Peer-reviewed publications of research supported in part or in whole under an EFRC are listed below. Publications are ordered first by year, then alphabetically by EFRC acronym, and finally alphabetically by first author. Links to the DOI and associated EFRC appear at the end of each citation. The publication list is updated periodically; the last such update was November 21, 2014.

3201.Law, C. K.; and Zhao, P.  NTC-affected ignition in nonpremixed counterflow  Combustion and Flame, 159, 1044-1054 (2012).  [DOI: 10.1016/j.combustflame.2011.10.012External link] [CEFRC]
3202.Law, C. K.  Fuel options for next generation chemical propulsion  AIAA Journal, 50, 19-36 (2012).  [DOI: 10.2514/1.J051328External link] [CEFRC]
3203.Lefkowitz, J. K.; Heyne, J. S.; Won, Sang Hee; Dooley, S.; Kim, H. H.; Haas, F. M.; Jahangirian, S.; Dryer, F. L. ; and Ju, Yiguang  A Chemical Kinetic Study of tertiary-Butanol in a Flow Reactor and a Counterflow Diffusion Flame  Combustion and Flame, 159, 968-978 (2012).  [DOI: 10.1016/j.combustflame.2011.10.004External link] [CEFRC]
3204.Li, Y.; Suyleymanov, Y.; Yang, M. H.; Green, W. H.; and Guo, Hua  Ring Polymer Molecular Dynamics Calculations of Thermal Rate Constants for the O(3P) + CH4 → OH + CH3 Reaction: Contributions of Quantum Effects  Journal of Physical Chamistry Letters, 4, 48-52 (2012).  [DOI: 10.1021/jz3019513External link] [CEFRC]
3205.Mittal, G.; Raju, M. P.; and Sung, C. J.  Vortex Formation in a Rapid Compression Machine: Influence of Physical and Operating Parameters  Fuel, 94, 409-417 (2012).  [DOI: 10.1016/j.fuel.2011.08.034External link] [CEFRC]
3206.Nikraz, S.; Phares, Denis J.; and Wang, Hai  Mesoporous titania films prepared by flame stabilized on a rotating surface-Application in dye sensitized solar cells  Journal of Physical Chemistry C, 116, 5342-5351 (2012).  [DOI: 10.1021/jp2095533External link] [CEFRC]
3207.Oluwole, O. O.; Shi, Y.; Wong, H. W.; and Green, W. H.  An Exact-Steady-state Adaptive Chemistry method for combustion simulations: combining the efficiency of reduced models and the accuracy of the full model  Combustion & Flame, 159, 2352-2362 (2012).  [DOI: 10.1016/j.combustflame.2012.02.011External link] [CEFRC]
3208.Oyeyemi, V. B.; Keith, J.; and Carter, Emily A  Insufficient Hartree-Fock Exchange in Hybrid DFT Functionals Produces Bent Alkynyl Radical Structures  J. Phys. Chem. Lett., 3, 289-293 (2012).  [DOI: 10.1021/jz201564gExternal link] [CEFRC]
3209.Pang, G. A.; Hanson, Ronald K.; Golden, David; and Bowman, C. T.  Rate Constant Measurements for the Overall Reaction of OH + 1-Butanol → Products from 900 -1200 K  Journal of Physical Chemistry A, 116, 2475-2483 (2012).  [DOI: 10.1021/jp211885pExternal link] [CEFRC]
3210.Papajak, E.; Seal, P.; Xu, X.; and Truhlar, D. G.  Thermochemistry of Radicals Formed by Hydrogen Abstraction from 1-Butanol, 2-Methyl-1-propanol, and Butanal  Journal of Chemical Physics, 137, 1-13 (2012).  [DOI: 10.1063/1.4742968External link] [CEFRC]
3211.Ranzi, E.; Frassoldata, A.; Grana, R.; Cuoci, A.; Faravelli, T.; Kelley, A. P.; and Law, C. K.  Hierarchical and comparative kinetic modeling of laminar flame speeds of hydrocarbons and oxygenated fuels  Progress in Energy and Combustion Science, 38, 468-501 (2012).  [DOI: 10.1016/j.pecs.2012.03.004External link] [CEFRC]
