photoluminescence
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2: Li T, Kamata N, Kotsuka Y, Fukuda T, Honda Z, Kurushima T. Trap and
nonradiative centers in
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3: Kaur Behrh G, Serier-Brault H, Jobic S, Gautier R. A Chemical Route Towards
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4: Zhang Y, He J. Facile synthesis of S, N co-doped carbon dots and investigation
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5: Kuyanov P, LaPierre RR. Photoluminescence and photocurrent from InP nanowires
with InAsP quantum dots grown on Si by molecular beam epitaxy. Nanotechnology.
2015 Aug 7;26(31):315202. doi: 10.1088/0957-4484/26/31/315202. Epub 2015 Jul 16.
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6: Mehata MS. Enhancement of Charge Transfer and Quenching of Photoluminescence
of Capped CdS Quantum Dots. Sci Rep. 2015 Jul 13;5:12056. doi: 10.1038/srep12056.
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7: Huang D, Byers CP, Wang LY, Hoggard A, Hoener B, Dominguez-Medina S, Chen S,
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2015 Jul 17. [Epub ahead of print] PubMed PMID: 26165983.
8: He Y, Sun J, Feng D, Chen H, Gao F, Wang L. Graphene quantum dots: Highly
active bifunctional nanoprobes for nonenzymatic photoluminescence detection of
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9: Gupta SK, Yadav AK, Nigam S, Jha SN, Mazumder C, Bhattacharya D, Thulasidas
SK. Speciation and site occupancy of uranium in strontium orthosilicate by
photoluminescence and X-ray absorption spectroscopy: A combined experimental and
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10: Ying SM, Ru JJ, Luo WK. Hydrothermal synthesis, crystal structure and
photoluminescence of two homochiral zinc(II) coordination polymers. Acta
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11: Soubane D, Quitoriano NJ. Photoluminescence from low thermal budget silicon
nano-crystals in silica. Nanotechnology. 2015 Jul 24;26(29):295201. doi:
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12: Gao A, Rizo PJ, Scaccabarozzi L, Lee CJ, Banine V, Bijkerk F.
Photoluminescence-based detection of particle contamination on extreme
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13: Bercha A, Ivonyak Y, Mędryk R, Trzeciakowski WA, Dybała F, Piechal B.
Photoluminescence excitation measurements using pressure-tuned laser diodes. Rev
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14: Prasannakumar JB, Vidya YS, Anantharaju KS, Ramgopal G, Nagabhushana H,
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Prabhakara KR, Nagaswarupa HP. Bio-mediated route for the synthesis of shape
tunable Y(2)O(3): Tb(3+) nanoparticles: Photoluminescence and antibacterial
properties. Spectrochim Acta A Mol Biomol Spectrosc. 2015 Jun 23;151:131-140.
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15: Duan RR, Ou ZB, Wang W, Chen S, Zhou XH. Synthesis, crystal structures,
photoluminescence properties and DNA binding of triazine-nickel(II) complexes for
DNA detection. Spectrochim Acta A Mol Biomol Spectrosc. 2015 May 29;151:64-71.
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16: Ozkan G, Kose M, Zengin H, McKee V, Kurtoglu M. A new Salen-type
azo-azomethine ligand and its Ni(II), Cu(II) and Zn(II) complexes: Synthesis,
spectral characterization, crystal structure and photoluminescence studies.
Spectrochim Acta A Mol Biomol Spectrosc. 2015 Jun 17;150:966-973. doi:
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17: Deák A, Jobbágy C, Marsi G, Molnár M, Szakács Z, Baranyai P. Anion-,
Solvent-, Temperature-, and Mechano-Responsive Photoluminescence in Gold(I)
Diphosphine-Based Dimers. Chemistry. 2015 Jun 26. doi: 10.1002/chem.201501066.
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18: Lu HC, Peng YC, Lin MY, Chou SL, Lo JI, Cheng BM. Analysis of Nickel Defect
in Diamond with Photoluminescence upon Excitation near 200 nm. Anal Chem. 2015
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19: Xu YD, Liu H, He YH, Zhou Y, Jie WQ. Study on the Low Temperature
Photoluminescence Spectra of II-VI Group Telluride Bulk Crystals. Guang Pu Xue Yu
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20: Lee Y, Park S, Kim H, Han GH, Lee YH, Kim J. Characterization of the
structural defects in CVD-grown monolayered MoS2 using near-field
photoluminescence imaging. Nanoscale. 2015 Jul 28;7(28):11909-14. doi:
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21: Baghgar M, Barnes MD. Work Function Modification in P3HT H/J Aggregate
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Imaging. ACS Nano. 2015 Jul 9. [Epub ahead of print] PubMed PMID: 26095304.
