CHRNS SURF Publications

2023, 2022, 2021, 2020, 2019, 2018, 2017, 2016, 2015, 2014, 2013, 2012, 2011, 2009, 2008, 2007, 2006, 2005, 2002

2023

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  1. Skyrmion‐Excited Spin‐Wave Fractal Networks
    Tang, N., Liyanage, W.L.N.C., Montoya, S.A., Patel, S., Quigley, L.J., Grutter, A.J., Fitzsimmons, M.R., Sinha, S., Borchers, J.A., Fullerton, E.E., DeBeer‐Schmitt, L., and Gilbert, D.A., Advanced Materials 35, 2300416 (2023)
  2. Anisotropy factors in small-angle scattering for dilute rigid-rod suspensions
    Rooks, J., Gilbert, P.H., Porcar, L., Liu, Y., and Butler, P., J Appl Crystallogr 56, 683–696 (2023)
  3. Three-dimensional structure of hybrid magnetic skyrmions determined by neutron scattering
    Liyanage, W.L.N.C., Tang, N., Quigley, L., Borchers, J.A., Grutter, A.J., Maranville, B.B., Sinha, S.K., Reyren, N., Montoya, S.A., Fullerton, E.E., DeBeer-Schmitt, L., and Gilbert, D.A., Phys. Rev. B 107, 184412 (2023)
  4. ANDiE the Autonomous Neutron Diffraction Explorer
    McDannald, A., Frontzek, M., Savici, A.T., Doucet, M., Rodriguez, E.E., Meuse, K., Opsahl-Ong, J., Samarov, D., Takeuchi, I., Ratcliff, W., and Gilad Kusne, A., Neutron News 34, 6–7 (2023)
  5. Development of Stable Pickering Emulsions with TEMPO-Oxidized Chitin Nanocrystals for Encapsulation of Quercetin
    Jia, X., Ma, P., Taylor, K.S.-Y., Tarwa, K., Mao, Y., and Wang, Q., Foods 12, 367 (2023)

2022

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  1. Interactions, Diffusion, and Membrane Fluctuations in Concentrated Unilamellar Lipid Vesicle Solutions
    Kelley, E.G., Blick, E.E., Prabhu, V.M., Butler, P.D., and Nagao, M., Front. Phys. 10, 866024 (2022)
  2. Symmetry of magnetic correlations in spin-triplet superconductor UTe2
    Butch, N.P., Ran, S., Saha, S.R., Neves, P.M., Zic, M.P., Paglione, J., Gladchenko, S., Ye, Q., and Rodriguez-Rivera, J.A., Npj Quantum Mater. 7, 39 (2022)
  3. Dynamics of molecular associates in methanol/water mixtures
    Zhai, Y., Luo, P., Waller, J., Self, J.L., Harriger, L.W., Z, Y., and Faraone, A., Phys. Chem. Chem. Phys. 24, 2287–2299 (2022)
  4. On-the-fly autonomous control of neutron diffraction via physics-informed Bayesian active learning
    McDannald, A., Frontzek, M., Savici, A.T., Doucet, M., Rodriguez, E.E., Meuse, K., Opsahl-Ong, J., Samarov, D., Takeuchi, I., Ratcliff, W., and Kusne, A.G., Applied Physics Reviews 9, 021408 (2022)
  5. Counting the water: Characterize the hydration level of aluminum adjuvants using contrast matching small-angle neutron scattering
    Xu, A.Y., Rinee, K.C., Stemple, C., Castellanos, M.M., Bakshi, K., Krueger, S., and Curtis, J.E., Colloids and Surfaces A: Physicochemical and Engineering Aspects 648, 129285 (2022)

2021

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  1. Promoting Persistent Superionic Conductivity in Sodium Monocarba- closo -dodecaborate NaCB 11 H 12 via Confinement within Nanoporous Silica
    Andersson, M.S., Stavila, V., Skripov, A.V., Dimitrievska, M., Psurek, M.T., Leão, J.B., Babanova, O.A., Skoryunov, R.V., Soloninin, A.V., Karlsson, M., and Udovic, T.J., J. Phys. Chem. C acs.jpcc.1c03589 (2021)
  2. Intermediate Sr 2 Co 1.5 Fe 0.5 O 6−δ Tetragonal Structure between Perovskite and Brownmillerite as a Model Catalyst with Layered Oxygen Deficiency for Enhanced Electrochemical Water Oxidation
    Ede, S.R., Collins, C.N., Posada, C.D., George, G., Wu, H., Ratcliff, W.D., Lin, Y., Wen, J., Han, S., and Luo, Z., ACS Catal. 4327–4337 (2021)
  3. Direct localization of detergents and bacteriorhodopsin in the lipidic cubic phase by small-angle neutron scattering
    Cleveland IV, T., Blick, E., Krueger, S., Leung, A., Darwish, T., and Butler, P., Iucrj 8, 22–32 (2021)

