction (XRD) analysis, which showed pure amorphous surface claiming excellent wettability and thus the prepared glass substrate could have a variety of applications in different fields. 展开更多
关键词 SOL-GEL nano-Ceramic Coatings Self-Cleaning Glass Water Contact Angle Optical Transmission
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基于改进YOLOX-Nano的农作物叶片病害检测与识别方法 被引量:2
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作者 李康顺 杨振盛 +2 位作者 江梓锋 王健聪 王慧 《华南农业大学学报》 CAS CSCD 北大核心 2023年第4期593-603,共11页
【目的】实现精确迅速的农作物病害检测,减少人工诊断成本,降低病害带来的农作物产量和品质影响。【方法】根据对农作物病害和病斑特征的分析,提出一种基于卷积注意力机制改进的YOLOX-Nano智能检测与识别模型,该模型采用CSPDarkNet作为... 【目的】实现精确迅速的农作物病害检测,减少人工诊断成本,降低病害带来的农作物产量和品质影响。【方法】根据对农作物病害和病斑特征的分析,提出一种基于卷积注意力机制改进的YOLOX-Nano智能检测与识别模型,该模型采用CSPDarkNet作为主干网络,将卷积注意力模块CBAM引入到YOLOX-Nano网络结构的特征金字塔(Feature pyramid network,FPN)中,并在训练中引入Mixup数据增强方式,同时将分类的损失函数由二分类交叉熵损失函数(Binary cross entropy loss,BCE Loss)替换为焦点损失函数Focal Loss、回归损失函数由GIOU Loss替换为本文设计的CenterIOU Loss函数,采用迁移学习策略训练改进的YOLOX-Nano模型,以此提升农作物病害检测的精度。【结果】改进后的YOLOX-Nano模型仅有0.98×10^(6)的参数量,在移动端测试单张图片检测时间约为0.187 s,平均识别精度达到99.56%。实践结果表明,其能快速有效地检测与识别苹果、玉米、葡萄、草莓、马铃薯和番茄等农作物的常见病害,且达到了精度与速度的平衡。【结论】改进后的模型不仅对农作物叶片病害识别具有较高的精度和较快的检测速度,参数量和计算量较少,还易于部署在手机等移动端设备。该模型实现了在田间复杂环境对多种农作物病害精准定位与识别,对于指导早期农作物病害的防治具有十分重要的现实意义。 展开更多
关键词 YOLOX-nano网络 病害识别 Focal Loss 注意力机制 农作物病害
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POB改性Nano–SiO_(2)/PTFE复合材料的摩擦转移特性研究
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作者 杨东亚 熊新稳 +3 位作者 高贵 王宏刚 任俊芳 陈生圣 《工程科学与技术》 EI CAS CSCD 北大核心 2023年第6期202-211,共10页
为了研究填充聚苯酯(POB)对Nano–SiO_(2)改性聚四氟乙烯(PTFE)复合材料转移膜演化及摩擦性能的影响,采用冷压成型、热烧结的工艺方法制备Nano–SiO_(2)/POB–PTFE和Nano–SiO_(2)/PTFE两种复合材料;采用间歇称重法和原位观察法,在LSR... 为了研究填充聚苯酯(POB)对Nano–SiO_(2)改性聚四氟乙烯(PTFE)复合材料转移膜演化及摩擦性能的影响,采用冷压成型、热烧结的工艺方法制备Nano–SiO_(2)/POB–PTFE和Nano–SiO_(2)/PTFE两种复合材料;采用间歇称重法和原位观察法,在LSR–2M型往复摩擦磨损试验机上进行干摩擦试验;利用AXIO Imager.A2m光学显微镜、QUANTA FEG 450热场发射扫描电镜和MicroXAM–800非接触式3维表面轮廓仪分别表征转移膜的表面形貌、微观结构和3维形貌,从微观角度分析摩擦转移机理。试验结果表明,Nano–SiO_(2)/PTFE复合材料的转移膜在对偶表面上形貌变化较快,不断重复“生成–脱落”过程,并伴随严重磨损,且没有形成较完整的转移膜。此外,生成的转移膜分层明显,且脱落痕迹显著,并有大量米粒状的磨屑附在对偶面上,导致反光性较差。而用POB填充Nano–SiO_(2)/PTFE复合材料不仅增强了转移膜在对偶表面上的黏附力,还促进了均匀、连续转移膜的更好形成,对偶表面反光性好;并且,Nano–SiO_(2)/POB–PTFE复合材料的磨损率较Nano–SiO_(2)/PTFE复合材料降低了两个数量级。POB有强黏附性,而Nano–SiO_(2)在摩擦过程中易嵌入对偶面形成机械互锁,故这两种填料共同改性PTFE可形成协同减磨效应,从而有效促进复合材料转移膜的均匀生成及稳固黏附,并大幅降低磨损率。本文的研究结论对斯特林发动机活塞环干摩擦密封材料的研制有良好的指导意义,有利于碟式太阳能热发电系统高性能密封件的研发。 展开更多
关键词 聚苯酯 nano–SiO_(2) 聚四氟乙烯 摩擦转移 转移膜
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TBOEP和nano-TiO_(2)联合暴露诱导对土著鲫鱼的复合繁殖毒性效应
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作者 赵雪松 黄嘉诚 +2 位作者 王琬玥 武韬 任新 《南京晓庄学院学报》 2023年第6期48-52,共5页
