Ultrafast Spectroscopic Signature of Charge Transfer between Single-Walled Carbon Nanotubes and C60

被引:62
作者
Dowgiallo, Anne-Marie [1 ]
Mistry, Kevin S. [1 ,2 ]
Johnson, Justin C. [1 ]
Blackburn, Jeffrey L. [1 ]
机构
[1] Natl Renewable Energy Lab, Golden, CO 80401 USA
[2] Univ Colorado, Dept Phys, Boulder, CO 80309 USA
关键词
single-walled carbon nanotubes; fullerene; electron transfer; photovoltaic; charge generation; exciton dissociation; recombination; trion; PHOTOINDUCED ELECTRON-TRANSFER; DYNAMICS; EXCITONS; TRIONS; PHOTOVOLTAICS; COMPLEXES; FILMS;
D O I
10.1021/nn503271k
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
The time scales for interfacial charge separation and recombination play crucial roles in determining efficiencies of excitonic photovoltaics. Near-infrared photons are harvested efficiently by semiconducting single-walled carbon nanotubes (SWCNTs) paired with appropriate electron acceptors, such as fullerenes (e.g., C-60). However, little is known about crucial photochemical events that occur on femtosecond to nanosecond time scales at such heterojunctions. Here, we present transient absorbance measurements that utilize a distinct spectroscopic signature of charges within SWCNTs, the absorbance of a trion quasiparticle, to measure both the ultrafast photoinduced electron transfer time (tau(pet)) and yield (phi(pet)) in photoexcited SWCNT-C-60 bilayer films. The rise time of the trion-induced absorbance enables the determination of the photoinduced electron transfer (PET) time of tau(pet) <= 120 fs, while an experimentally determined trion absorbance cross section reveals the yield of charge transfer (phi(pet) approximate to 38 +/- 3%). The extremely fast electron transfer times observed here are on par with some of the best donor: acceptor pairs in excitonic photovoltaics and underscore the potential for efficient energy harvesting in SWCNT-based devices.
引用
收藏
页码:8573 / 8581
页数:9
相关论文
共 40 条
[1]   Recent developments in the photophysics of single-walled carbon nanotubes for their use as active and passive material elements in thin film photovoltaics [J].
Arnold, Michael S. ;
Blackburn, Jeffrey L. ;
Crochet, Jared J. ;
Doorn, Stephen K. ;
Duque, Juan G. ;
Mohite, Aditya ;
Telg, Hagen .
PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 2013, 15 (36) :14896-14918
[2]   Broad Spectral Response Using Carbon Nanotube/Organic Semiconductor/C60 Photodetectors [J].
Arnold, Michael S. ;
Zimmerman, Jeramy D. ;
Renshaw, Christopher K. ;
Xu, Xin ;
Lunt, Richard R. ;
Austin, Christine M. ;
Forrest, Stephen R. .
NANO LETTERS, 2009, 9 (09) :3354-3358
[3]   Free Carrier Generation and Recombination in Polymer-Wrapped Semiconducting Carbon Nanotube Films and Heterojunctions [J].
Bindl, Dominick J. ;
Ferguson, Andrew J. ;
Wu, Meng-Yin ;
Kopidakis, Nikos ;
Blackburn, Jeffrey L. ;
Arnold, Michael S. .
JOURNAL OF PHYSICAL CHEMISTRY LETTERS, 2013, 4 (21) :3550-3559
[4]   Efficient Exciton Relaxation and Charge Generation in Nearly Monochiral (7,5) Carbon Nanotube/C60 Thin-Film Photovoltaics [J].
Bindl, Dominick J. ;
Arnold, Michael S. .
JOURNAL OF PHYSICAL CHEMISTRY C, 2013, 117 (05) :2390-2395
[5]   Efficiently Harvesting Excitons from Electronic Type-Controlled Semiconducting Carbon Nanotube Films [J].
Bindl, Dominick J. ;
Wu, Meng-Yin ;
Prehn, Frederick C. ;
Arnold, Michael S. .
NANO LETTERS, 2011, 11 (02) :455-460
[6]   Confirmation of K-Momentum Dark Exciton Vibronic Sidebands Using 13C-labeled, Highly Enriched (6,5) Single-walled Carbon Nanotubes [J].
Blackburn, Jeffrey L. ;
Holt, Josh M. ;
Irurzun, Veronica M. ;
Resasco, Daniel E. ;
Rumbles, Garry .
NANO LETTERS, 2012, 12 (03) :1398-1403
[7]   Electron transfer dynamics in quantum dot/titanium dioxide composites formed by in situ chemical bath deposition [J].
Blackburn, JL ;
Selmarten, DC ;
Nozik, AJ .
JOURNAL OF PHYSICAL CHEMISTRY B, 2003, 107 (51) :14154-14157
[8]   Tracing photoinduced electron transfer process in conjugated polymer/fullerene bulk heterojunctions in real time [J].
Brabec, CJ ;
Zerza, G ;
Cerullo, G ;
De Silvestri, S ;
Luzzati, S ;
Hummelen, JC ;
Sariciftci, S .
CHEMICAL PHYSICS LETTERS, 2001, 340 (3-4) :232-236
[9]   Excitons in carbon nanotubes: Diameter and chirality trends [J].
Capaz, Rodrigo B. ;
Spataru, Catalin D. ;
Ismail-Beigi, Sohrab ;
Louie, Steven G. .
PHYSICA STATUS SOLIDI B-BASIC SOLID STATE PHYSICS, 2007, 244 (11) :4016-4020
[10]   Stable Charge-Transfer Doping of Transparent Single-Walled Carbon Nanotube Films [J].
Chandra, Bhupesh ;
Afzali, Ali ;
Khare, Neeraj ;
El-Ashry, Mostafa M. ;
Tulevski, George S. .
CHEMISTRY OF MATERIALS, 2010, 22 (18) :5179-5183