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Yu, Justin, Lee, Kwan H., Zhang, Yuliang, Klein, Michael F. G., Colsmann, Alexander, Lemmer, Uli, Burn, Paul L., Lo, Shih-Chun and Meredith, Paul (2011) A dendronised polymer for bulk heterojunction solar cells. Polymer Chemistry, 2 11: 2668-2673. doi:10.1039/c1py00301a 92   4 Cited 3 times in Scopus3 0
Lo, Shih-Chun, Richards, Gary J., Markham, Jonathan P. J., Namdas, Ebinazar B., Sharma, Sanjay, Burn, Paul L. and Samuel, Ifor D. W. (2005) A light-blue phosphorescent dendrimer for efficient solution-processed light-emitting diodes. Advanced Functional Materials, 15 9: 1451-1458. doi:10.1002/adfm.200400560 143   100 Cited 102 times in Scopus102 0
Lai, Wen-Yong, Levell, Jack W., Jackson, Andrew C., Lo, Shih-Chun, Bernhardt, Paul V., Samuel, Ifor D. W. and Burn, Paul L. (2010) A phosphorescent poly(dendrimer) containing iridium(III) complexes: Synthesis and light-emitting properties. Macromolecules, 43 17: 6986-6994. doi:10.1021/ma101363h 96 2 24 Cited 23 times in Scopus23 0
Knights, Kevin A., Stevenson, Stuart G., Shipley, Christopher P., Lo, Shih-Chun, Olsen, Seth, Harding, Ruth E., Gambino, Salvatore, Burn, Paul L. and Samuel, Ifor D. W. (2008) A rapid route to carbazole containing dendrons and phosphorescent dendrimers. Journal of Materials Chemistry, 18 18: 2121-2130. doi:10.1039/b717750j 131   32 Cited 32 times in Scopus32 0
Lai, Wen-Yong, Levell, Jack W., Burn, Paul L, Lo, Shih-Chun and Samuel, Ifor D. W. (2009) A study on the preparation and photophysical properties of an iridium(III) complexed homopolymer. Journal of Materials Chemistry, 19 28: 4952-4959. doi:10.1039/b902374g 70   12 Cited 12 times in Scopus12 0
Lo, S. C., Shipley, C. P., Bera, R. N., Harding, R. E., Cowley, A. R., Burn, P. L. and Samuel, I. D. W. (2006) Blue phosphorescence from iridium(III) complexes at room temperature. Chemistry of Materials, 18 21: 5119-5129. doi:10.1021/cm061173b 145   120 Cited 122 times in Scopus122 0
Ma, Dongge Ma, Lupton, J. M., Samuel, I. D. W., Lo, Shi-Chun and Burn, P. L. (2002) Bright electroluminescence from a conjugated dendrimer. Applied Physics Letters, 81 12: 2285-2287. doi:10.1063/1.1507826 75   31 Cited 35 times in Scopus35 0
Ma, DG, Lo, SC, Burn, PL, Lupton, JM and Samuel, IDW (2002) Bright electroluminescence from a conjugated dendrimer (vol 81, pg 2285, 2002). APPLIED PHYSICS LETTERS, 81 23: 4476-4476. doi:10.1063/1.1524029 29   2 Cited 2 times in Scopus2 0
Ma, Dongge, Hu, Yufeng, Zhang, Yanguang, Wang, Lixiang, Jing, Xiabing, Wang, Fosong, Lupton, J. M., Samuel, I. D. W., Lo, Shi-Chun and Burn, P. L. (2003). Bright electroluminescence from a new conjugated dendrimer. In: C.Q. Wu, Y. Cao, X. Sun and D.B. Zhu, Synthetic Metals: Proceedings of the International Conference on Science and Technology of Synthetic Metals. International Conference on Science and Technology of Synthetic Metals, Shanghai, China, (1125-1126). 29 June - 5 July 2002. doi:10.1016/S0379-6779(02)00954-2 62   11 Cited 11 times in Scopus11 0
Levell, Jack W., Lai, Wen-Yong, Borthwick, Robert J., Burn, Paul L., Lo, Shih-Chun and Samuel, Ifor D. W. (2012) Carbazole/iridium dendrimer side-chain phosphorescent copolymers for efficient light emitting devices. New Journal of Chemistry, 36 2: 407-413. doi:10.1039/c1nj20493a 61   3 Cited 4 times in Scopus4 1