3212.Seal, P.; Oyedepo, G.; Truhlar, D. G.; and ,  Kinetics of the Hydrogen Atom Abstraction Reactions from 1-Butanol by Hydroxyl Radical: Theory Matches Experiment and Then Some  Journal of Physical Chemistry A, , (2012).  [DOI: 10.1021/jp310910fExternal link] [CEFRC]
3213.Seal, P.; Papajak, E.; Yu, T.; and Truhlar, D. G.  Statistical Thermodynamics of 1-Butanol, Methyl-1-Propanol, and Butanal  Journal of Chemical Physics, 136, (2012).  [DOI: 10.1063/1.3674995External link] [CEFRC]
3214.Seal, P.; Papajak, E.; and Truhlar, D. G.  Kinetics of the Hydrogen Abstraction from Carbon-3 of 1-Butanol by Hydroperoxyl Radical: Multi-Structural Variational Transition State Calculations of a Reaction with 262 Conformations of the Transition State  Journal of Physical Chemistry Letters, 3, 264-271 (2012).  [DOI: 10.1021/jz201546eExternal link] [CEFRC]
3215.Shan, R.; Yoo, C. S.; Chen, J. H.; and Lu, T. F.  Computational diagnostics for n-heptane flames with chemical explosive mode analysis  Combust. Flame, 159, 3119-3127 (2012).  [DOI: 10.1016/j.combustflame.2012.05.012External link] [CEFRC]
3216.Shi, Y.; Green, W. H.; Wong, H. W.; and Oluwole, O. O.  Accelerating multi-dimensional combustion simulations using GPU and hybrid explicit/implicit ODE integration  Combustion and Flame, 159, 2388-2397 (2012).  [DOI: 10.1016/j.combustflame.2012.02.016External link] [CEFRC]
3217.Sirjean, Baptiste; Dames, Enoch; Wang, Hai; and Tsang, W.  Tunneling in hydrogen transfer isomerization of n-alkyl radical  Journal of Physical Chemistry A, 116, 319–332 (2012).  [DOI: 10.1021/jp209360uExternal link] [CEFRC]
3218.Stranic, I.; Pyun, S. H.; Davidson, David F.; and Hanson, Ronald K.  Multi-species Measurements in 1-Butanol Pyrolysis Behind Reflected Shock Waves  Combust. Flame, 159, 3241-3250 (2012).  [DOI: 10.1016/j.combustflame.2012.06.005External link] [CEFRC]
3219.Stranic, I.; Chase, D. P.; Harmon, J. T.; Yang, S.; Davidson, David F.; and Hanson, Ronald K.  Shock Tube Measurements of Ignition Delay Times for the Butanol Isomers  Combustion and Flame, 159, 516–527 (2012).  [DOI: 10.1016/j.combustflame.2011.08.014External link] [CEFRC]
3220.Tan, T.; Pavone, Michele; Krisiloff, D. B.; and Carter, Emily A  Ab Initio Reaction Kinetics of Hydrogen Abstraction from Methyl Formate by Hydrogen, Methyl, Oxygen, Hydroxyl, and Hydroperoxy Radicals  J. Phys. Chem. A, 116, 8431-8443 (2012).  [DOI: 10.1021/jp304811zExternal link] [CEFRC]
3221.Tsujimura, T.; Pitz, W. J.; Gillespie, F.; Curran, H. J.; Weber, B. W.; Zhang, Y.; and Sung, C. J.  Development of Isopentanol Reaction Mechanism Reproducing Autoignition Character at High and Low Temperatures  Energy and Fuels, 26, 4871-4886 (2012).  [DOI: 10.1021/ef300879kExternal link] [CEFRC]
3222.Uddi, M.; Das, A. K.; and Sung, C. J.  Temperature Measurements in a Rapid Compression Machine using Mid-Infrared H2O Absorption Spectroscopy near 7.6 μm  Applied Optics, 51, 5464-5476 (2012).  [DOI: 10.1364/AO.51.005464External link] [CEFRC]
