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An integrated low-cost automatic pipetting used in nucleic acid detection PCR instrument and clinical detection 用于核酸检测 PCR 仪器和临床检测的集成式低成本自动移液器
IF 1.6 4区 工程技术 Q3 INSTRUMENTS & INSTRUMENTATION Pub Date : 2024-05-02 DOI: 10.1108/sr-08-2023-0366
Chengxiong Lin, Wenming Wu

Purpose

This paper aims to introduce a custom-designed integrated nucleic acid detection polymerase chain reaction (PCR) instrument for clinical detection applications.

Design/methodology/approach

The PCR instrument can make rapid, sensitive, low-cost and quantitative molecular diagnosis compared with the current routine test flow from the pipette, series reagent to RT-PCR by manual manipulation. By integrating the multichannel automatic pipetting module, heat amplification module and real-time fluorescence detection module for the first time, the custom-designed integrated nucleic acid detection PCR instrument can achieve sample collection, subpackage, mixing, extracting, measuring and result presentation.

Findings

The multichannel automatic pipetting module was assembled with an accuracy of 0.4% (2 microliters) for accuracy measurement. Besides, the accuracy and sensitivity of nucleic acid using integrated low-cost nucleic acid detection PCR instruments were checked with COV-2019 virus (staining method) and African swine fever virus (probe method) under different concentrations.

Practical implications

Because of its high cost, complex system and bulky laboratory settings, including sample subpackage, mixing, extracting, measuring and finally result in presentation, the current nucleic acid detection system is not suitable for field operation and disease diagnosis in remote areas. The group independently designed and assembled an integrated low-cost multichannel nucleic acid detection PCR instrument, including a multichannel automatic pipetting module, a heat amplification module and a real-time fluorescence detection module.

Originality/value

The above equipment showed better reliability compared with commercial qPCR. These results can lay the foundation for functional, fast and low-cost PCR equipment for trace measurements.

目的 本文旨在介绍一种定制设计的集成核酸检测聚合酶链反应(PCR)仪在临床检测中的应用。设计/方法/方法与目前常规的从移液器、串联试剂到RT-PCR的人工操作检测流程相比,PCR仪可实现快速、灵敏、低成本、定量的分子诊断。通过首次集成多通道自动移液模块、热扩增模块和实时荧光检测模块,定制设计的一体化核酸检测 PCR 仪可实现样品采集、分装、混合、提取、测量和结果呈现。实用意义目前的核酸检测系统由于成本高、系统复杂、实验室设置笨重,包括样品分装、混合、提取、测量和结果呈现,不适合偏远地区的野外作业和疾病诊断。课题组自主设计并组装了一体化低成本多通道核酸检测 PCR 仪器,包括多通道自动移液模块、热扩增模块和实时荧光检测模块。这些结果可为功能强大、快速、低成本的痕量测量 PCR 设备奠定基础。
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引用次数: 0
MEMS flexible conformal hydrophone based on heterogeneous integration technology 基于异质集成技术的 MEMS 柔性保形水听器
IF 1.6 4区 工程技术 Q3 INSTRUMENTS & INSTRUMENTATION Pub Date : 2024-04-30 DOI: 10.1108/sr-01-2024-0032
Xiangkai Zhang, Renxin Wang, Wenping Cao, Guochang Liu, Haoyu Tan, Haoxuan Li, Jiaxing Wu, Guojun Zhang, Wendong Zhang

Purpose

Human-induced marine environmental noise, such as commercial shipping and seismic exploration, is concentrated in the low-frequency range. Meanwhile, low-frequency sound signals can achieve long-distance propagation in water. To meet the requirements of long-distance underwater detection and communication, this paper aims to propose an micro-electro-mechanical system (MEMS) flexible conformal hydrophone for low-frequency underwater acoustic signals. The substrate of the proposed hydrophone is polyimide, with silicon as the piezoresistive unit.

Design/methodology/approach

This paper proposes a MEMS heterojunction integration process for preparing flexible conformal hydrophones. In addition, sensors prepared based on this process are non-contact flexible sensors that can detect weak signals or small deformations.

