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A highly sensitive ratiometric near-infrared nanosensor based on erbium-hyperdoped silicon quantum dots for iron(Ⅲ) detection
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作者 Kun Wang Wenxuan Lai +2 位作者 Zhenyi Ni Deren Yang Xiaodong Pi 《Journal of Semiconductors》 EI CAS CSCD 2024年第8期49-58,共10页
Ratiometric fluorescent detection of iron(Ⅲ)(Fe^(3+))offers inherent self-calibration and contactless analytic capabilities.However,realizing a dual-emission near-infrared(NIR)nanosensor with a low limit of detection... Ratiometric fluorescent detection of iron(Ⅲ)(Fe^(3+))offers inherent self-calibration and contactless analytic capabilities.However,realizing a dual-emission near-infrared(NIR)nanosensor with a low limit of detection(LOD)is rather challenging.In this work,we report the synthesis of water-dispersible erbium-hyperdoped silicon quantum dots(Si QDs:Er),which emit NIR light at the wavelengths of 810 and 1540 nm.A dual-emission NIR nanosensor based on water-dispersible Si QDs:Er enables ratiometric Fe^(3+)detection with a very low LOD(0.06μM).The effects of pH,recyclability,and the interplay between static and dynamic quenching mechanisms for Fe^(3+)detection have been systematically studied.In addition,we demonstrate that the nanosensor may be used to construct a sequential logic circuit with memory functions. 展开更多
关键词 erbium-hyperdoped silicon quantum dots dual-emission near-infrared nanosensor Fe^(3+)detection sequential logic circuit
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Remote Tracking Gas Molecular via the Standalone-Like Nanosensor-Based Tele-Monitoring System 被引量:3
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作者 Han Jin Junkan Yu +13 位作者 Daxiang Cui Shan Gao Hao Yang Xiaowei Zhang Changzhou Hua Shengsheng Cui Cuili Xue Yuna Zhang Yuan Zhou Bin Liu Wenfeng Shen Shengwei Deng Wanlung Kam Waifung Cheung 《Nano-Micro Letters》 SCIE EI CAS CSCD 2021年第2期207-220,共14页
Remote tracking the variation of air quality in an effective way will be highly helpful to decrease the health risk of human short-and long-term exposures to air pollution.However,high power consumption and poor sensi... Remote tracking the variation of air quality in an effective way will be highly helpful to decrease the health risk of human short-and long-term exposures to air pollution.However,high power consumption and poor sensing performance remain the concerned issues,thereby limiting the scale-up in deploying air quality tracking networks.Herein,we report a standalone-like smart device that can remotely track the variation of air pollutants in a power-saving way.Brevity,the created smart device demonstrated satisfactory selectivity(against six kinds of representative exhaust gases or air pollutants),desirable response magnitude(164–100 ppm),and acceptable response/recovery rate(52.0/50.5 s),as well as linear response relationship to NO2.After aging for 2 weeks,the created device exhibited relatively stable sensing performance more than 3 months.Moreover,a photoluminescence-enhanced light fidelity(Li-Fi)telecommunication technique is proposed and the Li-Fi communication distance is significantly extended.Conclusively,our reported standalone-like smart device would sever as a powerful sensing platform to construct high-performance and low-power consumption air quality wireless sensor networks and to prevent air pollutant-induced diseases via a more effective and low-cost approach. 展开更多
关键词 Metal-organic framework-derived polyhedral ZnO Perovskite quantum dots nanosensor NO2 Tele-monitoring system
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IFE based nanosensor composed of UCNPs and Fe(Ⅱ)-phenanthroline for detection of hypochlorous acid and periodic acid 被引量:2
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作者 Haining Song Haifeng Zhou +6 位作者 Qianqian Zhuang Zexin Li Fenglei Sun Zhenlei Yuan Youxin Lou Guangjun Zhou Yujun Zhao 《Journal of Rare Earths》 SCIE EI CAS CSCD 2023年第2期200-207,共8页
Oxidizing CIO^(-)and IO_(4)^(-)exist widely in environment and are closely related to the health of organisms.Accordingly,fast,sensitive,and direct detection of the two species is significant.Using IFE in UCNPs@PAA an... Oxidizing CIO^(-)and IO_(4)^(-)exist widely in environment and are closely related to the health of organisms.Accordingly,fast,sensitive,and direct detection of the two species is significant.Using IFE in UCNPs@PAA and Fe(Ⅱ)-phenanthroline system,an elegant ratiometric fluorescent nanosensor,without noble metal nanoparticle,was designed for the detection of CIO-and IO4-.Fe(Ⅱ)-phenanthroline complex is used as fluorescent absorber,which can quench green light of UCNPs with gradually varied extent depending on the concentration of Fe(Ⅱ).The linear zone extends to 800 and 120μmol/L while the detection limit is 1.30 and 0.58μmol/L for NaCIO and NaIO_(4),respectively.Finally,the nanosensor was successfully applied to detect NaCIO and NaIO4spiked in milk,spring water,and tap water with good recoveries. 展开更多
