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1)  froce modulation microscopy(FMM)
力调制显微术
2)  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。
3)  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)。
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)  Chemical force microscopy
化学力显微术
1.
Chemical force microscopy(CFM) was used to measure the adhesion forces between Au coated Si 3N 4 tip functionalized with —OH and —NH 2 groups and gold sample functionalized with —NH 2 groups.
采用化学力显微术 ( CFM)研究了一种长链氨基自组装单分子膜的力滴定性质 ,考察了表面基团性质不同的力探针对力滴定的影响 ;测定了金包覆的 Si3N经— OH和— NH2 基功能化的金样品之间的粘滞力 ,得到了作为溶液 p H值函数的粘滞力曲线 (力滴定曲线 ) 。
6)  scanning force microscopy
扫描力显微术
1.
Glass-to-rubber transition of polymer film analyzed by scanning force microscopy;
扫描力显微术在高聚物薄膜玻璃化转变研究中的应用
2.
Nanoscale domain structures and polarization reversal behaviour in (111) oriented PZT60/40 thin film were investigated in situ with scanning force microscopy piezoresponse mode.
利用扫描力显微术中压电响应模式原位研究了 (111)择优取向的PZT6 0 4 0铁电薄膜的纳米尺度畴结构及其极化反转行为 。
补充资料:高分辨电子显微镜(见高分辨电子显微术)


高分辨电子显微镜(见高分辨电子显微术)
high resolution electron microscope

高分辨电子显微镜high resolution eleetronmieroseope见高分辫电子显微术。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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