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12篇 您的检索式:作者名="Lingbao Xing"
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1Multi-sensor measurement and data fusion technology for manufacturing process monitoring:a literature review显示文摘Due to the rapid development of precision manufacturing technology,much research has been conducted in the field of multisensor measurement and data fusion technology with a goal of enhancing monitoring capabilities in terms of measurement accuracy and information richness,thereby improving the efficiency and precision of manufacturing.In a multisensor system,each sensor independently measures certain parameters.Then,the system uses a relevant signalprocessing algorithm to combine all of the independent measurements into a comprehensive set of measurement results.The purpose of this paper is to describe multisensor measurement and data fusion technology and its applications in precision monitoring systems.The architecture of multisensor measurement systems is reviewed,and some implementations in manufacturing systems are presented.In addition to the multisensor measurement system,related data fusion methods and algorithms are summarized.Further perspectives on multisensor monitoring and data fusion technology are included at the end of this paper.Lingbao Kong Xing Peng Yao Chen Ping Wang Min Xu 2020International Journal of Extreme Manufacturing2020,2,2:8
2KOH-Activated Porous Carbons Derived from Chestnut Shell with Superior Capacitive Performance显示文摘多孔的碳(PC ) 从生物资源经由包含碳化和 KOH 激活的一个二拍子的圆舞方法说出粟子壳的浪费被准备。形态学,毛孔结构和表面化学药品性质被扫描电子调查显微镜学(SEM ) , N 2 吸着,拉曼光谱学, X 光检查衍射(XRD ) 和 X 光检查光电子光谱学(XPS ) 。碳被一个二电极的系统在 6 mol/L KOH 电解质为 supercapacitors 作为电极材料评估了。得益于多孔的质地,高表面区域和高氧内容,从粟子壳导出的 PC 展出了 198.2 的高特定的电容( PC-1 ), 217.2 ( PC-2 )并且在 0.1 A·g −1,的当前的密度的 238.2 F·g −1( PC-3 )55.7%的好率能力,56.6%和54.9%在 0.1-20 A·g −1和 5.6 , 6.1 和 6.7 Wh·kg −1,的高精力密度的一个范围分别地。这被相信由于包含氧的组产生的丰富的 micropores 和额外的伪电容导致的电的双层电容。分别地,在 9000 Wh·kg −1, 的力量密度,精力密度是为 PC-1, PC-2 和 PC-3 的 3.1, 3.5 和 3.7 Wh·kg −1 表明碳的潜力在精力存储设备源于粟子壳。Man Jiang Jingli Zhang Lingbao Xing Jin Zhou Hongyou Cui Weijiang Si Shuping Zhuo 2016Chinese Journal of Chemistry2016,34,11:4
3Construction of porous covalent organic polymer as photocatalysts for RhB degradation under visible light显示文摘In the present work,a novel porous,and chemically stable amine-based covalent organic polymer(POP-1) was designed and synthesized under solvothermal conditions.The porosity,crystallinity,chemical stability,electrochemical properties,and diffuse reflectance of POP-1 were investigated via N_2 sorption experiment,power X-ray diffraction,thermogravimetric analysis,cyclic voltammetry,and ultraviolet visible near infrared spectrometry,respectively.POP-1 exhibits good chemical stability in both acidic and alkaline aqueous solutions,as well as in organic solvents.Undoped POP-1 can be directly used as a photocatalyst for rhodamine B irradiation degradation under light-emitting diode and natural light.The E_a of POP-1 for RhB degradation is 82.37 kJ/mol.Furthermore,POP-1 can be reused as a catalyst in RhB degradation without degraded catalytic activity.Pingxiao Liu Lingbao Xing Hongtao Lin Haining Wang Ziyan Zhou Zhongmin Su 2017Science Bulletin2017,62,13:2
4Three Dimensional Sulfur-doped Graphene Hydrogels with Tetrathiafulvalene for High Performance Supercapacitors显示文摘由把 tetrathiafulvalene 用作减少并且做代理人,三维(3D ) 做硫的 graphene hydrogels (SGH ) 轻易地在 dimethyl formamide 和水的混合溶剂被准备。几调查表明 TTF 在如此的唯一的 3D 体系结构的形成起一个关键作用,作为它不仅还原剂去进 3D 结构,而且罐头自己组装作为在减小进程做代理人被转变到 TTF ·+ 和 TTF 2+ 。同样准备的 SGH 的形态学,水晶结构,结合的化学药品,元素的作文和孔被学习了。得益于明确并且 cross-linked 3D 多孔的网络体系结构, supercapacitors 在 0.3 A·g −1 基于在 KOH 电解质的 SGH 展出了 212.5 F·g −1 的一个高特定的电容。而且,这个电容也证明好电气化学的稳定性和在骑车的重复控告 / 解除的可逆性的高度测试。Jingli Zhang Man Jiang Lingbao Xing Kun Qin Tianzhen Liu Jin Zhou Weijiang Si Hongyou Cui Shuping Zhuo 2016Chinese Journal of Chemistry2016,34,1:2
5Defect inspection technologies for additive manufacturing显示文摘Additive manufacturing(AM) technology is considered one of the most promising manufacturing technologies in the aerospace and defense industries. However, AM components are known to have various internal defects, such as powder agglomeration, balling, porosity,internal cracks and thermal/internal stress, which can significantly affect the quality, mechanical properties and safety of final parts. Therefore, defect inspection methods are important for reducing manufactured defects and improving the surface quality and mechanical properties of AM components. This paper describes defect inspection technologies and their applications in AM processes. The architecture of defects in AM processes is reviewed. Traditional defect detection technology and the surface defect detection methods based on deep learning are summarized, and future aspects are suggested.Yao Chen Xing Peng Lingbao Kong Guangxi Dong Afaf Remani Richard Leach 2021International Journal of Extreme Manufacturing2021,3,2:2