22: Kwak J, Choi O, Sim E, Lee SY. Evaluation of photoluminescence quenching for
assessing the binding of nitroaromatic compounds to a tyrosyl bolaamphiphile
self-assembly. Analyst. 2015 Jul 13;140(15):5354-60. doi: 10.1039/c5an00517e.
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23: He HP, Wang Z, Duan HF, Ye ZZ. Band tail-induced photoluminescence broadening
in heavily In-doped n-type ZnO nanowires. Phys Chem Chem Phys. 2015 Jul
21;17(27):17552-6. doi: 10.1039/c5cp02934a. Epub 2015 Jun 17. PubMed PMID:
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24: Li W, Wang S, He S, Wang J, Guo Y, Guo Y. Enhanced photoluminescence from CdS
with SiO2 nanopillar arrays. Sci Rep. 2015 Jun 16;5:11375. doi:
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25: Chen S, Pan X, He H, Chen W, Dai W, Chen C, Zhang H, Ding P, Huang J, Lu B,
Lu J, Ye Z. 60-fold photoluminescence enhancement in Pt nanoparticle-coated ZnO
films: role of surface plasmon coupling and conversion of non-radiative
recombination. Opt Lett. 2015 Jun 15;40(12):2782-5. doi: 10.1364/OL.40.002782.
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26: Tripathi LN, Kang T, Bahk YM, Han S, Choi G, Rhie J, Jeong J, Kim DS. Quantum
dots-nanogap metamaterials fabrication by self-assembly lithography and
photoluminescence studies. Opt Express. 2015 Jun 1;23(11):14937-45. doi:
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27: Santiago-González B, Vázquez-Vázquez C, Blanco-Varela MC, Gaspar Martinho JM,
Ramallo-López JM, Requejo FG, López-Quintela MA. Synthesis of water-soluble gold
clusters in nanosomes displaying robust photoluminescence with very large Stokes
shift. J Colloid Interface Sci. 2015 Oct 1;455:154-62. doi:
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28: Bag PP, Wang XS, Cao R. Microwave-assisted large scale synthesis of
lanthanide metal-organic frameworks (Ln-MOFs), having a preferred conformation
and photoluminescence properties. Dalton Trans. 2015 Jul 14;44(26):11954-62. doi:
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29: Zhang H, Tong H, Zhao Y, Yu T, Zhang P, Li J, Fan D. Synthesis, crystal
structures and photoluminescence of anthracen- and pyrene-based coumarin
derivatives. Spectrochim Acta A Mol Biomol Spectrosc. 2015 May 29;150:316-320.
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30: Song J, Li CR, Xu Q, Xu XT, Sun LX, Xing YH. Synthesis, crystal structure,
photoluminescence property of a series of 3d-4f coordination supramolecular
complexes. Spectrochim Acta A Mol Biomol Spectrosc. 2015 Jun 2;150:308-315. doi:
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31: Sun YQ, Zhong JC, Ding L, Chen YP. Syntheses, structures, photoluminescence
and photocatalysis of chiral 3D Cd(ii) frameworks from achiral mixed flexible
ligands by spontaneous resolution. Dalton Trans. 2015 Jul 14;44(26):11852-9. doi:
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32: Hanson CJ, Buck MR, Acharya K, Torres JA, Kundu J, Ma X, Bouquin S, Hamilton
CE, Htoon H, Hollingsworth JA. Matching Solid-State to Solution-Phase
Photoluminescence for Near-Unity Down-Conversion Efficiency Using Giant Quantum
Dots. ACS Appl Mater Interfaces. 2015 Jun 24;7(24):13125-30. doi:
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33: Kong W, Ye Z, Qi Z, Zhang B, Wang M, Rahimi-Iman A, Wu H. Characterization of
an abnormal photoluminescence behavior upon crystal-phase transition of
perovskite CH3NH3PbI3. Phys Chem Chem Phys. 2015 Jul 7;17(25):16405-11. doi:
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34: Fakhri A, Pourmand M, Khakpour R, Behrouz S. Structural, optical,
photoluminescence and antibacterial properties of copper-doped silver sulfide
nanoparticles. J Photochem Photobiol B. 2015 Aug;149:78-83. doi:
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35: Mnoyan AN, Kirakosyan AG, Kim H, Jang HS, Jeon DY. Electrostatic Stabilized
InP Colloidal Quantum Dots with High Photoluminescence Efficiency. Langmuir. 2015
Jun 30;31(25):7117-21. doi: 10.1021/acs.langmuir.5b00847. Epub 2015 Jun 19.