3223.Xu, X.; Yu, T.; Papajak, E.; and Truhlar, D. G.  Multi-Structural Variational Transition State Theory: Kinetics of the Hydrogen Abstraction from Carbon-2 of 2-Methyl-1-propanol by Hydroperoxyl Radical Including All Structures and Torsional Anharmonicity  Journal of Physical Chemistry A, 116, 10480-10487 (2012).  [DOI: 10.1021/jp307504pExternal link] [CEFRC]
3224.Xu, X.; Papajak, E.; Zheng, J.; and Truhlar, D. G.  Multi-Structural Variational Transition State Theory: Kinetics of the 1,5-Hydrogen Shift Isomerization of 1-Butoxyl Radical Including All Structures and Torsional Anharmonicity  Physical Chemistry Chemical Physics, 14, 4204-4216 (2012).  [DOI: 10.1039/c2cp23692cExternal link] [CEFRC]
3225.Yang, K. R. ; Jalan, A.; Green, W. H.; and Truhlar, D. G.  Which Ab Initio Wave Function Methods Are Adequate for Quantitative Calculations of the Energies of Biradicals? The Performance of Coupled-Cluster and Multi-Reference Methods Along a Single-Bond Dissociation Coordinate  Journal of Chemical Theory and Computation, 9, 418-431 (2012).  [DOI: 10.1021/ct3009528External link] [CEFRC]
3226.Yu, T.; Zheng, J.; and Truhlar, D. G.  Statistical Thermodynamics of the Isomerization Reaction Between n-Heptane and Isoheptane  Physical Chemistry Chemical Physics, 14, 482-494 (2012).  [DOI: 10.1039/C1CP22578BExternal link] [CEFRC]
3227.Yu, T.; Zheng, J.; and Truhlar, D. G.  Multi-Path Variational Transition State Theory. Rate Constant of the 1,4-Hydrogen Shift Isomerization of the 2-Cyclohexylethyl Radical  Journal of Physical Chemistry A, 116, 297-308 (2012).  [DOI: 10.1021/jp209146bExternal link] [CEFRC]
3228.Zheng, J.; Mielke, S. L.; Clarkson, K. L.; and Truhlar, D. G.  MSTor: A program for calculating partition functions, free energies, enthalpies, entropies, and heat capacities of complex molecules including torsional anharmonicity  Computer Physics Communications, 183, 1803-1812 (2012).  [DOI: 10.1016/j.cpc.2012.03.007External link] [CEFRC]
3229.Zheng, J.; and Truhlar, D. G.  Multi-path Variational Transition State Theory for Chemical Reaction Rates of Complex Polyatomic Species: Ethanol + OH Reactions  Faraday Discussions, 157, 59-88 (2012).  [DOI: 10.1039/C2FD20012KExternal link] [CEFRC]
3230.Bergemann, Kevin; Krasny, Robert; and Forrest, Stephen R.  Thermal properties of organic light-emitting diodes  Organic Electronics, 13(9), 1565-1568 (2012).  [DOI: 10.1016/j.orgel.2012.05.004External link] [CEN]
3231.Blömers, Ch.; Lu, Jia Grace; Huang, L.; Witte, C.; Grützmacher, D.; Lüth, H.; and Schäpers, Th.  Electronic Transport with Dielectric Confinement in Degenerate InN Nanowires  Nano Letters, 12:6, 2768-2772 (2012).  [DOI: 10.1021/nl204500rExternal link] [CEN]
3232.Burkhart, Beate; Khlyabich, Petr P.; and Thompson, Barry C.  Semi-Random Two-Acceptor Polymers: Elucidating Electronic Trends Through Multiple Acceptor Combinations  Macromol. Chem. Physic., 214, 681-690 (2012).  [DOI: 10.1002/macp.201200618External link] [CEN]
3233.Burkhart, Beate; Khlyabich, Petr P.; and Thompson, Barry C.  Influence of the Acceptor Composition on Physical Properties and Solar Cell Performance in Semi-Random Two-Acceptor Copolymers  ACS Macro Lett., 1(6), 660-666 (2012).  [DOI: 10.1021/mz300197cExternal link] [CEN]