6An Artificial Light-Harvesting System with Tunable Fluorescence Color in Aqueous Sodium Dodecyl Sulfonate Micellar Systems for Photochemical Catalysis显示文摘Main observation and conclusion In the present work,an artificial light-harvesting system with fluorescence resonance energy transfer(FRET)is successfully fabricated in aqueous sodium dodecyl sulfonate(SDS)micellar systems.Since the tight and orderly arrangement of dodecyl in the SDS micelles is hydrophobic,tetra-(4-pyridylphenyl)ethylene(4PyTPE)can be easily encapsulated into the hydrophobic layer of SDS micelles through noncovalent interaction,which exhibits aggregation-induced emission(AIE)phenomenon and can be used as energy donor.By using amphoteric sulforhodamine 101(SR101)fluorescent dye attached to the negatively charged surface of SDS micelles through electrostatic interaction as energy acceptor,the light-harvesting FRET process can be efficiently simulated.Through the steady-state emission spectra analysis in the micelle-mediated energy transfer from 4PyTPE to SR101,the fluorescence emission can be tuned and white light emission with CIE coordinates of(0.31,0.29)can be successfully achieved by tuning the donor/acceptor ratio.More importantly,to better mimic natural photosynthesis,the SDS micelles with 4PyTPE and SR101 FRET system showed enhanced catalytic activity in photochemical catalysis for dehalogenation ofα-bromoacetophenone in aqueous solution and the photocatalytic reaction could be extended to gram levels.Xinglong Li Ying Wang Ao Song Minghui Zhang Mengning Chen Man Jiang Shengsheng Yu Rongzhou Wang Lingbao Xing 2021Chinese Journal of Chemistry2021,39,10:1
7Design of a Multi-sensor Monitoring System for Additive Manufacturing Process显示文摘Additive manufacturing(AM)technology is becoming increasingly feasible in industrial applications.Although AM systems continue to improve,the lack of repeatability and stability of these technologies remains an obstacle to industrial breakthroughs.Thus,AM process monitoring equipment has to be set up to supervise product quality and detect defects.This study first reviews the various categories of defects,relevant AM process signatures,and optical monitoring methods of powder bed fusion processes proposed so far.Then,according to the detection requirements,an optical process monitoring system based on multiple sensors is proposed,which is equipped with a white light imaging channel,an infrared imaging channel,and a polarization imaging channel.The aberrations can be optimized using Zemax software by appropriately selecting the optimization function operands.Thus,the design requirements for the multi-sensor monitoring system for the AM process can be achieved.Xing Peng Lingbao Kong Yao Chen Zhenyong Shan Lizhe Qi 2020Nanomanufacturing and Metrology2020,3,2:1
8Artificial light-harvesting systems and their applications in photocatalysis and cell labeling显示文摘Photosynthesis is the basis for the survival of organisms in nature;consequently,the fabrication of artificial light-harvesting systems(LHSs)that simulate natural photosynthesis is of significant interest.Recently,a variety of artificial LHSs have been successfully constructed using fluorescence resonance energy transfer(FRET).However,it is crucial to fabricate artificial LHSs with a sequential energy transfer process when considering that the natural photosynthetic process involves a multistep sequential energy transfer process rather than a simple one-step energy transfer.Moreover,many previously reported LHSs have been used as imaging agents for cell labeling and bioimaging or as catalysts in photocatalytic reactions,showing promise for applications simulating natural photosynthesis.In this review,we have summarized recently published representative work on artificial LHSs.In addition,the application of LHSs in photocatalysis and cell labeling has been described in detail.Ying Wang Ning Han Xinglong Li Shengsheng Yu Lingbao Xing 2022ChemPhysMater2022,1,4:0
9Detection and Characterization of Defects in Additive Manufacturing by Polarization-Based Imaging System显示文摘Additive manufacturing (AM) technology such as selective laser melting (SLM) often produces a high refection phenomenon that makes defect detection and information extraction challenging. Meanwhile, it is essential to establish a characterization method for defect analysis to provide sufcient information for process diagnosis and optimization. However, there is still a lack of universal standards for the characterization of defects in SLM parts. In this study, a polarization-based imaging system was proposed, and a set of characterization parameters for SLM defects was established. The contrast, defect contour information, and high refection suppression efect of the SLM part defects were analyzed. Comparative analysis was conducted on defect characterization parameters, including geometric and texture parameters. The experimental results demonstrated the efects of the polarization imaging system and verifed the feasibility of the defect feature extraction and characterization method. The research work provides an efective solution for defect detection and helps to establish a universal standard for defect characterization in additive manufacturing.Xing Peng Lingbao Kong 2023Chinese Journal of Mechanical Engineering2023,36,5:0