本研究以土著鲫鱼为受试生物,选择应用最为广泛的纳米二氧化钛(nano-TiO_(2))以及有机磷阻燃剂的典型代表磷酸三-(2-丁氧基)乙酯(TBOEP)作为暴露污染物,系统地研究nano-TiO_(2)与TBOEPP复合暴露对鲫鱼生殖系统的影响。实验设置空白对照... 本研究以土著鲫鱼为受试生物,选择应用最为广泛的纳米二氧化钛(nano-TiO_(2))以及有机磷阻燃剂的典型代表磷酸三-(2-丁氧基)乙酯(TBOEP)作为暴露污染物,系统地研究nano-TiO_(2)与TBOEPP复合暴露对鲫鱼生殖系统的影响。实验设置空白对照组、0.05μg/L与0.5μg/L TBOEP暴露组0.5 mg/L nano-TiO_(2)暴露组以及TBOEP 0.05μg/L+nano-TiO_(2)0.5 mg/L、TBOEP 0.5μg/L+nano-TiO_(2)0.5 mg/L复合暴露组,暴露时间为7 d。研究结果表明:TBOEP能够在鲫鱼的组织中积累且nano-TiO_(2)能够加强TBOEP的生物累积。另外,TBOEP干扰鲫鱼血清中睾酮与雌二醇的水平,并造成鲫鱼下丘脑-垂体-性腺轴(HPG)基因异常表达,nano-TiO_(2)能够显著增强TBOEP对于鲫鱼性激素的干扰作用,加剧TBOEP对鲫鱼的繁殖毒性。 展开更多
关键词 TBOEP nano-TiO_(2) 复合暴露 繁殖毒性
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Enhancing energetic performance of metal-organic complex-based metastable energetic nanocomposites by spray crystallization
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作者 Ke-xin Wang Li-xiao Shen +5 位作者 Bin Yuan Yan Li Shun-guan Zhu Lin Zhang Zhen-xin Yi Chen-guang Zhu 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2023年第6期203-213,共11页
Energetic metal-organic complexes have been involved in nanothermites as novel oxidants.However,the existing preparation methods often lead to mixing inhomogeneity and small contact area of ingredients,the reactivity ... Energetic metal-organic complexes have been involved in nanothermites as novel oxidants.However,the existing preparation methods often lead to mixing inhomogeneity and small contact area of ingredients,the reactivity and functionality of the novel energetic nanocomposites are still limited.In this work,spray crystallization(SC)method was used to prepare novel energetic nanocomposites,the high-energy metal-organic complex[Ni(CHZ)_(3)](ClO_(4))_(2)(CHZ=1,3-diaminourea)was composited with nanoaluminum(n-Al).Results showed that n-Al/[Ni(CH_(2))_(3)](ClO_(4))_(2)energetic nanocomposites prepared by SC method increased heat release to 2977.6 J/g and peak pressure to 3.91 MPa with higher pressurization rate(1324.06 MPa/s),decreased sensitivity thresholds(>100 mJ)to electrostatic discharge(ESD)and enhanced detonation ability compared with[Ni(CHZ)_(3)](ClO_(4))_(2)alone and physically mixed(PM)n-Al/[Ni(CHZ)_(3)](ClO_(4))_(2).These results proved that it is significant to introduce energetic metal-organic complexes with inherent high energy in new-concept n-Al/energetic metal-organic complexes nanocomposites through SC method for a better performance of its application. 展开更多
关键词 Energetic metal-organic complexes nano aluminum Energetic nanocomposites Spray crystallization Thermite reaction
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Thrust characteristics of nano-carbon/Al/oxygenated salt nanothermites for micro-energetic applications
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作者 Ahmed Fahd Alex Baranovsky +3 位作者 Charles Dubois Jamal Chaouki Sherif Elbasuney Shady Shokry 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2023年第12期55-69,共15页
