박사

Improvement of quantum dot dispersion in polymer nanocomposites and applications to light emitting devices

윤철상 2018년
논문상세정보
' Improvement of quantum dot dispersion in polymer nanocomposites and applications to light emitting devices' 의 주제별 논문영향력
논문영향력 선정 방법
논문영향력 요약
주제
  • dispersion
  • light-emitting diodes
  • polymer nanocomposite
  • quantum dot
  • quantum efficiency
  • 고분자 나노복합체
  • 발광소자
  • 분산
  • 양자점
  • 양자효율
동일주제 총논문수 논문피인용 총횟수 주제별 논문영향력의 평균
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' Improvement of quantum dot dispersion in polymer nanocomposites and applications to light emitting devices' 의 참고문헌

  • Zhang H et al 2007 From water-soluble CdTe nanocrystals to fluorescent nanocrystal-polymer transparent composites using polymerizable surfactants Adv. Mater. 15 777–780
  • Z.A. Peng, X.G. Peng, Formation of high-quality CdTe, CdSe, and CdS nanocrystals using CdO as precursor, J Am Chem Soc, 123 (2001) 183-184.
  • Y.T. Lim, O.O. Park, Phase morphology and rheological behavior of polymer/layered silicate nanocomposites, Rheol Acta, 40 (2001) 220-229.
  • Y.H. Won, H.S. Jang, K.W. Cho, Y.S. Song, D.Y. Leon, H.K. Kwon, Effect of phosphor geometry on the luminous efficiency of high-power white light-emitting diodes with excellent color rendering property, Opt. Lett. 34 (2009) 1-3.
  • Y. Yang, Y.Q. Li, S.Y. Fu, H.M. Xiao, Transparent and light-emitting epoxy nanocomposites containing ZnO quantum dots as encapsulating materials for solid state lighting, J Phys Chem C, 112 (2008) 10553-10558.
  • Y. Shirasaki, G.J. Supran, M.G. Bawendi, V. Bulovic, Emergence of colloidal quantum-dot light-emitting technologies, Nat Photonics, 7 (2013) 13-23.
  • Y. Narukawa, M. Ichikawa, D. Sanga, M. Sano, T. Mukai, White light emitting diodes with super-high luminous efficacy, J Phys D Appl Phys, 43 (2010).
  • Y. Li, L. Wang, B. Natarajan, P. Tao, B.C. Benicewicz, C. Ullal, L.S. Schadler, Bimodal "matrix-free" polymer nanocomposites, Rsc Adv, 5 (2015) 14788-14795.
  • X.Y. Yang, D.W. Zhao, K.S. Leck, S.T. Tan, Y.X. Tang, J.L. Zhao, H.V. Demir, X.W. Sun, Full Visible Range Covering InP/ZnS Nanocrystals with High Photometric Performance and Their Application to White Quantum Dot Light- Emitting Diodes, Adv Mater, 24 (2012) 4180-4185.
  • X.Y. Wang, X.F. Ren, K. Kahen, M.A. Hahn, M. Rajeswaran, S. Maccagnano- Zacher, J. Silcox, G.E. Cragg, A.L. Efros, T.D. Krauss, Non-blinking semiconductor nanocrystals (Retracted article. See vol. 527, 2015), Nature, 459 (2009) 686-689.
  • X.S. Wang, T.E. Dykstra, M.R. Salvador, I. Manners, G.D. Scholes, M.A. Winnik, Surface passivation of luminescent colloidal quantum dots with poly(dimethylaminoethyl methacrylate) through a ligand exchange process, J Am Chem Soc, 126 (2004) 7784-7785.
  • X.G. Peng, M.C. Schlamp, A.V. Kadavanich, A.P. Alivisatos, Epitaxial growth of highly luminescent CdSe/CdS core/shell nanocrystals with photostability and electronic accessibility, J Am Chem Soc, 119 (1997) 7019-7029.
  • X.D. Cao, C.M. Li, H.F. Bao, Q.L. Bao, H. Dong, Fabrication of strongly fluorescent quantum dot-polymer composite in aqueous solution, Chem. Mater. 19 (2007) 3773-3779.
  • X.B. Wang, W.W. Li, K. Sun, Stable efficient CdSe/CdS/ZnS core/multi-shell nanophosphors fabricated through a phosphine-free route for white light-emittingdiodes with high color rendering properties, J Mater Chem, 21 (2011) 8558-8565.
