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Title: M²⁺ doping induced simultaneous phase/size control and remarkable enhanced upconversion luminescence of NaLnF4 probes for optical-guided tiny tumor diagnosis
Authors: Li, Y
Li, X
Xue, Z
Jiang, M
Zeng, S
Hao, J 
Issue Date: 24-May-2017
Source: Advanced healthcare materials, 24 May 2017, v. 6, no. 10, 1601231
Abstract: Doping has played a vital role in constructing desirable hybrid materials with tunable functions and properties via incorporating atoms into host matrix. Herein, a simple strategy for simultaneously modifying the phase, size, and upconversion luminescence (UCL) properties of the NaLnF₄ (Ln = Y, Yb) nanocrystals by high-temperature coprecipitation through nonequivalent M²⁺ doping (M = Mg²⁺, Co²⁺) has been demonstrated. The phase transformation from cubic to hexagonal is readily achieved by doping M²⁺. Compared with Mg-free sample, a remarkable enhancement of overall UCL (≈27.5 times) is obtained by doping Mg²⁺. Interestingly, owing to the efficient UCL, red UCL-guided tiny tumor (down to 3 mm) diagnosis is demonstrated for the first time. The results open up a new way of designing high efficient UCL probe with combination of hexagonal phase and small size for tiny tumor detection.
Keywords: Cubic to hexagonal phase transformation
M2+ doping
Optical-guided tiny tumor diagnosis
Phase/size control
Publisher: Wiley-VCH
Journal: Advanced healthcare materials 
ISSN: 2192-2640
EISSN: 2192-2659
DOI: 10.1002/adhm.201601231
Rights: © 2017 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim
This is the peer reviewed version of the following article: Li, Y., Li, X., Xue, Z., Jiang, M., Zeng, S., & Hao, J. (2017). M2+ doping induced simultaneous Phase/Size control and remarkable enhanced upconversion luminescence of NaLnF4 probes for optical-guided tiny tumor diagnosis. Advanced Healthcare Materials, 6(10), 1601231, which has been published in final form at https://doi.org/10.1002/adhm.201601231. This article may be used for non-commercial purposes in accordance with Wiley Terms and Conditions for Use of Self-Archived Versions. This article may not be enhanced, enriched or otherwise transformed into a derivative work, without express permission from Wiley or by statutory rights under applicable legislation. Copyright notices must not be removed, obscured or modified. The article must be linked to Wiley’s version of record on Wiley Online Library and any embedding, framing or otherwise making available the article or pages thereof by third parties from platforms, services and websites other than Wiley Online Library must be prohibited.
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