3234.Burkhart, Beate; Khlyabich, Petr P.; and Thompson, Barry C.  Influence of the Ethylhexyl Side-Chain Content on the Open-Circuit Voltage in rr-Poly(3-hexylthiophene-co-3-(2-ethylhexyl)thiophene) Copolymers  Macromolecules, 45:9, 3740-3748 (2012).  [DOI: 10.1021/ma300263aExternal link] [CEN]
3235.Burkhart, Beate; Khlyabich, Petr P.; and Thompson, Barry C.  Solar Cells Based on Semi-Random P3HT Analogues Containing Dithienopyrrole: Influence of Incorporating a Strong Donor  J. Photonics Energy, 2, 021002 (2012).  [DOI: 10.1117/1.JPE.2.021002External link] [CEN]
3236.Chang, Chia-Chi; Chi, Chun-Yung; Yao, Maoqing; Huang, Ningfeng; Chen, Chun-Chung; Theiss, Jesse; Bushmaker, Adam W.; LaLumondiere, Stephen; Yeh, Ting-Wei; Povinelli, Michelle L. ; Zhou, Chongwu; Dapkus, P. Daniel; and Cronin, Stephen B.  Electrical and Optical Characterization of Surface Passivation in GaAs Nanowires  Nano Letters, 12:9, 4484–4489 (2012).  [DOI: 10.1021/nl301391hExternal link] [CEN]
3237.Dias, N. L.; Garg, A.; Reddy, U.; Choi, U-Sung; and Coleman, J. J.  Highly uniform periodic inverse quantum dots arrays  Applied Physics Letters, 100:12, 121115 (2012).  [DOI: 10.1063/1.3694015External link] [CEN]
3238.Greaney, Matthew J.; Das, Saptaparna; Webber, David H.; Bradforth, Stephen E.; and Brutchey, Richard L.  Improving open circuit potential in hybrid P3HT:CdSe bulk heterojunction solar cells via colloidal tert-butylthiol ligand exchange  ACS Nano, 6(5), 4222-30 (2012).  [DOI: 10.1021/nn3007509External link] [CEN]
3239.Huang, Ningfeng; Lin, Chenxi; and Povinelli, Michelle L.  Limiting efficiencies of tandem solar cells consisting of III-V nanowire arrays on silicon  J. Appl. Phys., 112, 064321 (2012).  [DOI: 10.1063/1.4754317External link] [CEN]
3240.Huang, Ningfeng; Lin, Chenxi; and Povinelli, Michelle L.  Broadband absorption of semiconductor nanowire arrays for photovoltaic applications  J. Opt., 14, 024004 (2012).  [DOI: 10.1088/2040-8978/14/2/024004External link] [CEN]
3241.Khlyabich, Petr P.; Burkhart, Beate; and Thompson, Mark E.  Compositional Dependence of the Open-Circuit Voltage in Ternary Blend Bulk Heterojunction Solar Cells Based on Two Donor Polymers  J. Am. Chem Soc., 132(22), 9074-9077 (2012).  [DOI: 10.1021/ja302935nExternal link] [CEN]
3242.Li, Kejia; Li, Lijun; and Campbell, Joe C.  Recombination lifetime of free polarons in polymer/fullerene bulk heterojunction solar cells  J. App. Phys., 111, 034503 (2012).  [DOI: 10.1063/1.3680879External link] [CEN]
3243.Lin, Yen-Ting; Yeh, Ting-Wei; and Dapkus, P. Daniel  Mechanism of selective area growth of GaN nanorods by pulsed mode metalorganic chemical vapor deposition  Nanotechnology, 23(46), 465601 (2012).  [DOI: 10.1088/0957-4484/23/46/465601External link] [CEN]
3244.Madaria, Anuj R.; Yao, Maoqing; Chi, Chun-Yung; Huang, Ningfeng; Lin, Chenxi; Li, Ruijuan; Povinelli, Michelle L. ; Dapkus, P. Daniel; and Zhou, Chongwu  Toward Optimized Light Utilization in Nanowire Arrays Using Scalable Nanosphere Lithography and Selected Area Growth  Nano Lett., 12(6), 2839-2845 (2012).  [DOI: 10.1021/nl300341vExternal link] [CEN]