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36: Liu Y, Zhang Y, Hu GH, Zhou S, Fan R, Yang Y, Xu Y. A Series of Lanthanide
Metal-Organic Frameworks with Interesting Adjustable Photoluminescence
Constructed by Helical Chains. Chemistry. 2015 Jul 13;21(29):10391-9. doi:
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37: Gao X, Wang C, Shi ZF, Song J, Bai FY, Wang JX, Xing YH. A family of
uranyl-aromatic dicarboxylate (pht-, ipa-, tpa-) framework hybrid materials:
photoluminescence, surface photovoltage and dye adsorption. Dalton Trans. 2015
Jun 17;44(25):11562-71. doi: 10.1039/c5dt01470k. PubMed PMID: 26038888.
38: Wang Y, Li Y. Metastable γ-Bi2O3 tetrahedra: Phase-transition dominated by
polyethylene glycol, photoluminescence and implications for internal structure by
etch. J Colloid Interface Sci. 2015 Sep 15;454:238-44. doi:
10.1016/j.jcis.2015.05.001. Epub 2015 May 14. PubMed PMID: 26037273.
39: Hao S, Yang L, Qiu H, Fan R, Yang C, Chen G. Heterogeneous core/shell
fluoride nanocrystals with enhanced upconversion photoluminescence for in vivo
bioimaging. Nanoscale. 2015 Jun 28;7(24):10775-80. doi: 10.1039/c5nr02287h. Epub
2015 Jun 2. PubMed PMID: 26035440.
40: Vidyadharan V, Sreeja E, Jose SK, Joseph C, Unnikrishnan NV, Biju PR.
Spectroscopic and photoluminescence characterization of Dy(3+) in Sr(0.5) Ca(0.5)
TiO(3) phosphor. Luminescence. 2015 Jun 1. doi: 10.1002/bio.2946. [Epub ahead of
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41: Debruyne D, Deschaume O, Coutiño-Gonzalez E, Locquet JP, Hofkens J, Van Bael
MJ, Bartic C. The pH-dependent photoluminescence of colloidal CdSe/ZnS quantum
dots with different organic coatings. Nanotechnology. 2015 Jun 26;26(25):255703.
doi: 10.1088/0957-4484/26/25/255703. Epub 2015 Jun 2. PubMed PMID: 26031426.
42: Ullrich B, Singh AK, Barik P, Xi H, Bhowmick M. Inherent photoluminescence
Stokes shift in GaAs. Opt Lett. 2015 Jun 1;40(11):2580-3. doi:
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43: Gholami J, Manteghian M, Badiei A, Ueda H, Javanbakht M. N-butylamine
functionalized graphene oxide for detection of iron(III) by photoluminescence
quenching. Luminescence. 2015 May 27. doi: 10.1002/bio.2950. [Epub ahead of
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44: Wu Y, Zhao F, Piao X, Ruan K. Zn-doped CaTiO(3) :Eu(3+) red phosphors for
enhanced photoluminescence in white LEDs by solid-state reaction. Luminescence.
2015 May 26. doi: 10.1002/bio.2937. [Epub ahead of print] PubMed PMID: 26014578.
45: Whitham PJ, Knowles KE, Reid PJ, Gamelin DR. Photoluminescence Blinking and
Reversible Electron Trapping in Copper-Doped CdSe Nanocrystals. Nano Lett. 2015
Jun 10;15(6):4045-51. doi: 10.1021/acs.nanolett.5b01046. Epub 2015 May 29. PubMed
PMID: 26007328.
46: Luo H, Bos AJ, Dobrowolska A, Dorenbos P. Low-temperature VUV
photoluminescence and thermoluminescence of UV excited afterglow phosphor
Sr3AlxSi1-xO5:Ce(3+),Ln(3+) (Ln = Er, Nd, Sm, Dy and Tm). Phys Chem Chem Phys.
