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Fabrication of Sub-20nm Metal Nanogaps from Nanoconnections by the Extended Proximity Effect
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作者 孙艳 陈鑫 戴宁 《Journal of Semiconductors》 EI CAS CSCD 北大核心 2008年第9期1666-1669,共4页
We describe the fabrication of metal nanogaps of sub-20nm in feature size using the proximity effect in electron beam lithography (EBL). The proximity effect is extended to develop a flexible and practical method fo... We describe the fabrication of metal nanogaps of sub-20nm in feature size using the proximity effect in electron beam lithography (EBL). The proximity effect is extended to develop a flexible and practical method for preparing metal (e. g. Au or Ag) nanogaps and arrays in combination with a transfer process (e. g., deposition/lift-off). Different from the direct gap-writing process,the nanogap precursor structures (nanoconnections) were designed by GDSII software and then written by electron beam. Following a deposition and lift-off process, the metal nanogaps were obtained and the nanogap size can be lowered to -10nm by controlling the exposure dose in EBL. 展开更多
关键词 metal nanogap nanofabrication proximity effect electron beam lithography
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Fabricating Nanogaps between Nanoelectrodes using Dielectrophoresis Technique for Molecular Fluorescence Enhancement
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作者 蔡洪冰 林珂 +4 位作者 朱三娥 廖源 张杨 王晓平 董振超 《Chinese Journal of Chemical Physics》 SCIE CAS CSCD 2016年第3期279-283,I0001,共6页
Here we demonstrate the fabrication of nanometer-sized gaps by assembling single coreshell nanoparticles between metallic nanoelectrodes. Protein coated SiO2@Au coreshell nanopar- tides arc synthesized and positioned ... Here we demonstrate the fabrication of nanometer-sized gaps by assembling single coreshell nanoparticles between metallic nanoelectrodes. Protein coated SiO2@Au coreshell nanopar- tides arc synthesized and positioned between fluorescent molecules-covered electrodes in a controllable way using dielectrophoretic trapping, forming nanogaps sandwiched between nanoparticle and manoelectrodes. Preliminary photoluminescence measurements show that enhanced molecular fluorescence could be detected from the fluorescent molecules inside the nanogaps. These results pave the way for realizing electrically driven molecular fluorescence based on nanogap electrodes. 展开更多
关键词 NANOGAP NANOELECTRODE Dielectrophoresis Coreshell nanoparticle Fluores-cence enhancement
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Self-generating nanogaps for highly effective surface-enhanced Raman spectroscopy 被引量:1
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作者 Yangkai Chen Huan Li +9 位作者 Jianmei Chen Dong Li Mengyuan Zhang Guanghua Yu Lin Jiang Yi Zong Bin Dong Zhoufang Zeng Yandong Wang Lifeng Chi 《Nano Research》 SCIE EI CSCD 2022年第4期3496-3503,共8页
The fabrication of surface enhanced Raman spectroscopy(SERS)substrates with controlled high density hot spots still remains challenging.Herein,we report highly effective SERS substrates containing the self-generating(... The fabrication of surface enhanced Raman spectroscopy(SERS)substrates with controlled high density hot spots still remains challenging.Herein,we report highly effective SERS substrates containing the self-generating(SG)nanogaps from polystyrene nanosphere monolayer through isotropic plasma etching.The emergence of multimode hot spots,i.e.,metal film over nanosphere(MFON)-like hot spots(closed gaps,0 nm),individual self-aligned hot spots(discrete gaps,>20 nm)and threedimensional(3D)hot spots(nanogaps,1-10 nm),makes the SG SERS substrates superior as compared to the traditional MFON or the well-ordered self-aligned SERS substrates in terms of enhancement,uniformity,and reproducibility.The SG SERS substrates can function as the excellent SERS platforms for trace molecule detection in the practical application fields. 展开更多
关键词 surface-enhanced Raman spectroscopy nanogaps colloidal lithography reactive ion etching
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Improved optical enhancement using double-width plasmonic gratings with nanogaps 被引量:2
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作者 Ahmad A.Darweesh Stephen J.Bauman Joseph B.Herzog 《Photonics Research》 SCIE EI 2016年第5期173-180,共8页
