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Preparation of micro/nano-structured ceramic coatings on Ti6Al4V alloy by plasma electrolytic oxidation process 被引量:10
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作者 Da-jun ZHAI Ke-qin FENG 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2019年第12期2546-2555,共10页
In order to improve the osseointegration and antibacterial activity of titanium alloys,micro/nano-structured ceramic coatings doped with antibacterial element F were prepared by plasma electrolytic oxidation(PEO)proce... In order to improve the osseointegration and antibacterial activity of titanium alloys,micro/nano-structured ceramic coatings doped with antibacterial element F were prepared by plasma electrolytic oxidation(PEO)process on Ti6Al4V alloy in NaF electrolyte.The influence of NaF concentration(0.15-0.50 mol/L)on the PEO process,microstructure,phase composition,corrosion resistance and thickness of the coatings was investigated using scanning/transmission electron microscopy,energy dispersive spectroscopy,atomic force microscopy,X-ray diffractometer,and potentiodynamic polarization.The results demonstrated that Ti6Al4V alloy had low PEO voltage(less than 200 V)in NaF electrolyte,which decreased further as the NaF concentration increased.A micro/nano-structured coating with 10-15μm pits and 200-800 nm pores was formed in NaF electrolyte;the morphology was different from the typical pancake structure obtained with other electrolytes.The coating formed in NaF electrolyte had low surface roughness and was thin(<4μm).The NaF concentration had a small effect on the phase transition from metastable anatase phase to stable rutile phase,but greatly affected the corrosion resistance.In general,as the NaF concentration increased,the surface roughness,phase(anatase and rutile)contents,corrosion resistance,and thickness of the coating first increased and then decreased,reaching the maximum values at 0.25 mol/L NaF. 展开更多
关键词 plasma electrolytic oxidation Ti6Al4V alloy micro/nano structure NAF surface modification
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Pushing the frontiers: Chip-based detection based on micro-and nano-structures 被引量:1
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作者 Meihui Liu Xinyuan Zhou +2 位作者 Xiao Li Zhenjie Xue Tie Wang 《Chinese Chemical Letters》 SCIE CAS CSCD 2024年第4期86-98,共13页
Changes in trace substances in human metabolites, which are related to disease processes and health status, can serve as chemical markers for disease diagnosis and symptom monitoring. Real-time online detection is an ... Changes in trace substances in human metabolites, which are related to disease processes and health status, can serve as chemical markers for disease diagnosis and symptom monitoring. Real-time online detection is an inevitable trend for the future of health monitoring, and the construction of chips for detection faces major challenges. The response of sensors often fails to meet the requirements for chipbased detection of trace substances due to the low efficiency of interfacial heterogeneous reactions, necessitating a rational design approach for micro-and nano-structures to improve sensor performance with respect to sensitivity and detection limits. This review focuses on the influence of micro-and nanostructures that used in chip on sensing. Firstly, this review categorizes sensors into chemiresistors, electrochemical sensors, fluorescence sensors, and surface enhanced Raman scattering(SERS) sensors based on their sensing principle, which have significant applications in disease diagnosis. Subsequently, commencing from the application requirements in the field of sensing, this review focuses on the different structures of nanoparticle(NP) assemblies, including