2015 Jun 2;17(23):15419-27. doi: 10.1039/c5cp01710f. PubMed PMID: 26007307.
47: Shi B, Zhang L, Lan C, Zhao J, Su Y, Zhao S. One-pot green synthesis of
oxygen-rich nitrogen-doped graphene quantum dots and their potential application
in pH-sensitive photoluminescence and detection of mercury(II) ions. Talanta.
2015 Sep 1;142:131-9. doi: 10.1016/j.talanta.2015.04.059. Epub 2015 Apr 28.
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48: Subhan MA, Uddin N, Sarker P, Azad AK, Begum K. Photoluminescence,
photocatalytic and antibacterial activities of CeO(2)·CuO·ZnO nanocomposite
fabricated by co-precipitation method. Spectrochim Acta A Mol Biomol Spectrosc.
2015 May 13;149:839-850. doi: 10.1016/j.saa.2015.05.024. [Epub ahead of print]
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49: Prabhakar N, Näreoja T, von Haartman E, Şen Karaman D, Burikov SA, Dolenko
TA, Deguchi T, Mamaeva V, Hänninen PE, Vlasov II, Shenderova OA, Rosenholm JM.
Functionalization of graphene oxide nanostructures improves photoluminescence and
facilitates their use as optical probes in preclinical imaging. Nanoscale. 2015
Jun 4;7(23):10410-20. doi: 10.1039/c5nr01403d. PubMed PMID: 25998585.
50: Rangari VV, Singh V, Dhoble SJ. Synthesis and photoluminescence
characteristics of (Y,Gd)BO(3) :RE (RE = Eu(3+) , Ce(3+) , Dy(3+) and Tb(3+) )
phosphors for blue chip and near-UV white LEDs. Luminescence. 2015 May 20. doi:
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51: Yuan P, Ma R, Gao N, Garai M, Xu QH. Plasmon coupling-enhanced two-photon
photoluminescence of Au@Ag core-shell nanoparticles and applications in the
nuclease assay. Nanoscale. 2015 Jun 14;7(22):10233-9. doi: 10.1039/c5nr01409c.
Epub 2015 May 20. PubMed PMID: 25990464.
52: Ceyhan G, Köse M, Tümer M, Demirtaş İ. Anticancer, photoluminescence and
electrochemical properties of structurally characterized two imine derivatives.
Spectrochim Acta A Mol Biomol Spectrosc. 2015 May 13;149:731-743. doi:
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53: Anilkumar MR, Nagaswarupa HP, Nagabhushana H, Sharma SC, Vidya YS,
Anantharaju KS, Prashantha SC, Shivakuamra C, Gurushantha K. Bio-inspired route
for the synthesis of spherical shaped MgO:Fe(3+) nanoparticles: Structural,
photoluminescence and photocatalytic investigation. Spectrochim Acta A Mol Biomol
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54: Chizhik AM, Tarpani L, Latterini L, Gregor I, Enderlein J, Chizhik AI.
Photoluminescence of a single quantum emitter in a strongly inhomogeneous
chemical environment. Phys Chem Chem Phys. 2015 May 27;17(22):14994-5000. doi:
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55: Anandhan K, Thilak Kumar R. Synthesis, FTIR, UV-Vis and Photoluminescence
characterizations of triethanolamine passivated CdO nanostructures. Spectrochim
Acta A Mol Biomol Spectrosc. 2015 May 2;149:476-480. doi:
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56: Ortiz-Morales A, Ortiz-Lopez J, Cruz-Zaragoza E, Gómez-Aguilar R.
Thermoluminescence and photoluminescence analyses of MEH-PPV, MDMO-PPV and
RU(bpy)3 gamma-irradiated polymer thin films. Appl Radiat Isot. 2015
Aug;102:55-62. doi: 10.1016/j.apradiso.2015.04.013. Epub 2015 May 6. PubMed PMID:
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57: Kim HS, Kim WJ, Strano MS, Hanl JH. Optical detection of argon gas flow based
on vibration-induced change in photoluminescence of a semiconducting
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58: Back D, Lee J. Characterization of silicon-germanium epitaxial layer by
photoluminescence intensity and reflectance measurement techniques. J Nanosci
Nanotechnol. 2014 Dec;14(12):8999-9004. PubMed PMID: 25970998.
59: Brehm M, Grydlik M, Tayagaki T, Langer G, Schäffler F, Schmidt OG.