Findings

The experimental results indicate that making devices with this process cannot only achieve heterogeneous integration of silicon film, metal wire and polyimide, but also allow for customized positions of the silicon film as needed. The success rate of silicon film transfer printing is over 95%. When a stress of 1 Pa is applied on the x-axis or y-axis, the maximum stress on Si as a pie-zoresistive material is above, and the average stress on the Si film is around.

Originality/value

The flexible conformal vector hydrophone prepared by heterogeneous integration technology provides ideas for underwater acoustic communication and signal acquisition of biomimetic flexible robotic fish.

目的人类引起的海洋环境噪声,如商业航运和地震勘探,主要集中在低频范围。同时,低频声音信号可以在水中实现远距离传播。为满足远距离水下探测和通信的要求,本文旨在提出一种用于低频水下声信号的微机电系统(MEMS)柔性保形水听器。本文提出了一种用于制备柔性保形水听器的 MEMS 异质结集成工艺。实验结果表明,用这种工艺制作的器件不仅能实现硅膜、金属丝和聚酰亚胺的异质集成,还能根据需要定制硅膜的位置。硅膜转移印刷的成功率超过 95%。当在 x 轴或 y 轴上施加 1 Pa 的应力时,硅作为压阻材料所受的最大应力在以上,硅膜所受的平均应力在左右。 原创性/价值 利用异质集成技术制备的柔性共形矢量水听器为仿生柔性机器鱼的水下声学通信和信号采集提供了思路。
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引用次数: 0
Line spacing effect on the giant magnetoimpedance behavior on microribbon with meander type: a comparison of theory and experiment 线间距对蜿蜒型微晶带巨磁阻行为的影响:理论与实验比较
IF 1.6 4区 工程技术 Q3 INSTRUMENTS & INSTRUMENTATION Pub Date : 2024-04-23 DOI: 10.1108/sr-08-2023-0325
Zhenbao Wang, Zhen Yang, Mengyu Liu, Ziqin Meng, Xuecheng Sun, Huang Yong, Xun Sun, Xiang Lv

Purpose

Microribbon with meander type based on giant magnetoimpedance (GMI) effect has become a research hot spot due to their higher sensitivity and spatial resolution. The purpose of this paper is to further optimize the line spacing to improve the performance of meanders for sensor application.

Design/methodology/approach

The model of GMI effect of microribbon with meander type is established. The effect of line spacing (Ls) on GMI behavior in meanders is analyzed systematically.

Findings

Comparison of theory and experiment indicates that decreasing the line spacing increases the negative mutual inductance and a consequent increase in the GMI effect. The maximum value of the GMI ratio increases from 69% to 91.8% (simulation results) and 16.9% to 51.4% (experimental results) when the line spacing is reduced from 400 to 50 µm. The contribution of line spacing versus line width to the GMI ratio of microribbon with meander type was contrasted. This behavior of the GMI ratio is dominated by the overall negative contribution of the mutual inductance.

Originality/value

This paper explores the effect of line spacing on the GMI ratio of meander type by comparing the simulation results with the experimental results. The superior line spacing is found in the identical sensing area. The findings will contribute to the design of high-performance micropatterned ribbon with meander-type GMI sensors and the establishment of a ribbon-based magnetic-sensitive biosensing system.

目的基于巨磁阻(GMI)效应的蜿蜒型微带因其更高的灵敏度和空间分辨率而成为研究热点。本文旨在进一步优化线间距,以提高蜿蜒型微带在传感器应用中的性能。研究结果理论与实验比较表明,减小线间距会增加负互感,从而增加 GMI 效应。当线间距从 400 微米减小到 50 微米时,GMI 比率的最大值从 69% 增加到 91.8%(模拟结果),从 16.9% 增加到 51.4%(实验结果)。线间距与线宽对蜿蜒型微带的 GMI 比率的贡献形成了对比。本文通过比较模拟结果和实验结果,探讨了线间距对蜿蜒型微带的 GMI 比的影响。在相同的感应区域,线间距更优。这些发现将有助于设计具有蜿蜒型 GMI 传感器的高性能微图案色带和建立基于色带的磁敏生物传感系统。
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引用次数: 0
A molecular imprinting electrochemical sensor for detection of anticancer drug amsacrine 一种用于检测抗癌药物安吖啶的分子印迹电化学传感器
IF 1.6 4区 工程技术 Q3 INSTRUMENTS & INSTRUMENTATION Pub Date : 2024-04-23 DOI: 10.1108/sr-07-2023-0314
Xiaotong Zhang, Qiu Zhang

