|
|
|
题名
|
作者
|
年代
|
出处
|
被引量
|
| 1 | Magnetic yolk-shell structured anatase-based microspheres loaded with Au nanoparticles for heterogeneous catalysis显示文摘磁性的蛋黄壳组织了基于锐钛矿的 microspheres 在磁铁矿粒子上通过连续、灵巧的大音阶的第五音胶化涂层被制作,由退火列在后面处理。在与金 nanoparticles 装载之上,获得的功能的磁性的 microspheres 在向苯乙烯氧化物与非凡的高变换(89.5%) 和选择(90.8%) 催化苯乙烯的 epoxidation 作为异构的催化剂显示出优异性能。这些迷人的材料的构造过程为创造另外的功能的 nanocomposites 展示许多含意,这被相信。 | Chun Wang Junchen Chen Xinran Zhou Wei Li Yong Liu Qin Yue Zhaoteng Xue Yuhui Li Ahmed A. Elzatahry Yonghui Deng Dongyuan Zhao | 2015 | Nano Research2015,8,1: | 7 |
| 2 | Joint formation mechanism of high depth-to-width ratio friction stir welding显示文摘High depth-to-width ratio friction stir welding is an attractive method for the joining demands of alum inum profiles, which is sparked with its extrem ely low heat input and high mechanical performance. In this study, the joint form ation mechanism was studied by a num erical model of plastic flow combined with experim ental approaches. A fluid-solid-interaction algorithm was proposed to establish the coupling model, and the material to be welded was treated as non-New tonian fluid. The thread structure and the milling facets on tool pin prom oted drastic turbulence of material. The thread structure converged the plasticized material by its inclined plane, and then drove the attached material to refill the welds. The milling facets brought about the periodic dynamic material flow. The thread structure and the milling facets increased the strain rate greatly under the extremely low heat input, which avoided the welding defects. The condition of the peak tem perature of 648 K and the strain rate of 151 s^-1 attributed to the lowest coarsening degree of precipitate. The tensile strength of the joint reached 265 MPa, equivalent to 86% of base material. The amelioration via the material flow model inhibits the welding defects and optimizes the param eter intervals, providing references to extracting process-structure-property linkages for friction stir welding. | Yongxian Huang Yuming Xie Xiangchen Meng Junchen Li Li Zhou | 2019 | Journal of Materials Science & Technology2019,35,7: | 2 |
| 3 | 珠三角秋季硝酸盐气溶胶致霾污染的区域性特征显示文摘为研究珠三角地区大气霾污染特征和形成机制,于2014年秋季在区域内三个典型观测站同步开展了细颗粒物外场观测。结果表明,三个站点大气细颗粒物及其化学组分质量浓度的时间变化趋势高度一致,呈现出区域性特征。结合气象因素分析,发现珠三角区域霾污染的形成受到中尺度的静态天气形势的影响。随着霾污染过程的发展,细颗粒物中硝酸盐的比例显著增加,移动源的贡献较大。结合后向气流轨迹和卫星火点分布,证实区域内的生物质燃烧会加剧大气霾污染的强度。为进一步改善珠三角的空气质量,建议在区域尺度上实施联防联控的减排方案。 | GUO Junchen ZHOU Shengzhen SUN Xi HUANG Minjuan DONG Hanying CHANG Ming FAN Qi FAN Shaojia WANG Xuemei | 2020 | Atmospheric and Oceanic Science Letters2020,13,3: | 0 |
| 4 | Yellow-Fluorescence Carbon Dots Employed for pH Sensing and Detection of Tigecycline显示文摘Long-wavelength fluorescence carbon dots (CDs) show great importance in multiple fields,especially for the biochemical sensing.Here,we proposed one type of CDs doped with nitrogen and sulfur through the hydrothermal method,which exhibited obvious yellow-fluorescence in aqueous solution.Importantly,the fluorescence intensity of CDs decreased with pH decreasing in the acidic range,thus a linear relationship between pH and fluorescence intensity was established,exhibiting the potential of pH sensing.Additionally,introducing tigecycline into CDs resulted in their decreased fluorescence,thus,we further established a strategy of detecting tigecycline with the concentration range of 200 μM to 7 nM.Meanwhile,we elucidated the static quenching as the major mechanism for CDs responding tigecycline,which was induced by the formed new complex between CDs and tigecycline.Furthermore,the practicality of the method was verified by examining the recovery of tigecycline in the actual lake-water samples. | Jingwen Zhao Junchen Wang Linggao Zeng Sen Zhou Xiaoming Yang | 2023 | Chinese Journal of Chemistry2023,41,24: | 0 |
