Publications

104.    “Epitaxial growth and magnetic properties of kagome metal FeSn/elemental ferromagnet heterostructures”, P. M. Laxmeesha, T. D. Tucker, R. K. Rai, S. Li, M.-W. Yoo, E. A. Stach, A. Hoffmann, S. J. May, Journal of Applied Physics 135, 085302 (2024).[article]

103.    “Enhanced magnetic susceptibility in Ti3C2Tx MXene with Co and Ni incorporation”, Y. Yang, M. Anayee, A. Pattammattel, M. Shekhirev, R. (John) Wang, X. Huang, Y. S. Chu, Y. Gogotsi, S. J. May, Nanoscale 16, 5760 (2024).[article]

102.    “Structural Evolution of Ultrathin SrFeO3-δ Films During Oxygen Evolution Reaction Revealed by In-situ Electrochemical Stress Measurements”, E. Marquez, K. H. Keu, A. Nelson, B. M. Lefler, S. J. May, H. Tavassol, ACS Applied Energy Materials 6, 11882 (2023).[article]

101.    “Doping the Undopable: Hybrid Molecular Beam Epitaxy Growth, n-type Doping, and Field-Effect Transistor using CaSnO3”, F. Liu, P, Golani, T. K. Truttmann, I. Evangelista, M. A. Smeaton, D. Bugallo, J. Wen, A. K. Manjeshwar, S. J. May, L. F. Kourkoutis, A. Janotti, S. J. Koester, B. Jalan, ACS Nano 17, 16912 (2023). [article]

100.    “Interfacial Topochemical Fluoridation of MAPbI3 by Fluoropolymers”, B. M. Lefler, T. J. Houser, A. Chakrabarti, S. J. May, A. T. Fafarman, Journal of Physical Chemistry Letters 14, 5040 (2023).[article]

99.    “Correlating electronic properties with M-site composition in solid solution TiyNb2-yCTx MXenes”, Y. Yang, M. Han, C. E. Shuck, R. K. Sah, J. R. Paudel, A. X. Gray, Y. Gogotsi, S. J. May, 2D Materials 10, 014011 (2023).[article]

98.    “Voltage control of patterned metal/insulator properties in oxide/oxyfluoride lateral perovskite heterostructures via ion gel gating”, B. M. Lefler, W. M. Postiglione, C. Leighton, S. J. May, Advanced Functional Materials 32, 2208434, (2022).[article]

97.    “Efficient microwave absorption with Vn+1CnTx MXenes”, M. Han, C. E. Shuck, A. Singh, Y. Yang, A. C. Foucher, A. Goad, B. McBride, S. J. May, V. B. Shenoy, E. A. Stach, Y. Gogotsi, Cell Reports Physical Science 3, 101073 (2022).[article]

96.    “Strain-induced anion-site occupancy in perovskite oxyfluoride films”, J. Wang, Y. Shin, J. R. Paudel, J. D. Grassi, R. K. Sah, W. Yang, E. Karapetrova, A. Zaidan, V. N. Strocov, C. Klewe, P. Shafer, A. X. Gray, J. M. Rondinelli, S. J. May, Chemistry of Materials 33, 1811 (2021).[article]

95.    “The role of fluoride and fluorocarbons in enhanced stability and performance of halide perovskites for photovoltaics”, B. M. Lefler, S. J. May, A. T. Fafarman, Physical Review Materials 4, 120301 (2020).[article]

94.    “Evidence of a Magnetic Transition in Atomically Thin Cr2TiC2Tx MXene”, K. Hantanasirisakul, B. Anasori, S. Nemsak, J. L. Hart, J. Wu, Y. Yang, R. V. Chopdekar, P. Shafer, A. F. May, E. J. Moon, J. Zhou, Q. Zhang, M. L. Taheri, S. J. May, Y. Gogotsi, Nanoscale Horizons 5, 1557 (2020).[article]

93.    “Tailoring optical and electronic properties of MXenes through forming solid solutions”, M. Han, K. Maleski, C. E. Shuck, Y. Yang, J. T. Glazar, A. C. Foucher, K. Hantanasirisakul, A. Sarycheva, N. C. Frey, S. J. May, V. B. Shenoy, E. A. Stach, Y. Gogotsi, Journal of the American Chemical Society 142, 19110 (2020).[article]