Purpose

The purpose of this study is to develop a molecular imprinting electrochemical sensor for the specific detection of the anticancer drug amsacrine. The sensor used a composite of bacterial cellulose (BC) and silver nanoparticles (AgNPs) as a platform for the immobilization of a molecularly imprinted polymer (MIP) film. The main objective was to enhance the electrochemical properties of the sensor and achieve a high level of selectivity and sensitivity toward amsacrine molecules in complex biological samples.

Design/methodology/approach

The composite of BC-AgNPs was synthesized and characterized using FTIR, XRD and SEM techniques. The MIP film was molecularly imprinted to selectively bind amsacrine molecules. Electrochemical characterization, including cyclic voltammetry and electrochemical impedance spectroscopy, was performed to evaluate the modified electrode’s conductivity and electron transfer compared to the bare glassy carbon electrode (GCE). Differential pulse voltammetry was used for quantitative detection of amsacrine in the concentration range of 30–110 µM.

Findings

The developed molecular imprinting electrochemical sensor demonstrated significant improvements in conductivity and electron transfer compared to the bare GCE. The sensor exhibited a linear response to amsacrine concentrations between 30 and 110 µM, with a low limit of detection of 1.51 µM. The electrochemical response of the sensor showed remarkable changes before and after amsacrine binding, indicating the successful imprinting of amsacrine in the MIP film. The sensor displayed excellent selectivity for amsacrine in the presence of interfering substances, and it exhibited good stability and reproducibility.

Originality/value

This study presents a novel molecular imprinting electrochemical sensor design using a composite of BC and AgNPs as a platform for MIP film immobilization. The incorporation of BC-AgNPs improved the sensor’s electrochemical properties, leading to enhanced sensitivity and selectivity for amsacrine detection. The successful imprinting of amsacrine in the MIP film contributes to the sensor's specificity. The sensor's ability to detect amsacrine in a concentration range relevant to anticancer therapy and its excellent performance in complex sample matrices add significant value to the field of electrochemical sensing for pharmaceutical analysis.

目的 本研究的目的是开发一种分子印迹电化学传感器,用于特异性检测抗癌药物安吖啶。该传感器使用细菌纤维素(BC)和银纳米颗粒(AgNPs)的复合材料作为固定分子印迹聚合物(MIP)薄膜的平台。主要目的是增强传感器的电化学特性,并实现对复杂生物样品中阿霉素分子的高选择性和高灵敏度。 设计/方法/步骤 利用傅立叶变换红外光谱(FTIR)、XRD 和扫描电子显微镜技术合成了 BC-AgNPs 复合材料,并对其进行了表征。对 MIP 薄膜进行分子印迹,以选择性地结合安体舒通分子。为了评估改性电极与裸玻璃碳电极(GCE)相比的电导率和电子转移情况,对其进行了电化学表征,包括循环伏安法和电化学阻抗光谱法。研究结果与裸玻璃碳电极(GCE)相比,所开发的分子印迹电化学传感器在电导率和电子转移方面都有显著改善。该传感器对 30-110 µM 浓度的阿扎林呈线性响应,检测限低至 1.51 µM。传感器的电化学响应在与安吖啶结合前后发生了显著变化,表明安吖啶成功印刻在了 MIP 薄膜上。在存在干扰物质的情况下,该传感器对阿朴阿霉素具有极佳的选择性,并表现出良好的稳定性和重现性。BC-AgNPs的加入改善了传感器的电化学特性,从而提高了阿司匹林检测的灵敏度和选择性。在 MIP 薄膜中成功印刻安吖啶有助于提高传感器的特异性。该传感器能够在与抗癌治疗相关的浓度范围内检测安体舒通,而且在复杂的样品基质中表现出色,这为用于药物分析的电化学传感领域增添了重要价值。
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引用次数: 0
Review of development trends in smart shoe applications 智能鞋应用发展趋势回顾
IF 1.6 4区 工程技术 Q3 INSTRUMENTS & INSTRUMENTATION Pub Date : 2024-04-17 DOI: 10.1108/sr-04-2023-0093
Rafiu King Raji, Jian Lin Han, Zixing Li, Lihua Gong