  • W.S. Song, H. Yang, Efficient White-Light-Emitting Diodes Fabricated from Highly Fluorescent Copper Indium Sulfide Core/Shell Quantum Dots, Chem Mater, 24 (2012) 1961-1967.
  • W.K. Bae, K. Char, H. Hur, S. Lee, Single-step synthesis of quantum dots with chemical composition gradients, Chem Mater, 20 (2008) 531-539.
  • W.C. Sheng, S. Kim, J. Lee, S.W. Kim, K. Jensen, M.G. Bawendi, In-situ encapsulation of quantum dots into polymer microspheres, Langmuir, 22 (2006) 3782-3790.
  • W. Zou, Z.J. Du, H.Q. Li, C. Zhang, A transparent and luminescent epoxy nanocomposite containing CdSe QDs with amido group-functionalized ligands, J Mater Chem, 21 (2011) 13276-13282.
  • V.L. Colvin, M.C. Schlamp, A.P. Alivisatos, Light-Emitting-Diodes Made from Cadmium Selenide Nanocrystals and a Semiconducting Polymer, Nature 370 (1994) 354-357.
  • V. Bachmann, C. Ronda, A. Meijerink, Temperature quenching of yellow Ce3+ luminescence in YAG:Ce, Chem. Mater., 21 (2009) 2077-2084.
  • U. Resch-Genger, M. Grabolle, S. Cavaliere-Jaricot, R. Nitschke, T. Nann, Quantum dots versus organic dyes as fluorescent labels, Nat Methods, 5 (2008) 763-775.
  • T.L. Li, H.S. Teng, Solution synthesis of high-quality CuInS2 quantum dots as sensitizers for TiO2 photoelectrodes, J Mater Chem, 20 (2010) 3656-3664.
  • T.J. Boyle, S.D. Bunge, T.M. Alam, G.P. Holland, T.J. Headley, G. Avilucea, Cadmium amido alkoxide and alkoxide precursors for the synthesis of nanocrystalline CdE (E = S, Se, Te), Inorg Chem, 44 (2005) 1309-1318.
  • T.C. Monson, C.W. Hollars, C.A. Orme, T. Huser, Improving Nanoparticle Dispersion and Charge Transfer in Cadmium Telluride Tetrapod and Conjugated Polymer Blends, Acs Appl Mater Inter, 3 (2011) 1077-1082.
  • T. Takagahara, K. Takeda, Theory of the Quantum Confinement Effect on Excitons in Quantum Dots of Indirect-Gap Materials, Phys Rev B, 46 (1992) 15578-15581.
  • T. Pellegrino, L. Manna, S. Kudera, T. Liedl, D. Koktysh, A.L. Rogach, S. Keller, J. Radler, G. Natile, W.J. Parak, Hydrophobic nanocrystals coated with an amphiphilic polymer shell: A general route to water soluble nanocrystals, Nano Lett, 4 (2004) 703-707.
  • T. Nann, Phase-transfer of CdSe@ZnS quantum dots using amphiphilic hyperbranched polyethylenimine, Chem Commun, (2005) 1735-1736.
  • S.Y. Lin, C.C. Tseng, W.H. Lin, S.C. Mai, S.Y. Wu, S.H. Chen, J.I. Chyi, Room-temperature operation type-II GaSb/GaAs quantum-dot infrared lightemitting diode, Appl Phys Lett, 96 (2010).
  • S.V. Vaidya, A. Couzis, C. Maldarelli, Reduction in Aggregation and Energy Transfer of Quantum Dots Incorporated in Polystyrene Beads by Kinetic Entrapment due to Cross-Linking during Polymerization, Langmuir, 31 (2015) 3167-3179.
  • S.M. Reda, Synthesis and optical properties of CdS quantum dots embedded in silica matrix thin films and their applications as luminescent solar concentrators, Acta Mater, 56 (2008) 259-264.
  • S.C. Farmer, T.E. Patten, Photoluminescent polymer/quantum dot composite nanoparticles, Chem Mater, 13 (2001) 3920-3926.
  • S.A. McDonald, G. Konstantatos, S.G. Zhang, P.W. Cyr, E.J.D. Klem, L. Levina, E.H. Sargent, Solution-processed PbS quantum dot infrared photodetectors and photovoltaics, Nat Mater, 4 (2005) 138-142.
  • S.A. Empedocles, M.G. Bawendi, Quantum-confined stark effect in single CdSe nanocrystallite quantum dots, Science, 278 (1997) 2114-2117.