2020

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  1. Aggregation Controlled Charge Generation in Fullerene Based Bulk Heterojunction Polymer Solar Cells: Effect of Additive
    Ware, W., Wright, T., Mao, Y., Han, S., Guffie, J., Danilov, E.O., Rech, J., You, W., Luo, Z., and Gautam, B., Polymers 13, 115 (2020)
  2. Effect of chemical substitution on the skyrmion phase in Cu 2 OSeO 3
    Neves, P.M., Gilbert, D.A., Ran, S., Liu, I.-L., Saha, S., Collini, J., Bleuel, M., Paglione, J., Borchers, J.A., and Butch, N.P., Phys. Rev. B 102, 134410 (2020)
  3. Capillary RheoSANS: measuring the rheology and nanostructure of complex fluids at high shear rates
    Murphy, R.P., Riedel, Z.W., Nakatani, M.A., Salipante, P.F., Weston, J.S., Hudson, S.D., and Weigandt, K.M., Soft Matter 16, 6285–6293 (2020)
  4. Neutron diffraction structural study of CO 2 binding in mixed-metal CPM-200 metal–organic frameworks
    Campanella, A.J., Trump, B.A., Gosselin, A.J., Bloch, E.D., and Brown, C.M., Chem. Commun. 56, 2574–2577 (2020)

2019

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  1. Extreme magnetic field-boosted superconductivity
    Ran, S., Liu, I.-L., Eo, Y.S., Campbell, D.J., Neves, P.M., Fuhrman, W.T., Saha, S.R., Eckberg, C., Kim, H., Graf, D., Balakirev, F., Singleton, J., Paglione, J., and Butch, N.P., Nat. Phys. (2019)
  2. Correlation of cation deficiency and nanostructure to decreased magnetism in a ferroelectric BiMnO 3 film
    Pajerowski, D.M., Krayer, L.A., Jeen, H., Borchers, J.A., Biswas, A., and Ravel, B., Journal of Applied Physics 126, 085303 (2019)
  3. Nearly ferromagnetic spin-triplet superconductivity
    Ran, S., Eckberg, C., Ding, Q.-P., Furukawa, Y., Metz, T., Saha, S.R., Liu, I.-L., Zic, M., Kim, H., Paglione, J., and Butch, N.P., Science 365, 684–687 (2019)
  4. “NBSR Virtual Reality Training Simulator” Sahin, Dagistan, ., Stakhovsky, Kirill, ., and Cavazos, Omar, ., in Nuclear Plant Instrumentation Control, and Human-machine Interfact Technologies International Topical Meeting 11TH 2019. (3 VOLS) (NPIC & HMIT 2019), (Orlando, FL, 2019), pp. 142–149
  5. Precipitating ordered skyrmion lattices from helical spaghetti and granular powders
    Gilbert, D.A., Grutter, A.J., Neves, P.M., Shu, G.-J., Zimanyi, G., Maranville, B.B., Chou, F.-C., Krycka, K., Butch, N.P., Huang, S., and Borchers, J.A., Phys. Rev. Materials 3, 014408 (2019)