关键词 HYPOCHLORITE PERIODATE nanosensor Upconversion nanoparticles Inner filter effect Rare earths
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Stable oligonucleotide-functionalized gold nanosensors for environmental biocontaminant monitoring 被引量:2
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作者 Maria V.Riquelme Weinan Leng +2 位作者 Marcos Carzolio Amy Pruden Peter Vikesland 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2017年第12期49-59,共11页
The global propagation of environmental biocontaminants such as antibiotic resistant pathogens and their antibiotic resistance genes(ARGs) is a public health concern that highlights the need for improved monitoring ... The global propagation of environmental biocontaminants such as antibiotic resistant pathogens and their antibiotic resistance genes(ARGs) is a public health concern that highlights the need for improved monitoring strategies. Here, we demonstrate the environmental stability and applicability of an oligonucleotide-functionalized gold nanosensor. The mec A ARG was targeted as model biocontaminant due to its presence in clinically-relevant pathogens and to its emergence as an environmental contaminant.mec A-specific nanosensors were tested for antibiotic resistance gene(ARG) detection in ARG-spiked effluent from four wastewater treatment plants(WWTPs). The mec A-specific nanosensors showed stability in environmental conditions and in high ionic strength([MgCl_2] 〈 50 m M), and high selectivity against mismatched targets. Spectrophotometric detection was reproducible with an LOD of 70 pM(≈ 4 × 10~7 genes/μL), even in the presence of interferences associated with non-target genomic DNA and complex WWTP effluent. This contribution supports the environmental applicability of a new line of cost-effective, field-deployable tools needed for wide-scale biocontaminant monitoring. 展开更多
关键词 Stable oligonucleotide-functionalized gold nanosensors for environmental biocontaminant monitoring LOD DNA
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Protein-mimicking nanoparticle(Protmin)-based nanosensor for intracellular analysis of metal ions
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作者 Dan Zhu Dong-Xia Zhao +4 位作者 Jia-Xuan Huang Jiang Li Xiao-Lei Zuo Li-Hua Wang Chun-Hai Fan 《Nuclear Science and Techniques》 SCIE CAS CSCD 2018年第1期82-89,共8页
In this study, we designed and applied proteinmimicking nanoparticles(Protmin) as an intracellular nanosensor for in vivo detection of lead ions(Pb^(2+)).Monodispersed gold nanoparticles(Au NPs) of 13 nm in diameter w... In this study, we designed and applied proteinmimicking nanoparticles(Protmin) as an intracellular nanosensor for in vivo detection of lead ions(Pb^(2+)).Monodispersed gold nanoparticles(Au NPs) of 13 nm in diameter were modified using poly-adenine-tailed Pb^(2+)-specific 8–17 DNAzyme to form a spherical and functional Protmin. Substrate strands modified with a fluorophore at the 50 end and a quencher at the 30 end were bound to DNAzyme. Pb^(2+) facilitated cleavage of DNAzyme to release the fluorophore-modified short strands to generate fluorescence. We observed rapid kinetics of the Protmin nanosensor, for which the typical assay time was 10 min.Further, we demonstrated the Protmin nanosensor could readily enter living cells and respond to Pb^(2+) in the intracellular environment. The broad of range of Protmindesigns will be useful for advancing biological and medical applications. 展开更多
关键词 Protmin nanosensor Poly-adenine LEAD ion INTRACELLULAR detection
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Enhancing UV photosensitivity of a ZnO UV nanosensor using electrical stimulation at megahertz frequency
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作者 李德钊 朱荣 《Chinese Physics B》 SCIE EI CAS CSCD 2013年第1期542-546,共5页