  • S. Shojaei-Zadeh, J.F. Morris, A. Couzis, C. Maldarelli, Highly crosslinked poly(dimethylsiloxane) microbeads with uniformly dispersed quantum dot nanocrystals, J. Colloid Interface Sci. 363 (2011) 25-33.
  • S. Li, M.S. Toprak, Y.S. Jo, J. Dobson, D.K. Kim, M. Muhammed, Bulk synthesis of transparent and homogeneous polymeric hybrid materials with ZnO quantum dots and PMMA, Adv Mater, 19 (2007) 4347-4352.
  • S. Kim, M.G. Bawendi, Oligomeric Ligands for luminescent and stable nanocrystal quantum dots, J Am Chem Soc, 125 (2003) 14652-14653.
  • S. Kim, J. Park, T. Kim, E. Jang, S. Jun, H. Jang, B. Kim, S.W. Kim, Reverse Type-I ZnSe/InP/ZnS Core/Shell/Shell Nanocrystals: Cadmium-Free Quantum Dots for Visible Luminescence, Small, 7 (2011) 70-73.
  • S. Kim, B. Fisher, H.Y. Eisler, M.G. Bawendi, Novel type-II quantum dots: CDTE/CDSE(core/shell) and CDSE/ZNTE(core/shell) heterostructures., Abstr Pap Am Chem S, 224 (2002) U443-U443.
  • S. Jun, J. Lee, E. Jang, Highly Luminescent and Photostable Quantum Dot- Silica Monolith and Its Application to Light-Emitting Diodes, Acs Nano, 7 (2013) 1472-1477.
  • S. Jun, E. Jang, Bright and Stable Alloy Core/Multishell Quantum Dots, Angew Chem Int Edit, 52 (2013) 679-682.
  • S. Ishii, Fabrication of a quantum dot-polymer matrix by layer-by-layer conjugation, Journal of photochemistry and photobiology. J. Photochem. Photobiol. A Chem. 183 (2006) 285-291.
  • R.J. Xie, N. Hirosaki, N. Kimura, K. Sakuma, M. Mitomo, 2-phosphorconverted white light-emitting diodes using oxynitride/nitride phosphors, Appl. Phys. Lett. 90 (2007) 191101-191103.
  • R. Koole, P. Schapotschnikow, C.D. Donega, T.J.H. Vlugt, A. Meijerink, Timedependent photoluminescence spectroscopy as a tool to measure the ligand exchange kinetics on a quantum dot surface, Acs Nano, 2 (2008) 1703-1714.
  • R. Kasuya, A. Kawano, T. Isobe, Characteristic optical properties of transparent color conversion film prepared from YAG : Ce3+ nanoparticles, Appl Phys Lett, 91 (2007) 111916.
  • R. Jakubiak, C.J. Collison, W.C. Wan, L.J. Rothberg, B.R. Hsieh, Aggregation quenching of luminescence in electroluminescent conjugated polymers, J. Phys. Chem. A, 103 (1999) 2394-2398.
  • Q. Sun, Y.A. Wang, L.S. Li, D.Y. Wang, T. Zhu, J. Xu, C.H. Yang, Y.F. Li, Bright, multicoloured light-emitting diodes based on quantum dots, Nat Photonics, 1 (2007) 717-722.
  • P.V. Kamat, Quantum Dot Solar Cells. Semiconductor Nanocrystals as Light Harvesters, J Phys Chem C, 112 (2008) 18737-18753.
  • P.O. Anikeeva, J.E. Halpert, M.G. Bawendi, V. Bulovic, Quantum Dot Light- Emitting Devices with Electroluminescence Tunable over the Entire Visible Spectrum, Nano Lett, 9 (2009) 2532-2536.
  • P.K. Khanna, N. Singh, Light emitting CdS quantum dots in PMMA: Synthesis and optical studies, J. Lumin. 127 (2007) 474-482.
  • P.H. Chuang, C.C. Lin, R.S. Liu, Emission-Tunable CuInS2/ZnS Quantum Dots: Structure, Optical Properties, and Application in White Light-Emitting Diodes with High Color Rendering Index, Acs Appl Mater Inter, 6 (2014) 15379- 15387.
  • P. Tao, Y. Li, R.W. Siegel, L.S. Schadler, Transparent luminescent silicone nanocomposites filled with bimodal PDMS-brush-grafted CdSe quantum dots, J Mater Chem C, 1 (2013) 86-94.