3245.Mou, Weiwei; Ohmura, Satoshi; Shimojo, Fuyuki; and Nakano, Aiichiro  Molecular control of photoexcited charge transfer and recombination at a quaterthiophene/zinc oxide interface  Appl. Phys. Lett., 100, 203306 (2012).  [DOI: 10.1063/1.4719206External link] [CEN]
3246.Mou, Weiwei; Ohmura, Satoshi; Hattori, Shinnosuke; Nomura, Ken-ichi; Shimojo, Fuyuki; and Nakano, Aiichiro  Enhanced charge transfer by phenyl groups at a rubrene/C60 interface   J. Chem. Phys., 136:18, 184705 (2012).  [DOI: 10.1063/1.4712616External link] [CEN]
3247.Roberts, Sean T.; McAnally, R. Eric; Mastron, Joseph N.; Webber, David H.; Whited, M. T.; Brutchey, Richard L.; Thompson, Mark E.; and Bradforth, Stephen E.  Efficient Singlet Fission Discovered in a Disordered Acene Film  J Am Chem Soc, 134(14), 6388-400 (2012).  [DOI: 10.1021/ja300504tExternal link] [CEN]
3248.Rudenko, Andrey; Wiley, Calvin A; Stone, Shiloh M; Tannaci, John F; and Thompson, Barry C.  Semi-Random P3HT Analogues Via Direct Arylation Polymerization  Journal of Polymer Science Part A: Polymer Chemistry, 50(18), 3691-3697 (2012).  [DOI: 10.1002/pola.26175External link] [CEN]
3249.Sburlan, Suzana; Dapkus, P. Daniel; and Nakano, Aiichiro  Critical dimensions of highly lattice mismatched semiconductor nanowires grown in strain-releasing configurations  Appl. Phys. Lett., 100, 163108 (2012).  [DOI: 10.1063/1.4704565External link] [CEN]
3250.Sburlan, Suzana; Nakano, Aiichiro; and Dapkus, P. Daniel  Effect of substrate strain on critical dimensions of highly lattice mismatched defect-free nanorods  J. Appl. Phys, 111, 054907 (2012).  [DOI: 10.1063/1.3688288External link] [CEN]
3251.Xiao, Xin; Wei, Guodan; Wang, Siyi; Zimmerman, Jeramy D.; Renshaw, Christopher K.; Thompson, Mark E.; and Forrest, Stephen R.  Small-molecule Photovoltaics Based on Functionalized Squaraine Donor Blends  Adv. Mater., 24(15), 1956-1960 (2012).  [DOI: 10.1002/adma.201104261External link] [CEN]
3252.Yao, Huijun; Günel, Hacı Yusuf ; Blömers, Christian ; Weis, Karl; Chi, Junhong; Lu, Jia Grace; Liu, Jie; Grützmacher, D.; and Schäpers, Th.  Phase coherent transport in InSb nanowires  Appl. Phys. Lett., 101, 082103 (2012).  [DOI: 10.1063/1.4747200External link] [CEN]
3253.Yeh, Ting-Wei; Lin, Yen-Ting; Stewart, Lawrence; Dapkus, P. Daniel; Sarkissian, Raymond; O'Brien, John D.; Ahn, Byungmin; and Nutt, Steven R.  InGaN/GaN multiple quantum wells grown on nonpolar facets of vertical GaN nanorod arrays  Nano Lett., 12(6), 3257–3262 (2012).  [DOI: 10.1021/nl301307aExternal link] [CEN]
3254.Yeh, Ting-Wei; Lin, Yen-Ting; Ahn, Byungmin; Stewart, Lawrence; Dapkus, P. Daniel; and Nutt, Steven R.  Vertical nonpolar growth templates for light emitting diodes formed with GaN nanosheets  Appl. Phys. Lett., 100, 033119 (2012).  [DOI: 10.1063/1.3671182External link] [CEN]
3255.Yuan, Zaoshi; Nomura, Ken-ichi; and Nakano, Aiichiro  A core/shell mechanism for stacking-fault generation in GaAs nanowires  Appl. Phys. Lett., 100, 163103 (2012).  [DOI: 10.1063/1.3703765External link] [CEN]
3256.Yuan, Zaoshi; Nomura, Ken-ichi; and Nakano, Aiichiro  Core/shell structural transformation and brittle-to-ductile transition in nanowires  Appl. Phys. Lett., 100, 153116 (2012).  [DOI: 10.1063/1.3703303External link] [CEN]