wire, layered, core-shell, hollow, concave and deformable structures. These structures change in the size, shape, and morphology of conventional structures to achieve characteristics such as ordered alignment, high specific surface area, space limitation,vertical diffusion, and swaying behavior with fluid, thereby addressing issues such as poor signal transmission efficiency, inadequate adsorption and capture capacity, and slow mass transfer speed during sensing. Finally, the design direction of micro-and nano-structures, and possible obstacles and solutions to promote chip-based detection have been discussed. It is hope that this article will inspire the exploration of interface micro-and nano-structures modulated sensing methods. 展开更多
关键词 Chip-based detection micro-and nano-structures Real-time online detection Sensing Health monitoring
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A Novel Nano-Structured Die Steel with High Strength and High Thermal Stability
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作者 Xinhao Li Jieli Ma +1 位作者 Yiren Wang Yong Jiang 《Acta Metallurgica Sinica(English Letters)》 2025年第9期1591-1603,共13页
A novel oxide-dispersion-strengthened(ODS)die steel was fabricated by mechanical alloying and hot consolidation.Annealing and quench-tempering treatments both obtained an ultra-fine grain structure(mean size:310-330 n... A novel oxide-dispersion-strengthened(ODS)die steel was fabricated by mechanical alloying and hot consolidation.Annealing and quench-tempering treatments both obtained an ultra-fine grain structure(mean size:310-330 nm)with an ultra-high density of ultra-fine Y-Al-O nano-oxides(number density:~(1-1.5)×10^(23)m^(−3),mean size:5.1-7.2 nm).Prolonged thermal exposure further induced the new,highly dense precipitation of ultra-fine Y-Zr-O nano-oxides.Both nano-oxides tended to be wrapped up with a B2-NiAl nano-shells.Although the quench-tempered sample showed much higher room-temperature strength(yield strength=1393±40 MPa and ultimate tensile strength=1774±11 MPa)and slightly lower elongation(elongation=13.6%±0.6%)than the annealed sample(YS=988±7 MPa,UTS=1490±12 MPa,and EL=15.2%±1.1%),both samples exhibited better strength-ductility synergy at room temperature and much higher thermal stabilities at high temperatures(600-700℃)than all those conventional hot-work die steels,which makes the new ODS steel highly promising for advanced hot-work mold and die applications at high temperatures above 600℃. 展开更多
关键词 Hot-work die steel Oxide-dispersion-strengthened nano-structure Core-shelled Thermal stability
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Facile synthesis and electrochemical sodium storage of CoS2 micro/nano-structures 被引量:11
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作者 Xue Liu Kai Zhang +3 位作者 Kaixiang Lei Fujun Li Zhanliang Tao Jun Chen 《Nano Research》 SCIE EI CAS CSCD 2016年第1期198-206,共9页
We report the synthesis and electrochemical sodium storage of cobalt disulfide (COS2) with various micro/nano-structures. CoS2 with microscale sizes are either assembled by nanoparticles (P-CoS2) via a facile solv... We report the synthesis and electrochemical sodium storage of cobalt disulfide (COS2) with various micro/nano-structures. CoS2 with microscale sizes are either assembled by nanoparticles (P-CoS2) via a facile solvothermal route or nano- octahedrons constructed solid (O-COS2) and hollow microstructures (H-CoS2) fabricated by hydrothermal methods. Among three morphologies, H-CoS2 exhibits the largest discharge capacities and best rate performance as anode of sodium-ion batteries (SIBs). Furthermore, H-CoS2 delivers a capacity of 690 mA.h.g 1 at 1 A·g 1 after 100 cycles in a potential range of 0.1-3.0 V, and N240 mA.h.g-1 over 800 cycles in the potential