  • P. Schlotter, J. Baur, C. Hielscher, M. Kunzer, H. Obloh, R. Schmidt, J. Schneider, Fabrication and characterization of GaN/InGaN/AlGaN double heterostructure LEDs and their application in luminescence conversion LEDs, Mat. Sci. Eng. B, Solid-State Mater. Adv. Technol. 59 (1999) 390-394.
  • P. Sawant, E. Kovalev, J.T. Klug, S. Efrima, Alkyl xanthates: New capping agents for metal colloids. Capping of platinum nanoparticles, Langmuir. 17 (2001) 2913-2917.
  • P. Reiss, S. Carayon, J. Bleuse, A. Pron, Low polydispersity core/shell nanocrystals of CdSe/ZnSe and CdSe/ZnSe/ZnS type: preparation and optical studies, Synthetic Met, 139 (2003) 649-652.
  • P. Reiss, M. Protiere, L. Li, Core/Shell Semiconductor Nanocrystals, Small, 5 (2009) 154-168.
  • P. Reiss, J. Bleuse, A. Pron, Highly luminescent CdSe/ZnSe core/shell nanocrystals of low size dispersion, Nano Lett, 2 (2002) 781-784.
  • O.I. Micic, J. Sprague, Z.H. Lu, A.J. Nozik, Highly efficient band-edge emission from InP quantum dots, Appl Phys Lett, 68 (1996) 3150-3152.
  • N.C. Anderson, J.S. Owen, Soluble, Chloride-Terminated CdSe Nanocrystals: Ligand Exchange Monitored by H-1 and P-31 NMR Spectroscopy, Chem Mater, 25 (2013) 69-76.
  • N. Tomczak, D. Janczewski, M.Y. Han, G.J. Vancso, Designer polymerquantum dot architectures, Prog Polym Sci, 34 (2009) 393-430.
  • N. Narendran, Y.M. Gu, Life of LED-Based White Light Sources, J Disp Technol, 1 (2005) 167-171.
  • N. Kimura, K. Sakuma, S. Hirafune, K. Asano, N. Hirosaki, R.J. Xie, Extrahigh color rendering white light-emitting diode lamps using oxynitride and nitride phosphors excited by blue light-emitting diode, Appl Phys Lett, 90 (2007) 051109.
  • N. Gaponik, D.V. Talapin, A.L. Rogach, K. Hoppe, E.V. Shevchenko, A. Kornowski, A. Eychmuller, H. Weller, Thiol-capping of CdTe nanocrystals: An alternative to organometallic synthetic routes, J Phys Chem B, 106 (2002) 7177- 7185.
  • M.Z. Rong, M.Q. Zhang, S.L. Pan, B. Lehmann, K. Friedrich, Analysis of the interfacial interactions in polypropylene/silica nanocomposites, Polym Int, 53 (2004) 176-183.
  • M.Y. Gao, B. Richter, S. Kirstein, White-light electroluminescence from a selfassembled Q-CdSe/PPV multilayer structures, Adv. Mater. 9 (1997) 802-805.
  • M.H. Crawford, LEDs for Solid-State Lighting: Performance Challenges and Recent Advances, IEEE J. Sel. Top. Quant. 15 (2009) 1028-1040.
  • M.A. Hines, P. Guyot-Sionnest, Synthesis and characterization of strongly luminescing ZnS-Capped CdSe nanocrystals, J Phys Chem-Us, 100 (1996) 468-471.
  • M. Zorn, W.K. Bae, J. Kwak, H. Lee, C. Lee, R. Zentel, K. Char, Quantum Dot - Block Copolymer Hybrids with Improved Properties and Their Application to Quantum Dot Light-Emitting Devices, Acs Nano 3 (2009) 1063-1068.
  • M. Thomas, P.P. Rao, M. Deepa, M.R. Chandran, P. Koshy, Novel powellitebased red-emitting phosphors: CaLa1-xNbMoO8:xEu(3+) for white light emitting diodes, J. Solid State Chem. 182 (2009) 203-207.
  • M. Nyman, L.E. Shea-Rohwer, J.E. Martin, P. Provencio, Nano-YAG:Ce Mechanisms of Growth and Epoxy-Encapsulation, Chem Mater, 21 (2009) 1536- 1542.
  • M. Noh, T. Kim, H. Lee, C.K. Kim, S.W. Joo, K. Lee, Fluorescence quenching caused by aggregation of water-soluble CdSe quantum dots, Colloid Surface A, 359 (2010) 39-44.
