首页> 外文会议>Polymers in Rheology Conference, Apr 26-27, 2001, Shawbury, Shrewsbury, UK >Scanning Probe Microscopy: Polymer Characterisation at the Microscale
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Scanning Probe Microscopy: Polymer Characterisation at the Microscale

机译:扫描探针显微镜:微型聚合物表征

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Scanning Probe Microscopy (SPM) initially provided three-dimensional visualisation of surfaces down to atomic scale using Scanning Tunnelling (STM) and Atomic Force Microscopy (AFM). Today, a raft of imaging modes and spectroscopic techniques can be used to determine additional information on physical, chemical and thermal properties of polymeric materials. Examples of uses of lateral force microscopy to determine surface friction and force modulation to elucidate surface stiffness will be presented. Pulsed Force Mode now enables both these properties to be displayed simultaneously. Intermittent contact AFM (tapping) combine with phase imaging provides fast imaging of soft polymers combined with simultaneous materials contrast based on surface visco-elastic properties. Hence, the spatial distribution of multi-component polymers is determined. Typical examples include identification of filler/binder materials and calculation of percentage distribution of copolymers. Micro-Thermal Analysis uses a heated probe for thermal conductivity imaging. The same probe performs local calorimetric measurements through Micro Thermal Mechanical Analysis (TMA) and Micro-Differential Thermal Analysis (DTA). Application examples include co-polymer identification in food packaging materials, effects of embedded carbon fibres on matrix cross-linking and transparency films. Alternatively, a sample heating stage can be used to track temperature dependent morphology, stiffness and adhesion changes using Pulsed Force Mode.
机译:扫描探针显微镜(SPM)最初使用扫描隧道(STM)和原子力显微镜(AFM)提供了低至原子尺度的表面三维可视化。如今,大量的成像模式和光谱技术可用于确定有关聚合材料物理,化学和热性质的其他信息。将介绍使用侧向力显微镜确定表面摩擦力和阐明表面刚度的力调制示例。现在,脉冲力模式可以同时显示这两个属性。断续接触AFM(攻丝)与相成像相结合,可对软聚合物进行快速成像,并基于表面粘弹性质同时进行材料对比。因此,确定了多组分聚合物的空间分布。典型示例包括识别填料/粘合剂材料和计算共聚物的百分比分布。微观热分析使用加热探针进行热导率成像。同一探头通过微热力学分析(TMA)和微差热分析(​​DTA)执行局部量热测量。应用示例包括食品包装材料中的共聚物鉴定,内嵌碳纤维对基质交联和透明膜的影响。或者,可以使用脉冲加热模式使用样品加热台来跟踪温度相关的形态,刚度和附着力变化。

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