We report a novel technique to enhance the ultraviolet (UV) photosensitivity of a ZnO nanosensor with ZnO nanowires bridged on micromachined metallic electrodes. The experimental results reveal that the photoconduct... We report a novel technique to enhance the ultraviolet (UV) photosensitivity of a ZnO nanosensor with ZnO nanowires bridged on micromachined metallic electrodes. The experimental results reveal that the photoconductivity and the time response of the ZnO nanowire sensor with either Schottky or Ohmic contacts are significantly improved by electrifying the nanowire sensors using an alternating current at the frequency of megahertz. An integrated UV sensor incorporating ZnO nanowires with a constant current mode driving circuit is developed, which demonstrates promising sensitivity and time response to UV illumination with a low power consumption. 展开更多
关键词 UV nanosensor PHOTOSENSITIVITY ZnO nanowires electrical stimulation
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Nitric Oxide/Peroxynitrite Redox Imbalance in Endothelial Cells Measured with Amperometric Nanosensors
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作者 Andrzej Burewicz Hazem Dawoud +1 位作者 Lu-Lin Jiang Tadeusz Malinski 《American Journal of Analytical Chemistry》 2013年第10期30-36,共7页
The cytoprotective messenger nitric oxide (NO) and cytotoxic peroxynitrite (ONOO-) are the main components of oxidative stress and can be generated by endothelial cells. A tandem of electrochemical nanosensors (diamet... The cytoprotective messenger nitric oxide (NO) and cytotoxic peroxynitrite (ONOO-) are the main components of oxidative stress and can be generated by endothelial cells. A tandem of electrochemical nanosensors (diameter 200-300 nm) were used to measure, in situ, the balance between NO and ONOO-produced by human umbilical vein endothelial cells (HUVEC’s). The amperometric nanosensors were placed 5 ± 2 μm from the surface of the endothelial cells and the concentration of NO and ONOO- was measured at 630 mV and -300 mV (vs Ag/AgCl) respectively. Normal, functional, endothelial cells produced maximal 450 ± 25 nmol.L-1 of NO and 180 ± 15 nmol.L-1 of ONOO- in about 3 s, after stimulation with calcium ionophore. The in situ measurements of NO and ONOO- were validated using nitric oxide synthase inhibitor L-NMMA, ONOO- scavenger Mn(III) porphyrin, and superoxide dismutase (PEG-SOD). The ratio of NO concentration to ONOO- concentration ([NO]/[ONOO-]) was introduced for quantification of both, the redox balance and the level of the nitroxidative stress in the endothelium. [NO]/[ONOO-] was 2.7 ± 0.1 in a functional endothelium. The model of the dysfunctional endothelium was made by the treatment of HUVEC’s with angiotensin II for 20 min. Dysfunctional HUVEC’s produced only 115 ± 15 nmol.L-1 of NO, but generated a significantly higher concentration of ONOO- of 490 ± 30 nmol.L-1. The [NO]/[ONOO-] ratio decreased to 0.23 ± 0.14 in the dysfunctional endothelium. Electrochemical nanosensors can be effectively used for in situ monitoring of changing levels of nitroxidative/ oxidative stress, and may be useful in early medical diagnosis of the cardiovascular system. 展开更多
关键词 nanosensors NITRIC Oxide PEROXYNITRITE ENDOTHELIUM Oxidative Stress
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New Silver Nanosensor for Nickel Traces. Part II: Urinary Nickel Determination Associated to Smoking Addiction
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作者 Maria Carolina Talio Marta O. Luconi Liliana P. Femaindez 《Journal of Life Sciences》 2012年第1期36-40,共5页
A new fluorescence silver nanosensor assisted by surfactant has been recently synthesized and applied to ultra trace nickel determination. The methodology was validated by the standard addition method and satisfactori... A new fluorescence silver nanosensor assisted by surfactant has been recently synthesized and applied to ultra trace nickel determination. The methodology was validated by the standard addition method and satisfactorily applied to nickel determination in urine without previous treatment, coming from subjects with different smoking addiction levels and second hand smokers. Within-day precision was better than 0.011 CV. The reproducibility (between-days precision) was also evaluated over 3 days by performing six determinations each day with a CV of 0.025. The proposed methodology represents a promising approach in the area of biological monitoring due to its low operation cost, simplicity of instrumentation, high sampling speed and non-polluting solvents. Obtained results of urinary nickel concentration were successfully correlated with the tobacco addiction. 展开更多
关键词 Fluorescence nanosensor micellar silver nanoparticles urinary nickel smoker and non-smoker subjects second handsmoke exposure.