  • M. Noh, T. Kim, H. Lee, C.K. Kim, S.W. Joo, K. Lee, Fluorescence quenching caused by aggregation of water-soluble CdSe quantum dots, Colloid Surf. A 359 (2010) 39-44.
  • M. Ma, F.W. Mont, X. Yan, J. Cho, E.F. Schubert, G.B. Kim, C. Sone, Effects of the refractive index of the encapsulant on the light-extraction efficiency of lightemitting diodes, Opt Express, 19 (2011) A1135-A1140.
  • L. Li, T.J. Daou, I. Texier, T.K.C. Tran, Q.L. Nguyen, P. Reiss, Highly Luminescent CuInS2/ZnS Core/Shell Nanocrystals: Cadmium-Free Quantum Dots for In Vivo Imaging, Chem Mater, 21 (2009) 2422-2429.
  • L. Brus, Electronic Wave-Functions in Semiconductor Clusters - Experiment and Theory, J Phys Chem-Us, 90 (1986) 2555-2560.
  • K. Sill, T. Emrick, Nitroxide-mediated radical polymerization from CdSe nanoparticles, Chem Mater, 16 (2004) 1240-1243.
  • J.S. Steckel, J.P. Zimmer, S. Coe-Sullivan, N.E. Stott, V. Bulovic, M.G. Bawendi, Blue luminescence from (CdS)ZnS core-shell nanocrystals, Angew Chem Int Edit, 43 (2004) 2154-2158.
  • J.S. Kim, S.C. Yang, S.Y. Kwak, Y. Choi, K.W. Paik, B.S. Bae, High performance encapsulant for light-emitting diodes (LEDs) by a sol-gel derived hydrogen siloxane hybrid, J Mater Chem, 22 (2012) 7954-7960.
  • J.M. Caruge, J.E. Halpert, V. Wood, V. Bulovic, M.G. Bawendi, Colloidal quantum-dot light-emitting diodes with metal-oxide charge transport layers, Nat Photonics, 2 (2008) 247-250.
  • J.K. Sheu, White-light emission from near UV InGaN-GaN LED chip precoated with blue/green/red phosphors, IEEE Photon. Technol. Lett. 15 (2003) 18-20.
  • J.J. Yan, T. Kristufek, M. Schmitt, Z.Y. Wang, G.J. Xie, A. Dang, C.M. Hui, J. Pietrasik, M.R. Bockstaller, K. Matyjaszewski, Matrix-free Particle Brush System with Bimodal Molecular Weight Distribution Prepared by SI-ATRP, Macromolecules, 48 (2015) 8208-8218.
  • J.J. Li, Y.A. Wang, W.Z. Guo, J.C. Keay, T.D. Mishima, M.B. Johnson, X.G. Peng, Large-scale synthesis of nearly monodisperse CdSe/CdS core/shell nanocrystals using air-stable reagents via successive ion layer adsorption and reaction, J Am Chem Soc, 125 (2003) 12567-12575.
  • J.H. Park, J.Y. Kim, B.D. Chin, Y.C. Kim, J.K. Kim, O.O. Park, White emission from polymer/quantum dot ternary nanocomposites by incomplete energy transfer, Nanotechnology, 15 (2004) 1217-1220.
  • J.B. Liu, X.H. Yang, K.M. Wang, R.H. Yang, H.N. Ji, L.Y. Yang, C.L. Wu, A switchable fluorescent quantum dot probe based on aggregation/disaggregation mechanism, Chem Commun, 47 (2011) 935-937.
  • J. Ziegler, S. Xu, E. Kucur, F. Meister, M. Batentschuk, F. Gindele, T. Nann, Silica-Coated InP/ZnS Nanocrystals as Converter Material in White LEDs, Adv. Mater. 20 (2008) 4068-4073.
  • J. Park, S.W. Kim, CuInS2/ZnS core/shell quantum dots by cation exchange and their blue-shifted photoluminescence, J Mater Chem, 21 (2011) 3745-3750.
  • J. Lim, S. Jun, E. Jang, H. Baik, H. Kim, J. Cho, Preparation of highly luminescent nanocrystals and their application to light-emitting diodes, Adv Mater, 19 (2007) 1927-1932.
  • J. Lee, V.C. Sundar, J.R. Heine, M.G. Bawendi, K.F. Jensen, Full color emission from II-VI semiconductor quantum dot-polymer composites, Adv Mater, 12 (2000) 1102-1105.