92.    “Synthesis and characterization of SrFexMn1-x(O,F)3-δ oxide (δ = 0, 0.5) and oxyfluoride perovskite films”, J. Wang, B. M. Lefler, S. J. May, Inorganic Chemistry 59, 9990 (2020).[article]

91.    “Evidence for interfacial octahedral coupling as a route to enhanced magnetoresistance in perovskite oxide superlattices”, Y. Zhou,Y. Zhou, S. Kouser, A. Borisevich, S. T. Pantelides, S. J. May, Advanced Materials Interfaces 7, 1901576 (2020).[article]

90.    “Distinguishing electronic structure contributions of surface and sub-surface transition metal atoms in MXenes”, Y. Yang, K. Hantanasirisakul, N. Frey, B. Anasori, R. J. Green, P. C. Rogge, I. Waluyo, A. Hunt, P. Shafer, E. Arenholz, V. Shenoy, Y. Gogotsi, S. J. May, 2D Materials 7, 025015 (2020).[article]

89.    “Depth-resolved modulation of metal-oxygen hybridization and orbital polarization across correlated oxide interfaces”, P. C. Rogge, P. Shafer, G. Fabbris, W. Hu, E. Arenholz, E. Karapetrova, M. P. M. Dean, R. J. Green, S. J. May,  Advanced Materials 31, 1902364 (2019).[article]

88.    “Probing single unit-cell resolved electronic structure modulations in oxide superlattices with standing-wave photoemission”, W. Yang, R. U. Chandrasena, M. Gu, R. M. S. dos Reis, E. J. Moon, Arian Arab, M.-A. Husanu, J. Ciston, V. N. Strocov, J. M. Rondinelli, S. J. May, A. X. Gray,  Physical Review B 100, 125119 (2019).[article]

87.    “Itinerancy-dependent noncollinear spin textures in SrFeO3, CaFeO3, and CaFeO3/SrFeO3 heterostructures probed via resonant x-ray scattering”, P. C. Rogge, R. J. Green, R. Sutarto, S. J. May,  Physical Review Materials 3, 084404 (2019).[article]

86.    “Lithographically-constrained topochemistry of oxide thin films to obtain reconfigurable lateral anionic heterostructures”, B. M. Lefler, T. Duchoň, J. Wang, C. M. Schneider, S. J. May,  Physical Review Materials 3, 073802 (2019).[article]

85.    “Deliberate deficiencies: Expanding electronic function through non-stoichiometry”, J. M. Rondinelli, S. J. May, Matter 1, 33 (2019).[article]

84.    “Physical Properties of Epitaxial SrMnO2.5-dFg Oxyfluoride Films”, J. Wang, Y. Shin, N. Gauquelin, Y. Yang, C. Lee, D. Jannis, J. Verbeeck, J. M. Rondinelli, S. J. May,  Journal of Physics: Condensed Matter 31, 365602 (2019).[article]

83.    “Surface termination dependent work function and electronic properties of Ti3C2Tx MXene”, T. Schultz, N. Frey, K. Hantanasirisakul, S. Park, S. J. May, V. Shenoy, Y. Gogotsi, N. Koch,  Chemistry of Materials 31, 6590 (2019).[article]

82.    “Effects of synthesis and processing on optoelectronic properties of Ti3CNTx MXenes”, K. Hantanasirisakul, M. Alhabeb, A. Lipatov, K. Maleski, B. Anasori, P. Salles, C. Ieosakulrat, P. Pakawatpanurut, A. Sinitskii, S. J. May, Y. Gogotsi, Chemistry of Materials 31, 2941 (2019).[article]

81.    “Scalable synthesis of ultrathin Mn3N2 exhibiting room-temperature magnetism”, X. Xiao, P. Urbankowski, K. Hantanasirisakul, Y. Yang, S. Sasaki, L. Yang, C. Chen, H. Wang, L. Miao, S. H. Tolbert, S. J. L. Billinge, H. D. Abruña, S. J. May, Y. Gogotsi,  Advanced Functional Materials 29, 1809001 (2019).[article]

