Farooq Fiza, Shin Seungyong, Lee Ja Yeon, Kyhm Jihoon, Kang Gumin, Ko Hyungduk, Jang Ho Seong
Materials Architecturing Research Center, Korea Institute of Science and Technology, 5, Hwarang-ro 14-gil, Seongbuk-gu, Seoul 02792, Republic of Korea.
Division of Nano & Information Technology, KIST School, University of Science and Technology (UST), Seoul 02792, Republic of Korea.
ACS Appl Mater Interfaces. 2024 Jul 24;16(29):38221-38230. doi: 10.1021/acsami.4c05482. Epub 2024 Jul 15.
Multicolor tunable upconversion nanoparticles (UCNPs) have garnered attention owing to their diverse applications such as displays, imaging, and security. Typically, achieving multicolor emission from UCNPs requires complicated core/multishell nanostructures comprising a core with at least five shells. Here, we propose a strategy to achieve bright and orthogonal red (R), green (G), and blue (B) upconversion (UC) luminescence without synthesizing complicated core/quintuple-shell or core/sextuple-shell nanostructures. For achieving bright and orthogonal RGB triprimary color UC luminescence, orthogonal bicolor-emitting core/shell-structured UCNPs are synthesized and blended. Orthogonal RB, RG, and GB luminescence are achieved through photon blocking. The combination of two orthogonal bicolor-emitting UCNPs exhibits pure RGB UC luminescence and full-color tunability via manipulation of excitation laser conditions. Furthermore, we present color displays achieved with transparent UCNP-polymer composites utilizing three distinct near-infrared light wavelengths, implying that the proposed strategy for attaining RGB UC luminescence may facilitate advancements in the development of full-color volumetric displays.
多色可调上转换纳米粒子(UCNPs)因其在显示、成像和安全等多种应用而备受关注。通常,要实现UCNPs的多色发射需要复杂的核/多壳纳米结构,包括至少有五层壳的核。在此,我们提出一种策略,无需合成复杂的核/五层壳或核/六层壳纳米结构,就能实现明亮且正交的红(R)、绿(G)和蓝(B)上转换(UC)发光。为了实现明亮且正交的RGB三原色UC发光,合成并混合了正交双色发射核/壳结构的UCNPs。通过光子阻挡实现正交RB、RG和GB发光。两种正交双色发射UCNPs的组合通过操纵激发激光条件展现出纯RGB UC发光和全色可调性。此外,我们展示了利用三种不同近红外光波长的透明UCNP-聚合物复合材料实现的彩色显示,这意味着所提出的实现RGB UC发光的策略可能会促进全色体积显示发展的进步。