2018

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  1. Pulsed laser deposition films from a Ba 2 FeMoO 6 target onto SrTiO 3 [001]: Chemical and magnetic inhomogeneity
    Pajerowski, D.M., Krayer, L.J., Kirby, B.J., Maranville, B.B., Borchers, J.A., Kim, K.-W., and Norton, D.P., Journal of Applied Physics 124, 163903 (2018)
  2. Mechanical control of crystal symmetry and superconductivity in Weyl semimetal MoTe 2
    Heikes, C., Liu, I.-L., Metz, T., Eckberg, C., Neves, P., Wu, Y., Hung, L., Piccoli, P., Cao, H., Leao, J., Paglione, J., Yildirim, T., Butch, N.P., and Ratcliff, W., Phys. Rev. Materials 2, 074202 (2018)
  3. Relaxation dynamics of saturated and unsaturated oriented lipid bilayers
    Nanda, H., García Sakai, V., Khodadadi, S., Tyagi, M.S., Schwalbach, E.J., and Curtis, J.E., Soft Matter 14, 6119–6127 (2018)
  4. Structure-property relationships at Nafion thin-film interfaces: Thickness effects on hydration and anisotropic ion transport
    DeCaluwe, S.C., Baker, A.M., Bhargava, P., Fischer, J.E., and Dura, J.A., Nano Energy 46, 91–100 (2018)

2017

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  1. Pressure tuning of collapse of helimagnetic structure in Au 2 Mn
    Liu, I.-L., Pascale, M.J., Leao, J.B., Brown, C.M., Ratcliff, W.D., Huang, Q., and Butch, N.P., Phys. Rev. B 96, 184429 (2017)
  2. Irreversible aggregation of silica colloidal particles in binary solvent of 2,6-lutidine and water
    Wang, Z., Guo, H., Borner, K., and Liu, Y., Il Nuovo Cimento C 1 (2017)
  3. Nanoscopic length scale dependence of hydrogen bonded molecular associates’ dynamics in methanol
    Bertrand, C.E., Self, J.L., Copley, J.R.D., and Faraone, A., The Journal of Chemical Physics 146, 194501 (2017)
  4. Integrating Sudo-Kaminaga Correlation to the Safety Analysis Code PARET-ANL
    Leos, R., Wu, Z., Williams, R.E., and Yang, X., Transactions of the American Nuclear Society 116, 1369 (2017)
  5. Combined Monte Carlo/torsion-angle molecular dynamics for ensemble modeling of proteins, nucleic acids and carbohydrates
    Zhang, W., Howell, S.C., Wright, D.W., Heindel, A., Qiu, X., Chen, J., and Curtis, J.E., Journal of Molecular Graphics and Modelling 73, 179–190 (2017)

2016

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  1. Bayesian method for the analysis of diffraction patterns using BLAND
    Lesniewski, J.E., Disseler, S.M., Quintana, D.J., Kienzle, P.A., and Ratcliff, W.D., J Appl Cryst 49, 2201–2209 (2016)
  2. Mixed Ionic/Electronic Conducting Surface Layers Adsorbed on Colloidal Silica for Flow Battery Applications
    Richards, J.J., Scherbarth, A.D., Wagner, N.J., and Butler, P.D., ACS Appl. Mater. Interfaces 8, 24089–24096 (2016)
  3. Dynamic signature of molecular association in methanol
    Bertrand, C.E., Self, J.L., Copley, J.R.D., and Faraone, A., The Journal of Chemical Physics 145, 014502 (2016)
  4. Feasibility Investigation of Application of MPACT to Core Design Studies of NBSR-2, a Heavy Water-Reflected, Heterogeneous LEU Fuel Research Reactor
    Eyers, B.D., Wu, Z., and Kochunas, B., Proceedings of the PHYSOR 2016 Meeting in Sun Valley, ID, May 2016. 1631 (2016)
  5. Energetics of MnO 2 polymorphs in density functional theory
    Kitchaev, D.A., Peng, H., Liu, Y., Sun, J., Perdew, J.P., and Ceder, G., Phys. Rev. B 93, 045132 (2016)
  6. Feasibility studies on a Hexagonal-Lattice Core for a World-Class Cold Neutron Source
    Prevost, D., Wu, Z., and Williams, R.E., Transactions of the American Nuclear Society 114, 671 (2016)

2015

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  1. Multiferroicity in doped hexagonal LuFe O 3
    Disseler, S.M., Luo, X., Gao, B., Oh, Y.S., Hu, R., Wang, Y., Quintana, D., Zhang, A., Huang, Q., Lau, J., Paul, R., Lynn, J.W., Cheong, S.-W., and Ratcliff, W., Phys. Rev. B 92, 054435 (2015)
  2. High-pressure neutron scattering of the magnetoelastic Ni-Cr Prussian blue analog
    Pajerowski, D.M., Conklin, S.E., Leão, J., Harriger, L.W., and Phelan, D., Phys. Rev. B 91, 094104 (2015)