80.    “Control of MXenes’ Electronic Properties Through Termination and Intercalation”, J. L. Hart, K. Hantanasirisakul, A. C. Lang, B. Anasori, D. Pinto, Y. Pivak, J. Tijn van Omme, S. J. May, Y. Gogotsi, and M. L. Taheri, Nature Communications 10, 522 (2019).[article]

79.    “Helical magnetism in Sr-doped CaMn7O12 films”, A. Huon, A. M. Vibhakar, A. J. Grutter, J. A. Borchers, S. Disseler, Y. Liu, W. Tian, F. Orlandi, P. Manuel, D. D. Khalyavin, Y. Sharma, A. Herklotz, H. N. Lee, M. R. Fitzsimmons, R. D. Johnson, and S. J. May. Physical Review B 98, 224419 (2018).[article]

78.    “Inverted orbital polarization in strained correlated oxide films”, P. C. Rogge, R. J. Green, P. Shafer, G. Fabbris, A. M. Barbour, B. M. Lefler, E. Arenholz, M. P. M. Dean, and S. J. May. Physical Review B 98, 201115(R) (2018).[article]

77.    “Perovskite Manganese-Oxide Oxygen Reduction Catalysts Tailored with Atomic Precision to Increase Surface Site Availability”, C. J. Eom, D.-Y. Kuo, C. Adamo, E. J. Moon, S. J. May, E. J. Crumlin, D. G. Schlom, J. Suntivich. Nature Communications 9, 4034 (2018).[article]

76.    “Synthesis and Characterization of the Atomic Laminate Mn2AlB2”, S. Kota, Y. Chen, J. Wang, S. J. May, M. Radovic, and M. W. Barsoum. Journal of the European Ceramic Society 38, 5333 (2018).[article]

75.    “Strain-Induced Competition between Ferromagnetism and Emergent Antiferromagnetism in (Eu,Sr)MnO3”, A. J. Grutter, S. M. Disseler, E. J. Moon, D. A. Gilbert, E. Arenholz, A. Suter, T. Prokscha, Z. Salman, B. J. Kirby, and S. J. May. Physical Review Materials 2, 094402 (2018).[article]

74.    “Effect of Fluoropolymer Composition on Topochemical Synthesis of SrMnO3-δFγ Oxyfluoride Films”, J. Wang, Y. Shin, E. Arenholz, B. M. Lefler, J. M. Rondinelli, and S. J. May. Physical Review Materials 2, 073407 (2018).[article]

73.    “Magnetic Properties of Cr2AlB2, Cr3AlB4, and CrB Powders”, S. Kota, W. Wang, J. Lu, V. Natu, G. Ying, L. Hultman, S. J. May, M. W. Barsoum. Journal of Alloys and Compounds 767, 474 (2018).[article]

72.    “Electronic structure of negative charge transfer CaFeO3 across the metal-insulator transition”, P. C. Rogge, R. U. Chandrasena, A. Cammarata, R. J. Green, P. Shafer, B. M. Lefler, A. Huon, A. Arab, E. Arenholz, H. N. Lee, T.-L. Lee, S. Nemšák, J. M. Rondinelli, A. X. Gray, and S. J. May. Physical Review Materials 2, 015002 (2018).[article]

71.    “Distinguishing Thermal and Electronic Effects in Ultrafast Optical Spectroscopy Using Oxide Heterostructures”, S. Y. Smolin, A. K. Choquette, J. Wang, S. J. May, and J. B. Baxter. Journal of Physical Chemistry C 122, 115 (2018).[article]

70.    “2D molybdenum and vanadium nitrides synthesized by ammoniation of 2D transition metal carbides (MXenes)”, P. Urbankowski, B. Anasori, K. Hantanasirisakul, C. Hatter, L. Yang, B. Haines, S. J. May, S. J. L. Billinge, and Y. Gogotsi. Nanoscale 9, 17722 (2017).[article]