Gambino, Salvatore, Lo, Shih-Chun, Liu, Zehua, Burn, Paul L. and Samuel, Ifor D. W. (2012) Charge transport in a highly phosphorescent iridium(III) complex-cored dendrimer with double dendrons. Advanced Functional Materials, 22 1: 157-165. doi:10.1002/adfm.201101727 58 1 8 Cited 9 times in Scopus9 0
Markham, J. P. J., Samuel, I. D. W., Lo, S. C., Burn, P. L., Weiter, M. and Bassler, H. (2004) Charge transport in highly efficient iridium cored electrophosphorescent dendrimers. Journal of Applied Physics, 95 2: 438-445. doi:10.1063/1.1633336 76   59 Cited 60 times in Scopus60 0
Lo, Shih-Chun, Sheridan, Anna K., Samuel, I. D. W. and Burn, Paul L. (2000) Comparison of precursor polymer routes to and electronic properties of a new phenylacetylene derivatised poly[2-(2'-ethylhexyloxy)-1,4-phenylenevinylene]. Journal of Materials Chemistry, 10 2: 275-281. doi:10.1039/a904274a 58   4 Cited 6 times in Scopus6 0
Lo, Shih-Chun, Sheridan, Anna K., Samuel, Ifor D. W. and Burn, Paul L. (1999) Comparison of the electronic properties of poly[2-(2-ethylhexyloxy)-1,4-phenylenevinylene] prepared by different precursor polymer routes. Journal of Materials Chemistry, 9 9: 2165-2170. doi:10.1039/a902602i 61   16 Cited 15 times in Scopus15 0
Markham, Jonathan P. J., Anthopoulos, Thomas D., Namdas, Ebinazar B., Lo, Shih-Chun, Richards, Gary J., Frampton, Michael J., Salata, Olga, Burn, Paul L. and Samuel, I. D. W. (2004). Conjugated dendrimers: A modular approach to materials for full colour displays. In: Proceedings of the Society of Photo-Optical Instrumentation Engineers (SPIE). Conference on Organic Light-Emitting Materials and Devices VII, San Diego, CA, United States, (50-56). 4-6 August 2003. doi:10.1117/12.512062 53   1 Cited 1 times in Scopus1 0
Lo, Shih-Chun, Palsson, Lars-Olof, Kilitziraki, Mary, Burn, Paul L. and Samuel, Ifor D. W. (2001) Control of polymer-electrode interactions: the effect of leaving group on the optical properties and device characteristics of EHPPV. Journal of Materials Chemistry, 11 9: 2228-2231. doi:10.1039/b106115c 63   21 Cited 23 times in Scopus23 0
Anthopoulos, T. D., Namdas, E. B., Ruseckas, A., Samuel, I. D. W., Lo, S. C. and Burn, P. L. (2005). Dendrimers: Efficient solution-processed phosphorescent OLED materials. In: Proceedings of the 25th International Display Research Conference. 25th International Display Research Conference, Edinburgh, Scotland, (4-7). 19-22 September 2005. 443   0
Lo, Shih-Chun and Burn, Paul L. (2007) Development of Dendrimers: Macromolecules for Use in Organic Light-Emitting Diodes and Solar Cells. Chemical Reviews, 107 4: 1097-1116. doi:10.1021/cr050136l 179   470 Cited 482 times in Scopus482 0
Lo, SC, Sheridan, AK, Samuel, IDW and Burn, PL (1999). Effect of different precursor routes on the electronic properties of poly[2-(2 '-ethylhexyloxy)-1,4-phenylenevinylene] and poly[2-(2 '-ethylhexyloxy)-5-(phenylethynyl)-1,4-phenylenevinylene].. In: Abstracts of Papers of the American Chemical Society. , , (U555-U555). . 19   0
Cavaye, Hamish, Shaw, Paul E., Wang, Xin, Burn, Paul L., Lo, Shih-Chun and Meredith, Paul (2010) Effect of dimensionality in dendrimeric and polymeric fluorescent materials for detecting explosives. Macromolecules, 43 24: 10253-1-10261-9. doi:10.1021/ma102369q 67   35 Cited 37 times in Scopus37 0