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New Silver Nanosensor for Nickel Traces: Synthesis, Characterization and Analytical Parameters
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作者 Maria Carolina Talio Marta O. Luconi Liliana P. Femandez 《Journal of Life Sciences》 2011年第12期1072-1077,共6页
A new fluorescence silver nanosensor assisted by surfactant has been synthesized and applied to ultra trace nickel determination. Operational variables which influence nanomaterial synthesis have been studied and opti... A new fluorescence silver nanosensor assisted by surfactant has been synthesized and applied to ultra trace nickel determination. Operational variables which influence nanomaterial synthesis have been studied and optimized. Synthesis was very fast and simple using non polluting solvents; silver chemical reduction was carried out at room temperature. Spectroscopic studies were carried out in order to assure the uniformed of nanomaterial obtained. Fluorescent signal of silver nanoparticles resulted enhanced in presence of Ni(II). At optimal experimental conditions, a detection limit of 0.036 pg'L1 and quantification limit 0.12 pg'L~ were obtained. The calibration sensitivity was 2 x 1014 L.pg-l.cm1 for the new methodology, with a range of linearity of six orders of magnitude between 0.12 and 2.93 × 10^5 pg L^-1. The tolerance levels for potential interferent ions were studied with good results. The proposed methodology represents a promising approach for Ni(II) traces quantification due to its low operation cost, simplicity of instrumentation, high sampling speed and non-polluting solvents. 展开更多
关键词 Fluorescence nanosensor micellar silver nanoparticles nickel traces
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A facile method to build a proton nanosensor with neutral to basic pH sensitive range
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作者 钟睿博 刘雨双 +2 位作者 张萍 赵国芬 张峰 《Nuclear Science and Techniques》 SCIE CAS CSCD 2014年第4期62-66,共5页
Bio-nanosensors(Bio-NSs)have attracted much attention recently due to their unique properties.Among all of the bio-NSs,the intracellular proton sensor is significant for biomedicine studies and clinic diagnosis.Proton... Bio-nanosensors(Bio-NSs)have attracted much attention recently due to their unique properties.Among all of the bio-NSs,the intracellular proton sensor is significant for biomedicine studies and clinic diagnosis.Proton nanosensors(PNSs)with different pH sensitive ranges could satisfy different research requirements.Here we report a facile method to build a PNS with a neutral to basic pH sensitive range,in which the commercial pH indicator,fluoresceinamine(FA),was covalently coupled to the carboxylic-rich amphiphilic polymer(AP)coated gold nanoparticles(AuNPs). 展开更多
关键词 纳米传感器 PH敏感 质子 碱性 中性 简便 生物医学 pH指示剂
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Machine learning-assisted multichannel nanosensor based on core-shell carbon dot/gold nanoparticle composites for rapid and precise intraoperative oral cancer malignancy diagnosis
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作者 Yuquan Xiao Boru Peng +6 位作者 Xiaohua Zhu Ying Long Feng Liu Meiling Liu Haitao Li Youyu Zhang Shouzhuo Yao 《Science China Chemistry》 2025年第10期5273-5283,共11页