Combustion within small motors is key in the application-specific development of nanothermite-based micro-energetic systems. This study evaluates the performance of nanothermite mixtures in a converging-diverging nozz... Combustion within small motors is key in the application-specific development of nanothermite-based micro-energetic systems. This study evaluates the performance of nanothermite mixtures in a converging-diverging nozzle and an open tube. Mixtures were prepared using nano-aluminum(n-Al),potassium perchlorate(KClO_(4)), and different carbon nanomaterials(CNMs) including graphene-oxide(GO), reduced GO, carbon nanotubes(CNTs) and nanofibers(CNFs). The mixtures were packed at different densities and ignited by laser beam. Performance was measured using thrust measurement,high-speed imaging, and computational fluid dynamics modeling, respectively. Thrust, specific impulse(ISP), volumetric impulse(ISV), as well as normalized energy were found to increase notably with CNM content. Two distinctive reaction regimes(fast and slow) were observed in combustion of low and high packing densities(20% and 55%TMD), respectively. Total impulse(IFT) and ISPwere maximized in the 5%GO/Al/KClO_4 mixture, producing 7.95 m N·s and 135.20 s respectively at 20%TMD, an improvement of 57%compared to a GO-free sample(5.05 m N·s and 85.88 s). CFD analysis of the motors over predicts the thrust generated but trends in nozzle layout and packing density agree with those observed experimentally;peak force was maximized by reducing packing density and using an open tube. The numerical force profiles fit better for the nozzle cases than the open tube scenarios due to the rapid nature of combustion. This study reveals the potential of GO in improving oxygenated salt-based nanothermites,and further demonstrates their applicability for micro-propulsion and micro-energetic applications. 展开更多
关键词 nanothermites Graphene oxide Reduced graphene oxide Carbon nano material Oxygenated salts Laser ignition Computational fluid dynamics
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Experimental Evaluation of Thermal Conductivity and Other Thermophysical Properties of Nanofluids Based on Functionalized (-OH) Mwcnt Nanoparticles Dispersed in Distilled Water
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作者 Alexandre Melo Oliveira Amir Zacarias Mesquita +2 位作者 João Gabriel de Oliveira Marques Enio Pedone Bandarra Filho Daniel Artur Pinheiro Palma 《Advances in Nanoparticles》 CAS 2023年第1期32-52,共21页