Photoluminescence investigation of strictly ordered Ge dots grown on
pit-patterned Si substrates. Nanotechnology. 2015 Jun 5;26(22):225202. doi:
10.1088/0957-4484/26/22/225202. Epub 2015 May 13. PubMed PMID: 25969173.
60: Barugkin C, Allen T, Chong TK, White TP, Weber KJ, Catchpole KR. Light
trapping efficiency comparison of Si solar cell textures using spectral
photoluminescence. Opt Express. 2015 Apr 6;23(7):A391-400. doi:
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61: Park SW, Noh HM, Moon BK, Choi BC, Jeong JH, Yang HK. Hydrothermal synthesis
and photoluminescence investigation of NaY(MoO4)2:Eu3+ nanophosphor. J Nanosci
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62: Würth C, Resch-Genger U. Determination of Photoluminescence Quantum Yields of
Scattering Media with an Integrating Sphere: Direct and Indirect Illumination.
Appl Spectrosc. 2015 Jun;69(6):749-59. doi: 10.1366/14-07679. Epub 2015 May 1.
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63: PLOS ONE Staff. Correction: Enhanced Photoluminescence and Raman Properties
of Al-Doped ZnO Nanostructures Prepared Using Thermal Chemical Vapor Deposition
of Methanol Assisted with Heated Brass. PLoS One. 2015 May 7;10(5):e0126189. doi:
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64: Liu X, Hu R, Gao Z, Shao N. Photoluminescence Mechanism of DNA-Templated
Silver Nanoclusters: Coupling between Surface Plasmon and Emitter and Sensing of
Lysozyme. Langmuir. 2015 Jun 2;31(21):5859-67. doi: 10.1021/acs.langmuir.5b00589.
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65: Kong L, Yu B, Xu X, Pan J, Su Y, Hu J. Room temperature ferromagnetism and
photoluminescence in Cu-doped ZnO nanocrystals. J Nanosci Nanotechnol. 2014
Aug;14(8):6012-5. PubMed PMID: 25936047.
66: Shinde KN, Dhoble SJ, Yoon SJ, Park K. Synthesis and photoluminescence of
novel NaLi2PO4:Tb(3+) nanophosphors for near-ultraviolet excited light emitting
diodes. J Nanosci Nanotechnol. 2014 Aug;14(8):5957-60. PubMed PMID: 25936035.
67: Lee DG, Kesavulu CR, Yi SS, Cho S, Jang K, Kim SH, Jeong JH.
Photoluminescence properties of Na(Sr,Ca)VO4:Eu(3+) phosphors. J Nanosci
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68: Hakeem A, Shinde KN, Yoon SJ, Dhoble SJ, Park K. Synthesis and
photoluminescence of novel Ca(1-x)MgP2O7:xEu(3+) pyrophosphate phosphor for near
ultraviolet light emitting diodes. J Nanosci Nanotechnol. 2014 Aug;14(8):5873-6.
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69: Lee B, Park J, Han GH, Ee HS, Naylor CH, Liu W, Johnson AT, Agarwal R. Fano
Resonance and Spectrally Modified Photoluminescence Enhancement in Monolayer MoS2
Integrated with Plasmonic Nanoantenna Array. Nano Lett. 2015 May
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70: Yang P, Zhao J, Zhang L, Li L, Zhu Z. Intramolecular hydrogen bonds quench
photoluminescence and enhance photocatalytic activity of carbon nanodots.
Chemistry. 2015 Jun 1;21(23):8561-8. doi: 10.1002/chem.201405088. Epub 2015 Apr
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71: Guerreiro HA, Trivinho-Strixino F, Chiquito AJ, Guimarães FE, Pereira EC.