Purpose

At the moment, in terms of both research and commercial products, smart shoe technology and applications seem not to attract the same magnitude of attention compared to smart garments and other smart wearables such as wrist watches and wrist bands. The purpose of this study is to fill this knowledge gap by discussing issues regarding smart shoe sensing technologies, smart shoe sensor placements, factors that affect sensor placements and finally the areas of smart shoe applications.

Design/methodology/approach

Through a review of relevant literature, this study first and foremost attempts to explain what constitutes a smart shoe and subsequently discusses the current trends in smart shoe applications. Discussed in this study are relevant sensing technologies, sensor placement and areas of smart shoe applications.

Findings

This study outlined 13 important areas of smart shoe applications. It also uncovered that majority of smart shoe functionality are physical activity tracking, health rehabilitation and ambulation assistance for the blind. Also highlighted in this review are some of the bottlenecks of smart shoe development.

Originality/value

To the best of the authors’ knowledge, this is the first comprehensive review paper focused on smart shoe applications, and therefore serves as an apt reference for researchers within the field of smart footwear.

目的目前,在研究和商业产品方面,与智能服装和其他智能可穿戴设备(如手表和腕带)相比,智能鞋技术和应用似乎没有引起同等程度的关注。本研究的目的是通过讨论有关智能鞋传感技术、智能鞋传感器位置、影响传感器位置的因素以及智能鞋应用领域等问题来填补这一知识空白。 设计/方法/途径通过对相关文献的回顾,本研究首先试图解释什么是智能鞋,然后讨论智能鞋应用的当前趋势。研究结果本研究概述了智能鞋应用的 13 个重要领域。本研究概述了智能鞋应用的 13 个重要领域,还发现智能鞋的大部分功能是跟踪体力活动、健康康复和盲人行走辅助。本综述还强调了智能鞋发展的一些瓶颈。原创性/价值 据作者所知,这是第一篇关注智能鞋应用的综合综述论文,因此可作为智能鞋领域研究人员的适当参考。
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引用次数: 0
Wearable sensors for monitoring vital signals in sports and health: progress and perspective 用于监测运动和健康生命信号的可穿戴传感器:进展与展望
IF 1.6 4区 工程技术 Q3 INSTRUMENTS & INSTRUMENTATION Pub Date : 2024-04-16 DOI: 10.1108/sr-02-2024-0080
Jinwei Zhao, Shuolei Feng, Xiaodong Cao, Haopei Zheng

Purpose

This paper aims to concentrate on recent innovations in flexible wearable sensor technology tailored for monitoring vital signals within the contexts of wearable sensors and systems developed specifically for monitoring health and fitness metrics.

Design/methodology/approach

In recent decades, wearable sensors for monitoring vital signals in sports and health have advanced greatly. Vital signals include electrocardiogram, electroencephalogram, electromyography, inertial data, body motions, cardiac rate and bodily fluids like blood and sweating, making them a good choice for sensing devices.

Findings

This report reviewed reputable journal articles on wearable sensors for vital signal monitoring, focusing on multimode and integrated multi-dimensional capabilities like structure, accuracy and nature of the devices, which may offer a more versatile and comprehensive solution.