A possible way to increase thermal conductivity of working fluids, while keeping pressure drop at acceptable levels, is through nanofluids. Nanofluids are nano-sized particles dispersed in conventional working fluids.... A possible way to increase thermal conductivity of working fluids, while keeping pressure drop at acceptable levels, is through nanofluids. Nanofluids are nano-sized particles dispersed in conventional working fluids. A great number of materials have potential to be used in nanoparticles production and then in nanofluids;one of them is Multi-Walled Carbon Nano Tubes (MWCNT). They have thermal conductivity around 3000 W/mK while other materials used as nanoparticles like CuO have thermal conductivity of 76.5 W/mK. Due to this fact, MWCNT nanoparticles have potential to be used in nanofluids production, aiming to increase heat transfer rate in energy systems. In this context, the main goal of this paper is to evaluate from the synthesis to the experimental measurement of thermal conductivity of nanofluid samples based on functionalized (-OH) MWCNT nanoparticles. They will be analyzed nanoparticles with different functionalization degrees (4% wt, 6% wt, and 9% wt). In addition, it will be quantified other thermophysical properties (dynamic viscosity, specific heat and specific mass) of the synthetized nanofluids. So, the present work can contribute with experimental data that will help researches in the study and development of MWCNT nanofluids. According to the results, the maximum increment obtained in thermal conductivity was 10.65% in relation to the base fluid (water). 展开更多
关键词 nanofluids Multi-Walled Carbon nano Tubes (MWCNT) Functionalization Degree Thermal Conductivity Thermophysical Properties
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Effect of Nano Clay Reinforcement on Thermal Conductivity of Epoxy/CNT Composite Material
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作者 Yelda Akçin Ergün Melih Özçatal 《Journal of Materials Science and Chemical Engineering》 2023年第12期1-9,共9页
Epoxy is one of the most important polymers preferred in various technological applications thanks to its good mechanical properties and lightness. However, their low thermal conductivity limits their usage areas. Inc... Epoxy is one of the most important polymers preferred in various technological applications thanks to its good mechanical properties and lightness. However, their low thermal conductivity limits their usage areas. Increasing the thermal conductivity of epoxy is an important research topic. One of the most ideal ways to achieve this is to improve the thermal conductivity of epoxy without increasing its weight, thanks to nanoparticles. Carbon nanotubes (CNT) and clays are among the materials used for this purpose. In this study, the thermal conductivities of hybrid polymer composites reinforced separately and together in an epoxy matrix were investigated. The aim of the study is to find out how CNT and nano clay affect the thermal conductivity of the epoxy matrix, separately and together, and reveal the synergistic effect of these nanoparticles. 展开更多
关键词 EPOXY Carbon nanotube nano Clay Thermal Conductivity
