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Controlling optical gain in semiconducting polymers with nanoscale chain positioning and alignment

delete2007-09-16
delete105
PRE
AI
I
Ignacio B. Martini
I
Ian M. Craig
W
William C. Molenkamp
H
Hirokatsu Miyata
S
Sarah H. Tolbert *
B
Benjamin J. Schwartz
DOI:10.1038/nnano.2007.294delete
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Abstract

Abstract

En 中文
We control the chain conformation of a semiconducting polymer by encapsulating it within the aligned nanopores of a silica host. The confinement leads to polarized, low-threshold amplified spontaneous emission from the polymer chains. The polymer enters the porous silica film from only one face and the filling of the pores is therefore graded. As a result, the profile of the index of refraction in the film is also graded, in the direction normal to the pores, so that the composite film forms a low-loss, graded-index waveguide. The aligned polymer chains plus naturally formed waveguide are ideally configured for optical gain, with a threshold for amplified spontaneous emission that is twenty times lower than in comparable unoriented polymer films. Moreover, the optimal conditions for ASE are met in only one spatial orientation and with one polarization. The results show that nanometre-scale control of semiconducting polymer chain orientation and position leads to novel and desirable optical properties.
Keywords:
AMPLIFIED SPONTANEOUS EMISSION
MESOPOROUS SILICA FILM
STATE LASER MATERIALS
HOST-GUEST CHEMISTRY
MEH-PPV FILMS
CONJUGATED-POLYMER
INTERCHAIN INTERACTIONS
ENERGY-TRANSFER
ORIENTED FILMS
MICROSCOPY
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Journal

Nature Nanotechnology cover
Nature Nanotechnology
IF:
34.9
Papers:
4.8K
Citations:
8.1W

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