10Construction and application of the polyelectrolyte-based sequential artificial light-harvesting system显示文摘In this work,we have designed and synthesized a cyano-substituted p-phenylenevinylene derivative(PPTA),which can self-assemble into positively charged nanoparticles in an aqueous solution with a deep green fluorescence.An anionic polyelectrolyte material guar gum modified by carboxylic acid(GP5A)was chosen to build an artificial light-harvesting system(LHS)through self-assembly with PPTA,in which two acceptors Eosin Y(EY)and Nile red(NiR)were loaded into the PPTA-GP5A assemblies through electrostatic interaction and Van der Waals force.By adjusting the molar ratio of PPTA-GP5A/EY at 1:0.004,the one-step artificial LHS can exhibit high energy transfer efficiency(Φ_(ET))(38.9%)and antenna effect(AE)(4.6).Subsequently,with the addition of NiR,theΦET and AE of the two-step sequential artificial LHS were calculated to be 71.9%and 13.5,respectively.Moreover,the two-step artificial LHS constructed by the polyelectrolyte material GP5A can be used as a nanoreactor to photocatalyst alkylation of C-H bonds of phenyl vinyl sulfone(PVS)and tetrahydrofuran(THF)in water with a yield of 42%.Therefore,we have constructed an artificial LHS with two-step energy transfer based on polyelectrolytes through the electrostatic interaction to improve energy transfer efficiency,which can also be used as a nanoreactor for photocatalysis.Chaoqun Ma Ning Han Ying Wang Hui Liu Rongzhou Wang Shengsheng Yu Yuebo Wang Lingbao Xing 2023Chinese Chemical Letters2023,34,8:0
11Designing Oxide Catalysts for Oxygen Electrocatalysis: Insights from Mechanism to Application显示文摘The electrochemical oxygen reduction reaction(ORR) and oxygen evolution reaction(OER) are fundamental processes in a range of energy conversion devices such as fuel cells and metal–air batteries. ORR and OER both have significant activation barriers, which severely limit the overall performance of energy conversion devices that utilize ORR/OER. Meanwhile, ORR is another very important electrochemical reaction involving oxygen that has been widely investigated. ORR occurs in aqueous solutions via two pathways: the direct 4-electron reduction or 2-electron reduction pathways from O_(2) to water(H_2O) or from O_(2) to hydrogen peroxide(H_2O_(2)). Noble metal electrocatalysts are often used to catalyze OER and ORR, despite the fact that noble metal electrocatalysts have certain intrinsic limitations, such as low storage. Thus, it is urgent to develop more active and stable low-cost electrocatalysts, especially for severe environments(e.g., acidic media). Theoretically, an ideal oxygen electrocatalyst should provide adequate binding to oxygen species. Transition metals not belonging to the platinum group metal-based oxides are a low-cost substance that could give a d orbital for oxygen species binding. As a result, transition metal oxides are regarded as a substitute for typical precious metal oxygen electrocatalysts. However, the development of oxide catalysts for oxygen reduction and oxygen evolution reactions still faces significant challenges, e.g., catalytic activity, stability, cost, and reaction mechanism. We discuss the fundamental principles underlying the design of oxide catalysts, including the influence of crystal structure, and electronic structure on their performance. We also discuss the challenges associated with developing oxide catalysts and the potential strategies to overcome these challenges.Ning Han Wei Zhang Wei Guo Hui Pan Bo Jiang Lingbao Xing Hao Tian Guoxiu Wang Xuan Zhang Jan Fransaer 2023Nano-Micro Letters2023,15,10:0
12Metal-ligand cooperative iridium complex catalyzed C-alkylation of oxindole and 1,3-dimethylbarbituric acid using alcohols显示文摘A general and high-efficiency C-alkylation of oxindoles and barbituric acids has been developed by a Cp*Ir complex[Cp*Ir(2,20-bpyO)(OH)]Na with a bipyridine-based functional ligand.In particular,H_(2)O was selected as the solvent instead of the organic solvent in this catalytic system.Through mild reaction conditions gave a variety of corresponding alkylated heterocyclic compounds with good to excellent yields.More importantly,the gramscale C-alkylation reaction was successfully carried out with good yield using a common route with only a single purification by column chromatography.Ao Song Yunbo Liu Xuan Jin Dianrun Su Zhaopeng Li Shengsheng Yu Lingbao Xing Xiangchao Xu Rongzhou Wang Feng Li 2023Green Synthesis and Catalysis2023,4,3:0
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