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Characteristics of Nanosecond Pulsed Discharges in Atmospheric Helium Microplasmas
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作者 Manish JUGROOT 《Plasma Science and Technology》 SCIE EI CAS CSCD 2016年第10期992-997,共6页
Microplasmas are very interesting due to their unique properties and achievable regimes maintained at atmospheric pressures. Due to the small scales, numerical modeling could contribute to the understanding of underly... Microplasmas are very interesting due to their unique properties and achievable regimes maintained at atmospheric pressures. Due to the small scales, numerical modeling could contribute to the understanding of underlying phenomena as it provides access to local parameters--and complements experimental global characteristics. A self-consistent formalism, applied to nanosecond pulsed atmospheric non-equilibrium helium plasmas, reveals that several successive discharges can persist as a result of a combined volume and dielectric surface effects. The valuable insights provided by the spatiotemporal simulation results show the critical importance of coupled gas and plasma dynamics--namely gas heating and electric field reversals. 展开更多
关键词 microplasmas self-consistent simulations space charge Joule heating nanosecond discharges
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Temperature dependence of pattern transitions on water surface in contact with DC microplasmas
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作者 Yanfei CHEN Bowen FENG +3 位作者 Qing ZHANG Ruoyu WANG Kostya(Ken)OSTRIKOV Xiaoxia ZHONG 《Plasma Science and Technology》 SCIE EI CAS CSCD 2020年第5期63-69,共7页
The DC-driven atmospheric-pressure microplasma is generated in a helium gas flowing through the metal tube cathode and is brought into contact with the surface of the water with the immersed Pt anode.By adjusting the ... The DC-driven atmospheric-pressure microplasma is generated in a helium gas flowing through the metal tube cathode and is brought into contact with the surface of the water with the immersed Pt anode.By adjusting the gas flow,discharge current and gap distance,self-organized patterns are observed and varied sequentially from the homogeneous spot to the ring-like shape,distinct spot shape and the gearwheel shape on the water surface.The electrode temperature is measured and the gas temperature of the plasma discharge is calculated through the numericalfitting of the second positive system of the spectrum of N2 molecules.It is shown that the pattern transition is related to the electrode and gas temperatures of the plasma.Moreover,specific discretization features of the patterns are shown to appear at certain gas temperatures. 展开更多
关键词 MICROPLASMA self-organized pattern optical emission spectroscopy
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Generation and detection of pulsed terahertz waves in gas: from elongated plasmas to microplasmas
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作者 Fabrizio BUCCHERI Pingjie HUANG Xi-Cheng ZHANG 《Frontiers of Optoelectronics》 EI CSCD 2018年第3期209-244,共36页
The past two decades have seen an exponential growth of interest in one of the least explored region of the electromagnetic spectrum, the terahertz (THz) frequency band, ranging from to 0.1 to 10 THz. Once only the ... The past two decades have seen an exponential growth of interest in one of the least explored region of the electromagnetic spectrum, the terahertz (THz) frequency band, ranging from to 0.1 to 10 THz. Once only the realm of astrophysicists studying the background radiation of the universe, THz waves have become little by little relevant in the most diverse fields, such as medical imaging, industrial inspection, remote sensing, fundamental science, and so on. Remarkably, THz wave radiation can be generated and detected by using ambient air as the source and the sensor. This is accomplished by creating plasma under the illumination of intense femtosecond laser fields. The integration of such a plasma source and sensor in THz time-domain techniques allows spectral measurements covering the whole THz gap (0.1 to 10 THz), further increasing the impact of this scientific tool in the study of the four states of matter. In this review, the authors introduce a new paradigm for implementing THz plasma techniques. Specifically, we replaced the use of elongated plasmas, ranging from few mm to several cm, with sub-mm plasmas, which will be referred to as microplasmas, obtained by focusing ultrafast laser pulses with high numerical aperture optics (NA from 0.1 to 0.9). The experimental study of the THz emission and detection from laser-induced plasmas of submillimeter size are presented. Regarding the microplasma source, one of the interesting phenomena is that the main direction of THz wave emission is almost orthogonal to the laser propagation direction, unlike that of elongated plasmas. Perhaps the most important achievement is the demonstra- tion that laser pulse energies lower than 1 μJ are sufficientto generate measurable THz pulses from ambient air, thus reducing the required laser energy requirement of two orders of magnitude compared to the state of art. This significant decrease in the required laser energy will make plasma-based THz techniques more accessible to the scientific community, as well as opening new potential industrial applications. Finally, experimental observations of THz radiation detection with microplasmas are also presented. As fully coherent detection was not achieved in this work, the results presented herein are to be considered a first step to understand the peculiarities involved in using the micro- plasma as a THz sensor. 展开更多
