Peng ZHANG, Wan-ying XIE, Rui-liang ZUO, et al. Preparation of Mn2+ Doping Water-soluble NaBiF4: Yb/Er Microcrystals and Their Upconversion Luminescence Properties[J]. Chinese journal of luminescence, 2020, 41(9): 1122-1127.
DOI:
Peng ZHANG, Wan-ying XIE, Rui-liang ZUO, et al. Preparation of Mn2+ Doping Water-soluble NaBiF4: Yb/Er Microcrystals and Their Upconversion Luminescence Properties[J]. Chinese journal of luminescence, 2020, 41(9): 1122-1127. DOI: 10.37188/fgxb20204109.1122.
Preparation of Mn2+ Doping Water-soluble NaBiF4: Yb/Er Microcrystals and Their Upconversion Luminescence Properties
has been found with excellent luminescence properties. In this paper
polyvinyl pyrrolidone(PVP) was used as the surfactant
and the water-soluble NaBiF
4
:Er
3+
/Yb
3+
/Mn
2+
particles were successfully prepared by a solvothermal synthesis. The crystal phase
morphology and luminescence properties of the microcrystals were studied. Under the excitation of 980 nm laser
NaBiF
4
:Er
3+
/Yb
3+
/Mn
2+
microcrystals show excellent upconversion luminescence(UCL). The upconversion emission intensity increased at first and then decreased with the increase of the dopant concentrations of Mn
2+
ions. Moreover
the temperature-dependent UCL properties of NaBiF
4
:Yb
3+
/Er
3+
/Mn
2+
were investigated systematically under 980 nm excitation. The microcrystals could be a potential candidate for sensitive temperature sensor.
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Keywords
references
REDDY K L, PRABHAKAR N, ARPPE R, et al .. Microwave-assisted one-step synthesis of acetate-capped NaYF 4 :Yb/Er upconversion nanocrystals and their application in bioimaging[J]. J. Mater. Sci ., 2017, 52(10):5738-5750.
TAN H H, XIE S W, XU J X, et al .. Branched NaYF 4 :Yb, Er up-conversion phosphors with luminescent properties for anti-counterfeiting application[J]. Sci. Adv. Mater ., 2017, 9(12):2223-2233.
KRAFT M, WVRTH C, MUHR V, et al .. Particle-size-dependent upconversion luminescence of NaYF 4 :Yb, Er nanoparticles in organic solvents and water at different excitation power densities[J]. Nano Res ., 2018, 11(12):6360-6374.
GEITENBEEK R G, PRINS P T, ALBRECHT W, et al .. NaYF 4 :Er 3+ , Yb 3+ /SiO 2 core/shell upconverting nanocrystals for luminescence thermometry up to 900 K[J]. J. Phys. Chem . C, 2017, 121(6):3503-3510.
WANG G F, QIN W P, ZHANG J S, et al .. Controlled synthesis and luminescence properties from cubic to hexagonal NaYF 4 : Ln 3+ ( Ln =Eu and Yb/Tm) microcrystals[J]. J. Alloys Compd ., 2009, 475(1-2):452-455.
RAFIEI MIANDASHTI A, KHOSRAVI KHORASHAD L, GOVOROV A O, et al .. Time-resolved temperature-jump measurements and theoretical simulations of nanoscale heat transfer using NaYF 4 :Yb 3+ :Er 3+ upconverting nanoparticles[J]. J. Phys. Chem . C, 2019, 123(6):3770-3780.
DUBEY A, SONI A K, KUMARI A, et al .. Enhanced green upconversion emission in NaYF 4 :Er 3+ /Yb 3+ /Li + phosphors for optical thermometry[J]. J. Alloys Compd ., 2017, 693:194-200.
GNANASAMMANDHAN M K, IDRIS N M, BANSAL A, et al .. Near-IR photoactivation using mesoporous silica-coated NaYF 4 :Yb, Er/Tm upconversion nanoparticles[J]. Nat. Protocols , 2016, 11(4):688-713.
HOSSAN M Y, HOR A, LUU Q A, et al .. Explaining the nanoscale effect in the upconversion dynamics of β -NaYF 4 :Yb 3+ , Er 3+ core and core-shell nanocrystals[J]. J. Phys. Chem . C, 2017, 121(30):16592-16606.
ZHANG K K, ZHAO Q, QIN S R, et al .. Nanodiamonds conjugated upconversion nanoparticles for bio-imaging and drug delivery[J]. J. Colloid Interface Sci ., 2019, 537:316-324.
DU P, LUO L H, HUANG X Y, et al .. Ultrafast synthesis of bifunctional Er 3+ /Yb 3+ -codoped NaBiF 4 upconverting nanoparticles for nanothermometer and optical heater[J]. J. Colloid Interface Sci ., 2018, 514:172-181.
CHUNG J W, PARK J Y, YANG H K. Ultra-fast synthesis and photoluminescence properties of red-emitting NaBiF 4 :Eu 3+ nanophosphors by various NH 4 F concentrations[J]. J. Lumin ., 2019, 211:176-182.
YU J M, WANG Y M, HE Y X, et al .. A novel strategy to obtain hollow NaBiF 4 :Yb 3+ /Er 3+ upconversion nanospheres by one step coprecipitation[J]. J. Nanosci. Nanotechnol ., 2020, 20(10):6257-6265.
ANTONIAK M A, ZELEWSKI S J, OLIVA R, et al .. Combined temperature and pressure sensing using luminescent NaBiF 4 :Yb, Er nanoparticles[J]. ACS Appl. Nano Mater ., 2020, 3(5):4209-4217.
LEI P P, AN R, ZHAI X S, et al .. Benefits of surfactant effects on quantum efficiency enhancement and temperature sensing behavior of NaBiF 4 upconversion nanoparticles[J]. J. Mater. Chem . C, 2017, 5(37):9659-9665.
ZHANG P, QIN W P, LI D G, et al .. Impurity doping:a novel strategy for selective synthesis of YF 3 and NaYF 4 crystals[J]. CrystEngComm , 2017, 19(23):3215-3221.
DU K M, XU X, YAO S, et al .. Enhanced upconversion luminescence and controllable phase/shape of NaYF 4 :Yb/Er crystals through Cu 2+ ion doping[J]. CrystEngComm , 2018, 20(14):1945-1953.
LI L P, QIN F, ZHOU Y, et al .. Temperature sensing based on the 4 F 7/2 / 4 S 3/2 - 4 I 15/2 upconversion luminescence intensity ratio in NaYF 4 :Er 3+ /Yb 3+ nanocrystals[J]. J. Lumin ., 2019, 206:335-341.
TIAN Y Y, TIAN Y, HUANG P, et al .. Effect of Yb 3+ concentration on upconversion luminescence and temperature sensing behavior in Yb 3+ /Er 3+ co-doped YNbO 4 nanoparticles prepared via molten salt route[J]. Chem. Eng. J ., 2016, 297:26-34.
TONG L L, LI X P, ZHANG J S, et al .. NaYF 4 :Sm 3+ /Yb 3+ @NaYF 4 :Er 3+ /Yb 3+ core-shell structured nanocalorifier with optical temperature probe[J]. Opt. Express , 2017, 25(14):16047-16058.