Originality/value

The paper provides essential information on the present obstacles and challenges in this domain and provide a glimpse into the future directions of wearable sensors for the detection of these crucial signals. Importantly, it is evident that the integration of modern fabricating techniques, stretchable electronic devices, the Internet of Things and the application of artificial intelligence algorithms has significantly improved the capacity to efficiently monitor and leverage these signals for human health monitoring, including disease prediction.

设计/方法/途径近几十年来,用于监测运动和健康中生命信号的可穿戴传感器取得了巨大进步。生命信号包括心电图、脑电图、肌电图、惯性数据、身体运动、心率以及血液和出汗等体液,因此是传感设备的良好选择。研究结果本报告综述了有关生命信号监测可穿戴传感器的著名期刊文章,重点关注设备的结构、精度和性质等多模式和多维度的综合能力,这可能会提供一种更通用、更全面的解决方案。独创性/价值 本文提供了该领域目前存在的障碍和挑战的基本信息,并提供了用于检测这些关键信号的可穿戴传感器的未来发展方向。重要的是,现代制造技术、可拉伸电子设备、物联网和人工智能算法的应用显然大大提高了有效监测和利用这些信号进行人体健康监测(包括疾病预测)的能力。
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引用次数: 0
A technique of a “lab-on-a-chip” for developing a novel biosensor in viewpoint of health-care (PHC) applications and biological regulator sensors 从保健(PHC)应用和生物调节器传感器的角度开发新型生物传感器的 "芯片上的实验室 "技术
IF 1.6 4区 工程技术 Q3 INSTRUMENTS & INSTRUMENTATION Pub Date : 2024-04-15 DOI: 10.1108/sr-03-2024-0211
Majid Monajjemi, Fatemeh Mollaamin

Purpose

Recently, powerful instruments for biomedical engineering research studies, including disease modeling, drug designing and nano-drug delivering, have been extremely investigated by researchers. Particularly, investigation in various microfluidics techniques and novel biomedical approaches for microfluidic-based substrate have progressed in recent years, and therefore, various cell culture platforms have been manufactured for these types of approaches. These microinstruments, known as tissue chip platforms, mimic in vivo living tissue and exhibit more physiologically similar vitro models of human tissues. Using lab-on-a-chip technologies in vitro cell culturing quickly caused in optimized systems of tissues compared to static culture. These chipsets prepare cell culture media to mimic physiological reactions and behaviors.

Design/methodology/approach

The authors used the application of lab chip instruments as a versatile tool for point of health-care (PHC) applications, and the authors applied a current progress in various platforms toward biochip DNA sensors as an alternative to the general bio electrochemical sensors. Basically, optical sensing is related to the intercalation between glass surfaces containing biomolecules with fluorescence and, subsequently, its reflected light that arises from the characteristics of the chemical agents. Recently, various techniques using optical fiber have progressed significantly, and researchers apply highlighted remarks and future perspectives of these kinds of platforms for PHC applications.

Findings

The authors assembled several microfluidic chips through cell culture and immune-fluorescent, as well as using microscopy measurement and image analysis for RNA sequencing. By this work, several chip assemblies were fabricated, and the application of the fluidic routing mechanism enables us to provide chip-to-chip communication with a variety of tissue-on-a-chip. By lab-on-a-chip techniques, the authors exhibited that coating the cell membrane via poly-dopamine and collagen was the best cell membrane coating due to the monolayer growth and differentiation of the cell types during the differentiation period. The authors found the artificial membrane, through coating with Collagen-A, has improved the growth of mouse podocytes cells-5 compared with the fibronectin-coated membrane.

Originality/value

The authors could distinguish the differences across the patient cohort when they used a collagen-coated microfluidic chip. For instance, von Willebrand factor, a blood glycoprotein that promotes hemostasis, can be identified and measured through these type-coated microfluidic chips.