Plasmonic grating structures have been shown effective at increasing near-field optical enhancement. A doublewidth plasmonic grating design is introduced, where each period has two alternating metal widths separated b... Plasmonic grating structures have been shown effective at increasing near-field optical enhancement. A doublewidth plasmonic grating design is introduced, where each period has two alternating metal widths separated by a nanogap. With this new design, analysis has shown that plasmonic resonances couple between each metal section,resulting in even greater optical enhancement compared with single-width gratings. The geometry that gives the greatest optical enhancement has been determined with a computational model. This work demonstrates that the increased enhancement is due to hybridized modes that couple between the two grating segments. 展开更多
关键词 Improved optical enhancement using double-width plasmonic gratings with nanogaps nm
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Chiral plasmonic nanostructure of twistedly stacked nanogaps
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作者 Jian Zhang Rui Tu +4 位作者 Chao Huang Xiaoli Yao Xin Hu Haixiong Ge Xuefeng Zhang 《Chinese Optics Letters》 SCIE EI CAS CSCD 2021年第1期95-99,共5页
Nanogap plasmonic structures with strong coupling between separated components have different responses to orthogonal-polarized light, giving rise to giant optical chirality. Here, we proposed a three-dimensional(3D) ... Nanogap plasmonic structures with strong coupling between separated components have different responses to orthogonal-polarized light, giving rise to giant optical chirality. Here, we proposed a three-dimensional(3D) nanostructure that consists of two vertically and twistedly aligned nanogaps, showing the hybridized charge distribution within 3D structures.It is discovered that the structure twisted by 60° exhibits plasmonic coupling behavior with/without gap modes for different circular-polarized plane waves, showing giant chiral response of 60% at the wavelength of 1550 nm. By controlling the disk radius and the insulator layer, the circular dichroism signal can be further tuned between 1538 and 1626 nm. 展开更多
关键词 metal-insulator-metal structure nanogaps gap mode twisted stacking charge distribution chiral response
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Bimetallic nano-mushrooms with DNA-mediated interior nanogaps for high-efficiency SERS signal amplification 被引量:5
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作者 Jianlei Shen Jing Su +9 位作者 Juan Yan Bin Zhao Dongfang Wang Siyi Wang Kun Li Mengmeng Liu Yao He Sanjay Mathur Chunhai Fan Shiping Song 《Nano Research》 SCIE EI CAS CSCD 2015年第3期731-742,共12页
Uniform silver-containing metal nanostructures with well-defined nanogaps hold great promise for ultrasensitive surface-enhanced Raman scattering (SERS) analyses. Nevertheless, the direct synthesis of such nanostruc... Uniform silver-containing metal nanostructures with well-defined nanogaps hold great promise for ultrasensitive surface-enhanced Raman scattering (SERS) analyses. Nevertheless, the direct synthesis of such nanostructures with strong and stable SERS signals remains extremely challenging. Here, we report a DNA-mediated approach for the direct synthesis of gold-silver nano-mushrooms with interior nanogaps. The SERS intensities of these nano-mushrooms were critically dependent on the area of the nanogap between the gold head and the silver cap. We found that the formation of nanogaps was finely tunable by controlling the surface density of 6-carboxy-X-rhodamine (ROX) labeled single-stranded DNA (ssDNA) on the gold nanoparticles. We obtained nano-mushrooms in high yield with a high SERS signal enhancement factor of -1.0×109, much higher than that for Au-Ag nanostructures without nanogaps. Measurements for single nano- mushrooms show that these structures have both sensitive and reproducible SERS signals. 展开更多
关键词 surface-enhanced Ramanscattering biometallic nanostructure nano-mushroom NANOGAP gold nanoparticle
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Impact ofγ-andβ-radiation on metal-based tunneling junction devices and their restorability
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作者 Zhong-zheng TIAN Da-cheng YU +3 位作者 Zhong-yang REN Jiao-jiao TIAN Li-ming REN Yun-yi FU 《Transactions of Nonferrous Metals Society of China》 2025年第11期3836-3851,共16页
Nanoscale metal-based tunneling junction(MTJ)devices were fabricated using the electromigration method,and their electrical properties were studied after exposure toγ-andβ-radiation.Irradiation caused the set thresh... Nanoscale metal-based tunneling junction(MTJ)devices were fabricated using the electromigration method,and their electrical properties were studied after exposure toγ-andβ-radiation.Irradiation caused the set threshold voltage(V_(set))of the MTJ devices to increase,leading to a transition from a low-resistance state(LRS)to a high-resistance state(HRS).This shift in V_(set)was due to atom displacement from high-energy electrons excited byγ-andβ-radiation.Unlike semiconductor devices,MTJ devices showed resilience to permanent damage and could be restored in-situ through multiple I-V(I is the drain current;V is the drain voltage)sweeps with appropriate configurations.This ability to recover suggests that MTJ devices have promising potential under irradiation.The reparability of irradiated MTJ devices is closely related to nothing-on-insulator(NOI)their structure,providing insights for other NOI and metal-based micro-nanoscale devices. 展开更多