window of 1.0-3.0 V. This cycling difference mainly lies in the two discharge plateaus observed in 0.1-3.0 V and one discharge plateau in 1.0-3.0 V. To interpret the reactions, X-ray diffraction (XRD) and transmission electron microscopy (TEM) are applied. The results show that at the first plateau around 1.4 V, the insertion reaction (COS2 + xNa* + xe NaxCoS2) Occurs; while at the second plateau around 0.6 V, the conversion reaction (NaxCoS2 + (4 - x) Na+ + (4 - x)e -~ Co + 2Na2S) takes place. This provides insights for electrochemical sodium storage of CoS2 as the anode of SIBs. 展开更多
关键词 cobalt disulfide micro/nano-structures sodium storagemechanism cycling stability
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Micro/nano-structured TiO2 surface with dual-functional antibacterial effects for biomedical applications 被引量:15
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作者 Xiang Ge Chengzu Ren +10 位作者 Yonghui Ding Guang Chen Xiong Lu Kefeng Wang Fuzeng Ren Meng Yang Zhuochen Wang Junlan Li Xinxin An Bao Qian Yang Leng 《Bioactive Materials》 SCIE 2019年第1期346-357,共12页
Implant-associated infections are generally difficult to cure owing to the bacterial antibiotic resistance which is attributed to the widespread usage of antibiotics.Given the global threat and increasing influence of... Implant-associated infections are generally difficult to cure owing to the bacterial antibiotic resistance which is attributed to the widespread usage of antibiotics.Given the global threat and increasing influence of antibiotic resistance,there is an urgent demand to explore novel antibacterial strategies other than using antibiotics.Recently,using a certain surface topography to provide a more persistent antibacterial solution attracts more and more attention.However,the clinical application of biomimetic nano-pillar array is not satisfactory,mainly because its antibacterial ability against Gram-positive strain is not good enough.Thus,the pillar array should be equipped with other antibacterial agents to fulfill the bacteriostatic and bactericidal requirements of clinical application.Here,we designed a novel model substrate which was a combination of periodic micro/nano-pillar array and TiO2 for basically understanding the topographical bacteriostatic effects of periodic micro/nano-pillar array and the photocatalytic bactericidal activity of TiO2.Such innovation may potentially exert the synergistic effects by integrating the persistent topographical antibacterial activity and the non-invasive X-ray induced photocatalytic antibacterial property of TiO2 to combat against antibiotic-resistant implant-associated infections.First,to separately verify the topographical antibacterial activity of TiO2 periodic micro/nano-pillar array,we systematically investigated its effects on bacterial adhesion,growth,proliferation,and viability in the dark without involving the photocatalysis of TiO2.The pillar array with sub-micron motif size can significantly inhibit the adhesion,growth,and proliferation of Staphylococcus aureus(S.aureus)and Escherichia coli(E.coli).Such antibacterial ability is mainly attributed to a spatial confinement size-effect and limited contact area availability generated by the special topography of pillar array.Moreover,the pillar array is not lethal to S.aureus and E.coli in 24 h.Then,the X-ray induced photocatalytic antibacterial property of TiO2 periodic micro/nano-pillar array in vitro and in vivo will be systematically studied in a future work.This study could shed light on the direction of surface topography design for future medical implants to combat against antibiotic-resistant implant-associated infections without using antibiotics. 展开更多