目的近年来,用于疾病建模、药物设计和纳米药物递送等生物医学工程研究的强大仪器受到研究人员的极大关注。特别是近年来,对各种微流体技术和基于微流体基底的新型生物医学方法的研究取得了进展,因此,为这些方法制造了各种细胞培养平台。这些微型仪器被称为组织芯片平台,可模仿体内活体组织,并展示出与人体组织生理上更为相似的体外模型。与静态培养相比,使用片上实验室技术进行体外细胞培养能快速形成优化的组织系统。这些芯片组制备的细胞培养基可模仿生理反应和行为。作者将实验室芯片仪器的应用作为医疗保健点(PHC)应用的多功能工具,并将目前在各种平台上取得的进展应用于生物芯片 DNA 传感器,作为一般生物电化学传感器的替代品。从根本上说,光学传感与含有荧光生物分子的玻璃表面之间的插层有关,随后,其反射光产生于化学制剂的特性。最近,使用光纤的各种技术取得了重大进展,研究人员重点介绍了这类平台在初级卫生保健应用中的应用和未来前景。研究结果作者通过细胞培养和免疫荧光组装了几种微流体芯片,并使用显微镜测量和图像分析进行 RNA 测序。通过这项工作,我们制作了多个芯片组件,并应用流体路由机制实现了芯片与芯片之间的通信,以及与各种片上组织的通信。通过片上实验室技术,作者展示了通过聚多巴胺和胶原蛋白涂覆细胞膜是最好的细胞膜涂覆方法,因为在分化期间细胞类型可以单层生长和分化。作者发现,与纤维连接蛋白涂膜相比,通过涂覆胶原蛋白-A 的人工膜改善了小鼠荚膜细胞-5 的生长。例如,冯-维勒布兰德因子是一种促进止血的血液糖蛋白,可以通过这种类型涂层的微流控芯片进行鉴定和测量。
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引用次数: 0
A review of surface acoustic wave sensors: mechanisms, stability and future prospects 表面声波传感器综述:机制、稳定性和未来前景
IF 1.6 4区 工程技术 Q3 INSTRUMENTS & INSTRUMENTATION Pub Date : 2024-04-15 DOI: 10.1108/sr-02-2024-0165
Zhaozhao Tang, Wenyan Wu, Po Yang, Jingting Luo, Chen Fu, Jing-Cheng Han, Yang Zhou, Linlin Wang, Yingju Wu, Yuefei Huang

Purpose

Surface acoustic wave (SAW) sensors have attracted great attention worldwide for a variety of applications in measuring physical, chemical and biological parameters. However, stability has been one of the key issues which have limited their effective commercial applications. To fully understand this challenge of operation stability, this paper aims to systematically review mechanisms, stability issues and future challenges of SAW sensors for various applications.

Design/methodology/approach

This review paper starts with different types of SAWs, advantages and disadvantages of different types of SAW sensors and then the stability issues of SAW sensors. Subsequently, recent efforts made by researchers for improving working stability of SAW sensors are reviewed. Finally, it discusses the existing challenges and future prospects of SAW sensors in the rapidly growing Internet of Things-enabled application market.

Findings

A large number of scientific articles related to SAW technologies were found, and a number of opportunities for future researchers were identified. Over the past 20 years, SAW-related research has gained a growing interest of researchers. SAW sensors have attracted more and more researchers worldwide over the years, but the research topics of SAW sensor stability only own an extremely poor percentage in the total researc topics of SAWs or SAW sensors.

Originality/value

Although SAW sensors have been attracting researchers worldwide for decades, researchers mainly focused on the new materials and design strategies for SAW sensors to achieve good sensitivity and selectivity, and little work can be found on the stability issues of SAW sensors, which are so important for SAW sensor industries and one of the key factors to be mature products. Therefore, this paper systematically reviewed the SAW sensors from their fundamental mechanisms to stability issues and indicated their future challenges for various applications.

