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Sinton Lab

  • Research
  • Publications
  • Team
  • Open Positions
  • David Sinton
  • Equipment
  • Contact
261. Rheological behavior of phase change slurries for thermal energy applications

2022

2022

261. Rheological behavior of phase change slurries for thermal energy applications

261. Rheological behavior of phase change slurries for thermal energy applications

McPhee, H., Soni, V., Saber, S., Zargartalebi, M., Riordon, J., Holmes, M., Toews, M., Sinton, D., Langmuir 39, 1, 129–141 (2022).

260. Copper/alkaline earth metal oxide interfaces for electrochemical CO2-to-alcohol conversion by selective hydrogenation

260. Copper/alkaline earth metal oxide interfaces for electrochemical CO2-to-alcohol conversion by selective hydrogenation

Xu, A., Hung, S.-F., Cao, A., Wang, Z., Karmodak, N., Huang, J. E., Yan, Y., Sedighian Rasouli, A., Ozden, A., Wu, F.-Y., Lin, Z.-Y., Tsai, H.-J., Lee, T.-J., Li, F., Luo, M., Wang, Y., Wang, X., Abed, J., Wang, Z., Nam, D.-H., Li, Y. C., Ip, A. H., Sinton, D., Dong, C., Sargent, E. H., Nature Catalysis 5, 12, 1081-1088 (2022).

259. High-Rate and Selective CO2 Electrolysis to Ethylene via Metal-Organic-Framework-Augmented CO2 Availability

259. High-Rate and Selective CO2 Electrolysis to Ethylene via Metal-Organic-Framework-Augmented CO2 Availability

Nam, D.-H., Shekhah, O., Ozden, A., McCallum, C., Li, F., Wang, X., Lum, Y., Lee, T., Li, J., Wicks, J., Johnston, A., Sinton, D., Eddaoudi, M., Sargent, E. H., Advanced Materials 34, 51, 2207088 (2022).

258. Permselective MOF-Based Gas Diffusion Electrode for Direct Conversion of CO2 from Quasi Flue Gas

258. Permselective MOF-Based Gas Diffusion Electrode for Direct Conversion of CO2 from Quasi Flue Gas

Al-Attas, T., Nabil, S. K., Zeraati, A. S., Shiran, H. S., Alkayyali, T., Zargartalebi, M., Tran, T., Marei, N. N., Al Bari, Md. A., Lin, H., Roy, S., Ajayan, P. M., Sinton, D., Shimizu, G., Kibria, M. G., ACS Energy Letters 8, 1, 107–115 (2022).

257. Thermophysical behavior of phase change slurries in the presence of charged particles

257. Thermophysical behavior of phase change slurries in the presence of charged particles

Saber, S., Zargartalebi, M., Soni, V., McPhee, H., Roostaie, M., Darzi, A., Riordon, J., Holmes, M., Toews, M., Sinton, D., Colloids and Surfaces A: Physicochemical and Engineering Aspects 653, 129967 (2022).

256. Bipolar membrane electrolyzers enable high single-pass CO2 electroreduction to multicarbon products

256. Bipolar membrane electrolyzers enable high single-pass CO2 electroreduction to multicarbon products

Xie, K., Miao, R. K., Ozden, A., Liu, S., Chen, Z., Dinh, C.-T., Huang, J. E., Xu, Q., Gabardo, C. M., Lee, G., Edwards, J. P., O’Brien, C. P., Boettcher, S. W., Sinton, D., Sargent, E. H., Nature Communications 13, 1, 3609 (2022).

255. High carbon utilization in CO2 reduction to multi-carbon products in acidic media

255. High carbon utilization in CO2 reduction to multi-carbon products in acidic media

Xie, Y., Ou, P., Wang, X., Xu, Z., Li, Y. C., Wang, Z., Huang, J. E., Wicks, J., McCallum, C., Wang, N., Wang, Y., Chen, T., Lo, B. T. W., Sinton, D., Yu, J. C., Wang, Y., Sargent, E. H., Nature Catalysis 5, 6, 564–570 (2022).

254. Eliminating the need for anodic gas separation in CO2 electroreduction systems via liquid-to-liquid anodic upgrading

254. Eliminating the need for anodic gas separation in CO2 electroreduction systems via liquid-to-liquid anodic upgrading

Xie, K., Ozden, A., Miao, R. K., Li, Y., Sinton, D., Sargent, E. H., Nature Communications 13, 1, 3070 (2022).