Grazing angle photoluminescence of porous alumina as an analytical transducer for
gaseous ethanol detection. J Nanosci Nanotechnol. 2014 Sep;14(9):6653-7. PubMed
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72: Ziyauddin M, Tigga S, Brahme N, Bisen DP. Photoluminescence and
thermoluminescence studies of CaAl(2) O(4) :Dy(3+) phosphor. Luminescence. 2015
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73: Wang XS, Situ JQ, Ying XY, Chen H, Pan HF, Jin Y, Du YZ. β-Ga2O3:Cr(3+)
nanoparticle: A new platform with near infrared photoluminescence for drug
targeting delivery and bio-imaging simultaneously. Acta Biomater. 2015
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74: Xu W, Zhu G, Zhou X, Wang Y. The structure, photoluminescence and influence
of temperature on energy transfer in co-doped Ca9La(GeO4)0.75(PO4)6 red-emission
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75: Nishikawa M, Wakita Y, Nishi T, Miura T, Tsubomura T. Long-lived and
oxygen-responsive photoluminescence in the solid state of copper(I) complexes
bearing fluorinated diphosphine and bipyridine ligands. Dalton Trans. 2015 May
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76: Wang H, Xu L, Zhang R, Ge Z, Zhang W, Xu J, Ma Z, Chen K. Controllable
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77: Fujisawa K, Yamada S, Yanagi Y, Yoshioka Y, Kiyohara A, Tsutsumi O. Tuning
the photoluminescence of condensed-phase cyclic trinuclear Au(I) complexes
through control of their aggregated structures by external stimuli. Sci Rep. 2015
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78: García R, Melle-Franco M, Mateo-Alonso A. A short pyrene-fused pyrazaacene
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79: Roy-Choudhury K, Hughes S. Theory of phonon-modified quantum dot
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1049: Bera A, Ghosh T, Basak D. Enhanced photoluminescence and photoconductivity
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1050: Zhou H, Wu G, Gao F, Qin N, Bao D. Improved photoluminescence and
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1059: Serdiuk T, Skryshevsky VA, Phaner-Goutorbe M, Souteyrand E. Monitoring of
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1061: Chang YM, Jian SR, Lee HY, Lin CM, Juang JY. Enhanced visible
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1065: Bairi P, Roy B, Nandi AK. Bicomponent hydrogels of lumichrome and melamine:
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1075: Li Y, Yan B. Functionalized Mesoporous SBA-15 with CeF3: Eu3+ Nanoparticle
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1077: Peng L, Wang Y. Effects of the Template Composition and Coating on the
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1101: Longo VM, das Graça Sampaio Costa M, Zirpole Simões A, Rosa IL, Santos CO,
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2047: Quinlan SM, Nikroo A, Sherwin MS, Sundaram M, Gossard AC. Photoluminescence
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2050: Latgé A, Porras-Montenegro N, Oliveira LE. Photoluminescence study of
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2051: Kanata T, Nishimoto M, Nakayama H, Nishino T. Valence-band splitting in
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2056: Nishikawa H, Shiroyama T, Nakamura R, Ohki Y, Nagasawa K, Hama Y.
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2057: Dutartre D, Brémond G, Souifi A, Benyattou T. Excitonic photoluminescence
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2059: Burberry MS, Marchetti AP, Spoonhower JP, McDugle WG, Nuttall RH, Tinti DS.
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2062: Ruda HE, Jedral L, Mannik L. Green photoluminescence in GaP:Zn,O grown by
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2063: Alonso RG, Oh E, Ramdas AK, Luo H, Samarth N, Furdyna JK, Ram-Mohan LR.
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2064: Volkov AS, Kumekov SE, Syrgaliev EO, Chernyshov SV. [Photoluminescence band
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2066: Joyce MJ, Xu ZY, Gal M. Photoluminescence excitation spectroscopy of
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2068: Kurtz SR, Biefeld RM. Infrared magneto-optical and photoluminescence
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2069: Nissen MK, Villemaire A, Thewalt ML. Photoluminescence studies of the EL2
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2071: Carter PW, Porter JD. Probing of pi conjugation in trans-polyacetylene
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2072: Spain IL, Skolnick MS, Smith GW, Saker MK, Whitehouse CR. Photoluminescence
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2073: Hu B, Zhang X, Zhou Y, Jin C, Zhang J. Pressure dependence of the
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2074: Zhao XS, Schroeder J, Persans PD, Bilodeau TG. Resonant-Raman-scattering
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2075: Gil B, Leroux M, Contour JP, Chaix C. Modulation spectroscopy of the
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2077: Grober RD, Drew HD. Evidence for an electron-hole plasma in the
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2078: Reynolds DC, Evans KR, Merkel KG, Stutz CE, Yu PW. Photoluminescence due to
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2079: Sturm JC, Manoharan H, Lenchyshyn LC, Thewalt ML, Rowell NL, Noël J,
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2080: Zhao QX, Fu Y, Holtz PO, Monemar B, Bergman JP, Chao KA, Sundaram M, Merz
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2081: Reynolds DC, Evans KR, Stutz CE, Yu PW. Effect of a magnetic field on the
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2082: Sun YS, Stanton CJ. Matrix method of solution of the Boltzmann equation for
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2083: Gal M, Xu ZY, Green F, Usher BF. Exciton localization in InxGa1-xAs/GaAs
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2084: DeLong MC, Viohl I I, Ohlsen WD, Taylor PC, Olson JM. Microwave thermal
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2085: Yu PW. Photoluminescence and photoluminescence excitation of 0.635-eV EL0
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2086: Ogasawara N, Fujiwara A, Ohgushi N, Fukatsu S, Shiraki Y, Katayama Y, Ito
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2088: Wagner J, Fischer A, Ploog K. Photoluminescence from the
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2089: Awadelkarim OO, Henry A, Monemar B, Lindström JL, Zhang Y, Corbett JW.