3257.Zhang, Yifan; and Forrest, Stephen R.  Triplets Contribute to both an Increase and Loss in Fluorescent Yield in Organic Light Emitting Diodes  Phys. Rev. Lett., 108, 267404 (2012).  [DOI: 10.1103/PhysRevLett.108.267404External link] [CEN]
3258.Zhang, Mengyao; Wang, Yen-Nai; Moulin, Etienne; Grützmacher, D.; Chien, Chung-Jen; Chang, Pai-Chun; Gao, Xianfeng; Carius, Reinhard; and Lu, Jia Grace  Core–shell CdTe–TiO2 nanostructured solar cell  J. Mater. Chem., 22, 10441-10443 (2012).  [DOI: 10.1039/C2JM31091KExternal link] [CEN]
3259.Abbamonte, P.; Demler, E.; Davis, J.C. Seamus; and Campuzano, J.-C.  Resonant soft X-ray scattering, stripe order, and the electron spectral function in cuprates  Physica C: Superconductivity, 481, 15 (2012).  [DOI: 10.1016/j.physc.2012.04.006External link] [CES]
3260.Allan, M.P.; Rost, A.W.; Mackenzie, A.P.; Xie, Y.; Davis, J.C.; Kihou, K.; Lee, C.H.; Iyo, A.; Eisali, H.; and Chuang, T.-M.  Anisotropic Energy Gaps of Iron-Based Superconductivity from Intraband Quasiparticle Interference in LiFeAs  Science, 336, 563 (2012).  [DOI: 10.1126/science.1218726External link] [CES]
3261.Arham, H.Z.; Hunt, C.R.; Park, W.K.; Gillett, J.; Das, S.D.; Sebastian, S.E.; Xu, X.J.; Wen, J.S.; Lin, Z.W.; Li, Q.; Gu, G.; Thaler, A.; Ran, S.; Budko, S.L.; Canfield, P.C.; Chung, D.Y.; Kanatzidis, M.G.; and Greene, L.H.  Detection of orbital fluctuations above the structural transition temperature in the iron pnictides and chalcogenides  Phys. Rev. B, 85, 214515 (2012).  [DOI: 10.1103/PhysRevB.85.214515External link] [CES]
3262.Bosse, G.; Bilbro, L.S.; Aguilar, R.V.; Pan, L.; Liu, W.; Stier, A.V.; Li, Y.; Greene, L.H.; and Armitage, N.P.  Low energy electrodynamics of the Kondo-lattice antiferromagnet CeCu{2}Ge{2}  Physical Review B, 85, 155105 (2012).  [DOI: 10.1103/PhysRevB.85.155105External link] [CES]
3263.Chaparro, C.; Fang, L.; Claus, H.; Rydh, A.; Crabtree, G.W.; Kwok, W.K.; and Welp, U.  Doping dependence of the specific heat of single-crystal BaFe{2}(As{1-x}P{x}){2}  Phys. Rev.B, 85, 184525 (2012).  [DOI: 10.1103/PhysRevB.85.184525External link] [CES]
3264.Coskun, U.C.; Brenner, M.; Hymel, T.; Vakaryuk, V.; Levchenko, A. ; and Bezryadin, A.  Distribution of Supercurrent Switching in Graphene under the Proximity Effect  Physical Review Letters, 108, 097003 (2012).  [DOI: 10.1103/PhysRevLett.108.097003External link] [CES]
3265.Dean, M.P.M.; Springell, R.S.; Monney, C.; Zhou, K.J.; Pereiro, J.; Bozovic, I.; Piazza, B. Dalla; Ronnow, H.M.; Morenzoni, E.; van den Brink, J.; Schmitt, T.; and Hill, J.P.  Spin excitations in a single La{2}CuO{4} layer  Nature Materials, 11, 850-854 (2012).  [DOI: 10.1038/nmat3409External link] [CES]
3266.Dean, M.P.M.; Kim, M.G.; Kreyssig, A.; Kim, J.W.; Liu, X.; Ryan, P.J.; Thaler, A.; Budko, S.L.; Strassheim, W.; Canfield, P.C.; Hill, J.P.; and Goldman, A.I.  Magnetically polarized Ir dopant atoms in superconducting Ba(Fe{1−x}Ir{x}){2}As{2}  Phys. Rev. B, 85, 140514 (2012).  [DOI: 10.1103/PhysRevB.85.140514External link] [CES]
3267.Fang, L.; Jia, Y.; Miller, D.J.; Latimer, M.L.; Xiao, Z.L.; Welp, U.; Crabtree, G.W.; and Kwok, W.-K.  Catalyst-Free Growth of Millimeter-Long Topological Insulator Bi{2}Se{3} Nanoribbons and the Observation of the π-Berry Phase  Nano Letters, 12, 6164 (2012).  [DOI: 10.1021/nl302989vExternal link] [CES]