Rapid and accurate diagnosis of oral cancer aggressiveness is associated with preoperative guidance and postoperative treatment.However,traditional diagnostic methods are time-consuming and easily misdiagnosed,which m... Rapid and accurate diagnosis of oral cancer aggressiveness is associated with preoperative guidance and postoperative treatment.However,traditional diagnostic methods are time-consuming and easily misdiagnosed,which makes it challenging to achieve high-precision classification.Herein,we introduce a recognition engineering-mediated multichannel nanosensor for the analysis of tumor metabolites,allowing for sensitive and rapid in vitro and intraoperative cancer malignancy discrimination.This nanosensor system utilizes engineered carbon dots(CDs)with various ratios of amino and carboxyl functional groups,assembled as a“shell”on gold nanoparticles(AuNPs).The multichannel nanosensor displayed distinct fingerprint patterns for fourteen tumor metabolites such as amino acids,nucleic acids,and other metabolites.It offers rapid“turn-on”fluorescence-encoded profiling,generating unique signatures for cancer malignancy within 15 min.The nanosensor demonstrated 100%accuracy in identifying the oral squamous cell carcinoma(OSCC)subtype and assessing malignancy levels.It will provide detailed pathology for the identification of clinical cancer tissue samples,including cancer cell subtype and differentiation grade.Together,our study highlights the potential of the fluorescent-encoded multichannel nanosensor as a powerful in vitro and intraoperative diagnostic tool for cancer malignancy and treatment guidance in advanced clinical oncology. 展开更多
关键词 cancer malignancy tumor metabolites multichannel nanosensor carbon dots pattern recognition
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Aggregation-based analytical chemistry in point-of-care nanosensors
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作者 Yuechun Li Zhaowen Cui +4 位作者 Lunjie Huang Daohong Zhang Yizhong Shen Jie Cheng Jianlong Wang 《Aggregate》 EI CAS 2024年第5期23-85,共63页
It is crucial to realize the point-of-care(POC)testing of harmful analytes,capa-ble of saving limited agricultural resources,assisting environmental remediation,ensuring food safety,and enabling early disease diagnosi... It is crucial to realize the point-of-care(POC)testing of harmful analytes,capa-ble of saving limited agricultural resources,assisting environmental remediation,ensuring food safety,and enabling early disease diagnosis.Compared with other conventional POC sensing strategies,aggregation-based analytical chemistry facil-itates the practical-oriented development of POC nanosensors by altering the aggregation status of nanoprobes through the action of multiple aggregation-induced“forces”originating from the targets.Herein,we have proceeded with a comprehensive review focusing on the aggregation-based analytical chemistry in POC nanosensors,covering aggregation-induced“forces”,aggregation-induced signal transductions,aggregation-induced POC nanosensing strategies,and their applications in biomolecular monitoring,food safety analysis,and environmental monitoring.Finally,challenges existing in practical applications have been fur-ther proposed to improve their sensing applications,and we expect our review can speed up the development of cost-effective,readily deployable,and time-efficient nanosensors through aggregation-based analytical chemistry. 展开更多
关键词 aggregation-based analytical chemistry biomolecular monitoring environmental monitoring food safety analysis point-of-care nanosensors
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纳米传感器在智慧种植中的应用:进展、挑战与展望
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作者 李灯华 张富铖 +1 位作者 李干琼 许世卫 《农业工程学报》 北大核心 2025年第19期1-18,共18页
智慧种植作为智慧农业的核心领域,对高精度、实时监测的需求日益迫切。微纳米传感技术凭借其高特异性、高精度和快速响应能力,为智慧种植信息获取提供了新的先进技术支撑。该文聚焦智慧种植应用场景,系统介绍了纳米传感器中应用的各类... 智慧种植作为智慧农业的核心领域,对高精度、实时监测的需求日益迫切。微纳米传感技术凭借其高特异性、高精度和快速响应能力,为智慧种植信息获取提供了新的先进技术支撑。该文聚焦智慧种植应用场景,系统介绍了纳米传感器中应用的各类先进材料,包括碳纳米材料、金属氧化物半导体纳米材料、量子点以及生物纳米材料等,比较了各种材料的优点;阐述了电化学传感、荧光共振能量转移以及表面增强拉曼散射等各类关键技术的传感原理、工作机制和特点;同时,重点探讨了纳米传感器在土壤质量监测、作物养分监测、作物激素监测、病虫害监测等智慧种植关键领域中的最新应用进展和技术前沿;最后,针对纳米传感器实际应用中面临的稳定性和鲁棒性等挑战,提出提高传感器的选择性和稳定性、开发多模态阵列式传感器系统、促进人工智能技术与纳米传感器深度融合、强化纳米传感器与农业设备互联互通等发展方向和解决方案,以期为推动智慧农业纳米传感器发展提供有益参考。 展开更多