  • Isnaeni, K.H. Kim, D.L. Nguyen, H. Lim, T.N. Pham, Y.H. Cho, Shell layer dependence of photoblinking in CdSe/ZnSe/ZnS quantum dots, Appl Phys Lett, 98 (2011).
  • I.L. Medintz, H.T. Uyeda, E.R. Goldman, H. Mattoussi, Quantum dot bioconjugates for imaging, labelling and sensing, Nat Mater, 4 (2005) 435-446.
  • H.Z. Zhong, S.S. Lo, T. Mirkovic, Y.C. Li, Y.Q. Ding, Y.F. Li, G.D. Scholes, Noninjection Gram-Scale Synthesis of Monodisperse Pyramidal CuInS2 Nanocrystals and Their Size-Dependent Properties, Acs Nano, 4 (2010) 5253-5262.
  • H.W. Duan, S.M. Nie, Cell-penetrating quantum dots based on multivalent and endosome-disrupting surface coatings, J Am Chem Soc, 129 (2007) 3333-3338.
  • H.S. Mansur, Quantum dots and nanocomposites, Wires Nanomed Nanobi, 2 (2010) 113-129.
  • H.S. Jang, Y.H. Won, D.Y. Jeon, Improvement of electroluminescent property of blue LED coated with highly luminescent yellow-emitting phosphors, Appl Phys B-Lasers O, 95 (2009) 715-720.
  • H.S. Jang, H. Yang, S.W. Kim, J.Y. Han, S.G. Lee, D.Y. Jeon, White lightemitting diodes with excellent color rendering based on organically capped CdSe quantum dots and Sr3SiO5 : Ce3+, Li+ phosphors, Adv Mater, 20 (2008) 2696- 2702.
  • H.S. Chen, S.J.J. Wang, C.J. Lo, J.Y. Chi, White-light emission from organicscapped ZnSe quantum dots and application in white-light-emitting diodes, Appl Phys Lett, 86 (2005).
  • H.C. Kim, H.G. Hong, C. Yoon, H. Choi, I.S. Ahn, D.C. Lee, Y.J. Kim, K. Lee, Fabrication of high quantum yield quantum dot/polymer films by enhancing dispersion of quantum dots using silica particles, J Colloid Interf Sci, 393 (2013) 74-79.
  • H.C. Kim, C. Yoon, Y.G. Song, Y.J. Kim, K. Lee, Enhancing performance of quantum dot-based light emitting diodes by using poly(methyl methacrylate)@quantum dot hybrid particles, Korean J Chem Eng, 32 (2015) 563- 566.
  • H. Woo, J. Lim, Y. Lee, J. Sung, H. Shin, J.M. Oh, M. Choi, H. Yoon, W.K. Bae, K. Char, Robust, processable, and bright quantum dot/organosilicate hybrid films with uniform QD distribution based on thiol-containing organosilicate ligands, J Mater Chem C, 1 (2013) 1983-1989.
  • H. Wei, C.Y. Quan, C. Chang, X.Z. Zhang, R.X. Zhuo, Preparation of Novel Ferrocene-Based Shell Cross-Linked Thermoresponsive Hybrid Micelles with Antitumor Efficacy, J Phys Chem B, 114 (2010) 5309-5314.
  • H. Tetsuka, T. Ebina, F. Mizukami, Highly luminescent flexible quantum dotclay films, Adv Mater, 20 (2008) 3039-3043.
  • H. Borchert, D.V. Talapin, C. McGinley, S. Adam, A. Lobo, A.R.B. de Castro, T. Moller, H. Weller, High resolution photoemission study of CdSe and CdSe/ZnS core-shell nanocrystals, J Chem Phys, 119 (2003) 1800-1807.
  • H. Asami, Y. Abe, T. Ohtsu, I. Kamiya, M. Hara, Surface state analysis of photobrightening in CdSe nanocrystal thin films, J Phys Chem B, 107 (2003) 12566-12568.
  • H. Althues, J. Henle, S. Kaskel, Functional inorganic nanofillers for transparent polymers, Chem Soc Rev, 36 (2007) 1454-1465.
  • Funato, M. Ueda, Y. Kawakami, Y. Narukawa, T. Kosugi, M. Takahashi, T. Mukai, Blue, green, and amber InGaN/GaN light-emitting diodes on semipolar {1122} GaN bulk substrates, Jpn J Appl Phys 2, 45 (2006) L659-L662.