关键词 terahertz waves Terahertz Air Photonics generation and detection elongated plasmas microplasmas
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Non-contact gaseous microplasma electrode as anode for electrodeposition of metal and metal alloy in molten salt
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作者 Junhan Luo Qi Qing +4 位作者 Liqin Huang Zhe Wang Shuang Liu Jing Chen Yuexiang Lu 《Chinese Chemical Letters》 SCIE CAS CSCD 2024年第4期166-169,共4页
Microplasma based on glow discharge could act as a non-contact gaseous electrode and has attracted much attention in both fundamental research and application. Herein, with microplasma as the anode,the electrodepositi... Microplasma based on glow discharge could act as a non-contact gaseous electrode and has attracted much attention in both fundamental research and application. Herein, with microplasma as the anode,the electrodeposition process of a series of metal and metal alloys in molten salt has been systemically studied. Four metal cations with different valence states, silver(Ag~+), nickel(Ni^(2+)), copper(Cu^(2+)), and iron(Fe^(3+)), could all be reduced on the solid cathode with high current efficiency and the corresponding metal products were of high purity. The electrodeposition of aluminum-lanthanum(Al-Ln) alloy on the aluminum cathode was also successfully carried out with microplasma as the anode, and the same alloy was obtained by using the conventional anode electrode. These results indicated that microplasma anode based on non-contact direct-current(DC) glow discharge is a promising electrode to be applied in molten salt electrolysis. 展开更多
关键词 MICROPLASMA ANODE Molten salt ELECTRODEPOSITION Al-Ln alloy
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Ultrasensitive determination of mercury by ICP-OES coupled with a vapor generation approach based on solution cathode glow discharge 被引量:2
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作者 Zhaoqing Cai Huijun Zou +1 位作者 Yirui Chen Zheng Wang 《Chinese Chemical Letters》 SCIE CAS CSCD 2022年第5期2692-2696,共5页
We herein proposed a sample introduction technique based on solution cathode glow discharge(SCGD)of a portable design for inductively coupled plasma-optical emission spectrometry(ICP-OES)and its ap-plication in sensit... We herein proposed a sample introduction technique based on solution cathode glow discharge(SCGD)of a portable design for inductively coupled plasma-optical emission spectrometry(ICP-OES)and its ap-plication in sensitive determination of mercury.The products from SCGD containing mercury vapor,were transported by an Ar flow to ICP spectrometer for detection.A gas liquid separator(GLS)and a dryer were used to condense and remove most of the accompanying moisture,which greatly improved both the stability and sensitivity of the signal.The detection limit(DL)acquired by this developed method was 0.22μg/L(194.1 nm),which was nearly 82 times lower than that obtained by pneumatic nebuliza-tion(PN).The relative standard deviation(RSD)was 1.4%(n=14)for a 50μg/L standard.Blank solution(HNO_(3),pH 1)can effectively elute mercury residue.Its accuracy and practicality were also demonstrated by the determination of GBW10029(fish)certified reference material,shrimp,crawfish,soil and human hair samples.The results showed good consistency with the certified values and the values obtained us-ing inductively coupled plasma−mass spectrometry. 展开更多
关键词 Solution cathode glow discharge Vapor generation ICP-OES MERCURY MICROPLASMA
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Numerical study on the modulation of THz wave propagation by collisional microplasma photonic crystal 被引量:2
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作者 Shuqun WU Yuxiu CHEN +3 位作者 Minge LIU Lu YANG Chaohai ZHANG Shaobin LIU 《Plasma Science and Technology》 SCIE EI CAS CSCD 2020年第11期42-51,共10页