3268.Fang, L.; Jia, Y.; Chaparro, C.; Sheet, G.; Claus, H.; Kirk, M.A.; Koshelev, A.E.; Welp, U.; Crabtree, G.W.; Kwok, W.K.; Zhu, S.; Hu, H.F.; Zuo, J.M.; Wen, H.-H.; and Shen, B.  High, magnetic field independent critical currents in (Ba,K)Fe{2}As{2} crystals  Appl. Phys. Lett., 101, 012601 (2012).  [DOI: 10.1063/1.4731204External link] [CES]
3269.Fujita, K. ; Schmidt, A.R.; Kim, E.-A.; Lawler, M.J.; Lee, D.H.; Davis, J.C.; Eisaki, H.; and Uchida, S.  Spectroscopic imaging scanning tunneling microscopy studies of electronic structure in the superconducting and pseudogap phases of cuprate high-Tc superconductors  J. Phys. Soc. Jpn., 81, 011005 (2012).  [DOI: 10.1143/JPSJ.81.011005External link] [CES]
3270.Greene, L.H.; Arham, H.Z.; Hunt, C.R.; and Park, W.K.  Design of New Superconducting Materials, and Point-Contact  J Supercond Nov Magn, 25, 2121-2126 (2012).  [DOI: 10.1007/s10948-012-1635-9External link] [CES]
3271.Hashimoto, K.; Cho, K.; Shibauchi, T.; Kasahara, S.; Mizukami, Y.; Katsumata, R.; Tsuruhara, Y.; Terashima, T.; Ikeda, H.; Tanatar, M.A.; Kitano, H.; Salovich, N.; Giannetta, R.W.; Walmsley, P.; Carrington, A.; Prozorov, R.; and Matsuda, Y.  A Sharp Peak of the Zero-Temperature Penetration Depth at Optimal Composition in BaFe {2}(As{1-x}P{x}){2}  Science, 336, 1554-1557 (2012).  [DOI: 10.1126/science.1219821External link] [CES]
3272.Homes, C.C.; Xu, Z.J.; Wen, J.S.; and Gu, G.  Effective medium approximation and the complex optical properties of the inhomogeneous superconductor K{0.8}Fe{2−y}Se{2}  Phys. Rev. B, 86, 144530 (2012).  [DOI: 10.1103/PhysRevB.86.144530External link] [CES]
3273.Homes, C.C. ; Xu, Z.J.; Wen, J.S.; and Gu, G.D.  Optical conductivity of superconducting K{0.8}Fe{2−y}Se{2} single crystals: Evidence for a Josephson-coupled phase  Phys. Rev.B, 85, 180510 (2012).  [DOI: 10.1103/PhysRevB.85.180510External link] [CES]
3274.Hong, S.; and Phillips, P.  Towards the standard model for Fermi arcs from a Wilsonian reduction of the Hubbard model  Phys. Rev. B, 86, 115118 (2012).  [DOI: 10.1103/PhysRevB.86.115118External link] [CES]
3275.Hu, H.; Zuo, J.-M.; Zheng, M.; Eckstein, J.N. ; Park, W.K.; Greene, L.H.; Wen, J.; Xu, Z.; Lin, Z.; Li, Q.; and Gu, G.  Structure of the oxygen-annealed chalcogenide superconductor Fe{1.08}Te{0.55}Se{0.45}O{x}   Physical Review B, 85, 064504 (2012).  [DOI: 10.1103/PhysRevB.85.064504External link] [CES]
3276.James, A.J.A.; Konik, R.M.; and Rice, T.M.  Magnetic response in the underdoped cuprates  Phys. Rev. B, 86, 100508 (2012).  [DOI: 10.1103/PhysRevB.86.100508External link] [CES]
3277.Jie, Q.; Han, S.J.; Dimitrov, I.; Tranquada, J.M.; and Li, Q.  Transport properties of stripe-ordered high Tc cuprates  Physica C: Superconductivity, 481, 46-54 (2012).  [DOI: 10.1016/j.physc.2012.04.003External link] [CES]
3278.Kohsaka, Y.; Hanaguri, T.; Azuma, M.; Takano, M.; Davis, J.C.; and Takagi, H.  Visualization of the emergence of the pseudogap  Nature Physics, 8, 534 (2012).  [DOI: 10.1038/NPHYS2321External link] [CES]
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