| 5 | Simple and scalable synthesis of super-repellent multilayer nanocomposite coating on Mg alloy with mechanochemical robustness,high-temperature endurance and electric protection显示文摘Multi-functionalization is the future development direction for protective coatings on metal surface,but has not yet been explored a lot.The effective integration of multiple functions into one material remains a huge challenge.Herein,a superhydrophobic multilayer coating integrated with multidimensional organic-inorganic components is designed on magnesium alloy via one-step plasma-induced thermal field assisted crosslinking deposition(PTCD)processing followed by after-thermal modification.Hard porous MgO ceramic layer and polytetrafluoroethylene(PTFE)nano-particles work as the bottom layer skeleton and filler components separately,forming an organic-inorganic multilayer structure,in which organic nano-particles can be crosslinked and cured to form a compact polymer-like outer layer with hierarchical surface textures.Remarkably,the chemical robustness after prolonged exposure to aqua regia,strong base and simulated seawater solution profits from polymer-like nanocomposite layer uniformly and compactly across the film bulk.Moreover,the self-similar multilayer structure coating endows it attractive functions of strong mechanical robustness(>100th cyclic rotary abrasion),stable and ultra-low friction coefficient(about 0.084),high-temperature endurance,and robust self-cleaning.The organic-inorganic multilayer coating also exhibits high insulating property with breakdown voltage of 1351.8±42.4 V,dielectric strength of 21.4±0.7 V/μm and resistivity of 3.2×10^(10)Ω·cm.The excellent multifunction benefits from ceramic bottom skeleton,the assembly and deposition of multidimensional nano-particles,and the synergistic effect of organic inorganic components.This study paves the way for designing next generation protective coating on magnesium alloy with great potential for multifunctional applications. | Shuqi Wang Yaming Wang Junchen Chen Yongchun Zou Jiahu Ouyang Dechang Jia Yu Zhou | 2022 | Journal of Magnesium and Alloys2022,10,9: | 0 |
| 6 | Incorporating metal nanoparticles in porous materials via selective heating effect using microwave显示文摘Metal nanoparticle@porous material composites have attracted increasing attention due to their excellent synergistic catalytic performance.However,it is a challenge to introduce metal nanoparticles into cavities of porous materials without agglomeration on the exterior.Despite the progress achieved,a universal approach that can integrate different kinds of metal nanoparticles and porous materials is still highly desirable.Here we report a facile and general approach to fabricating metal nanoparticle@porous materials by microwave-triggered selective heating.The microwave can pass through the non-polar solvent and act on the polar solvent in the porous materials,causing the polar solvent to be heated,vaporized,and away from the pores of porous materials.The local void produced by the escape of polar solvent facilitates non-polar solvent containing metallic precursor to be dragged into the narrow pores,followed by further reduction,resulting in the complete encapsulation of nanoparticles.A series of metal nanoparticles@porous materials,ranging from metal-organic frameworks(MOFs)to zeolites,are successfully prepared by this method and show excellent size selectivity in catalytic reactions. | Yingyu Zhou Jiacheng Liu Fuyuan Sun Junchen Ouyang Ruifa Su Fanchen Meng Yongqi Luo Cheng Xu Weina Zhang Suoying Zhang Fengwei Huo | 2024 | Nano Research2024,17,4: | 0 |