In order to demonstrate the modulation of terahertz wave propagation in atmospheric pressure microplasmas,in this work,the band structure and the transmission characteristics of a onedimensional collisional microplasm... In order to demonstrate the modulation of terahertz wave propagation in atmospheric pressure microplasmas,in this work,the band structure and the transmission characteristics of a onedimensional collisional microplasma photonic crystal are investigated,using the transfer matrix method.For a lattice constant of 150μm and a plasma width of 100μm,three stopbands of microplasma photonic crystal are observed,in a frequency range of 0.1-5 THz.Firstly,an increase in gas pressure leads to a decrease in the central frequency of the stopband.When the gas pressure increases from 50.5 k Pa to 202 k Pa,the transmission coefficient of the THz wave first increases and then decreases at high frequency,where the wave frequency is much greater than both the plasma frequency and the collision frequency.Secondly,it is interesting to find that the central frequency and the bandwidth of the first THz stopband remain almost unchanged for electron densities of less than 10^15 cm^-3,increasing significantly when the electron density increases up to 10^16 cm^-3.A central frequency shift of 110 GHz,and a bandgap broadening of 200 GHz in the first stopband are observed.In addition,an atmospheric pressure microplasma with the electron density of 1×10^15-6×10^15 cm^-3 is recommended for the modulation of THz wave propagation by plasma photonic crystals. 展开更多
关键词 MICROPLASMA plasma photonic crystal terahertz wave electron density
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Effect of Current Density on Al Alloy Microplasma Oxidation 被引量:2
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作者 Shigang XIN, Zhaohua JIANC, Fuping WANG, Xiaohong WU and Liancheng ZHAO Harbin Institute of Technology, Harbin 150001, China Tadao SHIMIZU Department of Industrial Chemistry. Chiba Institute of Technology, Japan 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2001年第6期657-660,共4页
The microplasma oxidation process of LY 12 Al alloy in Na2SiO3-KOH-NaAL2 system has been studied. The voltage-time curve of oxidation process is changed with the variation of current ... The microplasma oxidation process of LY 12 Al alloy in Na2SiO3-KOH-NaAL2 system has been studied. The voltage-time curve of oxidation process is changed with the variation of current densities. The voltage breakdown and hardness of coating increase with increasing current density. The phase composition, morphologies, element and the distribution of ceramic coating are investigated by XRD, EPMA. 展开更多
关键词 AL CU Effect of Current Density on Al Alloy Microplasma Oxidation
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Research on Digitalization of High Frequency Microplasma Arc Welding Machine with Small Welding Current 被引量:1
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作者 He Jianping1,Huang Chen1,Jiao Fujie1,You Zhichun2 1College of Materials Engineering,Shanghai University of Engineering Science,Shanghai 201620,China2Shanghai WTL Welding Equipment Manufacture Co.Ltd.,Shanghai 201620,China 《稀有金属材料与工程》 SCIE EI CAS CSCD 北大核心 2011年第S4期79-83,共5页
The problem of digital controlling of high frequency microplasma arc welding machine has been solved through Fujitsu 16-bits single-chip processor used.Digital welding power sources and their control systems,digital s... The problem of digital controlling of high frequency microplasma arc welding machine has been solved through Fujitsu 16-bits single-chip processor used.Digital welding power sources and their control systems,digital sequential control system,and digital man-machine interaction system were included in digital microplasma arc welding machine studied.Principles,which is about digital sequential control system,digital man-machine interaction system,digital controller and its interface,and controlling software program,were analyzed.It has been showed that full digitalization of high frequency microplasma arc welding machine was fulfilled,minimum welding current of the machine is 0.05A,and arc is stable and can been started unfailingly. 展开更多
关键词 DIGITALIZATION MICROPLASMA ARC WELDING machine SINGLE-CHIP PROCESSOR
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Multiple chemical warfare agent simulant decontamination by self-driven microplasma 被引量:2
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作者 陈恕彬 王世宇 +1 位作者 朱安娜 王瑞雪 《Plasma Science and Technology》 SCIE EI CAS CSCD 2023年第11期12-21,共10页
Low-temperature plasma is a green and high-efficiency technology for chemical warfare agent(CWA)decontamination.However,traditional plasma devices suffer from the problems of highpower composition and large power-supp... Low-temperature plasma is a green and high-efficiency technology for chemical warfare agent(CWA)decontamination.However,traditional plasma devices suffer from the problems of highpower composition and large power-supply size,which limit their practical applications.In this paper,a self-driven microplasma decontamination system,induced by a dielectric-dielectric rotary triboelectric nanogenerator(dd-r TENG),was innovatively proposed for the decontamination of CWA simulants.The microplasma was characterized via electrical measurements,optical emission spectra and ozone