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2090: Skolnick MS, Hayes DG, Simmonds PE, Higgs AW, Smith GW, Hutchinson HJ,
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2092: Wilkinson VA, Prins AD, Lambkin JD, O’Reilly EP, Dunstan DJ, Howard LK,
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2093: Skolnick MS, Simmonds PE, Hayes DG, Higgs AW, Smith GW, Pitt AD, Whitehouse
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2095: MacKay JF, Becker WM, Spaek J, Debska U. Temperature and magnetic-field
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2096: Qiu C, Pankove JI. Light-induced change in defect-band photoluminescence of
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2097: Ouadjaout D, Marfaing Y. Localized excitons in II-VI semiconductor alloys:
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2098: Bradshaw JL, Devaty RP, Choyke WJ, Messham RL. Fabry-Perot cavity
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2100: Skolnick MS, Hayes DG, Simmonds PE, Higgs AW, Smith GW, Hutchinson HJ,
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2102: Campbell IH, Fauchet PM, Lyon SA, Nemanich RJ. Photoluminescence above the
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2103: Yoshimura H, Schulman JN, Sakaki H. Charge accumulation in a double-barrier
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2104: Nissen MK, Steele AG, Thewalt ML. Photoluminescence from excitons bound to
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2105: Lee JH, Hsieh KY, Kolbas RM. Photoluminescence and stimulated emission from
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2106: Black HS, Rodgers MA. Glass and plastic photoluminescence: interaction with
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2113: Holtz PO, Sundaram M, Merz JL, Gossard AC. Observation of the
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2114: Stepniewski R, Huant S, Martinez G, Etienne B. Photoluminescence studies of
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2115: Phillips CC, Eccleston R, Andrews SR. Theoretical and experimental
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2116: Brunthaler G, Ploog K, Jantsch W. Photoluminescence transients due to hole
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2118: Weber J, Alonso MI. Near-band-gap photoluminescence of Si-Ge alloys. Phys
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2119: Montelius L, Nilsson S, Samuelson L. Hole ionization of Mn-doped GaAs:
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2120: Kirby PB, Constable JA, Smith RS. Photoluminescence study of undoped and
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2121: Norris TB, Vodjdani N, Vinter B, Weisbuch C, Mourou GA.
Charge-transfer-state photoluminescence in asymmetric coupled quantum wells. Phys
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2124: Reimann K, Syassen K. Raman scattering and photoluminescence in Cu2O under
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2125: Schubert EF, Harris TD, Cunningham JE, Jan W. Multisubband
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2127: Oheda H. Instability of the free surface of undoped a-Si:H studied by
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2128: Pavesi L, Tuncel E, Zimmermann B, Reinhart FK. Photoluminescence of
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2129: Cooper DE, Newman PR. Exciton-polariton dynamics and photoluminescence line
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2130: Nash KJ, Skolnick MS, Claxton PA, Roberts JS. Phonon sideband of
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2132: Blasse G. Comment on “Time-resolved photoluminescence of Fe3+ ions in
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2133: Akimoto K, Miyajima T, Mori Y. Photoluminescence spectra of oxygen-doped
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Oscillatory behavior in the photoluminescence excitation and photoconductivity
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2135: Hollering RW, Berendschot TT, Bluyssen HJ, Reinen HA, Wyder P, Roozeboom F.
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2139: Köhler K, Polland H, Schultheis L, Tu CW. Photoluminescence of
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2144: Snow E, Freitas JA Jr, Strom U. Time-resolved photoluminescence of Fe3+
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2147: Andersson TG, Chen ZG, Kulakovskii VD, Uddin A, Vallin JT.
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