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Dimension FastScan

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最高分辨率成像— 无论何时,不论哪次

FastScan 和 PeakForce Tapping® 实现了力的实时测量与线性控制。

FastScan DNA v2

Plasmid DNA strand immobilized on mica using low (5 mM) NiCl2 concentration. Major groove, minor groove, and the right-handedness of the helix are clearly visible along the entire strand.LINK

 

 

 

 

 

 

轻易分辨 DNA小沟结构。

 

 

 

 

 

 

点缺陷 的高分辨三维尺寸和机械性能成像— 不只是坚硬的、平坦的晶体。

Fasct Scan Stiffness and adhesion v1

Point defect resolution stiffness image of calcite. 15 nm image size (Panel 1). Submolecular resolution adhesion image of iPMMA film. 100 nm image size (Panel 2). Sample courtesy of Prof. Dr. Thurn-Albrecht, Martin-Luther-Universität Halle-Wittenberg.

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To maximize lateral resolution, stay close but not too close. PeakForce Tapping uniquely allows you to do this. See Physical Review B 56(7), 4159, 1992 LINK , and Chemical Review 88, 927 (1988) LINK for the detailed modeling of the tip-sample interaction.

 

 

 

 

在样品上每个原子实现力扫描。

 

 

 

 

 

推动 石墨烯、钙钛矿等二维材料的研究。

 

 

MM8 HR green v3

PeakForce QNM® modulus images of graphene on hexagonal boron nitride, revealing a transition to a commensurate lattice upon alignment with highly localized strain relief. See also Nature Physics 10, 451–456 (2014). LINK

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Multimode 8-HR AFM

高带宽,从而快速扫描,观察实时变化

高带宽,从而快速扫描,观察实时变化

High-speed imaging capturing the emergence of anisotropy in the phase transition of mesomorphic polydiethylsiloxane.

 

 

 

 

 

 

记录高速的纳米尺度动力学现象。

 

 

 

 

 

 

测量具有挑战性的形貌。

 

 

Migration of c2c12 stem cell, capturing contributions of both, membrane flow and the underlying cytoskeleton to movement of the cell.

FastScan Amorphus drug formulationsv1

Amorphous drug formulations study, capturing 60 sites in 60 minutes. Samples courtesy M. E. Lauer, O. Grassmann, F. Hoffmann-LaRoche, Basel, Switzerland.

 

 

 

 

 

 

 

同时具备速度和稳定性。

 

 

 

 

 

最快的原子力显微镜 —与样品尺寸无关。

FastScan measurments v2

Angstrom-level roughness measurements across an entire wafer. 96 measurements within 2 hours.

Fast tapping on ITOv2

 

 

 

Increase scan speed on even the high-resolution Icon head with Fast Tapping.

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Dimension FastScan AFM

潜力无限—极其灵活的开放式架构

Unlimited Potential s1v1

 

 

 

 

全面的环境控制方案,用于电池、有机太阳能等领域。

 

 

 

 

首先使用已有的测量模式;如果没有,创造一个。

Unlimited Potentail S2v1

 

直接控制软件和硬件,选择一个最容易的方法:串行通讯端口,信号测试盒,Nanoman/Litho和力脚本等。

FastScan Coding v1

Left: Instrument integration example using COM access to NanoScope. Right: NanoScript programming in C++ environment.

FastScan Custom collage v2

Left: AFM-Raman correlation while in glove box. Right: Photoconductive AFM accessory.

 

 

 

在开放的平台上直接进行改造,与其它技术联用。

获得编码并学习

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获得最全面的纳米尺度的定量特性参数

重新定位您的期望。






Nanoscale viscoelastic characterization with high confidence.

Pspmma image icon more v1

3D surface representing sample topography with false coloring by loss modulus. Blue areas have higher loss modulus and the red areas are lower loss modulus corresponding to the PS matrix and PMMA inclusions respectively. Loss modulus map generated by contact resonance via Bruker’s FASTForce Volume Nanomechanics mode. 5µm scan, ~ 590kHz, 256x256 pixels.

FastScan syndiotactic polypropylene domains v1

Syndiotactic polypropylene domains (violet) surrounded by a PMMA (teal) matrix. Topographic data painted with modulus to allow easy identification of components, revealing lamellae formed by syndiotactic polypropylene that propagate through the PMMA matrix. Image size 8 µm.

 

 

 

 

 

常规地获得高质量力学性能数据。

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Dimension Icon

Acquiring nanoelectrical and nanochemical data for advanced AFM research.

 

 

 

 

 

在之前不可能研究的样品上研究电学性能。

 

 

Capture the most s1v1

Current imaging on vertically standing carbon nanotubes. Only possible with PeakForce TUNA®.

Capture the most s2v1

Left: Atomic-scale force cube with PeakForce Capture™ showing the positions of individual atoms in a vertical (XZ) cut. Right: Averaged PeakForce Capture data showing evidence of solvent structure.

 

 

 

 

 

获取整体力学数据,从而全面表征接触力学机制。




实时研究原子化学信息。

FastScan Realtime v1

PeakForce Tapping height images (left) and force curves (right) showing the difference in surface atom arrangement and atomic scale tip-sample interaction between calcite and mica.

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超乎想象的简单

专注于您的研究。

Completely unattended, automated, fully self-optimizing imaging of six different samples within ten images, yielding publication-quality results in each case.

 

 

 

 

 

硬件,软件和控制算法,让您立即成为专家。

 

 

 

 

 

 

NanoScope®世界上最被认可的,被引用最多的原子力显微镜。

FastScan Publication Graph v2

我们的技术专家团队。

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