Tuning of nonlinear absorption in highly luminescent CdSe based quantum dots with core-shell and core/multi-shell architectures

Bhagyaraj, Sneha; Perumbilavil, Sreekanth; Udayabashkar, R.; Mangalaraja, R. V.; Thomas, Sabu; Kalarikkal, Nandakumar; Oluwafemi, Oluwatobi Samuel

Abstract

We present our effort on an efficient way of tuning the nonlinear absorption mechanisms in ultra-small CdSe based quantum dots by implementing core-shell and core/ multi-shell architectures. Depending on the size, architecture and composition of the QDs, these materials exhibited resonant and near-resonant nonlinear optical absorption properties such as saturable (SA) and reverse saturable (RSA) absorption for 5 ns pulses of 532 nm. These QDs exhibited a non-monotonic dependence of the effective two-photon absorption coefficient (b) under nanosecond excitation with a maximum value for a thinner shell. We obtained a nonlinear absorption enhancement of an order of magnitude by adopting the core-shell architecture compared to their individual counterparts. Interestingly, CdSe QDs exhibit SA and/ or RSA depending on their size and show a switching over from SA to RSA as the input intensity increases. We explained the enhanced nonlinear absorption in core-shell QDs compared to their individual counterparts in view of enhanced local fields associated with the core-shell structure. Thus, the present nanostructured materials are excellent candidates as saturable absorbers and optical limiters.

Más información

Título según WOS: Tuning of nonlinear absorption in highly luminescent CdSe based quantum dots with core-shell and core/multi-shell architectures
Título según SCOPUS: Tuning of nonlinear absorption in highly luminescent CdSe based quantum dots with core-shell and core/multi-shell architectures
Título de la Revista: PHYSICAL CHEMISTRY CHEMICAL PHYSICS
Volumen: 21
Número: 21
Editorial: ROYAL SOC CHEMISTRY
Fecha de publicación: 2019
Página de inicio: 11424
Página final: 11434
Idioma: English
DOI:

10.1039/c9cp00476a

Notas: ISI, SCOPUS