2014

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  1. Structural and magnetic etch damage in CoFeB
    Krayer, L., Lau, J.W., and Kirby, B.J., Journal of Applied Physics 115, 17B751 (2014)
  2. A Novel Compact Core Design for Beam Tube Research Reactors
    Wu, Z., Carlson, M., Willliams, R.E., O'Kelly, S., and Rowe, J.M., Transactions of the American Nuclear Society 112, 795 (2014)
  3. Membrane protein resistance of oligo(ethylene oxide) self-assembled monolayers
    Vaish, A., Vanderah, D.J., Vierling, R., Crawshaw, F., Gallagher, D.T., and Walker, M.L., Colloids and Surfaces B: Biointerfaces 122, 552–558 (2014)
  4. Phase segregation of sulfonate groups in Nafion interface lamellae, quantified via neutron reflectometry fitting techniques for multi-layered structures
    DeCaluwe, S.C., Kienzle, P.A., Bhargava, P., Baker, A.M., and Dura, J.A., Soft Matter 10, 5763–5776 (2014)

2013

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  1. Concurrent zero-dimensional and one-dimensional biomineralization of gold from a solution of Au 3+ and bovine serum albumin
    Hartings, M.R., Benjamin, N., Briere, F., Briscione, M., Choudary, O., Fisher, T.L., Flynn, L., Ghias, E., Harper, M., Khamis, N., Koenigsknecht, C., Lazor, K., Moss, S., Robbins, E., Schultz, S., Yaman, S., Haverhals, L.M., Trulove, P.C., De Long, H.C., Miller, A.E., and Fox, D.M., Science and Technology of Advanced Materials 14, 065004 (2013)

2012

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  1. Optimization of Spin-Triplet Supercurrent in Ferromagnetic Josephson Junctions
    Klose, C., Khaire, T.S., Wang, Y., Pratt, W.P., Birge, N.O., McMorran, B.J., Ginley, T.P., Borchers, J.A., Kirby, B.J., Maranville, B.B., and Unguris, J., Phys. Rev. Lett. 108, 127002 (2012)
  2. Demagnetization in photomagnetic films
    Pajerowski, D.M. and Hallock, S.J., Journal of Magnetism and Magnetic Materials 324, 1818–1821 (2012)
  3. X-ray structural studies of Prussian blue analog heterostructures on poly(ethylene terephthalate) supports
    Pajerowski, D.M., Zakrzewski, B.M., and Ravel, B., Thin Solid Films 526, 34–40 (2012)
  4. A robust and high-throughput measurement platform for monomer reactivity ratios from surface-initiated polymerization
    Patton, D.L., Page, K.A., Hoff, E.A., Fasolka, M.J., and Beers, K.L., Polym. Chem. 3, 1174 (2012)
  5. SASSIE: A program to study intrinsically disordered biological molecules and macromolecular ensembles using experimental scattering restraints
    Curtis, J.E., Raghunandan, S., Nanda, H., and Krueger, S., Computer Physics Communications 183, 382–389 (2012)

2011

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  1. Phase separation and superconductivity in Fe1+xTe0.5Se0.5
    Bhatia, V., Rodriguez, E.E., Butch, N.P., Paglione, J., and Green, M.A., Chem. Commun. 47, 11297 (2011)
  2. Magnetization reversal mechanisms in Heusler alloy spin valves
    Ginley, T.P., Borchers, J.A., Kirby, B.J., Dennis, C.L., Carey, M.J., and Childress, J.R., Journal of Applied Physics 109, 07B110 (2011)
  3. Atomistic Ensemble Modeling and Small-Angle Neutron Scattering of Intrinsically Disordered Protein Complexes: Applied to Minichromosome Maintenance Protein
    Krueger, S., Shin, J.-H., Raghunandan, S., Curtis, J.E., and Kelman, Z., Biophysical Journal 101, 2999–3007 (2011)
  4. HIV-1 Gag Extension: Conformational Changes Require Simultaneous Interaction with Membrane and Nucleic Acid
    Datta, S.A.K., Heinrich, F., Raghunandan, S., Krueger, S., Curtis, J.E., Rein, A., and Nanda, H., Journal of Molecular Biology 406, 205–214 (2011)
  5. Micro-channel development and hydrogen adsorption properties in templated microporous carbons containing platinum nanoparticles
    Yang, Y., Brown, C.M., Zhao, C., Chaffee, A.L., Nick, B., Zhao, D., Webley, P.A., Schalch, J., Simmons, J.M., Liu, Y., Her, J.-H., Buckley, C.E., and Sheppard, D.A., Carbon 49, 1305–1317 (2011)

