Issue 29, 2012

Self-assembled growth of LuVO4 nanoleaves: hydrothermal synthesis, morphology evolution, and luminescence properties

Abstract

In the present paper, LuVO4 nanoleaves have been synthesized via a facile and low-cost complexant-assisted hydrothermal approach. The phases, morphologies, sizes, and luminescence properties of the as-prepared products were well characterized by means of XRD, FT-IR, SEM, TEM, SAED, EDX, HRTEM, PL, and CL. The results indicate that the phase, morphology, and size of the LuVO4 samples can be tuned in a controlled manner by altering the amount of Na2tar, the pH value of the initial solution, and the reaction time. The crystal growth was thoroughly investigated, and a possible formation mechanism was proposed. Upon UV and low-voltage electron beam excitation, the LuVO4:Ln3+ (Ln3+ = Eu3+, Dy3+, Sm3+, Er3+) samples exhibit bright red (Eu3+, 5D07F2), green-yellow (Dy3+, 4F9/26H13/2), orange-red (Sm3+, 4G5/26H7/2) and green (Er3+, 4S3/24I15/2) luminescence. Furthermore, the UC luminescence properties, as well as the emission mechanisms of LuVO4:Yb3+/Ln3+ (Ln3+ = Er3+, Tm3+, Ho3+) samples, were systematically investigated, which show respective green (Er3+, 4S3/2, 2H11/24I15/2), blue (Tm3+, 1G43H6) and red (Ho3+, 5F55I8) luminescence under 980 nm NIR excitation. These merits of multicolor emissions in the visible region endow this kind of material with potential applications in the field of light display systems, lasers, and optoelectronic devices.

Graphical abstract: Self-assembled growth of LuVO4 nanoleaves: hydrothermal synthesis, morphology evolution, and luminescence properties

Article information

Article type
Paper
Submitted
20 Jul 2012
Accepted
18 Sep 2012
First published
18 Sep 2012

RSC Adv., 2012,2, 11067-11077

Self-assembled growth of LuVO4 nanoleaves: hydrothermal synthesis, morphology evolution, and luminescence properties

Z. Xu, S. Bian, T. Liu, L. Wang, Y. Gao, H. Lian and J. Lin, RSC Adv., 2012, 2, 11067 DOI: 10.1039/C2RA21512H

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