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一种基于Jetson Nano深度学习的生活垃圾智能分类桶 被引量:2
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作者 应宇航 任泰安 +3 位作者 李伟 蔡涛 葛文琪 聂梦龙 《计算技术与自动化》 2023年第2期151-157,共7页
长期以来,垃圾处理往往伴随着巨大的资源浪费和环境污染,尽管我国已经出台相关垃圾分类政策,但由于人工分类成本高、分类效率低下等一系列问题,该类政策难以大规模推行。据此,提出了一种以单片机(single chiped microcomputer,SCM)为基... 长期以来,垃圾处理往往伴随着巨大的资源浪费和环境污染,尽管我国已经出台相关垃圾分类政策,但由于人工分类成本高、分类效率低下等一系列问题,该类政策难以大规模推行。据此,提出了一种以单片机(single chiped microcomputer,SCM)为基础,围绕Jetson Nano为核心设计的生活垃圾智能分类桶。其图像识别基于深度学习设计,通过上位机和摄像头判断投入垃圾桶的垃圾类型,将分析得到的数据传递给下位机;下位机通过控制二维云台进行垃圾分类投放;采用红外测距模块进行满载检测,并在APP界面内进行满溢警报,从而完成了类型识别、分类投放、满溢检测、满载报警的完整过程,实现了生活垃圾自动分类。该装置经实测工作稳定,并有内置的学习函数保障其续航能力,具有很强的实用性。 展开更多
关键词 Jetson nano 深度学习 垃圾分类 智能垃圾桶 物联网 嵌入式系统 光伏发电
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基于Arduino NANO单片机的互联免接触式自动泵压消毒系统 被引量:1
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作者 卢渊 李艳丽 +1 位作者 冯成龙 李新达 《物联网技术》 2023年第2期95-97,101,共4页
本文针对公共场所接触式消杀产品管理不便捷、消毒液浪费等问题,研究设计了一种基于Arduino NANO单片机的互联免接触式自动泵压消毒系统。本系统采用Arduino NANO单片机为核心控制器,通过超声波传感器实现对人员距离的判断,借助电阻式... 本文针对公共场所接触式消杀产品管理不便捷、消毒液浪费等问题,研究设计了一种基于Arduino NANO单片机的互联免接触式自动泵压消毒系统。本系统采用Arduino NANO单片机为核心控制器,通过超声波传感器实现对人员距离的判断,借助电阻式液位传感器实现对液位的实时检测,通过PID算法实现精确控制出液量,通过4G通信模块将数据实时上传至物联网云平台,实现数据的可视化,便于工作人员进行实时监控,通过手机客户端实现对公共场所内各装置进行远程监视与缺液报警。通过以上设计,可以准确实现装置对人员的检测、出液量固定化、缺液报警等,有效解决当下公共场合消毒装置补充不及时的弊端,降低大型商超、酒店、广场等工作人员的工作强度,提升消费者或使用者的体验。 展开更多
关键词 Arduino nano单片机 PID控制算法 免接触 自动泵压 物联网 4G通信
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Nano-seq宏基因组测序在关节置换术后假体周围感染诊断中的应用价值
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作者 邓磊 王少华 +5 位作者 李征 杨光亚 于雅丽 侯颖周 李科伟 孙博 《中医正骨》 2023年第10期7-11,共5页
目的:探讨Nano-seq宏基因组测序在关节置换术后假体周围感染诊断中的应用价值。方法:纳入38例人工关节置换术后因疑似假体周围感染再次住院的患者。患者住院后,抽血测定血清C反应蛋白(C-reactive protein,CRP)含量、血沉(erythrocyte se... 目的:探讨Nano-seq宏基因组测序在关节置换术后假体周围感染诊断中的应用价值。方法:纳入38例人工关节置换术后因疑似假体周围感染再次住院的患者。患者住院后,抽血测定血清C反应蛋白(C-reactive protein,CRP)含量、血沉(erythrocyte sedimentation rate,ESR)和血浆纤维蛋白原(fibrinogen,FIB)含量等指标,抽取关节液进行病原微生物培养和Nano-seq宏基因组测序。患者出院后,从病历系统中提取患者住院时测定的血清CRP含量、ESR、血浆FIB含量及病原微生物培养检验报告、Nano-seq宏基因组测序检验报告及出院诊断结果。分别根据血清CRP含量、ESR、血浆FIB含量、病原微生物培养检验报告、Nano-seq宏基因组测序检验报告诊断假体周围感染,并以出院诊断结果为金标准,计算上述指标诊断假体周围感染的敏感度、特异度、准确度、阳性预测值、阴性预测值。采用受试者操作特征(receiver operating characteristic,ROC)曲线评价不同指标诊断假体周围感染的应用价值。结果:血清CRP含量诊断假体周围感染的敏感度为90.48%、特异度为41.18%、准确度为68.42%,ESR诊断假体周围感染的敏感度为66.67%、特异度为64.71%、准确度为65.79%,血浆FIB含量诊断假体周围感染的敏感度为66.67%、特异度为70.59%、准确度为68.42%,病原微生物培养诊断假体周围感染的敏感度为61.90%、特异度为94.12%、准确度为76.32%,Nano-seq宏基因组测序诊断假体周围感染的敏感度为95.24%、特异度为82.35%、准确度为89.47%。Nano-seq宏基因组测序诊断假体周围感染的敏感度高于ESR、血浆FIB含量、病原微生物培养(P=0.045,P=0.045,P=0.020),特异度高于血清CRP含量(P=0.032),准确度高于血清CRP含量、ESR、血浆FIB含量(P=0.047,P=0.026,P=0.047)。血清CRP含量、ESR、血浆FIB含量、病原微生物培养、Nano-seq宏基因组测序诊断假体周围感染的ROC曲线下面积分别为0.791(P=0.002)、0.706(P=0.031)、0.734(P=0.014)、0.780(P=0.000)、0.888(P=0.000)。结论:Nano-seq宏基因组测序在关节置换术后假体周围感染诊断中具有较高的应用价值。 展开更多