2009

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  1. A New Lipid Anchor for Sparsely Tethered Bilayer Lipid Membranes
    Heinrich, F., Ng, T., Vanderah, D.J., Shekhar, P., Mihailescu, M., Nanda, H., and Lösche, M., Langmuir 25, 4219–4229 (2009)

2008

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  1. Probing the Effect of Structural Roughness on Domain Wall Formation in Spin Valves Using the Offspecular Reflectivity Technique
    Jun Park, ., Watson, S.M., Furjanic, C.M., Draganova, D.K., Carey, M.J., Borchers, J.A., Chih-Yung Chen, ., Sparks, P.D., and Eckert, J.C., IEEE Trans. Magn. 44, 2839–2841 (2008)
  2. Thickness of the pinned layer as a controlling factor in domain wall formation during training in IrMn-based spin valves
    Park, J., Watson, S.M., Furjanic, C.M., Draganova, D.K., Eisenberg, S.D., Tighe, D.J., Kienzle, P.A., Carey, M.J., Borchers, J.A., Sparks, P.D., and Eckert, J.C., Journal of Applied Physics 103, 07C111 (2008)
  3. The design of a bismuth-based auxiliary filter for the removal of spurious background scattering associated with filter-analyzer neutron spectrometers
    Udovic, T.J., Brown, C.M., Leão, J.B., Brand, P.C., Jiggetts, R.D., Zeitoun, R., Pierce, T.A., Peral, I., Copley, J.R.D., Huang, Q., Neumann, D.A., and Fields, R.J., Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment 588, 406–413 (2008)

2007

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  1. Determination of Complex Magnetic Structures From Polarized Neutron Reflectivity Data by Flexible Modeling of Depth-Dependent Vector Magnetization
    Mont, A.D., Kienzle, P.A., Watson, S.M., Borchers, J.A., Eckert, J., Sparks, P., Moyerman, S., and Carey, M.J., IEEE Trans. Magn. 43, 3346–3348 (2007)

2006

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  1. Magnetic structure variations during giant magnetoresistance training in spin valves with picoscale antiferromagnetic layers
    Moyerman, S., Eckert, J.C., Borchers, J.A., Perdue, K.L., Doucet, M., Sparks, P.D., and Carey, M.J., Journal of Applied Physics 99, 08R505 (2006)
  2. Ferromagnetic Relaxation in Spin Valves With Picoscale Antiferromagnetic Layers
    Moyerman, S.M., Gannett, W., Borchers, J.A., Doucet, M., Carey, M.J., Sparks, P.D., and Eckert, J.C., IEEE Trans. Magn. 42, 2630–2632 (2006)
  3. Magnetic Reversal Mechanisms in Spin Valves with Pico-Scale Antiferromagnetic Layers
    Moyerman, S., Borchers, J., Gannett, W., Doucet, M., Sparks, P., and Eckert, J.C., in (IEEE, 2006), pp. 619–619
  4. Dynamics of ammonia borane using neutron scattering
    Brown, C.M., Jacques, T.L., Hess, N.J., Daemen, L.L., Mamontov, E., Linehan, J.C., Stowe, A.C., and Autrey, T., Physica B: Condensed Matter 385-386, 266–268 (2006)

2005

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  1. LORES: Low resolution shape program for the calculation of small angle scattering profiles for biological macromolecules in solution
    Zhou, J., Deyhim, A., Krueger, S., and Gregurick, S.K., Computer Physics Communications 170, 186–204 (2005)

2002

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  1. Parallel processing for Rietveld refinement
    Zeitler, T.R. and Toby, B.H., J Appl Cryst 35, 191–195 (2002)
  2. A glyph toolbox for immersive scientific visualization
    Bullen, H.W.I., Chang, J.S., Harn, A.V., Kelly, S.P., Satterfield, S.G., Ketcham, P.M., and Devaney, J.E., A Glyph Toolbox for Immersive Scientific Visualization (National Institute of Standards and Technology, Gaithersburg, MD, 2002)