Title : Surface modification of poly(2-methoxy-5-(2'-ethyl-hexyloxy)-1,4-phenylene vinylene) (MEH-PPV) by confined photo-catalytic oxidation.

Pub. Date : 2012 Feb 15

PMID : 22196349






6 Functional Relationships(s)
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1 After the surface modification, the water contact angle of MEH-PPV is changed from 95.5 to 82.1 without influence on its optical properties (based on the UV and PL spectra), and the water droplet can be absorbed on the modified MEH-PPV surface without sliding even at substrate tilt angles of 90 and 180 . Water epoxide hydrolase 1 Homo sapiens
2 After the surface modification, the water contact angle of MEH-PPV is changed from 95.5 to 82.1 without influence on its optical properties (based on the UV and PL spectra), and the water droplet can be absorbed on the modified MEH-PPV surface without sliding even at substrate tilt angles of 90 and 180 . Water epoxide hydrolase 1 Homo sapiens
3 After the surface modification, the water contact angle of MEH-PPV is changed from 95.5 to 82.1 without influence on its optical properties (based on the UV and PL spectra), and the water droplet can be absorbed on the modified MEH-PPV surface without sliding even at substrate tilt angles of 90 and 180 . Water epoxide hydrolase 1 Homo sapiens
4 After the surface modification, the water contact angle of MEH-PPV is changed from 95.5 to 82.1 without influence on its optical properties (based on the UV and PL spectra), and the water droplet can be absorbed on the modified MEH-PPV surface without sliding even at substrate tilt angles of 90 and 180 . Water epoxide hydrolase 1 Homo sapiens
5 In addition, the water transport test indicates that the modified MEH-PPV can be a candidate for transporting water droplet. Water epoxide hydrolase 1 Homo sapiens
6 In addition, the water transport test indicates that the modified MEH-PPV can be a candidate for transporting water droplet. Water epoxide hydrolase 1 Homo sapiens