69.    “Structural “Delta Doping” to Control Local Magnetization in Isovalent Oxide Superlattices”, E. J. Moon, Q. He, S. Ghosh, B. J. Kirby, S. T. Pantelides, A. Y. Borisevich, and S. J. May. Physical Review Letters 119, 197204 (2017).[article]

68.    “Effects of Chemical Pressure on the Structural and Electronic Transport Properties in Ca1-xSrxMn7O12” A. Huon, D. Lee, A. Herklotz, M. R. Fitzsimmons, H. N. Lee and S. J. May. APL Materials 5, 096105 (2017).[pdf]

67.    “Interface-induced phenomena in magnetism” F. Hellman, A. Hoffmann, Y. Tserkovnyak, G. S. D. Beach, E. E. Fullerton, C. Leighton, A. H. MacDonald, D. C. Ralph, D. A. Arena, H. A. Dürr, P. Fischer, J. Grollier, J. P. Heremans, T. Jungwirth, A. V. Kimel, B. Koopmans, I. N. Krivorotov, S. J. May, A. K. Petford-Long, J. M. Rondinelli, N. Samarth, I. K. Schuller, A. N. Slavin, M. D. Stiles, O. Tchernyshyov, A. Thiaville, and B. L. Zink. Reviews of Modern Physics, 89025006 (2017).[article]

66.    “Evidence for oxygen vacancy manipulation in La1/3Sr2/3FeO3-δ thin films via voltage controlled solid-state ionic gating” A. L. Krick and S. J. May. APL Materials 5, 042504 (2017).[pdf]

65.    “Growth and electrical transport properties of La0.7Sr0.3MnO3 thin films on Sr2IrO4single crystals” E. J. Moon, A. F. May, P. Shafer, E. Arenholz, and S. J. May. Physical Review B 95, 155135 (2017).[article]

64.    “Energy Level Alignment and Cation Charge States at the LaFeO3/LaMnO3 (001) Heterointerface” S. Y. Smolin, A. K. Choquette, R. G. Wilks, N. Gauquelin, R. Félix, D. Gerlach, S. Ueda, A. L. Krick, J. Verbeeck, M. Bär, J. B. Baxter, and S. J. May. Advanced Materials Interfaces 1700183 (2017).[article]

63.    “Effect of Cation Off-Stoichiometry on Optical Absorption in Epitaxial LaFeO3Films” M. D. Scafetta and S. J. May. Physical Chemistry Chemical Physics 19, 10371 (2017).[article]

62.    “Polar Oxides without Inversion Symmetry through Vacancy and Chemical Order” J. Young, E. J. Moon, D. Mukherjee, G. Stone, V. Gopalan, N. Alem, S. J. May, and J. M. Rondinelli. Journal of the American Chemical Society139, 2833 (2017).[article]

61.    “Structural Refinement of Pbnm-type Perovskite Films from Analysis of Half-Order Diffraction Peaks” M. Brahlek, A. K. Choquette, C. R. Smith, R. Engel-Herbert, and S. J. May. Journal of Applied Physics 121, 045303 (2017).[article]

60.    “Octahedral rotation patterns in strained EuFeO3 and other Pbnm perovskite films: Implications for hybrid improper ferroelectricity” A. K. Choquette, C. R. Smith, R. J. Sichel-Tissot, E. J. Moon, M. D. Scafetta, E. Di Gennaro, F. Miletto Granozio, E. Karapetrova, and S. J. May. Physical Review B 94, 024105 (2016).[preprint]

59.    “Interplay between cation and charge ordering in La1/3Sr2/3FeO3 superlattices” A. L. Krick, C.-W. Lee, R. J. Sichel-Tissot, A. M. Rappe, and S. J. May. Advanced Electronic Materials 2, 1500372 (2016).[article]

58.    “Metal-Like, Optical-Quality Films from Solution-Processed 2D Titanium Carbide (MXene)” A. D. Dillon, M. J. Ghidiu, A. L. Krick, J. Griggs, S. J. May, Y. Gogotsi, M. W. Barsoum, A. T. Fafarman. Advanced Functional Materials26, 4162 (2016).[article]