关键词 γ-radiation β-radiation NANOGAP metal-based tunneling junction radiation damage
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Nanoscale air channel devices-inheritance and breakthrough of vacuum tube 被引量:1
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作者 Baihong Chen Linjie Fan +3 位作者 Jinshun Bi Zhiqiang Li Ziming Xu Sandip Majumdar 《Nano Materials Science》 CSCD 2024年第6期714-725,共12页
The nanoscale air channel device(NACD)has recently gained significant attention as a novel vacuum electronic that can be fabricated through nanofabrication technologies.Here,the research and progress of the NACD since... The nanoscale air channel device(NACD)has recently gained significant attention as a novel vacuum electronic that can be fabricated through nanofabrication technologies.Here,the research and progress of the NACD since it was reviewed,with a focus on working mechanism analysis,nanofabrication technologies,device structure optimization,electrode materials and simulation approach.Furthermore,the application fields and future development of NACD were summarized and prospected.The NACDs are expected to surpass the physical limits of traditional solid transistors due to its advantages such as smaller heat loss,high-speed,resistance to harsh environments. 展开更多
关键词 Vacuum electronics NANOGAP Simulation Emission mechanism Temperature resistance Radiation endurance
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Molecular-scale electronics: From device fabrication to functionality 被引量:1
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作者 Xu Zhang Tao Li 《Chinese Chemical Letters》 SCIE CAS CSCD 2017年第11期2058-2064,共7页
By wiring molecules into circuits, "molecular electronics" aims at studying electronic properties of single molecules and their ensembles, on this basis exploiting their intrinsic functionalities, and eventually app... By wiring molecules into circuits, "molecular electronics" aims at studying electronic properties of single molecules and their ensembles, on this basis exploiting their intrinsic functionalities, and eventually applying them as building blocks of electronic components for future electronic devices. Herein, fabricating reliable solid-state molecular devices and developing synthetic molecules endowed with desirable electronic properties, have been two major tasks since the dawn of molecular electronics. This review focuses on recent advances and efforts regarding the main challenges in this field, highlighting fabrication of nanogap electrodes for single-molecule junctions, and self-assembled-monolayers (SAMs) for functional devices. The prospect of molecular-scale electronics is also discussed. 展开更多
关键词 Molecular electronics Nanogap electrodes Single-molecule junctions Self-assembled monolayers Functional molecular devices
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Fabrication and characteristic detection of graphene nanoelectrodes 被引量:5
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作者 XIE ShuangXi LIU ZengLei +2 位作者 JIAO NianDong TUNG Steve LIU LianQing 《Science China(Technological Sciences)》 SCIE EI CAS 2014年第10期1950-1955,共6页
Graphene has the advantages of high electrical conductivity,high heat conductivity,and low noise,which makes it a potential option for integrated circuits interconnection and nanoelectrodes.In this paper,we present a ... Graphene has the advantages of high electrical conductivity,high heat conductivity,and low noise,which makes it a potential option for integrated circuits interconnection and nanoelectrodes.In this paper,we present a novel fabrication method for graphene nanoeletrodes with nanogap.First,graphene grown by chemical vapor deposition(CVD)is assembled to a chip with microelectrodes.Second,an atomic force microscopy(AFM)based mechanical cutting method is developed to cut the graphene into nanoribbons and nanoeletrodes with nanogap.Then the electronic property of a single nanodot is characterized using the garphene nanoelectrodes,demonstrating the effectiveness of the graphene nanoelectrodes.The fabricated graphene nanoeletrode pairs can be used as probes to detect single molecule in micro-environment,and show an attractive prospect for future molecular electronics applications. 展开更多