关键词 Titanium dioxide micro/nano-structured surface Topographical bacteriostatic activity Photocatalytic bactericidal property Non-invasive treatment
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Fabrication of micro/nano-structures by electrohydrodynamic jet technique 被引量:4
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作者 Dazhi WANG Xiaojun ZHAO +4 位作者 Yigao LIN Tongqun REN Junsheng LIANG Chong LIU Liding WANG 《Frontiers of Mechanical Engineering》 SCIE CSCD 2017年第4期477-489,共13页
Electrohydrodynamicjet (E-Jet) is an approach to the fabrication of micro/nano-structures by the use of electrical forces. In this process, the liquid is subjected to electrical and mechanical forces to form a liqui... Electrohydrodynamicjet (E-Jet) is an approach to the fabrication of micro/nano-structures by the use of electrical forces. In this process, the liquid is subjected to electrical and mechanical forces to form a liquid jet, which is further disintegrated into droplets. The major advantage of the E-Jet technique is that the sizes of the jet formed can be at the nanoscale far smaller than the nozzle size, which can realize high printing resolution with less risk of nozzle blockage. The E-Jet technique, which mainly includes E-Jet deposition and E-Jet printing, has a wide range of applications in the fabrication ofmicro/nano-structures for micro/nano-electromechanical system devices. This tech- nique is also considered a micro/nano-fabrication method with a great potential for commercial use. This study mainly reviews the E-Jet deposition/printing fundamentals, fabrication process, and applications. 展开更多
关键词 electrohydrodynamic jet deposition electro-hydrodynamic jet printing micro/nano-structures film
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Nonswellable hydrogels with robust micro/nano-structures and durable superoleophobic surfaces under seawater 被引量:3
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作者 Ling Lin Hui Yi +6 位作者 Xinglin Guo Pengchao Zhang Lie Chen Dezhao Hao Shutao Wang Mingjie Liu Lei Jiang 《Science China Chemistry》 SCIE EI CAS CSCD 2018年第1期64-70,共7页
Hydrogels, composed mainly of water trapped in three dimensional cross-linked polymer networks, have been widely utilized to construct underwater superoleophobic surfaces. However, the swelling nature and instability ... Hydrogels, composed mainly of water trapped in three dimensional cross-linked polymer networks, have been widely utilized to construct underwater superoleophobic surfaces. However, the swelling nature and instability of hydrogels under complex marine environment will weaken their underwater superoleophobicity. Herein, we synthesize structured poly (2-hydroxyethylmethacrylate) (PHEMA) hydrogels by using sandpaper as templates. The robust non-swelling of PHEMA hydrogel ensures that micro/nano-structures on the surface of PHEMA hydrogels can be well maintained. Moreover, when roughness Ra of about 3-4 bun, the surface has superior oil-repellency. Additionally, even after immersing in seawater for one-month, their breaking strength and toughness can be well kept. The non-swellable hydrogels with long-term stable under seawater superoleophobicity will promote the development of robust superoleophobic materials in marine antifouling coatings, biomedical devices and oil/water separation. 展开更多
关键词 BIO-INSPIRED underwater superoleophobic micro/nano-structures nonswellable hydrogel mechanical strength
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Engineering nano-structures with controllable dimensional features on micro-topographical titanium surfaces to modulate the activation degree of M1 macrophages and their osteogenic potential 被引量:2
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作者 Luxin Liang Qianli Huang +4 位作者 Hong Wu Hao He Guanghua Lei Dapeng Zhao Kun Zhou 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2022年第1期167-178,共12页