关键词 传感器 智慧种植 纳米传感器 纳米技术 智慧农业 智能监测
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基于碳纳米传感器的复合材料双螺栓连接结构损伤监测研究
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作者 张璐 胡立晟 +2 位作者 李星亮 解云琪 卢少微 《航空科学技术》 2025年第6期33-39,共7页
随着航空技术的不断发展,复合材料结构已广泛应用于各种复杂的工作环境及承力部位。然而,复合材料在螺栓连接过程中容易引发初始损伤,如基体开裂、纤维断裂和分层等,导致结构承载效率下降,并增加失效风险。因此,对螺栓连接结构在服役期... 随着航空技术的不断发展,复合材料结构已广泛应用于各种复杂的工作环境及承力部位。然而,复合材料在螺栓连接过程中容易引发初始损伤,如基体开裂、纤维断裂和分层等,导致结构承载效率下降,并增加失效风险。因此,对螺栓连接结构在服役期间的损伤进行实时监测变得尤为重要。传统的无损检测方法受环境和设备限制,难以对结构损伤进行实时监测。本文基于碳纳米传感器对双螺栓连接结构的损伤过程进行了研究,通过温度监测试验、疲劳监测试验和双螺栓结构的应变监测试验分析了碳纳米传感器在温度变化和疲劳载荷下电阻变化率的响应规律。研究结果表明,该传感器在温度和损伤监测中具有较好的有效性,为复合材料结构的健康监测提供了新的研究思路和方法。 展开更多
关键词 碳纳米传感器 结构健康检测 双螺栓结构 复合材料 无损检测
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Use of nanotechnology for safe agriculture and food production:Challenges and limitations
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作者 Andrés RODRÍGUEZ-SEIJO Vanesa SANTÁS-MIGUEL +2 位作者 Daniel ARENAS-LAGO Manuel ARIAS-ESTÉVEZ Paula PÉREZ-RODRÍGUEZ 《Pedosphere》 2025年第1期20-32,共13页
Nanotechnology offers promising perspectives for revolutionizing agriculture by enhancing productivity and sustainability.Although the global agricultural nanotechnology market was valued at US$352.4 billion in 2023 a... Nanotechnology offers promising perspectives for revolutionizing agriculture by enhancing productivity and sustainability.Although the global agricultural nanotechnology market was valued at US$352.4 billion in 2023 and is estimated to reach US$868.9 billion by 2031,concerns about adverse environmental effects persist.This review summarizes the latest developments and perspectives of nanotechnology applied to agriculture,highlighting both advancements and potential impacts on soil ecosystems.However,concerns regarding regulatory measures,economic viability,and scalability hinder its widespread adoption.Collaboration among stakeholders is crucial to establishing effective frameworks for the safe and responsible application of nanotechnology in agriculture.Despite these concerns,nanotechnology holds great promise for addressing emerging challenges in agriculture and advancing toward more sustainable and efficient practices. 展开更多
关键词 food security nanoagrochemical nanofertilizer nanopesticide nanosensor smart agriculture sustainable yield
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姜黄素纳米传感器在食品快速检测中的应用 被引量:1
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作者 贾穆 高雪 +2 位作者 张红梅 刘璐 励建荣 《中国食品学报》 北大核心 2025年第2期463-478,共16页
食品安全长期以来面临农、兽药残留,食品添加剂滥用及重金属、致病菌和毒素污染等问题。针对污染物对食品的危害,建立快速、灵敏的检测方法,对确保食品安全具有重要意义。姜黄素为一种荧光团,具有良好的荧光特性,其作为一种天然色素,有... 食品安全长期以来面临农、兽药残留,食品添加剂滥用及重金属、致病菌和毒素污染等问题。针对污染物对食品的危害,建立快速、灵敏的检测方法,对确保食品安全具有重要意义。姜黄素为一种荧光团,具有良好的荧光特性,其作为一种天然色素,有较宽的吸收峰。独特的酮-烯醇互变异构体结构使姜黄素在酸碱溶液中易发生颜色变化,β-二酮结构和金属离子可螯合配位。姜黄素还有导电性能,可产生电化学信号。纳米传感器具有尺寸小,比表面积大,质量轻,消耗低和光学性质明显等特点。基于姜黄素的纳米传感器在食品检测中具有检测速度快、灵敏度高、成本低和操作简单等优点。结合以上优势,姜黄素是一种检测食品中有毒、有害物质的理想候选材料。基于姜黄素独特的结构和特性,本文论述姜黄素的光学和电化学纳米传感器在食品快速检测中的应用,介绍其优异的检测性能。同时,指出该传感器检测方法的局限性及未来的发展方向,为食品分析检测提供参考。 展开更多
关键词 姜黄素 纳米传感器 快速检测 食品安全
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Research of the relationship of intracellular acidification and apoptosis in Hela cells based on pH nanosensors 被引量:2
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作者 HE XiaoXiao WANG Yan +3 位作者 WANG KeMin PENG JiaoFeng LIU Fang TAN WeiHong 《Science China Chemistry》 SCIE EI CAS 2007年第2期258-265,共8页