57.    “Synthesis and Characterization of an Alumina Forming Nanolaminated Boride: MoAlB” S. Kota, E. Zapata-Solvas, A. Ly, J. Lu, O. Elkassabany, A. Huon, W. E. Lee, L. Hultman, S. J. May, M. W. Barsoum. Scientific Reports 6, 26475 (2016).[article]

56.    “Control of Electronic Properties of 2D Carbides (MXenes) by Manipulating Their Transition Metal Layers” B. Anasori, C. Shi, E. J. Moon, Y. Xie, C. A. Voigt, E. Dooryhee, P. R. C. Kent, S. J. May, S. J. L. Billinge, M. W. Barsoum, Y. Gogotsi. Nanoscale Horizons1, 227 (2016).[article]

55.    “Synthesis and Characterization of Two-Dimensional Molybdenum Carbide (MXene)” J. Halim, S. S. Kota, M. R. Lukatskaya, M. Naguib, M. Zhao, E. J. Moon, J. Pitock, J. Nanda, S. J. May, Y. Gogotsi, M. W. Barsoum. Advanced Functional Materials26, 3118 (2016).[article]

54.    “Static and dynamic optical properties of La1-xSrxFeO3-d: The effects of A-site and oxygen stoichiometry” S. Y. Smolin, M. D. Scafetta, A. K. Choquette, M. Y. Sfeir, J. B. Baxter, and S. J. May. Chemistry of Materials 28, 97 (2016).[article]

53.    “Electronic transition above room temperature in CaMn7O12 films” A. Huon, A. C. Lang, D. Saldana-Greco, J. S. Lim, E. J. Moon, A. M. Rappe, M. L. Taheri, and S. J. May. Applied Physics Letters 107, 142901 (2015).[article]

52.    “Towards 3D mapping of BO6 octahedron rotations at perovskite heterointerfaces, unit cell by unit cell” Q. He, R. Ishikawa, A. R. Lupini, L. Qiao, E. J. Moon, O. Ovchinnikov, S. J. May, M. D. Biegalski, and A. Y. Borisevich. ACS Nano 9, 8412 (2015).[article]

51.    “Experimental and theoretical characterization of ordered MAX phases Mo2TiAlC2and Mo2Ti2AlC3” B. Anasori, M. Dahlqvist, J. Halim, E. J. Moon, J. Lu, B. C. Hosler, E. N. Caspi, S. J. May, L. Hultman, P. Eklund, J. Rosen, and M. W. Barsoum. Journal of Applied Physics 118, 094304 (2015).[article]

50.    “The effects of cation stoichiometry on electronic and structural properties of LaNiO3” C. R. Smith, A. C. Lang, V. Shutthanandan, M. L. Taheri, and S. J. May. Journal of Vacuum Science and Technology A 33, 041510 (2015).[article]

49.    “Comparison of topotactic fluorination methods for complex oxide films” E. J. Moon, A. K. Choquette, A. Huon, S. Z. Kusela, D. Barbash, and S. J. May. APL Materials3, 062511 (2015).[pdf]

48.    “Raman scattering in La1-xSrxFeO3-d thin films: annealing-induced reduction and phase transformation” M. A. Islam, Y. Xie, M. D. Scafetta, S. J. May, and J. E. Spanier. Journal of Physics: Condensed Matter 27, 155401 (2015).[article]

47.    “Synthesis, Structure, and Spectroscopy of Epitaxial EuFeO3 Thin Films” A. K. Choquette, R. Colby, E. J. Moon, C. M. Schlepütz, M. D. Scafetta, D. J. Keavney, and S. J. May. Crystal Growth and Design 15, 1105 (2015).[article]

46.    “Solid Solubility and Magnetism upon Mn Incorporation in the Bulk Ternary Carbides Cr2AlC and Cr2GaC” A. Mockute, J. Lu, E. J. Moon, M. Yan, B. Anasori, S. J. May, M. W. Barsoum, and J. Rosen. Materials Research Letters 3, 16 (2015).[article]

45.    “Spatial control of functional properties via octahedral modulations in complex oxide superlattices” E. J. Moon, R. Colby, Q. Wang, E. Karapetrova, C. M. Schlepütz, M. R. Fitzsimmons, and S. J. May. Nature Communications  5, 5710 (2014).[pdf]

