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Draft Final Program · 245th ACS National Meeting, New Orleans, LA ...

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<strong>Draft</strong> <strong>Final</strong> <strong>Program</strong> <strong>·</strong> <strong>245th</strong> <strong>ACS</strong> <strong>National</strong> <strong>Meeting</strong>, <strong>New</strong> <strong>Orleans</strong>, <strong>LA</strong> <strong>·</strong> Ca... http://abstracts.acs.org/chem/245nm/mmadmin/index.php?content_name=...<br />

CO2 Capture, Sequestration, Conversion and Utilization<br />

Solar-Drive CO2 Reduction, Reduction and Conversion<br />

Y. Li, F. Li, Organizers, Presiding<br />

1:10 Introductory Remarks.<br />

1:15 264. Solar thermal electrochemical process: A fast-track to decrease atmospheric carbon dioxide. S. Licht, J. Lau,<br />

J. Stuart, B. Cui, B. Wang<br />

1:55 265. Towards solar thermochemical CO2 capture. L. Matthews, L. Yue, P. P. Ebner, W. Lipinski<br />

2:25 266. Solar-based thermochemical conversion of CO2 to CO. A. McDaniel, M. Allendorf, J. Scheffe, D. Arifin, A.<br />

Weimer, A. Ambrosini, E. Coker, I. Ermanoski, J. Miller<br />

2:55 Intermission.<br />

3:05 267. Facile development of platinized TiO2 thin films by gas phase deposition methods for CO2 photoreduction. W.<br />

Wang, W. An, B. Ramalingam, S. Mukherjee, D. M. Niedzwiedzki, S. Gangopadhyay, P. Biswas<br />

3:35 268. CO2 binding on titania nanostructures. K. C. Schwartzenberg, K. A. Gray<br />

4:05 269. Photocatalytic reduction of CO2 with H2O to solar fuels using TiO2-based nanocomposites. L. Liu, H. Zhao, Q.<br />

Zhang, Y. Li<br />

4:35 270. Photoreduction of carbon dioxide to methanol using a homogeneous pyridinium catalyst and a ruthenium<br />

polypyridyl chromophore. D. J. Boston, C. Xu, D. W. Armstrong, F. M. MacDonnell<br />

5:00 271. Reduction of cerium dioxide in an aerosol tubular reactor for the thermal dissociation of CO2 and H2O. J. R.<br />

Scheffe, M. Welte, A. Steinfeld<br />

Morial Convention Center<br />

226<br />

Theory and Simulation in Energy and Fuel Production and Utilization<br />

P. Hu, Organizer<br />

Q. Ge, Organizer, Presiding<br />

1:00 Introductory Remarks.<br />

1:05 272. Towards first-principles electrochemistry. N. Marzari, O. Andreussi, I. Dabo, C. Dupont, N. Bonnet<br />

1:45 273. Towards atomic scale modeling of the electrochemical interface. J. Rosmmeisl<br />

2:15 274. Towards a first-principles modeling of electrochemical electrode-electrolyte interfaces. A. Gross<br />

2:45 275. Simulating charge transfer in fullerenes and oxide materials. J. Blumberger, F. Gajdos, H. Oberhofer, M.<br />

Dupuis, K. McKenna<br />

3:15 Intermission.<br />

Section D<br />

3:25 276. Application of first-principles statistical mechanics to elucidate the dynamics of electrodes for Li batteries. A.<br />

Van der Ven<br />

4:05 277. DFT design and study of lithium-ion battery electrolytes and anode. E. G. Leggesse, J. Jiang<br />

4:35 278. Kinetics of Li2O2 formation/decomposition on nanoparticle Au/graphene in Li-air battery. J. Liu, X. Ren<br />

Section E<br />

21 of 61 1/27/2013 5:06 PM

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