Modulating the activation state and degree of macrophages still remains as a challenge for the topographical design of Ti-based implants.In this work,micro/nano-structured coatings were prepared on Ti substrates by mi... Modulating the activation state and degree of macrophages still remains as a challenge for the topographical design of Ti-based implants.In this work,micro/nano-structured coatings were prepared on Ti substrates by micro-arc oxidation(MAO)and subsequent hydrothermal(HT)treatment.By varying the HT conditions,plate-like nano-structures with an average length of 80,440 or 780 nm were obtained on MAO-prepared micro-topographical surfaces.Depending on the dimensional features of nano-plates,the specimens were noted as Micro,Micro/Nano-180,Micro/Nano-440 and Micro/Nano-780,respectively.The in vitro results showed that the activation state and degree of macrophages could be effectively modulated by the micro/nano-structured surfaces with various dimensional features.Compared to the Micro surface,the Micro/Nano-180 surface activated both M1 and M2 phenotype in macrophages,while the Micro/Nano-440 and Micro/Nano-780 surfaces polarized macrophages to their M1 phenotype.The activation degree of M1 macrophages followed the trend:Micro<Micro/Nano-180<Micro/Nano-440<Micro/Nano-780.However,the osteogenic potential of the activated macrophages in response to various surfaces were in the order:Micro≈Micro/Nano-780<Micro/Nano-180<Micro/Nano-440.Together,the findings presented in this work indicate that engineering nano-structures with controllable dimensional features is a promising strategy to modulate macrophage activation state and degree.In addition,it is essential to determine the appropriate activation degree of M1 macrophages for enhanced osteogenesis. 展开更多
关键词 Titanium micro/nano-structures Macrophages activation Inflammatory response OSTEOGENESIS
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基于专利视角的Micro LED产业技术态势分析
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作者 胡思思 李贞贞 《世界科技研究与发展》 2025年第5期651-662,共12页
Micro LED作为新一代显示技术,凭借高亮度、高分辨率、低功耗等特性成为全球显示产业竞争焦点。本文基于专利计量与BERTopic模型方法,对全球Micro LED技术开展专利分析,从技术分布、创新主体、技术主题、法律状态、价值分布等多个维度,... Micro LED作为新一代显示技术,凭借高亮度、高分辨率、低功耗等特性成为全球显示产业竞争焦点。本文基于专利计量与BERTopic模型方法,对全球Micro LED技术开展专利分析,从技术分布、创新主体、技术主题、法律状态、价值分布等多个维度,系统梳理了该领域的发展现状与趋势。研究表明:中国的专利申请量占据全球主导地位,但高价值专利仍集中于美国和日本等发达国家;显示设备、量子点/全彩化、显示应用、材料与元器件、芯片及显示屏六大领域是专利技术重点细分方向;巨量转移、全彩显示等关键技术仍处于突破阶段,产业生态需进一步完善;光电子与集成电路、人工智能等电子信息技术的深度融合进一步驱动Micro LED技术向高精度、高集成度方向发展。基于分析结果,本文从核心技术突破、产学研协同机制、差异化应用场景、国际竞争力提升等方面提出建议,为中国Micro LED产业高质量发展提供参考。 展开更多
关键词 micro LED 专利分析 BERTopic 巨量转移 全彩显示
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Micro LED表面缺陷的快速高精度检测 被引量:2
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作者 赵天元 董登峰 +2 位作者 王国名 王博 周维虎 《光学精密工程》 北大核心 2025年第9期1434-1445,共12页
为了满足Micro LED缺陷检测对实时性和高精度的要求,结合轻量化的设计和增强的特征提取能力,提出了一种快速高精度的检测算法LED-YOLO。该方法通过设计图像采集系统并结合多种数据增广策略,模拟工业环境中的实际干扰,增强了训练数据的... 为了满足Micro LED缺陷检测对实时性和高精度的要求,结合轻量化的设计和增强的特征提取能力,提出了一种快速高精度的检测算法LED-YOLO。该方法通过设计图像采集系统并结合多种数据增广策略,模拟工业环境中的实际干扰,增强了训练数据的多样性。针对Micro LED缺陷的低区分度问题,提出了轻量级动态融合模块(Lightweight Dynamic Fusion Module,LDFM),该模块结合动态卷积、深度卷积和通道混合操作,在保持模型轻量化的同时,提升了特征表达能力。为了进一步加强缺陷区域的关注,设计了增强协调注意力模块(Enhanced Coordinate Attention Module,ECAM),通过结合通道和空间注意力机制及残差连接,增强了特征提取的准确性。最后,考虑到Micro LED图像的纵横比变化较小,引入动态聚焦机制,提出了DIoU_W回归损失函数,显著提高了模型的收敛速度和稳定性。实验结果表明,LED-YOLO的检测准确率、召回率、mAP、F1值均优于目前最先进的YOLOv11s模型,在参数量减少1.6 M的情况下,检测速度和检测精度均有明显提升,可以有效满足实际Micro LED面板制造过程的质量检验需求。 展开更多
关键词 深度学习 micro LED 缺陷检测 动态卷积 注意力机制
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基于量子点颜色转换层的Micro LED研究进展
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作者 程旭东 陈祖康 +3 位作者 张针霖 朱艳青 徐刚 徐雪青 《新能源进展》 北大核心 2025年第1期107-120,共14页