In this paper,the relationship of intracellular acidification and apoptosis in Hela cells induced by vin-cristine sulfate has been studied by use of the ratiometric pH nanosensors that have been developed by our group... In this paper,the relationship of intracellular acidification and apoptosis in Hela cells induced by vin-cristine sulfate has been studied by use of the ratiometric pH nanosensors that have been developed by our group,employing fluorescein isothiocyanate(FITC) doped as the pH-sensitive dye and Tris(2,2'-bipyidyl) dichlororuthenium(II) hexahydrate(RuBpy) doped as reference dye. The pH change of the Hela cells induced by vincristine sulfate has been monitored in vivo,in situ and real time by use of the ratiometric pH nanosensors. The experimental results show that the pH of the apoptotic Hela cells induced by vincristine sulfate has been acidified from 7.11 to 6.51,and the percentage of intra-cellular acidification is correlated with the induced concentration and incubation time of the vincristine sulfate. The further study of the percentage of intracellular acidification and the percentage of apop-tosis of Hela cells at the same time reveals that apoptosis of Hela cells induced by vincristine sulfate is preceded by intracellular acidification. These results would provide theoretical foundation for the therapy of cancer through interfering the pH of cells by use of vincristine sulfate or other anti-cancer drugs. 展开更多
关键词 RATIOMETRIC PH nanosensors VINCRISTINE sulfate Hela CELLS intracellular ACIDIFICATION APOPTOSIS of CELLS
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Silicene nanoribbons as carbon monoxide nanosensors with molecular resolution 被引量:3
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作者 Tim H. Osborn Amir A. Farajian 《Nano Research》 SCIE EI CAS CSCD 2014年第7期945-952,共8页
Applications based on silicene as grown on substrates are of high interest toward actual utilization of this unique material. Here we explore, from first principles, the nature of carbon monoxide adsorption on semicon... Applications based on silicene as grown on substrates are of high interest toward actual utilization of this unique material. Here we explore, from first principles, the nature of carbon monoxide adsorption on semiconducting silicene nanoribbons and the resulting quantum conduction modulation with and without silver contacts for sensing applications. We find that quantum conduction is detectably modified by weak chemisorption of a single CO molecule on a pristine silicene nanoribbon. This modification can be attributed to the charge transfer from CO to the silicene nanoribbon and the deformation induced by the CO chemisorption. Moderate binding energies provide an optimal mix of high detectability and recoverability. With Ag contacts attached to a -1 nm silicene nanoribbon, the interface states mask the conductance modulations caused by CO adsorption, emphasizing length effects for sensor applications. The effects of atmospheric gases--nitrogen, oxygen, carbon dioxide, and water--as well as CO adsorption density and edge-dangling bond defects, on sensor functionality are also investigated. Our results reveal pristine silicene nanoribbons as a promising new sensing material with single molecule resolution. 展开更多
关键词 SILICENE silicon nanoribbon nanosensor carbon monoxide quantum transport CONTACTS ab initio simulations
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Label-free colorimetric nanosensor with improved sensitivity for Pb^2+ in water by using a truncated 8-17 DNAzyme 被引量:2
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作者 Abdul Ghaffar Memon Xiaohong Zhou +4 位作者 Yunpeng Xing Ruoyu Wang Lanhua Liu Mohsin Khan Miao He 《Frontiers of Environmental Science & Engineering》 SCIE EI CAS CSCD 2019年第1期129-134,共6页
