Brightening of carbon nanotube photoluminescence through the incorporation of sp3 defects

被引:0
|
作者
Yanmei Piao
Brendan Meany
Lyndsey R. Powell
Nicholas Valley
Hyejin Kwon
George C. Schatz
YuHuang Wang
机构
[1] University of Maryland,Department of Chemistry and Biochemistry
[2] Northwestern University,Department of Chemistry
[3] Maryland NanoCenter,undefined
[4] University of Maryland,undefined
来源
Nature Chemistry | 2013年 / 5卷
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摘要
Semiconducting carbon nanotubes promise a broad range of potential applications in optoelectronics and imaging, but their photon-conversion efficiency is relatively low. Quantum theory suggests that nanotube photoluminescence is intrinsically inefficient because of low-lying ‘dark’ exciton states. Here we demonstrate the significant brightening of nanotube photoluminescence (up to 28-fold) through the creation of an optically allowed defect state that resides below the predicted energy level of the dark excitons. Emission from this new state generates a photoluminescence peak that is red-shifted by as much as 254 meV from the nanotube's original excitonic transition. We also found that the attachment of electron-withdrawing substituents to carbon nanotubes systematically drives this defect state further down the energy ladder. Our experiments show that the material's photoluminescence quantum yield increases exponentially as a function of the shifted emission energy. This work lays the foundation for chemical control of defect quantum states in low-dimensional carbon materials.
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页码:840 / 845
页数:5
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