微发光二极管(Micro LED)显示器是由微米级半导体发光像元阵列所组成的新型显示技术,是显示技术与LED技术复合集成的综合性技术。与液晶显示器和有机发光二极管显示器相比,Micro LED具有对比度高、功耗低、寿命长、响应时间短等优点。然... 微发光二极管(Micro LED)显示器是由微米级半导体发光像元阵列所组成的新型显示技术,是显示技术与LED技术复合集成的综合性技术。与液晶显示器和有机发光二极管显示器相比,Micro LED具有对比度高、功耗低、寿命长、响应时间短等优点。然而,由于LED芯片尺寸缩小至20μm以下,导致其吸收截面减小,使得传统的荧光粉颜色转换技术无法提供足够的亮度和产量,以满足高分辨率显示的需求。而量子点材料凭借其高量子产率、宽色域、颜色可调等优点,有望成为代替荧光粉的最佳材料。结合了量子点颜色转换技术的Micro LED光电器件具有高亮度、高效率和宽色域的优势,在显示领域具有广阔的应用前景。目前许多学界和产业界的研究者对全彩显示的Micro LED进行了深入研究,逐步实现了Micro LED的商业化。简要回顾了广泛应用于显示领域的量子点材料合成和优异性能的重要研究成果,然后以印刷技术、光刻技术、微流控技术、激光写入技术这四种效果突出的颜色转换层沉积工艺分类总结了基于量子点颜色转换技术Micro LED的全彩显示策略与性能优劣。最后,对基于量子点颜色转换层的Micro LED光电器件的应用前景进行了展望。 展开更多
关键词 量子点 micro LED 颜色转换层 全彩显示
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幽门螺杆菌感染与胃癌组织p27、CyclinD1、MMP-9蛋白和相关microRNA表达及临床病理特征的关系分析
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作者 赵剑 戴敏 +1 位作者 孙燃 许亚军 《实用医学杂志》 北大核心 2025年第18期2890-2897,共8页
目的 分析幽门螺杆菌(Hp)感染与胃癌(GC)组织p27、细胞周期蛋白D1(CyclinD1)、基质金属蛋白酶9(MMP-9)蛋白和相关微小核糖核酸(microRNA)表达及临床病理特征的关系。方法 收集行手术切除的116例GC患者,根据Hp感染情况分为Hp阳性组、Hp... 目的 分析幽门螺杆菌(Hp)感染与胃癌(GC)组织p27、细胞周期蛋白D1(CyclinD1)、基质金属蛋白酶9(MMP-9)蛋白和相关微小核糖核酸(microRNA)表达及临床病理特征的关系。方法 收集行手术切除的116例GC患者,根据Hp感染情况分为Hp阳性组、Hp阴性组,分别为76、40例,Hp阳性组患者根据预后情况又分为良好预后组、不良预后组,分别为56、20例。比较癌组织和癌旁组织及各组p27、CyclinD1、MMP-9蛋白和miR-490-3p、miR-146a表达,分析癌组织p27、CyclinD1、MMP-9蛋白和miR-490-3p、miR-146a表达与Hp阳性GC患者临床病理特征及预后的关系,同时分析Hp阳性GC患者不良预后发生的危险因素,并构建预测模型探索其预测价值。结果 GC组织p27蛋白和miR-490-3p表达低于癌旁组织,而CyclinD1、MMP-9蛋白和miR-146a表达高于癌旁组织(P<0.05),Hp阳性组癌组织p27蛋白和miR-490-3p表达低于Hp阴性组,而CyclinD1、MMP-9蛋白和miR-146a表达高于Hp阴性组(P<0.05)。Ⅲ~Ⅳ期、有淋巴结转移的Hp阳性GC患者癌组织p27蛋白、miR-490-3p表达低于Ⅰ~Ⅱ期、无淋巴结转移者(P<0.05),而CyclinD1、MMP-9蛋白和miR-146a表达高于Ⅰ~Ⅱ期、无淋巴结转移者(P<0.05)。与良好预后组相比,不良预后组Ⅲ~Ⅳ期、有淋巴结转移占比及癌组织CyclinD1、MMP-9蛋白和miR-146a表达较高,而癌组织p27、miR-490-3p表达较低(P<0.05)。Ⅲ~Ⅳ期、p27蛋白低表达、MMP-9蛋白高表达、miR-490-3p低表达均为Hp阳性GC不良预后发生的危险因素(P<0.05)。构建的预测模型预测Hp阳性GC不良预后发生的曲线下面积(AUC)值为0.774,敏感度为80.00%,特异度为76.79%。结论 p27、CyclinD1、MMP-9蛋白和miR-146a、miR-490-3p在Hp阳性GC患者中表达异常,其表达水平与TNM分期、淋巴结转移相关,且Ⅲ~Ⅳ期、p27蛋白、miR-490-3p低表达、MMP-9蛋白高表达为Hp阳性GC不良预后的危险因素,基于上述危险因素构建的预测模型对Hp阳性GC不良预后有较好的预测价值。 展开更多
关键词 幽门螺杆菌 胃癌 P27 基质金属蛋白酶9 微小核糖核酸 临床病理特征 预后
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Osteoblast Behavior on Hierarchical Micro-/Nano-Structured Titanium Surface 被引量:7
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作者 Weiyan Meng Yanmin Zhou Yanjing Zhang Qing Cai Liming Yang Jinghui Zhao Chunyan Li 《Journal of Bionic Engineering》 SCIE EI CSCD 2011年第3期234-241,共8页
In the present work, osteoblast behavior on a hierarchical micro-/nano-structured titanium surface was investigated. A hi- erarchical hybrid micro-/nano-structured titanium surface topography was produced via Electrol... In the present work, osteoblast behavior on a hierarchical micro-/nano-structured titanium surface was investigated. A hi- erarchical hybrid micro-/nano-structured titanium surface topography was produced via Electrolytic Etching (EE). MG-63 cells were cultured on disks for 2 h to 7 days. The osteoblast response to the hierarchical hybrid micro-/nano-structured titanium surface was evaluated through the osteoblast cell morphology, attachment and proliferation. For comparison, MG-63 cells were also cultured on Sandblasted and Acid-etched (SEA) as well as Machined (M) surfaces respectively. The results show signifi- cant differences in the adhesion rates and proliferation levels of MG-63 cells on EE, SLA, and M surfaces. Both adhesion rate and proliferation level on EE surface are higher than those on SLA and M surfaces. Therefore, we may expect that, comparing with SLA and M surfaces, bone growth on EE surface could be accelerated and bone formation could be promoted at an early stage, which could be applied in the clinical practices for immediate and early-stage loadings. 展开更多
关键词 dental implant OSTEOBLAST hierarchical micro-/nano-structure surface treatment electrolytic etching