Water pollution accidents, such as the Flint water crisis in the United States, caused by lead contamination have raised concern on the safety of drinking water distribution systems. Thus, the routine monitoring of le... Water pollution accidents, such as the Flint water crisis in the United States, caused by lead contamination have raised concern on the safety of drinking water distribution systems. Thus, the routine monitoring of lead in water is highly required and demands efficient, sensitive, cost-effective, and reliable lead detection methods. This study reports a label-free colorimetric nanosensor that uses unmodified gold nanoparticles (AuNPs) as indicators to enable rapid and ultra-sensitive detection of lead in environmental water. The 8-17 DNAzyme was truncated in this study to facilitate the detachment of single-stranded DNA fragments after substrate cleavage in the presence of Pb「. The detached fragments were adsorbed over AuNPs and protected against salt concentration-induced aggregation. Accordingly, high Pb^2+ would result in rapid color change from blue to pink. The established sensing principle achieved a sensitive limit of detection of 0.2×10^-9mol/L Pb^2+. with a linear working range of two orders of magnitude from 0.5×10^-9mol/L to 5×10^-9mol/L. The selectivity of the nanosensor was demonstrated by evaluating the interfering metal ions. The developed nanosensor can serve as a substitute for the rapid analysis and monitoring of trace lead levels under the drinking water distribution system and even other environmental water samples. 展开更多
关键词 COLORIMETRIC nanosensor TRUNCATED 8-17 DNAZYME PB^2+ detection Unmodified AuNPs
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Surface-enhanced Raman scattering nanosensors for in vivo detection of nucleic acid targets in a large animal model 被引量:1
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作者 Hsin-Neng Wang Janna K. Register +6 位作者 Andrew M. Fales Naveen Gandra Eugenia H. Cho Alina Boico Gregory M. Palmer Bruce Klitzman Tuan Vo-Dinh 《Nano Research》 SCIE EI CAS CSCD 2018年第8期4005-4016,共12页
Although nanotechnology has led to important advances in in vitro diagnostics, the development of nanosensors for in vivo detection remains very challenging. Here, we demonstrated the proof-of-principle of in vivo det... Although nanotechnology has led to important advances in in vitro diagnostics, the development of nanosensors for in vivo detection remains very challenging. Here, we demonstrated the proof-of-principle of in vivo detection of nudeic acid targets using a promising type of surface-enhanced Raman scattering (SERS) nanosensor implanted in the skin of a large animal model (pig). The in vivo nanosensor used in this study involves the "inverse molecular sentinel" detection scheme using plasmonics-active nanostars, which have tunable absorption bands in the near infrared region of the "tissue optical window", rendering them efficient as an optical sensing platform for in vivo optical detection. Ex vivo measurements were also performed using human skin grafts to demonstrate the detection of SERS nanosensors through tissue. In this stud, a new core--shell nanorattle probe with Raman reporters trapped between the core and shell was utilized as an internal standard system for self-calibration. These results illustrate the usefulness and translational potential of the SERS nanosensor for in vivo biosensing. 展开更多
关键词 nanosensor NANOPROBES PLASMONICS nanostar surface-enhanced Ramanscattering (SERS) in vivo sensing
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