4.8 Article

Patterning of Soft Matter across Multiple Length Scales

期刊

ADVANCED FUNCTIONAL MATERIALS
卷 26, 期 16, 页码 2609-2616

出版社

WILEY-V C H VERLAG GMBH
DOI: 10.1002/adfm.201504945

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资金

  1. NanoNextNL [07A.07]
  2. micro and nanotechnology consortium of the Government of the Netherlands
  3. Marie Curie FP7 SASSYPOL ITN programme
  4. Dutch Science Foundation [ECHO 700.58.021]
  5. Council for Chemical Sciences of the Netherlands Organization for Scientific Research (CW-NWO)
  6. Ministry of Education, Culture and Science [024.001.035]

向作者/读者索取更多资源

Controlling the organization of functional supramolecular materials at both short and long length scales as well as creating hierarchical patterns is essential for many biological and electrooptical applications. It remains however an extremely challenging objective to date, particularly in water-based systems. In this work, it is demonstrated that water-processable self-assembling materials can be organized from micrometers to centimeters in any direction using liquid crystal templating in combination with photoaddressable command layers. The structural assemblies that are prepared are readily transformed into optically active pi-conjugated polymers after photopolymerization. After this step, the template may be removed to leave the functional material well-organized on the substrate. The advantage of this approach is that it lacks specific molecular interactions and uses simple techniques such as spin coating and photoillumination and it may therefore be applied to a wide range of (aqueous) materials.

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