Real-Time Electron and Hole Transport Dynamics in Halide Perovskite Nanowires

被引:19
作者
Janker, Lisa [1 ,2 ,5 ]
Tong, Yu [3 ]
Polavarapu, Lakshminarayana [3 ,6 ]
Feldmann, Jochen [3 ,5 ,6 ]
Urban, Alexander S. [4 ,5 ,6 ]
Krenner, Hubert J. [1 ,2 ,5 ,6 ]
机构
[1] Univ Augsburg, Lehrstuhl Expt Phys 1, Univ Str 1, D-86179 Augsburg, Germany
[2] Univ Augsburg, Augsburg Ctr Innovat Technol, Univ Str 1, D-86179 Augsburg, Germany
[3] Ludwig Maximilians Univ Munchen, Dept Phys, Nanoinst Munich, Chair Photon & Optoelect, Koniginstr 10, D-80539 Munich, Germany
[4] Ludwig Maximilians Univ Munchen, Dept Phys, Nanoinst Munich, Nanospect Grp, Koniginstr 10, D-80539 Munich, Germany
[5] NIM, Schellingstr 4, D-80339 Munich, Germany
[6] Ludwig Maximilians Univ Munchen, Ctr Nanosci CeNS, Geschwister Scholl Pl 1, D-80539 Munich, Germany
基金
欧洲研究理事会;
关键词
Halide perovskites; nanowires; carrier mobility; surface acoustic waves; dynamic modulation; optical emission dynamics; MOBILITIES; GAAS; NANOCRYSTALS; ALXGA1-XAS; CSPBX3; LIGHT;
D O I
10.1021/acs.nanolett.9b03396
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
For optoelectronic devices, high transport mobilities of electrons and holes are desirable, which, moreover, should be close to identical. Acousto-optoelectric spectroscopy is employed to probe the spatiotemporal dynamics of both electrons and holes inside CsPbI3 nanowires. These dynamics are induced without the need for electrical contacts simply by the piezoelectric field of a surface acoustic wave. Its radio frequency of f(SAW) = 324 MHz natively avoids spurious contributions from ion migration typically occurring in these materials. The observed dynamic modulation of the photoluminescence is faithfully reproduced by solving the drift and diffusion currents of electrons and holes induced by the surface acoustic wave. These calculations confirm that the mobilities of electrons and holes are equal and quantify them to be mu(e) = mu(h) = 3 +/- 1 cm(2) V-1 s(-1). Additionally, carrier loss due to surface recombination is shown to be largely suppressed in CsPbI3 nanowires. Both findings mark significant advantages over traditional compound semiconductors, in particular, GaAs, for applications in future optoelectronic and photovoltaic devices. The demonstrated sublifetime modulation of the optical emission may find direct application in switchable perovskite light-emitting devices employing mature surface acoustic wave technology.
引用
收藏
页码:8701 / 8707
页数:7
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