  • F. Purcell-Milton, Y.K. Gun'ko, Quantum dots for Luminescent Solar Concentrators, J Mater Chem, 22 (2012) 16687-16697.
  • F. Dubois, B. Mahler, B. Dubertret, E. Doris, C. Mioskowski, A versatile strategy for quantum dot ligand exchange, J Am Chem Soc, 129 (2007) 482-483.
  • E.P. Jang, W.S. Song, K.H. Lee, H. Yang, Preparation of a photo-degradationresistant quantum dot-polymer composite plate for use in the fabrication of a highstability white-light-emitting diode, Nanotechnology, 24 (2013) 045607.
  • E.H. Sargent, Colloidal quantum dot solar cells, Nat Photonics, 6 (2012) 133- 135.
  • E. Jang, S. Jun, H. Jang, J. Llim, B. Kim, Y. Kim, White-Light-Emitting Diodes with Quantum Dot Color Converters for Display Backlights, Adv Mater, 22 (2010) 3076-3080.
  • E. Jang, S. Jun, H. Jang, J. Llim, B. Kim and Y. Kim, Adv. Mater., 2010, 22, 3076–3080.
  • D.V. Talapin, I. Mekis, S. Gotzinger, A. Kornowski, O. Benson, H. Weller, CdSe/CdS/ZnS and CdSe/ZnSe/ZnS core-shell-shell nanocrystals, J Phys Chem B, 108 (2004) 18826-18831.
  • D.R. Paul, L.M. Robeson, Polymer nanotechnology: Nanocomposites, Polymer, 49 (2008) 3187-3204.
  • D.Q. Chen, Y. Chen, Transparent Ce3+: Y3Al5O12 glass ceramic for organic-resin-free white-light-emitting diodes, Ceram. Int. 40 (2014) 15325-15329.
  • D.Q. Chen, W.D. Xiang, X.J. Liang, J.S. Zhong, H. Yu, M.Y. Ding, H.W. Lu, Z.G. Ji, Advances in transparent glass-ceramic phosphors for white light-emitting diodes-A review, J Eur Ceram Soc, 35 (2015) 859-869.
  • D.C. Gary, B.A. Glassy, B.M. Cossairt, Investigation of Indium Phosphide Quantum Dot Nucleation and Growth Utilizing Triarylsilylphosphine Precursors, Chem Mater, 26 (2014) 1734-1744.
  • D. Sun, H.J. Sue, N. Miyatake, Optical Properties of ZnO Quantum Dots in Epoxy with Controlled Dispersion, J Phys Chem C, 112 (2008) 16002-16010.
  • D. Gerion, F. Pinaud, S.C. Williams, W.J. Parak, D. Zanchet, S. Weiss, A.P. Alivisatos, Synthesis and properties of biocompatible water-soluble silica-coated CdSe/ZnS semiconductor quantum dots, J Phys Chem B, 105 (2001) 8861-8871.
  • D. Buso, J. Jasieniak, M.D.H. Lay, P. Schiavuta, P. Scopece, J. Laird, H. Amenitsch, A.J. Hill, P. Falcaro, Highly Luminescent Metal-Organic Frameworks Through Quantum Dot Doping, Small, 8 (2012) 80-88.
  • C.Y. Shen, J.L. Chu, F. Qian, X. Zou, C. Zhong, K. Li, S.Z. Jin, High color rendering index white LED based on nano-YAG:Ce3+ phosphor hybrid with CdSe/CdS/ZnS core/shell/shell quantum dots, J. Mod. Optic. 59 (2012) 1199-1203.
  • C.W. Wang, M.G. Moffitt, Surface-tunable photoluminescence from block copolymer-stabilized cadmium sulfide quantum dots, Langmuir 20 (2004) 11784- 11796.
  • C.M. Tyrakowski, P.T. Snee, A primer on the synthesis, water-solubilization, and functionalization of quantum dots, their use as biological sensing agents, and present status, Phys Chem Chem Phys, 16 (2014) 837-855.
  • C.L. Lu, B. Yang, High refractive index organic-inorganic nanocomposites: design, synthesis and application, J Mater Chem, 19 (2009) 2884-2901.
  • C.C. Lin, R.S. Liu, Advances in phosphors for light-emitting diodes, J. Phys. Chem. Lett. 2 (2011) 1268-1277.
  • C.B. Murray, M. Nirmal, D.J. Norris, M.G. Bawendi, Synthesis and Structural Characterization of Ii-Vi Semiconductor Nanocrystallites (Quantum Dots), Z Phys D Atom Mol Cl, 26 (1993) S231-S233.
