找回密码
 立即注册

QQ登录

只需一步,快速开始

材料学院 分析仪器 显微镜 原子力显微镜 查看内容

牛津仪器Asylum Research MFP-3D-BIO原子力显微镜

2019-11-10 10:47| 发布者: longmai| 查看: 613| 评论: 0

摘要: Asylum Research MFP-3D-BIO 融合了原子力显微镜和光学显微镜的功能,是生物科学研究的理想仪器。它是一款具有高成像分辨率、力测量性能和多功能性的生物版原子力显微镜。此外,它还能够与全系列的技术相集成。上述优势,使MFP-3D-BIO成为更适用于科研工作的一款原子力显微镜。融合了原子力显微镜和光学显微镜的性能使用简便, ...

Asylum Research MFP-3D-BIO 融合了原子力显微镜和光学显微镜的功能,是生物科学研究的理想仪器。它是一款具有高成像分辨率、力测量性能和多功能性的生物版原子力显微镜。此外,它还能够与全系列的技术相集成。上述优势,使MFP-3D-BIO成为更适用于科研工作的一款原子力显微镜。

融合了原子力显微镜和光学显微镜的性能

使用简便,可在液体环境下对柔软的生物样品进行高分辨率成像的原子力显微镜

适用于力谱和纳米力学研究

多功能性,可满足多个用户的不同需求

提供专业的售后支持和服务

牛津仪器Asylum Research MFP-3D-BIO原子力显微镜特点和优势


结合了显微镜的高品质原子力显微镜

Illuminate or view with built-in top-down optics

Real-time optical navigation

High-quality objective allows easy viewing of opaque samples, laser alignment, and can be used as a condenser for brightfield or phase contrast illumination on transparent samples

Powerful real-time and offline rendering options including optical and AFM image overlays

Supports numerous optical techniques such as Brightfield, Phase Contrast, Epifluorescence, Confocal Microscopy, TIRF, FRET, FCS, FRAP, Ion Indicators (e.g. Ca2+ response)


使用简便,可在液体环境下对柔软的生物样品进行高分辨率成像的原子力显微镜

Numerous environmental accessories for temperature control and simplifying imaging in liquid

Controlled gas or liquid environment options that are simple, safe and effective

SmartStart™ automatically detects and configures system components to get results quickly

ModeMaster™ automatically configures software for selected mode

GetReal™ automatically calibrates the cantilever spring constant and sensitivity

GetStarted™ automatically sets optimal parameters for tapping mode imaging


可应用于力谱和力机械领域

Thermally-limited force resolution (<8 pm deflection noise tyical, <20 pm guaranteed)

Large Z range (15 μm standard, 40 μm extended Z option) accommodates demanding applications such as cell-cell and cell-substrate adhesion measurements

Choose between open-

loop force curves with sensored Z for the ultimate in low noise performance or closed-loop Z for the most accurate velocity control

Force Mapping measures force-distance curves at a grid of points with automated fitting of indentation models for estimation of elastic modulus and automated adhesion/rupture force analysis


多功能性,可满足多用户的不同需求

Full suite of nanomechanical characterization modes available for measuring viscoelastic properties (storage/elastic modulus and loss modulus)

Unmatched range of nanoelectrical and electromechanical characterization modes

Unique accessories for applying external forces to a wide range of samples

生物版原子力显微镜领域的专家为用户提供全面的支持,以帮助用户获得需要的结果

Includes a standard two-year comprehensive warranty

No-charge technical support and expert applications support for life

Extended warranty and repair costs are the lowest in the industry


牛津仪器Asylum Research MFP-3D-BIO原子力显微镜操作模式

包括以下操作模式

Contact mode

DART PFM

Dual AC™

Dual AC Resonance Tracking (DART)

Electrostatic Force Microscopy (EFM)

Force curves

Force Mapping Mode (force volume)

Force modulation

Frequency modulation

Kelvin Probe Force Microscopy (KPFM)

Lateral Force Mode (LFM)

Loss tangent imaging

Magnetic Force Microscopy (MFM)

Nanolithography

Nanomanipulation

Phase imaging

Piezoresponse Force Microscopy (PFM)

Switching spectroscopy PFM

Tapping mode (AC mode)

Tapping mode with digital Q control

Vector PFM


可选的操作模式

AM-FM Viscoelastic Mapping Mode

Contact Resonance Viscoelastic Mapping Mode

Conductive AFM (CAFM) with ORCA™ and Eclipse™ Mode

High voltage PFM

iDrive™ (magnetically actuated tapping mode in fluid)

Scanning Microwave Impedance Microscopy (sMIM)

Scanning Thermal Microscopy (SThM)

Scanning Tunneling Microscopy (STM)


声明:本网部分文章和图片来源于网络,发布的文章仅用于材料专业知识和市场资讯的交流与分享,不用于任何商业目的。任何个人或组织若对文章版权或其内容的真实性、准确性存有疑义,请第一时间联系我们,我们将及时进行处理。

相关阅读

原子力显微镜
范曲立课题组在AFM发表关于All-in-One光学
开发多功能光学诊疗平台并应用于肿瘤多模态成像引导的联合治疗是实现肿瘤治疗的一个重
王东教授课题组在原子力显微镜原位表征纳米
液液界面是一受到广泛关注的研究领域。这是由于(1)自然界中的许多物理化学过程发生
刘文广课题组AFM:自增稠/自增强3D打印耐溶
3D打印高强度水凝胶在定制个性化承载组织替代物方面具有巨大应用潜能。目前,研究人员
王东:交联—交联聚合物间界面扩散的原子力
聚合物界面扩散行为对其基础研究和工业化应用(如粘结,共混等)有着至关重要的作用。当
刘河洲团队在AFM发表关于可擦写信息存储聚
近日,上海交通大学材料科学与工程学院刘河洲团队题为“Reversible Writing/Re-Writin

小黑屋|手机版|Archiver|版权声明|一起进步网 ( 京ICP备14007691号-1

GMT+8, 2024-4-19 21:16 , Processed in 0.169949 second(s), 35 queries .

Powered by Discuz! X3.2

© 2001-2013 Comsenz Inc.

返回顶部