关键词 关节成形术 置换 假体和植入物 感染 C-反应蛋白质 血沉 纤维蛋白原 微生物培养检测 nano-seq宏基因组测序
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Jetson Nano神经网络物理电磁泄漏安全研究
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作者 吴晨曦 张洪欣 崔晓彤 《太赫兹科学与电子信息学报》 2023年第9期1144-1149,共6页
如果采用旁路攻击方法对神经网络结构、框架进行攻击,恢复出结构、权重等信息,会产生敏感信息的泄漏,因此,需要警惕神经网络计算设备在旁路攻击领域产生敏感信息泄露的潜在风险。本文基于Jetson Nano平台,针对神经网络及神经网络框架推... 如果采用旁路攻击方法对神经网络结构、框架进行攻击,恢复出结构、权重等信息,会产生敏感信息的泄漏,因此,需要警惕神经网络计算设备在旁路攻击领域产生敏感信息泄露的潜在风险。本文基于Jetson Nano平台,针对神经网络及神经网络框架推理时产生的旁路电磁泄漏信号进行采集,设计了基于深度学习方法的旁路攻击算法,对旁路进行分析研究,并对两个维度的安全进行评估。研究表明,良好的网络转换策略能够提升网络分类识别准确率5%~12%。两种评估任务中,针对同一框架下不同结构的典型神经网络推理时,电磁泄漏的分类准确率达到97.21%;针对不同神经网络框架下同一种网络推理时,电磁泄漏的分类准确率达到100%。说明旁路电磁攻击方法对此类嵌入式图像处理器(GPU)计算平台中的深度学习算法隐私产生了威胁。 展开更多
关键词 旁路攻击 电磁泄漏 深度学习 一维卷积神经网络 Jetson nano平台
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基于改进YOLOX-Nano算法的柑橘梢期长势智能识别 被引量:4
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作者 殷献博 邓小玲 +1 位作者 兰玉彬 陈欣 《华南农业大学学报》 CAS CSCD 北大核心 2023年第1期142-150,共9页
【目的】采用机器视觉技术开展柑橘梢期的智能感知技术研究,以解决背景与目标颜色相似造成识别精度低的问题,实现柑橘梢期自动监测,探索算法的改进方法。【方法】根据不同卷积层提取特征的特点与不同注意力机制的作用,提出了一种基于多... 【目的】采用机器视觉技术开展柑橘梢期的智能感知技术研究,以解决背景与目标颜色相似造成识别精度低的问题,实现柑橘梢期自动监测,探索算法的改进方法。【方法】根据不同卷积层提取特征的特点与不同注意力机制的作用,提出了一种基于多注意力机制改进的YOLOX-Nano智能识别模型,建立多元化果园数据集并进行预训练。【结果】改进的YOLOX-Nano算法使用果园数据集作为预训练数据集后,各类别平均精度的平均值(Mean average precision,mAP)达到88.07%。与YOLOV4-Lite系列模型相比,本文提出的改进模型在使用较少的参数和计算量的情况下,识别精度有显著的提升,mAP分别比YOLOV4-MobileNetV3和YOLOV4-GhostNet提升6.58%和6.03%。【结论】改进后的模型在果园监测终端的轻量化部署方面更具有优势,为农情实时感知和智能监测提供了可行的数据和技术解决方案。 展开更多
关键词 柑橘 新梢 智能监测 注意力机制 YOLOX-nano 深度学习 智慧农业
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Minimizing Carbon Content with Three-in-One Functionalized Nano Conductive Ceramics:Toward More Practical and Safer S Cathodes of Li-S Cells 被引量:1
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作者 Ning Li Chang Sun +5 位作者 Jianhui Zhu Shun Li Yanlong Wang Maowen Xu Changming Li Jian Jiang 《Energy & Environmental Materials》 SCIE EI CAS CSCD 2023年第3期31-39,共9页
Using porous carbon hosts in cathodes of Li-S cells can disperse S actives and offset their poor electrical conductivity.However,such reservoirs would in turn absorb excess electrolyte solvents to S-unfilled regions,c... Using porous carbon hosts in cathodes of Li-S cells can disperse S actives and offset their poor electrical conductivity.However,such reservoirs would in turn absorb excess electrolyte solvents to S-unfilled regions,causing the electrolyte overconsumption,specific energy decline,and even safety hazards for battery devices.To build better cathodes,we propose to substitute carbons by In-doped SnO_(2)(ITO)nano ceramics that own three-in-one functionalities:1)using conductive ITO enables minimizing the total carbon content to an extremely low mass ratio(~3%)in cathodes,elevating the electrode