Wang C, Shim M, Guyot-Sionnest P
James Franck Institute, University of Chicago, Chicago, IL 60637, USA.
Science. 2001 Mar 23;291(5512):2390-2. doi: 10.1126/science.291.5512.2390.
Incorporating nanocrystals into future electronic or optoelectronic devices will require a means of controlling charge-injection processes and an understanding of how the injected charges affect the properties of nanocrystals. We show that the optical properties of colloidal semiconductor nanocrystal quantum dots can be tuned by an electrochemical potential. The injection of electrons into the quantum-confined states of the nanocrystal leads to an electrochromic response, including a strong, size-tunable, midinfrared absorption corresponding to an intraband transition, a bleach of the visible interband exciton transitions, and a quench of the narrow band-edge photoluminescence.
将纳米晶体整合到未来的电子或光电器件中,需要一种控制电荷注入过程的方法,以及对注入电荷如何影响纳米晶体性质的理解。我们表明,胶体半导体纳米晶体量子点的光学性质可以通过电化学势来调节。向纳米晶体的量子限制态注入电子会导致电致变色响应,包括对应于带内跃迁的强烈的、尺寸可调的中红外吸收、可见带间激子跃迁的漂白以及窄带边光致发光的猝灭。