关键词 atomic force microscopy GRAPHENE NANOELECTRODES NANOGAP molecular electronics
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Lithography-independent and large scale fabrication of a metal electrode nanogap 被引量:1
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作者 李艳 王晓峰 +3 位作者 张加勇 王晓东 樊中朝 杨富华 《Journal of Semiconductors》 EI CAS CSCD 北大核心 2009年第9期142-145,共4页
A lithography-independent and wafer scale method to fabricate a metal nanogap structure is demonstrated. Polysilicon was first dry etched using photoresist (PR) as the etch mask patterned by photolithography. Then, ... A lithography-independent and wafer scale method to fabricate a metal nanogap structure is demonstrated. Polysilicon was first dry etched using photoresist (PR) as the etch mask patterned by photolithography. Then, by depositing conformal SiO2 on the polysilicon pattern, etching back SiO2 anisotropically in the perpendicular direction and removing the polysilicon with KOH, a sacrificial SiO2 spacer was obtained. Finally, after metal evaporation and lifting-off of the SiO2 spacer, an 82 nm metal-gap structure was achieved. The size of the nanogap is not determined by the photolithography, but by the thickness of the SiO2. The method reported in this paper is compatible with modern semiconductor technology and can be used in mass production. 展开更多
关键词 lithography-independent NANOGAP conformal deposition anisotropic etching
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Effects of edge on graphene plasmons as revealed by infrared nanoimaging
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作者 Qingyang Xu Teng Ma +7 位作者 Mohammad Danesh Bannur Nanjunda Shivananju Sheng Gan Jingchao Song Cheng-Wei Qiu Hui-Ming Cheng Wencai Ren Qiaoliang Bao 《Light(Science & Applications)》 SCIE EI CAS CSCD 2016年第1期266-274,共9页
We used scattering-type scanning near-field optical microscopy(s-SNOM)to investigate the plasmonic properties of edges in well-defined graphene nanostructures,including sharp tapers,nanoribbons and nanogaps,which were... We used scattering-type scanning near-field optical microscopy(s-SNOM)to investigate the plasmonic properties of edges in well-defined graphene nanostructures,including sharp tapers,nanoribbons and nanogaps,which were all fabricated via the growth-etching chemical vapor deposition(GECVD)method.The obtained near-field images revealed the localized plasmon modes along the graphene nanoribbon;these modes strongly depended on the size of the graphene pattern,the angle of the tapered graphene and the infrared excitation wavelength.These interesting plasmon modes were verified by numerical simulations and explained by the reflection,and interference of electromagnetic waves at the graphene–SiO_(2) edge.The constructive interference at the graphene nanogap caused by charge accumulation was demonstrated for the first time.Using the infrared nanoimaging technique,greater plasmon broadening was observed in the zigzag edge than in the armchair edge.Our study suggests that graphene edges should be separated by an effective working distance to avoid the overlapping of localized plasmon modes,which is very important for the design of graphene-based plasmonic circuits and devices. 展开更多
关键词 edge chirality GRAPHENE graphene plasmon NANORIBBON NANOGAP near-field microscopy s-SNOM
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Design and fabrication of crack-junctions
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作者 Valentin Dubois Frank Niklaus Göran Stemme 《Microsystems & Nanoengineering》 EI CSCD 2017年第1期71-79,共9页
Nanogap electrodes consist of pairs of electrically conducting tips that exhibit nanoscale gaps.They are building blocks for a variety of applications in quantum electronics,nanophotonics,plasmonics,nanopore sequencin... Nanogap electrodes consist of pairs of electrically conducting tips that exhibit nanoscale gaps.They are building blocks for a variety of applications in quantum electronics,nanophotonics,plasmonics,nanopore sequencing,molecular electronics,and molecular sensing.Crack-junctions(CJs)constitute a new class of nanogap electrodes that are formed by controlled fracture of suspended bridge structures fabricated in an electrically conducting thin film under residual tensile stress.Key advantages of the CJ methodology over alternative technologies are that CJs can be fabricated with wafer-scale processes,and that the width of each individual nanogap can be precisely controlled in a range from o2 to 4100 nm.While the realization of CJs has been demonstrated in initial experiments,the