目的声表面波(SAW)传感器在测量物理、化学和生物参数的各种应用中引起了全世界的极大关注。然而,稳定性一直是限制其有效商业应用的关键问题之一。为了充分了解工作稳定性这一难题,本文旨在系统回顾声表面波传感器在各种应用中的机理、稳定性问题和未来挑战。随后,回顾了研究人员最近为提高声表面波传感器工作稳定性所做的努力。最后,报告讨论了声表面波传感器在快速增长的物联网应用市场中面临的现有挑战和未来前景。 研究结果 发现了大量与声表面波技术相关的科学文章,并为未来的研究人员找到了许多机会。在过去 20 年中,声表面波相关研究获得了越来越多研究人员的关注。原创性/价值虽然声表面波传感器数十年来一直吸引着全世界的研究人员,但研究人员主要关注声表面波传感器的新材料和设计策略,以实现良好的灵敏度和选择性,而对于声表面波传感器行业如此重要且是成熟产品关键因素之一的声表面波传感器稳定性问题却鲜有研究。因此,本文系统地回顾了声表面波传感器从基本机理到稳定性问题的研究,并指出了其未来在各种应用中面临的挑战。
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引用次数: 0
Trends, progress and future directions of nanomaterial based sensors: a bibliometric overview 基于纳米材料的传感器的趋势、进展和未来方向:文献综述
IF 1.6 4区 工程技术 Q3 INSTRUMENTS & INSTRUMENTATION Pub Date : 2024-04-12 DOI: 10.1108/sr-09-2023-0466
Nibu Babu Thomas, Lekshmi P. Kumar, Jiya James, Nibu A. George
<h3>Purpose</h3><p>Nanosensors have a wide range of applications because of their high sensitivity, selectivity and specificity. In the past decade, extensive and pervasive research related to nanosensors has led to significant progress in diverse fields, such as biomedicine, environmental monitoring and industrial process control. This led to better and more efficient detection and monitoring of physical and chemical properties at better resolution, opening new horizons in the development of novel technologies and applications for improved human health, environment protection, enhanced industrial processes, etc.</p><!--/ Abstract__block --><h3>Design/methodology/approach</h3><p>In this paper, the authors discuss the application of citation network analysis in the field of nanosensor research and development. Cluster analysis was carried out using papers published in the field of nanomaterial-based sensor research, and an in-depth analysis was carried out to identify significant clusters. The purpose of this study is to provide researchers to identify a pathway to the emerging areas in the field of nanosensor research. The authors have illustrated the knowledge base, knowledge domain and knowledge progression of nanosensor research using the citation analysis based on 3,636 Science Citation Index papers published during the period 2011 to 2021.</p><!--/ Abstract__block --><h3>Findings</h3><p>Among these papers, the bibliographic study identified 809 significant research publications, 11 clusters, 556 research sector keywords, 1,296 main authors, 139 referenced authors, 63 nations, 206 organizations and 42 journals. The authors have identified single quantum dot (QD)-based nanosensor for biological applications, carbon dot-based nanosensors, self-powered triboelectric nanogenerator-based nanosensor and genetically encoded nanosensor as the significant research hotspots that came to the fore in recent years. The future trend in nanosensor research might focus on the development of efficient and cost-effective designs for the detection of numerous environmental pollutants and biological molecules using mesostructured materials and QDs. It is also possible to optimize the detection methods using theoretical models, and generalized gradient approximation has great scope in sensor development.</p><!--/ Abstract__block --><h3>Research limitations/implications</h3><p>The future trend in nanosensor research might focus on the development of efficient and cost-effective designs for the detection of numerous environmental pollutants and biological molecules using mesostructured materials and QDs. It is also possible to optimize the detection methods using theoretical models, and generalized gradient approximation has great scope in sensor development.</p><!--/ Abstract__block --><h3>Originality/value</h3><p>This is a novel bibliometric analysis in the area of “nanomaterial based sensor,” which is carried out in CiteSpace software.</p><!--/ Abstract
目的 纳米传感器因其高灵敏度、高选择性和高特异性而具有广泛的应用。在过去的十年中,与纳米传感器有关的广泛而深入的研究在生物医学、环境监测和工业过程控制等多个领域取得了重大进展。这使得人们能够以更高的分辨率更好、更高效地检测和监测物理和化学特性,为开发新技术和应用以改善人类健康、保护环境、增强工业流程等开辟了新天地。利用基于纳米材料的传感器研究领域发表的论文进行了聚类分析,并通过深入分析确定了重要的聚类。本研究的目的是为研究人员提供一条通往纳米传感器研究领域新兴领域的途径。在这些论文中,书目研究发现了 809 篇重要研究出版物、11 个集群、556 个研究领域关键词、1,296 位主要作者、139 位被引用作者、63 个国家、206 个组织和 42 种期刊。作者认为,基于单量子点(QD)的生物应用纳米传感器、基于碳点的纳米传感器、基于自供电三电纳米发电机的纳米传感器和基因编码纳米传感器是近年来崭露头角的重要研究热点。纳米传感器研究的未来趋势可能是利用介质结构材料和 QDs 开发高效、经济的设计,用于检测多种环境污染物和生物分子。利用理论模型优化检测方法也是可行的,广义梯度近似在传感器开发中具有很大的应用空间。研究局限/影响纳米传感器研究的未来趋势可能集中在利用介质结构材料和 QDs 开发高效、经济的设计,以检测多种环境污染物和生物分子。利用理论模型优化检测方法也是可行的,广义梯度近似在传感器开发中具有很大的应用空间。原创性/价值这是 "基于纳米材料的传感器 "领域的一项新颖的文献计量分析,该分析是在 CiteSpace 软件中进行的。
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引用次数: 0
The semi-analytical model of capacitive imaging (CI) sensors based on the renormalization group method 基于重正化群法的电容成像(CI)传感器半分析模型
IF 1.6 4区 工程技术 Q3 INSTRUMENTS & INSTRUMENTATION Pub Date : 2024-04-12 DOI: 10.1108/sr-01-2024-0070
Zhen Li, Jianqing Han, Mingrui Zhao, Yongbo Zhang, Yanzhe Wang, Cong Zhang, Lin Chang

