Results 131 to 140 of about 21,966 (276)
Theoretical Studies of Spectroscopy and Dynamics of Hydrated Electrons. [PDF]
, 2012 Aldrich J. E., Alfano J. C., Armbruster M., Asmis K. R., Assel M., Assel M., Assel M., Ayotte P., Bader J. S., Baletto F., Barnett R. N., Barnett R. N., Barnett R. N., Barnett R. N., Barnett R. N., Barnett R. N., Barnett R. N., Barnett R. N., Barnett R. N., Barnett R. N., Barnett R. N., Bartels D. M., Basco N., Becke A. D., Bedard-Hearn M. J., Ben-Amotz D., Berens P. H., Bernard W., Bittner E. R., Boero M., Boero M., Borgis D., Borgis D., Borgis D., Borgis D., Bovensiepen U., Bovensiepen U., Bragg A. E., Bragg A. E., Bratos S., Bratos S., Bratos S., Bratos S., Bronskill M. J., Buchner F., Campagnola P. J., Campagnola P. J., Car R., Cavanagh M. C., Chase W. J., Clark T., Coe J. V., Coe J. V., Coe J. V., Coe J. V., Coe J. V., Cohen M. H., Cohen-Tannoudji C., Copeland D. A., DeFusco A., Del Buono G. S., Del Buono G. S., Du Y., Ehrenfest P., Ehrler O. T., Feng D. F., Feng D.-F., Ferradini C., Feynman R. P., Fischer S. A., Fischer S. F., Frigato T., Fueki K., Fueki K., Fueki K., Fueki K., Gahl C., Gallicchio E., Garrett B. C., Gauduel Y., Goedecker S., Griffin G. B., Grimme S., Haberland H., Haberland H., Haberland H., Hack M. D., Hameka H. F., Hammer N. I., Hammer N. I., Hammer N. I., Han P., Hare P. M., Hart E. J., Hart E. J., Hart E. J., Herbert J. M., Herbert J. M., Herbert J. M., Herbert J. M., Herbert J. M., Herbert J. M., Iglev H., Jacobson L. D., Jacobson L. D., Jacobson L. D., Jacobson L. D., Jacobson L. D., Jasper A. W., Jonah C. D., Jordan K. D., Jordan K. D., Jorgensen W. L., Jortner J., Jortner J., Jortner J., Jou F.-Y., Jou F.-Y., Jou F.-Y., Kambhampati P., Kammrath A., Kaukonen H.-P., Kee T. W., Kenney-Wallace G. A., Keszei E., Keszei E., Kevan L., Kevan L., Khan A., Khan A., Khan A., Kim J., Kim K. S., Kim K. S., Kimura Y., Kiss P. T., Kloepfer J. A., Kloepfer J. A., Knapp M., Knapp M., Kong J., Kotler Z., Kraus C. A., Kubo R., Landau L., Landman U., Larsen R. E., Larsen R. E., Larsen R. E., Larsen R. E., Larsen R. E., Larsen R. E., Larsen R. E., Larsen R. E., Lee C. T., Lee S., Lehr L., Li B., Long F. H., Long F. H., László Turi, Ma L., Madarász Á., Madarász Á., Madarász Á., Makov G., Maroncelli M., Marsalek O., Marsalek O., Marsalek O., Marsalek O., Marx D., McGrath M. J., Meisel D., Migus A., Morrison M. A., Moskun A. C., Mosyak A. A., Motakabbir K. A., Motakabbir K. A., Motakabbir K. A., Murphrey T. H., Neria E., Neria E., Neumann S., Neumark D. M., Neumark D. M., Newton M. D., Newton M. D., Nicolas C., Nordlund D., Ogg R. A., Ogg R. A., Onda K., O’Reilly D. E., Paik D. H., Park I., Paz J. P., Paz J. P., Pechukas P., Perdew J. P., Peter J. Rossky, Pham V.-T., Pham V.-T., Phillips J. C., Prezhdo O. V., Prezhdo O. V., Prezhdo O. V., Prezhdo O. V., Pshenichnikov M. S., Rajagopal G., Rao B. K., Reed A. E., Reid P. J., Reimers J. R., Reimers J. R., Ren P. Y., Ren P. Y., Renault J. P., Rentzepis P. M., Rodriguez J., Rossky P. J., Ruff I., Sagar D. M., Schmidt J., Schmidt K. H., Schmidt K. H., Schnitker J., Schnitker J., Schnitker J., Schnitker J., Schnitker J., Schnitker J., Schwartz B. J., Schwartz B. J., Schwartz B. J., Schwartz B. J., Schwartz B. J., Schwartz B. J., Schwartz B. J., Serxner D., Sheu W.-S., Sheu W.-S., Sheu W.-S., Sheu W.-S., Shi X. L., Shin J.