44.    “Band Structure and Optical Transitions in LaFeO3: Theory and Experiment” M. D. Scafetta, A. M. Cordi, J. M. Rondinelli and S. J. May. Journal of Physics: Condensed Matter  26, 505502 (2014).[pdf]

43.    “Atomic-scale Characterization of Oxide Thin Films Gated by Ionic Liquid” A. C. Lang, J. D. Sloppy, H. Ghassemi, R. C. Devlin, R. J. Sichel-Tissot, J.-C. Idrobo, S. J. May, and M. L. Taheri. ACS Applied Materials and Interfaces 6, 17018 (2014).[pdf]

42.    “Electronic phase diagram of epitaxial La1-xSrxFeO3 films” Y. J. Xie, M. D. Scafetta, E. J. Moon, A. L. Krick, R. J. Sichel-Tissot, and S. J. May. Applied Physics Letters 105, 062110 (2014).[pdf]

41.    “Ultrafast transient reflectance of epitaxial semiconducting perovskite thin films” S. Y. Smolin, M. D. Scafetta, G. W. Guglietta, J. B. Baxter, and S. J. May. Applied Physics Letters 105, 022103 (2014).[pdf]

40.    “Strain Effects in Narrow-Bandwidth Manganites: The Case of Epitaxial Eu0.7Sr0.3MnO3 Thin Films” E. J. Moon, D. J. Keavney, and S. J. May. Physical Review Applied 1, 054006 (2014).[pdf]

39.    “Conduction Mechanism Transition in La1/3Sr2/3FeO3 Thin Films” R. C. Devlin, A. L. Krick, R. J. Sichel-Tissot, Y. Xie, and S. J. May. Journal of Applied Physics 115, 233704 (2014).[pdf]

38.    “Effect of interfacial octahedral behavior in ultrathin manganite films” E. J. Moon, P. V. Balachandran, B. J. Kirby, D. J. Keavney, R. J. Sichel-Tissot, C. M. Schleputz, E. Karapetrova, X. M. Cheng, J. M. Rondinelli, and S. J. May. Nano Letters 14, 2509 (2014).[pdf]

37.    “Transparent conductive two-dimensional titanium carbide epitaxial thin films” J. Halim, M. R. Lukatskaya, K. M. Cook, J. Lu, C. R. Smith, L.-A. Haslund, S. J. May, L. Hultsman, Y. Gogotsi, P. Eklund, and M. W. Barsoum.Chemistry of Materials 26, 2374 (2014).[pdf]

36.    “Magnetic Oxide Heterostructures” A. Bhattacharya and S. J. May. Annual Review of Materials Research 44, 65 (2014).[pdf]

35.    “Fluorination of epitaxial oxides: Synthesis of perovskite oxyfluoride thin films” E. J. Moon, Y. J. Xie, E. D. Laird, D. J. Keavney, C. Y. Li, and S. J. May. Journal of the American Chemical Society 136, 2224 (2014).[pdf]

34.    “Control of Functional Responses via Reversible Oxygen Loss in La1-xSrxFeO3-dFilms” Y. J. Xie, M. D. Scafetta, R. J. Sichel-Tissot, E. J. Moon, R. C. Devlin, H. Wu, A. L. Krick, and S. J. May. Advanced Materials 26, 1434 (2014).[pdf]

33.    “The effect of oxygen vacancies on the electronic phase transition in La1/3Sr2/3FeO3films” R. J. Sichel-Tissot, R. C. Devlin, P. J. Ryan, J.-W. Kim, and S. J. May. Applied Physics Letters 103, 212905 (2013).[pdf]

32.    “Magnetization Properties and Vortex Phase Diagram in CuxTiSe2 Single Crystals” P. Husaníková, J. Fedor, J. Dérer, J. Šoltýs, V. Cambel, M. Iavarone, S. J. May, and G. Korapetrov. Physical Review B 88, 174501 (2013).[pdf]

31.    “Optical absorption in epitaxial La1-xSrxFeO3 thin films” M. D. Scafetta, Y. J. Xie, M. Torres, J. E. Spanier, and S. J. May. Applied Physics Letters 102, 081904 (2013).[pdf]