Smith, A. R. G., Riley, M. J., Burn, P. L., Gentle, I. R., Lo, S.-C. and Powell, B. J. (2012) Effects of fluorination on iridium(III) complex phosphorescence: Magnetic circular dichroism and relativistic time-dependent density functional theory. Inorganic Chemistry, 51 5: 2821-2831. doi:10.1021/ic201899z 91   12 Cited 13 times in Scopus13 1
Markham, Jpj, Lo, SC, Male, NH, Anthopoulos, T, Salata, O, Burn, PL and Samuel, IDW (2002). Efficient electrophosphorescent dendrimer LEDs. In: 2002 Ieee/leos Annual Meeting Conference Proceedings, Vols 1 and 2. 15th Annual Meeting of the IEEE-Lasers-and-Electro-Optics-Society, Glasgow Scotland, (195-196). Nov 10-14, 2002. 20   0
Levell, Jack W., Lai, Wen-Yong, Borthwick, Robert J., Lo, Shih-Chun, Burn, Paul and Samuel, Ifor D. W. (2011) Efficient phosphorescence by reducing intrachain chromophore interactions in dendrimer-containing polymers. The Journal of Physical Chemistry C, 115 51: 25464-25469. doi:10.1021/jp2043703 79   3 Cited 3 times in Scopus3 0
Salata, OV, Liu, ZG, Safonov, A, Mustapha, N, Lo, SC, Burn, P, Samuel, I and Markham, J (2002). Efficient solution-processed dendrimer OLEDs. In: Materials, Devices, and Systems for Display and Lighting. Photonics Asia Symposium 2002, Shanghai Peoples R China, (117-121). Oct 14-18, 2002. doi:10.1117/12.483063 22   0 0
Lo, Shih-Chun, Anthopoulos, Thomas D,, Namdas, Ebinazar B., Burn, Paul L. and Samuel, Ifor D. W. (2005) Encapsulated cores: Host-free organic light-emitting diodes based on solution-processible electrophosphorescent dendrimers. Advanced Materials, 17 16: 1945-1948. doi:10.1002/adma.200500020 101   103 Cited 111 times in Scopus111 0
Fan, Shenggiang, Zong, Xu, Shaw, Paul E., Wang, Xin, Geng, Yan, Smith, Arthur R. G., Burn, Paul L., Wang, Lianzhou and Lo, Shih-Chun (2014) Energetic requirements of iridium(iii) complex based photosensitisers in photocatalytic hydrogen generation. Physical Chemistry Chemical Physics, 16 39: 21577-21585. doi:10.1039/c4cp02997f 23   0 Cited 0 times in Scopus0 0
Wren, Ellen J., Wang, Xin, Farlow, Anthony, Lo, Shih-Chun, Burn, Paul L. and Meredith, Paul (2010) Facile iterative synthesis of biphenyl dendrons with a functionalized focus. Organic Letters, 12 19: 4338-4340. doi:10.1021/ol101717c 81   5 Cited 5 times in Scopus5 0
Lo, S. C., Male, N. A. H., Markham, J. P. J., Magennis, S. W., Burn, P. L., Salata, O V. and Samuel, I. D. W. (2002) Green phosphorescent dendrimer for light-emitting diodes. Advanced Materials, 14 13-14: 975-979. doi:10.1002/1521-4095(20020705)14:13/14<975::AID-ADMA975>3.0.CO;2-D 96   258 0
Markham, J. P. J., Lo, S. C., Magennis, S. W., Burn, P. L. and Samuel, I. D. W. (2002) High-efficiency green phosphorescence from spin-coated single-layer dendrimer light-emitting diodes. Applied Physics Letters, 80 15: 2645-2647. doi:10.1063/1.1469218 94   180 Cited 187 times in Scopus187 0
Anthopoulos, Thomas D., Markham, Jonathan P. J., Namdas, Ebinazar B., Samuel, Ifor D. W., Lo, Shih-Chun and Burn, Paul L. (2003) Highly efficient single-layer dendrimer light-emitting diodes with balanced charge transport. Applied Physics Letters, 82 26: 4824-4826. doi:10.1063/1.1586999 67   88 Cited 97 times in Scopus97 0