tap density and averting the electrolyte overuse;2)polar ITO nanoclusters can serve as robust anchors toward Li polysulfide(LiPS)by electrostatic adsorption or chemical bond interactions;3)they offer catalysis centers for liquid–solid phase conversions of S-based actives.Also,such ceramics are intrinsically nonflammable,preventing S cathodes away from thermal runaway or explosion.These merits entail our configured cathodes with high tap density(1.54 g cm^(−3)),less electrolyte usage,good security for flame retardance,and decent Li-storage behaviors.With lean and LiNO_(3)-free electrolyte,packed full cells exhibit excellent redox kinetics,suppressed LiPS shuttling,and excellent cyclability.This may trigger great research enthusiasm in rational design of low-carbon and safer S cathodes. 展开更多
关键词 flame retardance Li-S cells minimized carbon ratio nano conductive ceramics three-in-one functionality
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Nano silica aerogel-induced formation of an organic/alloy biphasic interfacial layer enables construction of stable high-energy lithium metal batteries 被引量:1
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作者 Chengwei Ma Xinyu Zhang +6 位作者 Chengcai Liu Yuanxing Zhang Yuanshen Wang Ling Liu Zhikun Zhao Borong Wu Daobin Mu 《Green Energy & Environment》 SCIE EI CAS CSCD 2023年第4期1071-1080,共10页
Lithium metal batteries represent promising candidates for high-energy-density batteries, however, many challenges must still be overcome,e.g., interface instability and dendrite growth. In this work, nano silica aero... Lithium metal batteries represent promising candidates for high-energy-density batteries, however, many challenges must still be overcome,e.g., interface instability and dendrite growth. In this work, nano silica aerogel was employed to generate a hybrid film with high lithium ion conductivity(0.6 mS cm^(-1)at room temperature) via an in situ crosslinking reaction. TOF-SIMS profile analysis has revealed conversion mechanism of hybrid film to Li–Si alloy/Li F biphasic interface layer, suggesting that the Li–Si alloy and Li F-rich interface layer promoted rapid Li+transport and shielded the Li anodes from corrosive reactions with electrolyte-derived products. When coupled with nickel-cobalt-manganese-based cathodes, the batteries achieve outstanding capacity retention over 1000 cycles at 1 C. Additionally the developed film coated on Li enabled high coulombic efficiency(99.5%) after long-term cycling when coupled with S cathodes. Overall, the results presented herein confirm an effective strategy for the development of high-energy batteries. 展开更多
关键词 Lithium metal batteries nano silica aerogel In situ crosslinking Biphasic interface layer Li–Si alloy
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