concentration detection.With an output voltage of-3460 V,the dd-r TENG can successfully excite microplasma in air.Reactive species,such as OH,O(1D),Hαand O3were detected.With input average power of 0.116 W,the decontamination rate of 2-chloroethyl ethyl sulfide reached 100%within 3 min of plasma treatment,while the decontamination rates of malathion and dimethyl methylphosphonate reached(65.92±1.65)%and(60.88±1.92)%after 7 min of plasma treatment,respectively.In addition,the decontamination rates gradually decreased with the increase in the simulant concentrations.Typical products were identified and analyzed.This study demonstrates the broad spectrum and feasibility of the dd-r TENG-microplasma for CWA elimination,which provides significant guidance for their practical applications in the future. 展开更多
关键词 triboelectric nanogenerator MICROPLASMA DECONTAMINATION chemical warfare agents simulants(Some figures may appear in colour only in the online journal)
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Surface modification of stratum corneum for drug delivery and skin care by microplasma discharge treatment 被引量:1
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作者 J KRISTOF T AOSHIMA +1 位作者 M BLAJAN K SHIMIZU 《Plasma Science and Technology》 SCIE EI CAS CSCD 2019年第6期1-8,共8页
Human skin is the largest organ and also the main barrier that prevents foreign substances from entering the body.The surface properties of the skin are relevant for transdermal drug delivery and cosmetics.Yucatan mic... Human skin is the largest organ and also the main barrier that prevents foreign substances from entering the body.The surface properties of the skin are relevant for transdermal drug delivery and cosmetics.Yucatan micropig skin is used as a substitute for human skin.A microplasma electrode is used for surface modification of the skin epidermal layer of the Yucatan micropig.Microplasma dielectric barrier discharge has a thin dielectric as a barrier (~50 μm) and a frequency of 25 kHz.The surface properties of the epidermal layer were characterized by the measurement of the contact angle of the water droplet.The effects of different gases such as air,nitrogen,oxygen,helium or argon were compared.The change of the contact angle is temporal and it is returned to its initial state after several hours.Among the gases used for plasma ignition,oxygen and argon were the most effective for skin treatment.The distance of the skin from the electrode and the treatment time played a crucial roles in the increasing water contact angle.Changes of surface atomic concentration were determined by x-ray photoelectron spectroscopy.After microplasma treatment,the oxygen and nitrogen concentration increased at the skin surface. 展开更多
关键词 MICROPLASMA contact ANGLE SKIN STRATUM corneum XPS
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Plasma-induced chemical etching generating Ni_(3)S_(2) for formaldehyde detection 被引量:1
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作者 Jiaxin Zhou Li Zhao +5 位作者 Qiang Wang Lixin Zuo Ana Zhao Huimin Yu Xue Jiang Xiaoli Xiong 《Chinese Chemical Letters》 SCIE CAS CSCD 2022年第6期3035-3038,共4页
In this paper,Ni_(3)S_(2)nanosheet(NS)was generated by chemical etching with sodium sulfide directly on the nickel foam(NF),which was induced by dielectric barrier discharge plasma in liquid.Compared with other chemic... In this paper,Ni_(3)S_(2)nanosheet(NS)was generated by chemical etching with sodium sulfide directly on the nickel foam(NF),which was induced by dielectric barrier discharge plasma in liquid.Compared with other chemical etching methods of nickel-based nanomaterials,this method was not only rapid(40 min)and mild(at room temperature and atmospheric pressure),but also showed consistent stability and good reproducibility.The Ni_(3)S_(2)NS/NF electrode showed excellent performance in the electrochemical detection of formaldehyde under alkaline conditions.It had a good linear relationship with the concentration of formaldehyde in the range of 0.002-5.45 mmol/L(R^(2)=0.9957)and the limit of detection(LOD)was 1.23μmol/L(S/N=3).The sensitivity was 1286.9μA L mmol^(–1)cm^(–2),and the response time was about 5 s.The plasma-induced chemical etching strategy provides a simple and stable electrode preparation method,which has great application prospects in nonenzymatic electrochemical sensors. 展开更多
关键词 Chemical etching MICROPLASMA Electrochemical detection FORMALDEHYDE
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Investigation on the characteristics of an atmospheric-pressure microplasma plume confined inside a long capillary tube 被引量:1
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作者 Shuqun WU Fei WU +3 位作者 Xueyuan LIU Wen CHEN Chang LIU Chaohai ZHANG 《Plasma Science and Technology》 SCIE EI CAS CSCD 2018年第10期90-97,共8页