253. High-throughput parallelized testing of membrane electrode assemblies for CO2 reduction

253. High-throughput parallelized testing of membrane electrode assemblies for CO2 reduction

Kose, T., O’Brien, C., Wicks, J., Abed, J., Xiao, Y. C., Sutherland, B., Sarkar, A., Jaffer, S. A., Sargent, E. H., Sinton, D., Catalysis Science & Technology 12, 20, 6239-6245 (2022).

252. Toxicity of nanoplastics to zooplankton is influenced by temperature, salinity, and natural particulate matter

252. Toxicity of nanoplastics to zooplankton is influenced by temperature, salinity, and natural particulate matter

Lins, T. F., O’Brien, A. M., Kose, T., Rochman, C. M., Sinton, D., Environmental Science: Nano 9, 8, 2678–2690 (2022).

251. Carbon-efficient carbon dioxide electrolysers

251. Carbon-efficient carbon dioxide electrolysers

Ozden, A., García de Arquer, F. P., Huang, J. E., Wicks, J., Sisler, J., Miao, R. K., O’Brien, C. P., Lee, G., Wang, X., Ip, A. H., Sargent, E. H., Sinton, D., Nature Sustainability 5, 7, 563–573 (2022).

250. A microchanneled solid electrolyte for carbon-efficient CO2 electrolysis

250. A microchanneled solid electrolyte for carbon-efficient CO2 electrolysis

Xu, Y., Miao, R. K., Edwards, J. P., Liu, S., O’Brien, C. P., Gabardo, C. M., Fan, M., Huang, J. E., Robb, A., Sargent, E. H., Sinton, D., Joule 6, 6, 1333–1343 (2022).

249. Redox-mediated electrosynthesis of ethylene oxide from CO2 and water

249. Redox-mediated electrosynthesis of ethylene oxide from CO2 and water

Li, Y., Ozden, A., Leow, W. R., Ou, P., Huang, J. E., Wang, Y., Bertens, K., Xu, Y., Liu, Y., Roy, C., Jiang, H., Sinton, D., Li, C., Sargent, E. H., Nature Catalysis 5, 3, 185–192 (2022).

248. Past, Present, and Future of Microfluidic Fluid Analysis in the Energy Industry

248. Past, Present, and Future of Microfluidic Fluid Analysis in the Energy Industry

Abedini, A., Ahitan, S., Barikbin, Z., Soni, V., Ratulowski, J., Sinton, D., Energy & Fuels 36, 16, 8578–8590 (2022).

247. Efficient electrosynthesis of n-propanol from carbon monoxide using a Ag-Ru-Cu catalyst

247. Efficient electrosynthesis of n-propanol from carbon monoxide using a Ag-Ru-Cu catalyst

Wang, X., Ou, P., Ozden, A., Hung, S.-F., Tam, J., Gabardo, C. M., Howe, J. Y., Sisler, J., Bertens, K., García de Arquer, F. P., Miao, R. K., O’Brien, C. P., Wang, Z., Abed, J., Rasouli, A. S., Sun, M., Ip, A. H., Sinton, D., Sargent, E. H., Nature Energy 7, 2, 170-176 (2022).

246. Concentrated Ethanol Electrosynthesis from CO2 via a Porous Hydrophobic Adlayer

246. Concentrated Ethanol Electrosynthesis from CO2 via a Porous Hydrophobic Adlayer

Robb, A., Ozden, A., Miao, R. K., O’Brien, C. P., Xu, Y., Gabardo, C. M., Wang, X., Zhao, N., García de Arquer, F. P., Sargent, E. H., Sinton, D., ACS Applied Materials & Interfaces 14, 3, 4155-4162 (2022).

245. Nanoplastic State and Fate in Aquatic Environments: Multiscale Modeling

245. Nanoplastic State and Fate in Aquatic Environments: Multiscale Modeling

Lins, T. F., O’Brien, A. M., Zargartalebi, M., Sinton, D., Environmental Science & Technology 56, 7, 4017–4028 (2022).

244. Microplastics shift impacts of climate change on a plant-microbe mutualism: Temperature, CO2, and tire wear particles

244. Microplastics shift impacts of climate change on a plant-microbe mutualism: Temperature, CO2, and tire wear particles

O’Brien, A.M., Lins, T.F., Yang, Y., Frederickson, M.E., Sinton, D., Rochman, C.M., Environmental Research 203, 111727 (2022).

243. How to select ICSI-viable sperm from the most challenging samples

243. How to select ICSI-viable sperm from the most challenging samples

Nosrati, R., Sinton, D., Nature Reviews Urology 19, 3, 135–136 (2022).

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