| 7 | Severe Anemia in a Patient With Mild T Cell Hypofunction Infected With Parvovirus B19显示文摘Background Parvovirus B19 is a single-stranded DNA virus with a 5.6 kilobase DNA genome and a diameter of 22–24nm.1 This virus does not possess an envelope and it is the most pathogenic virus belonging to the family of Parvoviridae that infects human beings.2 The main diseases caused by parvovirus B19 are as follows:(1)infectious erythema(also known as fifth disease,erythema infection),a cause of a common rash in pediatric patients;(2)joint disease;(3)aplastic anemia crisis in patients with chronic hemolytic disease;(4)chronic anemia in immunodeficient patients;(5)fetal hydrops in addition to stillbirth and abortion(fetal death). | Xiaoxin Wu Xiumei Zhou Liang Yu Junchen Linjian Zhang Jiaqi Li Yalei Zhao Xiaowei Xu | 2020 | Infectious Microbes & Diseases2020,2,2: | 0 |
| 8 | Two‑Level Biomimetic Designs Enable Intelligent Stress Dispersion for Super‑Foldable C/NiS Nanofiber Free‑Standing Electrode显示文摘Due to the lack of in-depth understanding about the folding issues of the electronic materials,it is a huge challenge to pre-pare a super-foldable and highly electrochemical faradic electrode.Here,inspired from from the fully nimble structures of cuit cocoons and cockscomb petals,with two-level biomimetic design,for the first time we prepared a super-foldable and electrochemically functional freestanding cathode,made of C-fiber@NiS-cockscomb(SFCNi).In virtue of its nimble biomi-metic structures,SFCNi can remarkably sustain over 100,000 times,repeated true-folding without composite fibers fracture,functional matters detachment,conductivity degradation,or electrochemical performance change.The main mechanism behind these behaviors was disclosed by Real-time scanning electron microscopy and mechanical simulations,on the folding process.Results unveil that the cockscomb-like NiS with atomic thickness can deform freely due to the need of bending,and the cuit-cocoon-like SFCNi can generate an“ε-shape”folding structure at the crease.Such a smart self-adaptive deforma-tion capability can effectively reduce the effect of stresses and local excessive deformations,so that the chemical bonds can preserve their interaction,and the material won’t fracture.This subtle and exceptional mechanical behavior realizes a super-foldable property.The two-level biomimetic design strategy is a novel method for fabrication of super-foldable composite electrodes and integrated multi-functional super-foldable devices. | Guangtao Zan Tong Wu Wenya Dong Junchen Zhou Teng Tu Ruoxuan Xu Yun Chen Ying Wang Qingsheng Wu | 2022 | Advanced Fiber Materials2022,4,5: | 0 |
| 9 | Converting rubber seed oil into hydrocarbon fuels via supported Pd-catalyst显示文摘The one-step hydrotreatment of rubber seed oil to produce hydrocarbon fuels has been carried out via supported Pd-catalyst,and analyzed emphatically some elements affected catalytic cracking process,for example,temperature,hydrogen partial pressure and dosage of catalyst,etc.Through experimental research,the author found out the appropriate catalytic cracking conditions as follows:310℃ of reaction temperature,2 MPa of hydrogen partial pressure,15 of the ratio of oil to catalyst(m(oil)/m(catalyst)),100 r/min of stirring speed.Under these conditions,effective component of hydrocarbon fuels in the converted oil accounts for 99.49%,and the proportion of C_(8)-C_(16) can reach as high as 79.61%.The converted oil was similar to petroleum-based oil in chemical composition,and can be used for future the aviation biofuels development as the source of raw material because it contains a large amount of hydrocarbon in the range of C_(8)-C_(16). | Chen Yubao Hao Yajie Zhao Yongyan Zhou Liming Yang Shunping Gao Yanni Ma Jiangli Du Junchen Dona Souliyathai Zhang Aimin | 2017 | International Journal of Agricultural and Biological Engineering2017,10,6: | 0 |