2001Molecular crystals and liquid crystals science technology. Section A, Molecular crystals and liquid crystals/Molecular crystals and liquid crystals science and technology. Section A, Molecular crystals and liquid crystalsRequires access

On the Possibility of Controlling the Surface Alignment Properties of Liquid Crystal using the Amount of Frictional Work Generated During Rubbing

Ning Chen, Suzuki Akihiro, Inada Akihiro, Kato Koji

Open publisher page 3 citations

Abstract

In order to improve the stability of the rubbing process, the authors have employed a new parameter — the amount of frictional work W — as a rubbing controlling parameter instead of rubbing strength L which has been used in the past. The applicability of this new parameter to control the surface alignment properties of liquid crystal is experimentally confirmed. The relationship between surface alignment properties, including anchoring energy (azimuthal direction) and pretilt angle, and rubbing condition parameters is investigated, and it is proven that by using the amount of frictional work, anchoring energy and pretilt angle under various rubbing conditions can be summarized uniformly. It is also shown that differences in anchoring energy as a result of using different kinds of rubbing cloth can be cancelled by using the amount of frictional work as a reference parameter.

About this research paper

What this paper is about

In order to improve the stability of the rubbing process, the authors have employed a new parameter — the amount of frictional work W — as a rubbing controlling parameter instead of rubbing strength L which has been used in the past. The applicability of this new parameter to control the surface alignment properties of liquid crystal is experimentally confirmed. The relationship between surface alignment properties, including anchoring energy (azimuthal direction) and pretilt angle, and rubbing condition parameters is investigated, and it is proven that by using the amount of frictional work, anchoring energy and pretilt angle under various rubbing conditions can be summarized uniformly. It is also shown that differences in anchoring energy as a result of using different kinds of rubbing cloth can be cancelled by using the amount of frictional work as a reference parameter.

Why it matters

OpenAlex reports 3 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

In order to improve the stability of the rubbing process, the authors have employed a new parameter — the amount of frictional work W — as a rubbing controlling parameter instead of rubbing strength L which has been used in the past. The applicability of this new parameter to control the surface alignment properties of liquid crystal is experimentally confirmed. The relationship between surface alignment properties, including anchoring energy (azimuthal direction) and pretilt angle, and rubbing condition parameters is investigated, and it is proven that by using the amount of frictional work, anchoring energy and pretilt angle under various rubbing conditions can be summarized uniformly. It is also shown that differences in anchoring energy as a result of using different kinds of rubbing cloth can be cancelled by using the amount of frictional work as a reference parameter.

Key concepts: Rubbing, Anchoring, Work (physics), Materials science, Liquid crystal, Azimuth, Process (computing), Surface energy

Related papers

Back to paper searchBrowse research topicsOriginal source
On the Possibility of Controlling the Surface Alignment Properties of Liquid Crystal using the Amount of Frictional Work Generated During Rubbing — Research Paper | ScholarLens