-W., Shiraishi H., Shkrob I., Shkrob I. A., Shkrob I. A., Shreve A. T., Siefermann K. R., Siefermann K. R., Silva C., Simonius M., Smallwood C. J., Sobolewski A. L., Sobolewski A. L., Sommerfeld T., Sommerfeld T., Sommerfeld T., Sommerfeld T., Sommerfeld T., Sprik M., Staib A., Staib A., Stein G., Stier W., Stratt R. M., Stähler J., Stähler J., Stähler J., Tachikawa H., Tang Y., Taub I. A., Tauber M. J., Tauber M. J., Tauber M. J., Tay K. A., Thaller A., Thirumalai D., Toukan K., Troullier N., Tully J. C., Tully J. C., Turi L., Turi L., Turi L., Turi L., Turi L., Turi L., Tuttle T. R., VandeVondele J., VandeVondele J., VandeVondele J., Vega C., Verlet J. R. R., Verlet J. R. R., Wallqvist A., Wallqvist A., Wallqvist A., Wang C.-R., Wang C.-R., Wang F., Wang F., Wang F., Weber J. M., Webster F., Webster F., Webster F. J., Weigend F., Weyl W., Wiesenfeld J. M., Williams C. F., Wolff R. K., Wong K. F., Wong K. F., Wong K. F., Wu G., Xu J., Yang C.-Y., Yokoyama K., Zappa F., Zeh H. D., Zhao J., Zharikov A. A., Zhu C. Y., Zimbrick J., Zurek W. H., Zurek W. H., Zurek W. H., Zurek W. H. +332 morecore +1 more sourceElectrochemical Behavior of Flame‐Sprayed Sc‐Doped AlCoCrFeMo High‐Entropy Alloy Coatings in 3.5% Sodium Chloride Solution
Advanced Engineering Materials, EarlyView.Scandium (Sc)‐doped AlCoCrFeMo HEA coatings are fabricated via flame spraying with 0.1, 0.3, and 0.5 wt% Sc additions. Among these, the HEA‐Sc0.3 coating exhibits the highest corrosion resistance, indicated by a more positive corrosion potential and lower current density.Pankaj Kumar, Akash Vyas, Mohammad Aatif Qazi, Nashit Jalal, Maria Ophelia Jarligo, Mostafa Yakout, Jing Liu, André McDonald +7 morewiley +1 more sourceAn Experimental High‐Throughput Approach for the Screening of Hard Magnet Materials
Advanced Engineering Materials, EarlyView.An entire workflow for the high‐throughput characterization and analysis of compositionally graded magnetic films is presented. Characterization protocols, data management tools and data analysis approaches are illustrated with test case Sm(Fe, V)12 based films.William Rigaut, Pierre Le Berre, Hamdi Jaballah, Lukas Fink, Victor Poline, Richard Haettel, Stéphane Grenier, Gilbert Chahine, Ewen Bellec, Guillaume Buatier, Wilfried Hortschitz, Santa Pile, Thomas Schrefl, Nils Blanc, Yuan Hong, Thibaut Devillers, Nora M. Dempsey +16 morewiley +1 more sourceNatural Bone‐Derived Ceramic Scaffolds Functionalized with Chitosan‐Gold, Chitosan‐Magnesium, and Chitosan‐Zinc for Enhanced Antibacterial Activity
Advanced Engineering Materials, EarlyView.This study reports the development of antibacterial ceramic scaffolds derived from natural bovine bone. The bones were processed through sequential boiling and hydrogen peroxide treatment to remove organic matter, producing porous, mineral‐rich scaffolds.Mohamad Hassan Taherian, Anh Thi Le, Anh Thi Van Le, Dung My Thi Dang, Tin Chanh Duc Doan, Chien Mau Dang, Martin Bolduc +6 morewiley +1 more sourceExploring Dipolar Dynamics and Ionic Transport in Metal‐Organic Frameworks: Experimental and Theoretical Insights
Advanced Functional Materials, EarlyView.In this study, the interplay of dipolar dynamics and ionic charge transport in MOF compounds is investigated. Synthesizing the novel structure CFA‐25 with integrated freely rotating dipolar groups, local and macroscopic effects, including interactions with Cs cations are explored.Ralph Freund, Arthur Schulz, Peter Lunkenheimer, Maryana Kraft, Thomas Bergler, Harald Oberhofer, Dirk Volkmer +6 morewiley +1 more source