An atmospheric-pressure microplasma plume of diameter 10 μm is generated inside a long tube. The length of the microplasma plume reaches as much as 2 cm. First, with the assistance of an air dielectric barrier discha... An atmospheric-pressure microplasma plume of diameter 10 μm is generated inside a long tube. The length of the microplasma plume reaches as much as 2 cm. First, with the assistance of an air dielectric barrier discharge (DBD), the ignition voltage of the microplasma decreases from 40 kV to 23.6 kV. Second, although the current density reaches as high as (1.2-7.6)× 10 4A cm-2, comparable to the current density in transient spark discharge, the microplasma plume is nonthermal. Third, it is interesting to observe that the amplitude of the discharge current in a positive cycle of applied voltage is much lower than that in a negative cycle of applied voltage. Fourth, the electron density measured by the Stark broadening of Ar spectral line 696.5 nm reaches as high as 3× 10 16 cm-3, which yields a conductivity of the microplasma column of around 48 S m-1. In addition, the propagation velocity of the microplasma plume, obtained from light signals at different axial positions, ranges from 1 × 10 5 m s-1 to 5× 10 5m s-1. A detailed analysis reveals that the surface charges deposited on the inner wall exert significant influence on the discharge behavior of the microplasma. 展开更多
关键词 MICROPLASMA atmospheric pressure plasma non-thermal plasma MICRODISCHARGE
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Self-Adaptive Control System for Additive Manufacturing Using Double Electrode Micro Plasma Arc Welding 被引量:1
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作者 Nan Li Ding Fan +3 位作者 Jiankang Huang Shurong Yu Wen Yuan Miaomiao Han 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2021年第3期285-298,共14页
Wire arc additive manufacturing(WAAM)has been investigated to deposit large-scale metal parts due to its high deposition efficiency and low material cost.However,in the process of automatically manufacturing the high-... Wire arc additive manufacturing(WAAM)has been investigated to deposit large-scale metal parts due to its high deposition efficiency and low material cost.However,in the process of automatically manufacturing the high-quality metal parts by WAAM,several problems about the heat build-up,the deposit-path optimization,and the stability of the process parameters need to be well addressed.To overcome these issues,a new WAAM method based on the double electrode micro plasma arc welding(DE-MPAW)was designed.The circuit principles of different metal-transfer models in the DE-MPAW deposition process were analyzed theoretically.The effects between the parameters,wire feed rate and torch stand-off distance,in the process of WAAM were investigated experimentally.In addition,a real-time DE-MPAW control system was developed to optimize and stabilize the deposition process by self-adaptively changing the wire feed rate and torch stand-off distance.Finally,a series of tests were performed to evaluate the control system’s performance.The results show that the capability against interferences in the process of WAAM has been enhanced by this self-adaptive adjustment system.Further,the deposition paths about the metal part’s layer heights in WAAM are simplified.Finally,the appearance of the WAAM-deposited metal layers is also improved with the use of the control system. 展开更多
关键词 Double electrode microplasma arc welding Additive manufacturing Wire feed rate Torch stand-off distance Self-adaptive adjustment
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A perspective of microplasma oxidation (MPO) and vapor deposition coatings in surface engineering of aluminum alloys 被引量:1
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作者 AWAD Samir Hamid 《Journal of Chongqing University》 CAS 2004年第2期4-11,共8页
Over the past years, great achievements have been made in the development of coating technologies for surface improvement of aluminum alloys. Despite these achievements, the role in the market strongly depends on the ... Over the past years, great achievements have been made in the development of coating technologies for surface improvement of aluminum alloys. Despite these achievements, the role in the market strongly depends on the ability of surface coating technology under technical and economic considerations to meet the increased demands for heavy tribological applications of aluminum alloys. Microplasma oxidation (MPO) technology has recently been studied as a novel and effective means to provide thick and hard ceramic coating with improved properties such as excellent load-bearing and wear resistance properties on aluminum alloys. The present work covers the evaluation of the performances of current single and duplex coatings combining MPO, physical vapor deposition (PVD), and plasma assisted chemical vapor deposition (PACVD) coatings on aluminum alloys. It suggests that the MPO coating is a promising candidate for design engineers to apply aluminum alloys to heavy load-bearing applications. The prospective future for the research on MPO coatings is introduced as well. 展开更多