Levell, J. W., Zhang, S., Lai, W. -Y., Lo, S. -C., Burn, P. L. and Samuel, I. D. W. (2012) High power efficiency phosphorescent poly(dendrimer) OLEDs. Optics Express, 20 S2: A213-A218. doi:10.1364/OE.20.00A213 70 1 4 Cited 5 times in Scopus5 0
Lo, Shih-Chun, Harding, Ruth E., Shipley, Christopher P., Stevenson, Stuart G., Burn, Paul L. and Samuel, Ifor D. W. (2009) High-triplet-energy dendrons: enhancing the luminescence of deep blue phosphorescent iridium(III) complexes. Journal of the American Chemical Society, 131 46: 16681-16688. doi:10.1021/ja903157e 104   89 Cited 89 times in Scopus89 0
Anthopoulos, Thomas D., Markham, Jonathan P. J., Namdas, Ebinazar B., Lawrence, Justin R., Samuel, Ifor D. W., Lo, Shih-Chun and Burn, Paul L. (2003) Influence of molecular structure on the properties of dendrimer light-emitting diodes. Organic Electronics, 4 2-3: 71-76. doi:10.1016/j.orgel.2003.08.015 71   38 Cited 42 times in Scopus42 0
Milbradt, S., Bardin, A. A., Truncik, C. J. S., Huttema, W. A., Jacko, A. C., Burn, P. L., Lo, S. -C., Powell, B. J. and Broun, D. M. (2013) In-plane superfluid density and microwave conductivity of the organic superconductor kappa-(BEDT-TTF)(2)Cu[N(CN)(2)]Br: evidence for d-wave pairing and resilient quasiparticles. Physical Review B: Condensed Matter and Materials Physics, 88 6: 064501-1-064501-6. doi:10.1103/PhysRevB.88.064501 41 15 0 Cited 0 times in Scopus0 0
Levell, JW, Lai, WY, Lo, SC, Burn, PL and Samuel, IDW (2011). Iridium (III) complex-based small molecules, dendrimers and poly(dendrimers) for organic light-emitting diodes. In: Abstracts of Papers of the American Chemical Society. 242nd National Meeting of the American-Chemical-Society (ACS), Denver Co, (). Aug 28-Sep 01, 2011. 71   0
Hedley, Gordon J., Ruseckas, Arvydas, Liu, Zehua, Lo, Shih-Chun, Burn, Paul L. and Samuel, Ifor D. W. (2008) Iridium metal complexes as an unambiguous probe of intramolecular vibrational redistribution. Journal of the American Chemical Society, 130 36: 11842-11843. doi:10.1021/ja8036383 71   10 Cited 10 times in Scopus10 0
Lai, Wen-Yong, Hamish Cavaye, Wang, Xin, Lo, Shih-Chun, Meredith, Paul and Burn, Paul (2009) Macromolecular architectures: enhancing solution processability of iridium(III) complexes. Polymer Preprints, 50 296-297. 231  
Ko, Li-Chun, Liu, Tsung-Yu, Chen, Chun-Yao, Yeh, Chung-Ling, Tseng, Shin-Rong, Chao, Yu-Chiang, Meng, Hsin-Fei, Lo, Shih-Chun, Burn, Paul L. and Horng, Sheng-Fu (2010) Multi-layer organic light-emitting diodes processed from solution using phosphorescent dendrimers in a polymer host. Organic Electronics, 11 6: 1005-1009. doi:10.1016/j.orgel.2010.03.014 39   14 Cited 15 times in Scopus15 0
Lyons D.M., Armin A., Stolterfoht M., Nagiri R.C.R., Jansen-Van Vuuren R.D., Pal B.N., Burn P.L., Lo S.-C. and Meredith P. (2014) Narrow band green organic photodiodes for imaging. Organic Electronics: physics, materials, applications, 15 11: 2903-2911. doi:10.1016/j.orgel.2014.08.015 7   0 Cited 0 times in Scopus0 0
Lo, Shih-Chun, Harding, Ruth. E., Shipley, Christopher. P., Stevenson, Stuart, Burn, Paul. L. and Samuel, Ifor. D. (2009). New dendritic architectures for efficient blue phosphorescence. In: J. Li, C.-C. Wu, S. Y. Park and F. B. McCormick, Synthesis and Processing of Organic and Polymeric Functional Materials for a Sustainable Energy Economy. Materials Research Society 2008 Fall Meeting, Boston, U.S.A., (). 1-5 Dec 2008. 52  