  • C.B. Murray, D.J. Norris, M.G. Bawendi, Synthesis and Characterization of Nearly Monodisperse Cde (E = S, Se, Te) Semiconductor Nanocrystallites, J Am Chem Soc, 115 (1993) 8706-8715.
  • C.B. Murray, C.R. Kagan, M.G. Bawendi, Synthesis and characterization of monodisperse nanocrystals and close-packed nanocrystal assemblies, Annu Rev Mater Sci, 30 (2000) 545-610.
  • C. Yoon, T. Kim, M.H. Shin, Y.G. Song, K. Shin, Y.J. Kim, K. Lee, Highly luminescent and stable white light-emitting diodes created by direct incorporation of Cd-free quantum dots in silicone resins using the thiol group, J Mater Chem C, 3 (2015) 6908-6915.
  • C. Yoon, H.G. Hong, H.C. Kim, D. Hwang, D.C. Lee, C.K. Kim, Y.J. Kim, K. Lee, High luminescence efficiency white light emitting diodes based on surface functionalized quantum dots dispersed in polymer matrices, Colloid Surface A, 428 (2013) 86-91.
  • C. Woelfle, R.O. Claus, Transparent and flexible quantum dot-polymer composites using an ionic liquid as compatible polymerization medium, Nanotechnology, 18 (2007).
  • C. Carrillo-Carrion, S. Cardenas, B.M. Simonet, M. Valcarcel, Quantum dots luminescence enhancement due to illumination with UV/Vis light, Chem Commun, (2009) 5214-5226.
  • C. Bullen, P. Mulvaney, The effects of chemisorption on the luminescence of CdSe quantum dots, Langmuir, 22 (2006) 3007-3013.
  • B.O. Dabbousi, J. RodriguezViejo, F.V. Mikulec, J.R. Heine, H. Mattoussi, R. Ober, K.F. Jensen, M.G. Bawendi, (CdSe)ZnS core-shell quantum dots: Synthesis and characterization of a size series of highly luminescent nanocrystallites, J Phys Chem B, 101 (1997) 9463-9475.
  • B.N. Pal, Y. Ghosh, S. Brovelli, R. Laocharoensuk, V.I. Klimov, J.A. Hollingsworth, H. Htoon, 'Giant' CdSe/CdS Core/Shell Nanocrystal Quantum Dots As Efficient Electroluminescent Materials: Strong Influence of Shell Thickness on Light-Emitting Diode Performance, Nano Lett, 12 (2012) 331-336.
  • B.K. Pong, B.L. Trout, J.Y. Lee, Modified ligand-exchange for efficient solubilization of CdSe/ZnS quantum dots in water: A procedure guided by computational studies, Langmuir, 24 (2008) 5270-5276.
  • B.G. Jeong, Y.S. Park, J.H. Chang, I. Cho, J.K. Kim, H. Kim, K. Char, J. Cho, V.I. Klirnov, P. Park, D.C. Lee, W.K. Bae, Colloidal Spherical Quantum Wells with Near-Unity Photoluminescence Quantum Yield and Suppressed Blinking, Acs Nano, 10 (2016) 9297-9305.
  • B.A. Kairdolf, A.M. Smith, S. Nie, One-pot synthesis, encapsulation, and solubilization of size-tuned quantum dots with amphiphilic multidentate ligands, J Am Chem Soc, 130 (2008) 12866-+.
  • B. Xie, R. Hu, X.B. Luo, Quantum Dots-Converted Light-Emitting Diodes Packaging for Lighting and Display: Status and Perspectives, J Electron Packaging, 138 (2016) 020803.
  • A.P. Alivisatos, Semiconductor clusters, nanocrystals, and quantum dots, Science, 271 (1996) 933-937.
  • A.M. Smith, H.W. Duan, M.N. Rhyner, G. Ruan, S.M. Nie, A systematic examination of surface coatings on the optical and chemical properties of semiconductor quantum dots, Phys Chem Chem Phys, 8 (2006) 3895-3903.
  • A.C. Balazs, T. Emrick, T.P. Russell, Nanoparticle polymer composites: Where two small worlds meet, Science, 314 (2006) 1107-1110.
  • A. O chsner and A. Shokuhfar, New frontiers of nanoparticles and nanocomposite materials: novel principles and techniques, Springer-Verlag, Berlin Heidelberg, 2013, pp. 85–133.