关键词 aluminum alloys microplasma oxidation (MPO) duplex coating physical vapor deposition (PVD) plasma assisted chemical vapor deposition (PACVD)
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A sensitive and compact mercury analyzer by integrating dielectric barrier discharge induced cold vapor generation and optical emission spectrometry 被引量:1
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作者 An-Qin Leng Yun-Fei Tian +4 位作者 Ming-Xuan Wang Li Wu Kai-Lai Xu Xian-Deng Hou Cheng-Bin Zheng 《Chinese Chemical Letters》 SCIE CAS CSCD 2017年第2期189-196,共8页
An environmentally friendly,low power consuming,sensitive and compact mercury analyzer was developed for the determination of mercury in water samples by integrating a thin film dielectric barrier discharge induced co... An environmentally friendly,low power consuming,sensitive and compact mercury analyzer was developed for the determination of mercury in water samples by integrating a thin film dielectric barrier discharge induced cold vapor reactor and a dielectric barrier discharge optical emission spectrometer into a small polymethyl methacrylate plate(10.5 cm length×8.0 cm width×1.2 cm height).Mercury cold vapor was generated when standard or sample solutions with or without formic acid were introduced to the reactor to form thin film liquid and exposed to microplasma irradiation and subsequently separated from the liquid phase for transport to the microplasma and detection of its atomic emission.Limits of detection of 0.20 μg L^-1 and 2.6 μg L^-1 were obtained for the proposed system using or not using formic acid,respectively.Compared to the conventional microplasma optical emission spectrometry used for mercury analysis,this system not only retains the good limit of detection amenable to the determination of mercury in real samples,but also reduces power consumption,eliminates the generation of hydrogen and avoids the use of toxic or unstable reductant.Method validation was demonstrated by analysis of a certified reference material of water sample and three real water samples with good spike recoveries(88-102%). 展开更多
关键词 Mercury Real time field analysis Microplasma Optical emission spectrometry Cold vapor generation Miniaturization
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Mode transition induced by gas pressure in dusty acetylene microdischarges: two-dimensional simulation
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作者 Xiangmei LIU Ningning ZU +1 位作者 Hongying LI Jingyao LI 《Plasma Science and Technology》 SCIE EI CAS CSCD 2020年第4期64-70,共7页
Radio-frequency microdischarge in acetylene is investigated by use of a fluid model and an aerosol dynamics model in a cylindrical discharge chamber.In this article,the results at a pressure of 100–500 Torr,a voltage... Radio-frequency microdischarge in acetylene is investigated by use of a fluid model and an aerosol dynamics model in a cylindrical discharge chamber.In this article,the results at a pressure of 100–500 Torr,a voltage of 80–150 V,and an electrode gap of 400–1000μm are carefully analyzed and discussed.It is shown that two electron heating modesαandγappear in the microdischarge,and the pressure-dependent transition fromαtoγwas accompanied by the abrupt decrease of electron density and electron temperature.The mode transition phenomenon is further confirmed by the variation of the electron temperature axial profiles,the profiles vary continuously from a center high at the pressure of 100 Torr to an edge high at the pressure of500 Torr.Furthermore,in theαmode(100 Torr)the plasma density increases linearly with the increase of electrode gap,but decreases sharply with the increase of electrode gap in theγmode(>100 Torr).The gas pressure and applied voltage effects on the nanoparticle density and degree of nonuniformity are also investigated.It has been shown that the gas pressure greatly influences the axial profiles of nanoparticle density and the values of the degree of nonuniformity,while the values of the plasma parameters(electron density and nanoparticle density)strongly depend on the applied voltage. 展开更多
关键词 RADIO-FREQUENCY capacitive discharge ACETYLENE MICROPLASMA NANOPARTICLE dynamics
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Microplasma electrochemistry(MIPEC)strategy for accelerating the synthesis of metal organic frameworks at room temperature
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作者 Guoyu Wei Yuexiang Lu +4 位作者 Shuang Liu Hongpeng Li Xuegang Liu Gang Ye Jing Chen 《Chinese Chemical Letters》 SCIE CAS CSCD 2021年第1期497-500,共4页