Harding, Ruth E., Lo, Shih-Chun, Burn, Paul L. and Samuel, Ifor D.W. (2008) Non-radiative decay mechanisms in blue phosphorescent iridium(III)complexes. Organic Electronics, 9 3: 377-384. doi:10.1016/j.orgel.2008.01.009 123   18 Cited 18 times in Scopus18 0
Hong, Fung-E., Lo, Shih-Chun, Liou, Ming-Woei, Chou, Lung-Fang and Lin, Chu-Chieh (1996) Nucleophilic substitution reactions of (η6-fluorotoluene)Cr(CO)3 and (η6-fluoroanisole)Cr(CO)3 toward phenylacetylide, fluorenyl, indolinyl and carbazolinyl lithium: crystal structures of tricarbonyl[η6-(1,2-diphenylethynyl)benzene]chromium and tricarbonyl[η6-(1,4-fluorenyl)toluene]chromium. Journal of organometallic chemistry, 156 1-2: 123-131. doi:10.1016/0022-328X(96)06131-1 101   9 0
Hong, Fung-E, Yang, Yaw-Cherng, Lo, Shih-Chun and Lin, Chu-Chieh (1997) Nucleophilic substitution reactions of cyclopentadienyl and its related carbanions on tricarbonyl(η6-4-fluorotoluene)chromium: molecular structures of 1,4-bis [tricarbonyl(η6-4-toluene)chromium] cyclopentadiene, 3-[tricarbonyl(η6-4-toluene)chromium]indene, and 9,9-bis[tricarbonyl(η6-4-toluene)chromium]fluorene. Polyhedron, 16 2: 2005-2012. doi:10.1016/S0277-5387(96)00518-9 75   2 0
Namdas, Ebinazar B., Hsu, Ben B. Y., Liu, Zehua, Lo, Shih-Chun, Burn, Paul L. and Samuel, Ifor D. W. (2009) Phosphorescent light-emitting transistors: Harvesting triplet excitons. Advanced Materials, 21 48: 4957-4961. doi:10.1002/adma.200900919 131   14 Cited 12 times in Scopus12 0
Namdas, Ebinazar B., Ruseckas, Arvydas, Samuel, Ifor D. W., Lo, Shih-Chun and Burn, Paul L. (2004) Photophysics of fac-tris(2-phenylpyridine) iridium(III) cored electroluminescent dendrimers in solution and films. Journal of Physical Chemistry B, 108 5: 1570-1577. doi:10.1021/jp035664k 147   84 Cited 86 times in Scopus86 0
Lai, Wen-Yong, Balfour, Michael N., Levell, Jack W., Bansal, Ashu K., Burn, Paul L., Lo, Shih-Chun and Samuel, Ifor D. W. (2012) Poly(dendrimers) with phosphorescent iridium(III) complex-based side chains prepared via ring-opening metathesis polymerization. Macromolecules, 45 7: 2963-2971. doi:10.1021/ma300306d 106   8 Cited 9 times in Scopus9 0
Lue, IR, Lo, SC, Lin, CC and Hong, FE (1995) Preparation and Crystallographic Characterization of [moco(co)(5)(pph(3))(2)(eta(5)-C5h5)]. Polyhedron, 14 11: 1419-1423. doi:10.1016/0277-5387(94)00419-F 15   8 0
Hong, Fung-E ., Lue, I-Ren, Lo, Shih-Chun and Lin, Chu-Chieh (1995) Reactions of molybdenum-cobalt complex with phenylacetylene: X-ray crystal structure of [MoCo(CO)4{CPhCHCHCPh}(η5-C5H5)]. Journal of organometallic chemistry, 495 1-2: 97-101. doi:10.1016/0022-328X(94)05389-S 79   15 0
Hong, Fung-E., Lue, I-Ren, Lo, Shih-Chun, Yang, Yaw-Cherng and Lin, Chu-chieh (1996) Reactions of Na[Mo(CO)3(η5-C5H5)] towards CoCl(PPh3)3 and CoCl(P(OMe)3)5: X-ray crystal structures of [MoCo(CO)6(PPh3)(η5-C5H5)] and [Mo(CO)3(P(OMe)3)(η5-C5H5)]2. Polyhedron, 15 16: 2793-2800. doi:10.1016/0277-5387(95)00546-3 187   6 Cited 6 times in Scopus6 0
Smith, A. R. G., Riley, M. J., Lo, S.-C., Burn, P. L., Gentle, I. R. and Powell, B. J. (2011) Relativistic effects in phosphorescent Ir(III) complexes. Physical Review B, 83 4: 041105-1-041105-4. doi:10.1103/PhysRevB.83.041105 91 5 23 Cited 6 times in Scopus6 0

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