由从一个受限制的几何形状蒸发的滴滴形成的图案
1Departments of Materials Science and Engineering, Chemistry, and Physics, University of Illinois at Urbana-Champaign, Urbana, Illinois 61801, USA. zqlin@iastate.edu
Journal of the American Chemical Society
|March 3, 2005
概括
在狭窄的空间中,聚合物滴滴的蒸发会产生数百个高保真度,正规的同心圆环. 这种简单的方法可以为高级应用程序提供多功能模式生成.
科学领域:
- 材料科学 材料科学 材料科学
- 流体动力学 流体动力学
- 纳米技术纳米技术
背景情况:
- 蒸发诱导的自我组装是一种常见的现象.
- 控制自我组装以形成精确的图案仍然具有挑战性.
研究的目的:
- 开发一种简单,多功能和可通用的方法来创建高度规律的图案.
- 为了研究在狭窄的几何形状下滴滴蒸发过程中的同心环的形成.
主要方法:
- 不易挥发的聚合物溶液的封闭式蒸发.
- 显微镜和形状测量来分析得到的图案.
主要成果:
- 数百个同心环,高度为纳米米,宽度为微米,始终形成.
- 该过程在模式生成中表现出高保真度和规律性.
- 这种方法被证明是多用途的,并且可以在不同的聚合物溶液中通用.
结论:
- 从狭窄的几何形状蒸发提供了一个新的准备策略,用于图案制造.
- 这种技术可以以前所未有的精度设计复杂的图案.
- 这些发现为微型和纳米制造开辟了新的途径.
相关概念视频
Relative Velocity in Two Dimensions
Relative velocity is the velocity of an object as observed from a particular reference frame, or the velocity of one reference frame with respect to another reference frame. The concept of relative velocity can be used to describe motion in two dimensions. Consider a particle P and two reference frames S and S′. The position of the origin of S′ as measured in S is , the position of P as measured in S′ is , and the position of P as measured in S is , which can be evaluated by utilizing vector...
pV-Diagrams
The pV diagram, which is a graph of pressure versus volume of the gas under study, is helpful in describing certain aspects of the substance. When the substance behaves like an ideal gas, the ideal gas equation describes the relationship between its pressure and volume. On a pV diagram, it is common to plot an isotherm, which is a curve showing p as a function of V with the number of molecules and the temperature fixed. Then, for an ideal gas, the product of the pressure of the gas and its...
Streamlines, Streaklines, and Pathlines
A streamline represents the trajectory that is always tangent to the fluid's velocity vector at any given point. The velocity of a fluid particle is always directed along the streamline, ensuring the particle continuously follows the streamline's path. Streamlines are particularly useful for visualizing the overall direction of flow in a fluid system, and they provide an instantaneous representation of the flow's velocity field. In steady flow, where conditions do not change over time,...
Design Example: Flow of Oil Through Circular Pipes
Understanding fluid flow behavior through pipes is critical in fluid mechanics, especially in applications like oil transportation through pipelines. Hagen-Poiseuille's law provides an exact solution derived from the Navier-Stokes equations for steady, incompressible, and laminar flow within a circular pipe. Hagen-Poiseuille's law helps determine the necessary pressure drop across a pipeline section by determining parameters like pipe length, radius, oil viscosity, and the desired volumetric...
Polar Curves
The spirograph is a versatile tool for visualizing the relationship between geometry and mathematical representation. In particular, it demonstrates how polar coordinates offer an alternative framework for describing curves in comparison to Cartesian coordinates. Instead of specifying a point by its horizontal and vertical displacements (x, y), polar coordinates use a radius r, the distance from the origin, and an angle θ, measured counterclockwise from the polar axis. This system is...
Vector Forms of Green’s Theorem
The study of fluid motion often involves understanding how local rotational behavior relates to global circulation. In the context of a pond with pollutants, direct measurement of water movement along an irregular shoreline can be impractical. Green’s Theorem in vector form provides an alternative by relating the circulation around a closed boundary to properties of the flow within the enclosed region.Measurements of water velocity at different points define a continuous vector field that...