30.    “Oxide Interfaces: Instrumental Insights” J. M. Rondinelli and S. J. May.  Nature Materials 11, 833 (2012).[pdf]

29.    “Structural investigation of perovskite manganite and ferrite films on yttria-stabilized zirconia substrates” C. R. Smith, J. Sloppy, H. Wu, T. S. Santos, E. Karapetrova, J.-W. Kim, P. J. Ryan, M. L. Taheri, and S. J. May.  Journal of the Electrochemical Society 159, F436 (2012).[pdf]

28.    “Control of octahedral connectivity in perovskite oxide heterostructures: An emerging route to multifunctional materials discovery” J. M. Rondinelli, S. J. May, and J. W. Freeland.  MRS Bulletin 37, 261 (2012).[pdf]

27.    “Delta doping of ferromagnetism in antiferromagnetic manganite superlattices” T. S. Santos, B. J. Kirby, S. Kumar, S. J. May, J. A. Borchers, B. B. Maranville, J. Zarestky, S. G. E. te Velthuis, J. van den Brink, and A. Bhattacharya.  Physical Review Letters 107, 167202 (2011).[pdf]

26.    “Control of octahedral rotations in (LaNiO3)n/(SrMnO3)m superlattices” S. J. May, C. R. Smith, J.-W. Kim, E. Karapetrova, A. Bhattacharya, and P. J. Ryan.  Physical Review B83, 153411 (2011).[pdf]

25.    “Presence and spatial distribution of interfacial electronic states in LaMnO3-SrMnO3superlattices” A. B. Shah, Q. M. Ramasse, S. J. May, J. Kavich, J. G. Wen, X. Zhai, J. N. Eckstein, J. Freeland, A. Bhattacharya, and J. M. Zuo. Physical Review B 82, 115112 (2010).[pdf]

24.    “Quantifying octahedral rotations in strained perovskite oxide films” S. J. May, J.-W. Kim, J. M. Rondinelli, E. Karapetrova, N. A. Spaldin, A. Bhattacharya, and P. J. Ryan.  Physical Review B 82, 014110 (2010).[pdf]

23.    “Probing interfacial electronic structures in atomic layer LaMnO3 and SrTiO3superlattices” A. B. Shah, Q. M. Ramasse, X. Zhai, J. G. Wen, S. J. May, I. Petrov, A. Bhattacharya, P. Abbamonte, J. N. Eckstein and J.-M. Zuo. Advanced Materials 22, 1156 (2010).[pdf]

22.    “Co@CoO@Au core-multi-shell nanocrystals” S. H. Johnson, C. L. Johnson, S. J. May, S. Hirsch, M. W. Cole, and J. E. Spanier.  Journal of Materials Chemistry 20, 439 (2010).[pdf]

21.    “Enhanced ordering temperatures in antiferromagnetic manganite superlattices” S. J. May, P. J. Ryan, J. L. Robertson, J.-W. Kim, T. S. Santos, E. Karapetrova, J. L. Zarestky, X. Zhai, S. G. E. te Velthuis, J. N. Eckstein, S. D. Bader and A. Bhattacharya.  Nature Materials 8, 892 (2009).

20.    “Tuning between the metallic antiferromagnetic and ferromagnetic phases of La1-xSrxMnO3 near x=0.5 by digital synthesis” T. S. Santos, S. J. May, J. L. Robertson, and A. Bhattacharya.  Physical Review B 80, 155114 (2009).

19.    “Magnetic depth profile of a modulation-doped La1-xCaxMnO3 exchange-biased system” A. Hoffmann, S. J. May, S. G. E. te Velthuis, S. Park, M. R. Fitzsimmons, G. Campillo, and M. E. Gomez.  Physical Review B 80, 052403 (2009).

18.    “Onset of metallic behavior in strained (LaNiO3)n/(SrMnO3)2 superlattices” S. J. May, T. S. Santos, and A. Bhattacharya. Physical Review B 79, 115127 (2009).