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Micro-LED新型显示技术的现状、挑战及展望 被引量:2
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作者 庄喆 刘斌 《科技导报》 北大核心 2025年第2期42-51,共10页
微型发光二极管(Micro-LED)具有较好的稳定性,是当前高亮显示应用的最佳选择,其具有高对比度、低响应时间、宽工作温区、低能耗和广视角等优势,成为当前产业界和学术界比较看好的新型显示技术。综述了Micro-LED新型显示技术的原理,对比... 微型发光二极管(Micro-LED)具有较好的稳定性,是当前高亮显示应用的最佳选择,其具有高对比度、低响应时间、宽工作温区、低能耗和广视角等优势,成为当前产业界和学术界比较看好的新型显示技术。综述了Micro-LED新型显示技术的原理,对比其与现有技术的性能,从材料、器件、集成和成本良率等几个角度探讨了Micro-LED新型显示技术的关键技术挑战。未来3~5年内,Micro-LED显示技术仍然会在材料、器件、集成等技术方面存在技术创新和重大突破的关键机会,该技术支撑着未来显示产业的发展,也是中国科技创新引领全球的一次重要科技革命。建议鼓励创新,营造良好的科技创新环境,通过产学研合作解决当前Micro-LED新型显示技术的关键问题。同时发挥市场和社会资本的作用,引导产业遵循技术发展和商业发展规律。Micro-LED显示产业尽管仍面临技术挑战,但增强现实等近眼显示设备的推出,可能彻底革新现有的显示产品形态,Micro-LED显示产业市场将可能迎来爆发式增长。 展开更多
关键词 micro-LED新型显示 micro-LED芯片 技术挑战 产业发展
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基于micro-LED的波分复用高速水下可见光通信系统研究
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作者 应红 张涛 +3 位作者 王彬峰 刘涛 唐堂 惠天宇 《照明工程学报》 2025年第5期60-73,共14页
本文研究了一种基于2个商用LED和5个自行设计micro-LED的波分复用(Wavelength Division Multiplexing,WDM)超高速水下可见光通信概念验证系统。通过预均衡和正交频分复用调制技术,在0.6 m水下环境中实现了28.82 Gbps的聚合通信速率,这... 本文研究了一种基于2个商用LED和5个自行设计micro-LED的波分复用(Wavelength Division Multiplexing,WDM)超高速水下可见光通信概念验证系统。通过预均衡和正交频分复用调制技术,在0.6 m水下环境中实现了28.82 Gbps的聚合通信速率,这是目前所知基于micro-LED的水下可见光通信(Underwater Visible Light Communication,UVLC)的破纪录传输速率,较现有最高纪录(20.09 Gbps)提升43%。相对单通道455 nm micro-LED(7.23 Gbps),容量增益达4倍。此外,本研究还分析了各波长光源的调制带宽与光功率特性,并利用63%和40%衰减片模拟扩展距离传输环境。采用63%衰减片的WDM-UVLC系统可获得聚合速率为18.35 Gbps,其中最短的估算传输距离为650 nm波长的光源,仅为1.81 m。使用40%衰减片的WDM-UVLC获得了15.36 Gbps的总通信速率,最短估算传输距离为2.75 m,而对于在水环境衰减特性小的蓝绿光则能够获得超过8 m的估算传输距离。尤其对于455 nm通道SNR仅下降5 dB即可维持BER<3.8×10^(-3),验证了方案在功率波动下的鲁棒性与潜力。该研究不仅验证了波分复用技术结合micro-LED在水下高速通信中的潜力,更表明多色micro-LED是波分复用UVLC发射器的绝佳候选器件,通过特定的光学滤波器和光学设计,未来可实现更集成的波分复用系统。 展开更多
关键词 水下可见光通信 波分复用 micro-LED 正交频分复用
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Fabrication and Microstructural Control of Nano-structured Bulk Steels: A Review 被引量:1
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作者 Linxiu Du Shengjie Yao +3 位作者 Jun Hu Huifang Lan Hui Xie Guodong Wang 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 2014年第3期508-520,共13页
There exist strong interests of developing nano-grained steels because of the outstanding properties including high strength/weight ratio, wear resistance, excellent toughness, and favorable cellular activity. This ar... There exist strong interests of developing nano-grained steels because of the outstanding properties including high strength/weight ratio, wear resistance, excellent toughness, and favorable cellular activity. This article reviews the main fabrication process and microstructural control of nano-structured steels over the last decades. Severe plastic deformation is considered as an effective route of obtaining the nano-grained microstructures. The process of cold-rolling and annealing of martensitic steel is a viable method to obtain bulk nano-structured low carbon steel, while the final thickness of the cold-rolling plate is limited. According to the theoretical results of the thermal simulation studies, a novel alloy design combined with the rapid transformation and rolling process is proposed to successfully fabricate nano-grained high strength bulk steel. The refinement mechanisms are expected to be taking advantage of increase in the transformation nucleation sites and inhibiting the grain coarsening. Moreover, corresponding mechanical properties are summarized. 展开更多
关键词 nano-structured steel SPD Cold-rolling and annealing martensite RTRP Transformation mechanism Mechanical properties
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基于micro-CT实验的颗粒体系接触力计算及演化分析 被引量:1
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作者 王潇 宋世琦 +3 位作者 平子健 盛思源 商宪义 陈凡秀 《物理学报》 北大核心 2025年第1期207-217,共11页