Metal organic frameworks(MOFs) are a kind of promising materials in many applications,while the fast and controllable synthesis of MOFs is still challenging.Here,taking HKUST-1 as illustration,a microplasma electroche... Metal organic frameworks(MOFs) are a kind of promising materials in many applications,while the fast and controllable synthesis of MOFs is still challenging.Here,taking HKUST-1 as illustration,a microplasma electrochemistry(MIPEC) strategy was developed to accelerate the synthesis process of MOFs with micro-plasma acting as cathode.Treating the HKUST-1 precursor solution with micro-plasma cathode could not only transfer the electrons into the solution leading to the deprotonation effect,but also generate radical species to trigger and accelerate the nucleation and growth of MOFs at the plasmaliquid interface.Thus,uniform and nanosize MOFs could be prepared within minutes.The obtained MOFs show similar excellent uranium adsorption properties compared with those obtained by other method,with a highly adsorption capability of uranium with 550 mg/g in minutes.The novel MIPEC strategy developed in this work provides an alternative for controllable synthesis of MOFs,and especially has potential application in accelerating traditional organic synthesis. 展开更多
关键词 MICROPLASMA Gas electrode ELECTROCHEMISTRY Metal organic frameworks Fast synthesis
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Improvement of the spreading effect of atmospheric pressure microplasma jet treatment through shielding-gas-controlled focusing
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作者 Li LV Jianhang CHEN +5 位作者 Jiahao WANG Shengquan WANG Meng LI Deyu TU Liping SHI Tao WANG 《Plasma Science and Technology》 SCIE EI CAS CSCD 2022年第9期85-97,共13页
The spreading effect of atmospheric pressure microplasma jets(APμPJ)on the surface of materials will increase the etching area,and controlling the diameter of the jet can improve the precision of surface treatment.In... The spreading effect of atmospheric pressure microplasma jets(APμPJ)on the surface of materials will increase the etching area,and controlling the diameter of the jet can improve the precision of surface treatment.In this work,a two-dimensional axisymmetric simulation model is established to analyze the effect of nitrogen(N_(2))shielding gas on helium(He)from gas dynamics.In addition,by etching the polyethylene terephthalate fllm,the relationship between the etching effect and aerodynamic analysis is verifled.The simulation results are similar to the experimental results,indicating that N2 shielding gas has a focusing effect which is related to the N_(2)flow rate,distance difference between the inner and outer tubes,and outer tube nozzle diameter.It is hoped that the results of this work can provide a certain reference for the use of shielding gas to control the jet flow of APμPJ. 展开更多
关键词 microplasma jet nitrogen shielding gas focusing effect gas dynamic
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Controllable tip exposure of ultramicroelectrodes coated by diamond-like carbon via direct microplasma jet for enhanced stability and fidelity in single-cell recording
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作者 Zhiyuan Du Qingda Xu +9 位作者 Ye Xi Mengfei Xu Jiawei Cao Longchun Wang Xiuyan Li Xiaolin Wang Qingkun Liu Zude Lin Bin Yang Jingquan Liu 《Microsystems & Nanoengineering》 2025年第1期225-235,共11页
Precise and long-term electroanalysis at the single-cell level is crucial for the accurate diagnosis and monitoring of brain diseases.The reliable protection in areas outside the signal acquisition points at sharp ult... Precise and long-term electroanalysis at the single-cell level is crucial for the accurate diagnosis and monitoring of brain diseases.The reliable protection in areas outside the signal acquisition points at sharp ultramicroelectrode(UME)tips has a significant impact on the sensitivity,fidelity,and stability of intracellular neural signal recording.However,it is difficult for existing UMEs to achieve controllable exposure of the tip functional structure,which affects their ability to resist environmental interference and shield noise,resulting in unsatisfactory signal-to-noise ratio and signal fidelity of intracellular recordings.To address this issue,we chose a dense and electrochemically stable diamond-like carbon(DLC)film as the UME protection coating and developed a method to precisely control the exposed degree of the functional structure by directly fixed-point processing of the UME tip by the strong site-selectivity and good controllability of the atmospheric microplasma jet.By analyzing the interaction between the microplasma jet and the UME tip,as well as the changes in the removal length and microstructure of UME tips with processing time,the exposed tip length was precisely controlled down to the submicron scale.Biocompatibility experiments,electrochemical aging tests and real-time intracellular pH recording experiments have demonstrated that the DLC-UME with effective tip protection processed by microplasma jet has the potential to enable long-term detection of intracellular high-fidelity signals. 展开更多
关键词 ULTRAMICROELECTRODE single cell recording signal fidelity diagnosis monitoring brain diseasesthe diamond carbon tip exposure intracellular neural signal microplasma jet
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