Publication Beamlines Strategic Pillar
Black, Gillian; Cui, Xiaoyu; Gorovikov, Sergey; He, Feizhu; Henneberg, Grant et al. (2019). EUV Stokes reflection polarimeter using gold coated mirrors for use up to 150 eV photon energy. . 10.1117/12.2528826. QMSC, VLS-PGM Materials
Blaikie, T.; Shi, Y.; Tam, M. C.; Moreno, B. D.; Wasilewski, Z. R. et al. (2024). Novel 3D reciprocal space visualization of strain relaxation in InSb on GaAs substrates. Journal of Vacuum Science and Technology A: Vacuum. Surfaces and Films 42(3) . 10.1116/6.0003455. BXDS-IVU Materials
Blanchard, Peter E.R.; Cavell, Ronald G.; Mar, Arthur (2010). Electronic structure of ZrCuSiAs and ZrCuSiP by X-ray photoelectron and absorption spectroscopy. Journal of Solid State Chemistry 183(7) , 1536-1544. 10.1016/j.jssc.2010.04.032. SXRMB, VLS-PGM Materials
Blanchard, Peter E.R.; Cavell, Ronald G.; Mar, Arthur (2010). Effects of rare-earth substitution in the oxyarsenides REFeAsO (RE=Ce, Pr, Nd, Sm, Gd) and CeNiAsO by X-ray photoelectron and absorption spectroscopy. Journal of Solid State Chemistry 183(7) , 1477-1483. 10.1016/j.jssc.2010.04.010. VLS-PGM Materials
Blanchard, Peter E.R.; Cavell, Ronald G.; Mar, Arthur (2010). Electronic structure of ZrCuSiAs and ZrCuSiP by X-ray photoelectron and absorption spectroscopy. Journal of Solid State Chemistry 183(7) , 1536-1544. 10.1016/j.jssc.2010.04.032. SXRMB, VLS-PGM Materials
Blanton, Alicia; Islam, Taohedul; Roy, Subrata Chandra; Celik, Ahmet; Nie, Jing et al. (2023). Porous Semiconducting K–Sn–Mo–S Aerogel: Synthesis, Local Structure, and Ion-Exchange Properties. Chemistry of Materials 35(24) , 10446-10456. 10.1021/acs.chemmater.3c01675. BIOXAS-SPECTROSCOPY, VESPERS Materials
Blanton, Alicia; Islam, Taohedul; Roy, Subrata Chandra; Celik, Ahmet; Nie, Jing et al. (2023). Porous Semiconducting K–Sn–Mo–S Aerogel: Synthesis, Local Structure, and Ion-Exchange Properties. Chemistry of Materials 35(24) , 10446-10456. 10.1021/acs.chemmater.3c01675. BIOXAS-SPECTROSCOPY, VESPERS Materials
Bluschke, Martin (2020). Introduction to Antiferromagnetism in Ultrathin Nickelate Layers. , 105-117. 10.1007/978-3-030-47902-2_6. REIXS Materials
Bluschke, Martin; Gupta, Naman K.; Jang, Hoyoung; Husain, Ali. A.; Lee, Byungjune et al. (2024). Orbital-selective time-domain signature of nematicity dynamics in the charge-density-wave phase of La 1.65 Eu 0.2 Sr 0.15 CuO 4. Proceedings of the National Academy of Sciences of the United States of America 121(23) . 10.1073/pnas.2400727121. REIXS Materials
Boateng, Emmanuel; McGuire, Cameron; Xu, Ruzhen; Jiang, De-Tong; Chen, Aicheng et al. (2024). Effects of Heteroatom Doping on the Electrochemical Hydrogen Uptake and Release of Pd-Decorated Reduced Graphene Oxide. ACS Applied Materials and Interfaces 16(36) , 47703-47712. 10.1021/acsami.4c10351. HXMA Materials
Boateng, Emmanuel; van der Zalm, Joshua; Burns, Nicholas; Chow, Darren; Kycia, Stefan et al. (2023). Tunable Electrochemical Hydrogen Uptake and Release of Nitrogen-Doped Reduced Graphene Oxide Nanosheets Decorated with Pd Nanoparticles. ACS Applied Nano Materials 6(18) , 17311-17323. 10.1021/acsanm.3c03763. BXDS-WHE Materials
Boesenberg, Ulrike; Marcus, Matthew A.; Shukla, Alpesh K.; Yi, Tanghong; McDermott, Eamon et al. (2014). Asymmetric pathways in the electrochemical conversion reaction of NiO as battery electrode with high storage capacity. Scientific Reports 4(1) , 7133. 10.1038/srep07133. VLS-PGM Materials
BoHoon Kim (2015). Tribological Performance of Ashless Anti-wear Additives under Extreme Pressure. Supervisor: Aswath, Pranesh B. Arlington, Texas, USA: University of Texas at Arlington. . SGM, SXRMB, VLS-PGM Materials
BoHoon Kim (2015). Tribological Performance of Ashless Anti-wear Additives under Extreme Pressure. Supervisor: Aswath, Pranesh B. Arlington, Texas, USA: University of Texas at Arlington. . SGM, SXRMB, VLS-PGM Materials
BoHoon Kim (2015). Tribological Performance of Ashless Anti-wear Additives under Extreme Pressure. Supervisor: Aswath, Pranesh B. Arlington, Texas, USA: University of Texas at Arlington. . SGM, SXRMB, VLS-PGM Materials