17.    “Substrate orientation dependence of ferromagnetism in (Ga,Mn)As” M. J. Wilson, G. Xiang, B. L. Sheu, P. Schiffer, N. Samarth, S. J. May, and A. Bhattacharya. Applied Physics Letters 93, 262502 (2008).

16.    “The metal-insulator transition and its relation to magnetic structure in (LaMnO3)2n/(SrMnO3)n superlattices” A. Bhattacharya, S. J. May, S. G. E. te Velthuis, M. Warusawithana, X. Zhai, A. B. Shah, J.-M. Zuo, M. R. Fitzsimmons, S. D. Bader, and J. N. Eckstein. Physical Review Letters 100, 257203 (2008).

15.    “Magnetically asymmetric interfaces in a (LaMnO3)/(SrMnO3) superlattice due to structural asymmetries”  S. J. May, A. B. Shah, S. G. E. te Velthuis, M. R. Fitzsimmons, J. M. Zuo, X. Zhai, J. N. Eckstein, S. D. Bader, and A. Bhattacharya. Physical Review B 77, 174409 (2008).

14.    “Magnetic properties of MnAs thin films grown on GaAs (001) by MOVPE”  G. E. Sterbinsky, S. J. May, P. T. Chiu, and B. W. Wessels.  Physica B 388, 370 (2007).

13.    “Composition analysis of single semiconductor nanowires using pulsed-laser atom probe tomography” D. E. Perea, J. L. Lensch, S. J. May, B. W. Wessels, and L. J. Lauhon.  Applied Physics A 85, 271 (2006).

12.    “Negative magnetoresistance in metal/oxide/InMnAs tunnel junctions”  S. J. May, P. J. Phillips, and B. W. Wessels.  Journal of Applied Physics 100, 053912 (2006).

11.    “Origin of uniaxial magnetic anisotropy in epitaxial InMnAs thin films”  P. T. Chiu, S. J. May and B. W. Wessels.  Journal of Applied Physics 99, 083907 (2006).

10.    “High field magnetoresistance in p-(In,Mn)As/n-InAs heterojunctions” S. J. May and B. W. Wessels.  Applied Physics Letters 88, 072105 (2006).

9.    “Direct observation of room temperature magnetism in (In,Mn)As thin films by magnetic force microscopy” S. J. May, A. J. Blattner, D. P. Eam, and B. W. Wessels.  Applied Surface Science 252, 3509 (2006).

8.    “Three-dimensional nanoscale composition mapping of semiconductor nanowires” D. E. Perea, J. E. Allen, S. J. May, B. W. Wessels, D. N. Seidman, and L. J. Lauhon.  Nano Letters 6, 181 (2006).

7.    “Ferromagnetic self-assembled quantum dots on semiconductor nanowires” D. G. Ramlan, S. J. May, J. G. Zheng, J. E. Allen, B. W. Wessels, and L. J. Lauhon. Nano Letters6, 50 (2006).

6.    “Electronic and magnetotransport properties of ferromagnetic p-(In,Mn)As/n-InAs heterojunctions” S. J. May and B. W. Wessels.  Journal of Vacuum Science and Technology B 23, 1769 (2005).

5.    “Dendritic nanowire growth mediated by a self-assembled catalyst” S. J. May, J. G. Zheng, B. W. Wessels, and L. J. Lauhon.  Advanced Materials 17, 598 (2005).

4.    “Negative magnetoresistance in (In,Mn)As semiconductors” S. J. May, A. J. Blattner, and B. W. Wessels.Physical Review B 70, 073303 (2004).

3.    “Room temperature magneto-optical activity of InMnAs thin films” P. T. Chiu, S. J. May and B. W. Wessels. Applied Physics Letters 85, 780 (2004).

2.    “Optical Properties of Mn doped InAs and InMnAs epitaxial films” P. T. Chiu, A. J. Blattner, S. J. May, and B. W. Wessels.  Physica B 344, 379 (2004).

1.    “Electronic properties of Mn acceptors in (In,Mn)As grown by metalorganic vapor phase epitaxy”  S. J. May, A. J. Blattner, and B. W. Wessels.  Physica B 340-342, 870 (2003).31