原子力显微技术,atomic force microscopy
1)atomic force microscopy原子力显微技术
1.Measurement of intermolecular and intramolecular forces of proteins by atomic force microscopy;用原子力显微技术测定蛋白分子间及分子内的作用力
2.The application of atomic force microscopy in enzymology;原子力显微技术在酶学研究中的应用
3.Methods The intermolecular forces were observed with atomic force microscopy.方法原子力显微技术(AFM)。
英文短句/例句

1.Force Measurements for μ-opiate Receptor and Ligand with AFM on the Living Cells in Physical Solutions;溶液中活细胞阿片受体-配体间作用力的原子力显微技术研究
2.Atomic Force Microscopy Studies on the Subcellular Structures of Cultured Hippocampal Neurons and the Damage of Free Radicals on Them;海马神经元亚细胞结构及自由基致损伤的原子力显微技术研究
3.Observation of Glial Ultrastructure and Connection Structures with Atomic Force Microscopy利用原子力显微技术对神经胶质细胞超微结构及其相互问的纳米连接结构的观察
4.Application of Atomic Force Microscopy to Analysis of Woodceramics原子力显微镜技术在木陶瓷分析中的应用
5.Prototype Atomic Force Microscope System with Micro-four-point Probe for Quantitative Characterization of Local Electrical Conductivity基于原子力显微镜的四电极微探针局域电导率测量技术
6.Atomic Force Microscopy and Application in Molecular Structure of IPC-208B Typed AFM原子力显微镜技术及其在分子结构形态学方面的应用研究
7.The New Method of Atomic Force Microscopy and the Development of Horizontal AFM;原子力显微术的新方法研究及新型原子力显微镜系统研制
8.Atomic Force Microscopy and Resarch on Application of IPC-208B Typed AFM;原子力显微术及IPC-208B型原子力显微镜的应用研究
9.MEASUREMENT OF TARGET SURFACE ROUGHNESS WITH 4π TURNING TECHNOLOGY OF AFM用原子力显微镜4π旋转技术测量靶丸表面粗糙度
10.Study on Vibration Characteristic Testing of Nanobeam Resonator Based on AFM基于原子力显微镜的纳米梁谐振器振动特性的测试技术研究
11.Atomic Force Microscopy-based Immune Recognition of Biomolecules;基于原子力显微术的生物分子免疫识别
12.Atomic Force Microscopy-based Apoptosis and the Preparation of LB Films;基于原子力显微术的细胞凋亡和LB膜制备
13.AFM based anodic oxidation and its application to oxidative cutting and welding of CNT actuator基于原子力显微镜的阳极氧化技术及其在碳纳米管氧化切割与焊接中的应用
14.Study on Micro/Nano-Operation Based on AFM;基于原子力显微镜的微/纳米加工研究
15.The study on microstructure and mechanical properties of BN fiber by electronic microscope用电子显微技术研究氮化硼纤维的微观结构和力学性能
16.The Constructions of High Precision Scanning Tunneling Microscopes and Atomic Force Microscopes高精密扫描隧道显微镜及原子力显微镜研制
17.Cantilever Dynamics of AFM Scanning Over Quantum Dots;原子力显微镜扫描量子点的微悬臂动力学研究
18.Analysis and Measurement of AFM/FFM Image原子力/摩擦力显微图象的分析与测量
相关短句/例句

atomic force microscope原子力显微技术
1.The basic methods to image living cells in physiological solutions with atomic force microscope (AFM) and various factors that affect the quality of the image have been studied.本文研究用原子力显微技术(AFM)在生理条件下对活细胞成像的基本方法,并对各种影响成像因素如针尖与细胞表面的非特异性相互作用、AFM悬臂弹性系数及细胞表面柔性等问题提供相应的解决方案。
3)AFM原子力显微术
1.Fractal feature of chitosan has been studied by atomic force microscopy(AFM) and computer simulating, and self-assembly complex film of chitosan/heparin has also been studied by AFM.用原子力显微术及计算机模拟计算研究了壳聚糖的分形维数,壳聚糖与肝素形成的自组装复合膜。
2.A survey of characterizing and measuring nanobiological structure by using atomic force microscopy(AFM)is reviewed.对目前基于原子力显微术(AFM)研究纳米生物结构的发展作了简要地概述,特别注意到AFM对生物纳米结构的表征与测量具有重要的意义。
3.The samples were imaged with an AutoProbe CP Research Scanning Probe Microscope (Park Scientific Instruments) with IC AFM mode.本文用原子力显微术 (AFM)研究了牛血清白蛋白 (BSA)在亲水硅片表面的吸附。
4)Atomic force microscopy原子力显微术
1.Atomic force microscopy(AFM) and electrochemistry analyses were employed to construct and characterize the surface of biosensing.基于原子力显微术,利用电化学、胶体金修饰等,进行与生物分子的结构与功能相关的免疫识别研究。
2.In order to explore the application of atomic force microscopy(AFM)on biomedicine and obtain nanoscale real-time imaging of cytoskeleton in living cells,tapping mode and contact mode (two AFM operating modes) were used towards living rat cerebral microvessel endothelial cells(rCMECs).为研究原子力显微术在生物医学中的应用,实现对活体细胞骨架纳米尺度的实时观察,采用轻敲模式和接触模式对体外培养的大鼠脑微血管内皮细胞进行成像。
5)atomic force microscope原子力显微术
1.The tapping-mode atomic force microscope (TM-AFM) is a very useful tool to inv estigate the morphology and the physical properties of sample surface.借助简单的有阻尼受迫振子模型 ,研究了原子力显微术轻敲模式中探针与样品接触时间tc、样品的表面形变Dz和相位衬度对探针设置高度zc 及样品杨氏模量Es 的依赖关系 。
6)AFM observation technique of cells细胞的原子力显微镜观测技术
延伸阅读

隧道电流型原子力显微镜分子式:CAS号:性质:一种利用隧道电流作为检测方式的原子力显微镜。其工作原理是将一个对微弱力极为敏感的微悬臂(cantilever)的一端固定,而另一端接上一微小针尖;在扫描时,针尖尖端的原子与样品表面原子间存在的极微弱的吸引力或排斥力被控制为恒定。带有针尖的微悬臂就会对应于针尖与样品表面原子间作用力的等位面,在垂直于样品表面的方向上起伏运动,利用隧道电流记录微悬臂对应于扫描各点的位置变化,从而获得样品表面形貌的信息。这种显微镜适用于各种体系的表面分析及各种环境下的现场测定,导电样品和非导电样品均可测定,且应用范围可达104数量级,分辨率达原子级,在化学过程的在线分析、生物吸附质和化学吸附质的研究、表面机械能及表面力的测量、电绝缘体无机物(如盐、矿物质)的表面谱的表征等领域有广泛应用。