三维颗粒体系颗粒间接触力计算是散体力学研究的重难点.以双弹性橡胶球为研究对象,开展显微CT(micro-CT)原位平压实验,基于Hertz接触理论和Tatara大变形接触理论,验证了弹性球接触模型,获得了基于实验的弹性球接触力理论公式.以三维颗... 三维颗粒体系颗粒间接触力计算是散体力学研究的重难点.以双弹性橡胶球为研究对象,开展显微CT(micro-CT)原位平压实验,基于Hertz接触理论和Tatara大变形接触理论,验证了弹性球接触模型,获得了基于实验的弹性球接触力理论公式.以三维颗粒体系为研究对象,开展了micro-CT原位探针加载实验,获取颗粒二维图像序列,经过系列数字变换得到数字体图像,获得了不同加载状态下三维颗粒体系接触力网络,分析了颗粒体系接触力分布及演化规律,探究了强接触数量及分布演化与颗粒体系稳定性的联系.研究结果表明:基于实验的弹性球接触力公式能合理有效表征两颗粒间的接触力;探针加载下颗粒间接触力呈现以探针压头接触点为起点,向下方和四周逐级传递接触力的网状分布;强接触数量占接触总数量的45%-50%,分布贯穿于整个颗粒体系内部,支撑起颗粒体系网络结构,较大值集中于压头下方呈现树杈状分布;加载过程中,z=14 mm处建立了平衡点,平衡点处,强接触数量达到顶峰,强接触力网络结构布满整个三维颗粒体系,建立起承受外载荷的主要骨架,随着加载继续,强接触力的整体数值更高,在颗粒体系内部分布也更加均匀. 展开更多
关键词 显微CT 原位加载 颗粒接触模型 接触力
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基于Micro-CT分析大豆种子结构表型及构建种子重量预测模型 被引量:1
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作者 刘长斌 李远鲲 +3 位作者 郭民坤 樊江川 郭新宇 卢宪菊 《大豆科学》 北大核心 2025年第1期11-21,共11页
大豆是重要的粮油兼用作物,是植物蛋白质的重要来源,为明确大豆种子结构特征并构建种子重量预测模型,以42个不同大豆品种为材料,利用Micro-CT技术扫描测试样本,通过CT图像的处理解析,获取大豆种子的长度、宽度、厚度、体积、表面积、种... 大豆是重要的粮油兼用作物,是植物蛋白质的重要来源,为明确大豆种子结构特征并构建种子重量预测模型,以42个不同大豆品种为材料,利用Micro-CT技术扫描测试样本,通过CT图像的处理解析,获取大豆种子的长度、宽度、厚度、体积、表面积、种胚体积、表面积及空腔体积特征,人工称重测定单粒重量指标。系统分析种子形态特征及其与重量的相关关系,并对不同品种进行聚类分析,通过对多项形态表型和重量指标进行主成分分析,确定主要贡献指标,基于机器学习算法构建重量预测模型。结果表明:种子形态特征与种子重量显著相关,但种子形状特征对重量无显著影响;42个大豆品种可以分为4类,其中第一类品种蒙豆375和蒙豆60的种子大小和重量指标均显著高于其他3类品种。利用随机森林模型和偏最小二乘回归方法构建的重量预测模型效果优于单一指标的简单线性回归效果。其中,随机森林回归模型训练集和测试集的R^(2)分别为0.80和0.66,RMSE分别为0.017和0.021 g,偏最小二乘回归模型训练集和测试集的R^(2)分别为0.75和0.72,RMSE分别为0.019和0.020 g。研究结果为大豆种子外部形态和内部结构的研究提供了新的技术和方法,为大豆品种分类、产量和品质性状的评价提供理论和技术参考。 展开更多
关键词 micro-CT 大豆 结构表型 重量预测 模型构建 机器学习
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烧结温度对Micro-FAST制备MnZn铁氧体磁芯显微组织的影响
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作者 冯卫东 屈立 +4 位作者 王维 杨刚 杨屹 杨世宇 吴明霞 《热加工工艺》 北大核心 2025年第4期133-136,141,共5页
采用多物理场耦合烧结技术(Micro-FAST)制备MnZn铁氧体U型磁芯零件,探究了烧结温度对MnZn铁氧体磁芯的密度、物相和显微组织的影响。结果表明:在850~1000℃烧结温度范围内,随着烧结温度的升高,试样的密度和尖晶石相含量均先增加后减少... 采用多物理场耦合烧结技术(Micro-FAST)制备MnZn铁氧体U型磁芯零件,探究了烧结温度对MnZn铁氧体磁芯的密度、物相和显微组织的影响。结果表明:在850~1000℃烧结温度范围内,随着烧结温度的升高,试样的密度和尖晶石相含量均先增加后减少。在烧结温度900℃、保温时间480 s、升温速率20℃/s、外加压力70 kg、降温速率5℃/s的工艺参数条件下,烧结制备的MnZn铁氧体磁芯零件具有4.95 g/cm^(3)的最大密度。 展开更多
关键词 多物理场耦合烧结技术 MNZN铁氧体 烧结温度 显微组织
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Nucleation of Y-Si-O Nano-clusters in Multi-microalloyed Nano-structured Ferritic Alloys:a First-principles Study
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作者 Shiyu He Qi Qian +4 位作者 Zhe Huang Yuxiang Gong Jiajing Chen Yiren Wang Yong Jiang 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 2021年第7期955-962,共8页
First-principles energetics analyses were performed to investigate the nucleation of(Y-Si-O)nano-clusters(NCs)in nanostructured ferritic alloys(NFAs).It was predicted that the nucleation of(Y-Si-O)NCs follows the same... First-principles energetics analyses were performed to investigate the nucleation of(Y-Si-O)nano-clusters(NCs)in nanostructured ferritic alloys(NFAs).It was predicted that the nucleation of(Y-Si-O)NCs follows the same general pathway as previously found for(Y-Ti/Al/Zr-O)NCs in NFAs:they all tend to begin with the(O-O)pairs and grow to(O-Y)-cores and further to larger NCs by attracting Y and other solute elements nearby.Nucleation of a hexa-atomic-[2Y-Si-3O]-cluster can reduce the total energy by 4.71 eV.Among various microalloying-induced NCs,the nucleation preference ordering was predicted as(Y-Zr-O)>(Y-Ti-O)>(Y-Al-O)>(Y-Si-O).The number densities and chemical compositions of NCs in multi-microalloyed NFAs would largely depend on the number availability of(O,Y)-cores,as well as the relative abundance and atomic diffusivities of microalloying solute elements nearby. 展开更多
关键词 nano-structured ferritic alloy Y-Si-O Nano-cluster FIRST-PRINCIPLES
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