impact of the different design parameters on the resulting CJs has not yet been studied.Here we investigate the influence of design parameters such as the dimensions and shape of the notches,the length of the electrode-bridge and the design of the anchors,on the formation and propagation of cracks and on the resulting features of the CJs.We verify that the design criteria yields accurate prediction of crack formation in electrode-bridges featuring a beam width of 280 nm and beam lengths ranging from 1 to 1.8μm.We further present design as well as experimental guidelines for the fabrication of CJs and propose an approach to initiate crack formation after release etching of the suspended electrode-bridge,thereby enabling the realization of CJs with pristine electrode surfaces. 展开更多
关键词 ARRAYS crack-junctions LITHOGRAPHY nanofabrication nanogap electrodes NOTCHES optimization tunneling junctions
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Towards Determining Kinetics of Annihilation Electrogenerated Chemiluminescence by Concentration-Dependent Luminescent Intensity
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作者 Klaus Mathwig Neso Sojic 《Journal of Analysis and Testing》 EI 2019年第2期160-165,共6页
In ion-annihilation electrochemiluminescence(ECL),luminophore ions are generated by oxidation as well as reduction at electrodes surfaces,and subsequently recombine into an electronically excited state,which emits lig... In ion-annihilation electrochemiluminescence(ECL),luminophore ions are generated by oxidation as well as reduction at electrodes surfaces,and subsequently recombine into an electronically excited state,which emits light.The intensity of the emitted light is often limited by the kinetic rate of recombination of the luminophore ion species.Recombination or annihilation rates are high ranging up to approximately 10^(10) M^(−1) s^(−1) and can be difficult to determine using scanning electrochemical microscopy or high-frequency oscillations of an electrode potential.Here,we propose determining annihilation kinetics by measuring the relative change of the emitted light intensity as a function of luminophore concentration.Using finite element simulations of annihilation ECL in a geometry of two closely spaced electrodes biased at constant potentials,we show that,with increasing concentrations,luminescence intensity crosses over from a quadratic dependence on concentration to a linear regime-depending on the rate of annihilation.Our numerical results are applicable to scanning electrochemical microscopy as well as nanofluidic electrochemical devices to determine fast ion-annihilation kinetics. 展开更多
关键词 Electrogenerated chemiluminescence ANNIHILATION Mechanisms Ion-annihilation kinetics Redox cycling Nanogap transducer
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DNA-encoded plasmonic bubbles aggregating dual-microRNA SERS signals for cancer diagnosis
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作者 Yu Yang Hao Lu +7 位作者 Dan Fang Yuyuan Zhang Yuteng Tang Songsong Zhao Jun Yan Xiaojie Qin Jianlei Shen Fan Yang 《Aggregate》 2024年第6期367-378,共12页
Solid bubbles have expanded the SERS assay toolbox,but their detection performance in biofluids is still hampered by the irrational design of the plasmonic sensing interface.A plasmonic bubble aggregate-driven DNA-enc... Solid bubbles have expanded the SERS assay toolbox,but their detection performance in biofluids is still hampered by the irrational design of the plasmonic sensing interface.A plasmonic bubble aggregate-driven DNA-encoded SERS assay is reported here that enables simultaneous,ultrasensitive,and specific detection of multiple miRNAs in blood samples for accurate cancer diagnosis.In this assay,the buoyancy of plasmonic bubbles allows them to self-aggregate at a droplet apex for SERS reconfiguration,form single-layer bubble aggregates with plasmonic nanogaps,and prevent the coffee ring effect during evaporation assembly.Furthermore,DNA-encoded plasmonic bubbles seamlessly couple with dual-color catalytic hybridization assembly to amplify the specific miRNA-responsive Raman signal,and function as both an analyte concentrator and a Raman signal aggregator without external forces.Using these merits,this magnet-free,portable assay achieves femtomolar dual-miRNA quantitation with single-base resolution,simultaneous miRNA detection across four cell lines,and accurate cancer diagnosis(AUC=1)via analyzing 40 blood samples with machine learning,thus providing a promising tool for clinical diagnosis. 展开更多
关键词 DNA assembly DNA-encoded SERS nanosensors MICRORNA plasmonic bubble self-aggregation nanogap
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