Purpose

This study aims to design and validate a theoretical model for capacitive imaging (CI) sensors that incorporates the interelectrode shielding and surrounding shielding electrodes. Through experimental verification, the effectiveness of the theoretical model in evaluating CI sensors equipped with shielding electrodes has been demonstrated.

Design/methodology/approach

The study begins by incorporating the interelectrode shielding and surrounding shielding electrodes of CI sensors into the theoretical model. A method for deriving the semianalytical model is proposed, using the renormalization group method and physical model. Based on random geometric parameters of CI sensors, capacitance values are calculated using both simulation models and theoretical models. Three different types of CI sensors with varying geometric parameters are designed and manufactured for experimental testing.

Findings

The study’s results indicate that the errors of the semianalytical model for the CI sensor are predominantly below 5%, with all errors falling below 10%. This suggests that the semianalytical model, derived using the renormalization group method, effectively evaluates CI sensors equipped with shielding electrodes. The experimental results demonstrate the efficacy of the theoretical model in accurately predicting the capacitance values of the CI sensors.

Originality/value

The theoretical model of CI sensors is described by incorporating the interelectrode shielding and surrounding shielding electrodes into the model. This comprehensive approach allows for a more accurate evaluation of the detecting capability of CI sensors, as well as optimization of their performance.

目的 本研究旨在设计和验证电容式成像(CI)传感器的理论模型,该模型包含电极内屏蔽和周围屏蔽电极。通过实验验证,证明了该理论模型在评估配备屏蔽电极的 CI 传感器方面的有效性。利用重正化群方法和物理模型,提出了推导半解析模型的方法。根据 CI 传感器的随机几何参数,利用模拟模型和理论模型计算出电容值。研究结果表明,CI 传感器半解析模型的误差主要低于 5%,所有误差均低于 10%。这表明,使用重正化群法得出的半解析模型能有效评估配备屏蔽电极的 CI 传感器。实验结果证明了理论模型在准确预测 CI 传感器电容值方面的有效性。原创性/价值通过将电极间屏蔽和周围屏蔽电极纳入模型,对 CI 传感器的理论模型进行了描述。这种综合方法可以更准确地评估 CI 传感器的探测能力,并优化其性能。
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引用次数: 0
期刊
Sensor Review
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