Work with academic experts in nuclear energy and engineering

A scholar or researcher with expertise in nuclear energy and engineering can help business and industrial clients solve their nuclear energy and engineering problems and conduct nuclear energy and engineering research to get ahead on R&D. Experts on NotedSource with backgrounds in nuclear energy and engineering include Michael Hickner, Yuan Yang, Mengying Li, and Christophe Schinckus.

Michael Hickner

Michigan State University
Most Relevant Research Interests
Nuclear Energy and Engineering
Other Research Interests (48)
polymers : 3D printing : materials chemistry : energy : water
Colloid and Surface Chemistry
Biochemistry
General Chemistry
Catalysis
And 43 more
About
Most Relevant Publications (8+)

217 total publications

Anion-exchange membranes in electrochemical energy systems

Energy Environ. Sci. / Jan 01, 2014

Varcoe, J. R., Atanassov, P., Dekel, D. R., Herring, A. M., Hickner, M. A., Kohl, Paul. A., Kucernak, A. R., Mustain, W. E., Nijmeijer, K., Scott, K., Xu, T., & Zhuang, L. (2014). Anion-exchange membranes in electrochemical energy systems. Energy Environ. Sci., 7(10), 3135–3191. https://doi.org/10.1039/c4ee01303d

Tuning the properties of poly(2,6-dimethyl-1,4-phenylene oxide) anion exchange membranes and their performance in H2/O2 fuel cells

Energy & Environmental Science / Jan 01, 2018

Liu, L., Chu, X., Liao, J., Huang, Y., Li, Y., Ge, Z., Hickner, M. A., & Li, N. (2018). Tuning the properties of poly(2,6-dimethyl-1,4-phenylene oxide) anion exchange membranes and their performance in H2/O2 fuel cells. Energy & Environmental Science, 11(2), 435–446. https://doi.org/10.1039/c7ee02468a

The balance of electric field and interfacial catalysis in promoting water dissociation in bipolar membranes

Energy & Environmental Science / Jan 01, 2018

Yan, Z., Zhu, L., Li, Y. C., Wycisk, R. J., Pintauro, P. N., Hickner, M. A., & Mallouk, T. E. (2018). The balance of electric field and interfacial catalysis in promoting water dissociation in bipolar membranes. Energy & Environmental Science, 11(8), 2235–2245. https://doi.org/10.1039/c8ee01192c

Using a vapor-fed anode and saline catholyte to manage ion transport in a proton exchange membrane electrolyzer

Energy & Environmental Science / Jan 01, 2021

Rossi, R., Hall, D. M., Shi, L., Cross, N. R., Gorski, C. A., Hickner, M. A., & Logan, B. E. (2021). Using a vapor-fed anode and saline catholyte to manage ion transport in a proton exchange membrane electrolyzer. Energy & Environmental Science, 14(11), 6041–6049. https://doi.org/10.1039/d1ee02265b

Using reverse osmosis membranes to control ion transport during water electrolysis

Energy & Environmental Science / Jan 01, 2020

Shi, L., Rossi, R., Son, M., Hall, D. M., Hickner, M. A., Gorski, C. A., & Logan, B. E. (2020). Using reverse osmosis membranes to control ion transport during water electrolysis. Energy & Environmental Science, 13(9), 3138–3148. https://doi.org/10.1039/d0ee02173c

Neutral hydrophilic cathode catalyst binders for microbial fuel cells

Energy Environ. Sci. / Jan 01, 2011

Saito, T., Roberts, T. H., Long, T. E., Logan, B. E., & Hickner, M. A. (2011). Neutral hydrophilic cathode catalyst binders for microbial fuel cells. Energy Environ. Sci., 4(3), 928–934. https://doi.org/10.1039/c0ee00229a

Using microbial desalination cells to reduce water salinity prior to reverse osmosis

Energy & Environmental Science / Jan 01, 2010

Mehanna, M., Saito, T., Yan, J., Hickner, M., Cao, X., Huang, X., & Logan, B. E. (2010). Using microbial desalination cells to reduce water salinity prior to reverse osmosis. Energy & Environmental Science, 3(8), 1114. https://doi.org/10.1039/c002307h

Simplified models for predicting the onset of liquid water droplet instability at the gas diffusion layer/gas flow channel interface

International Journal of Energy Research / Jan 01, 2005

Chen, K. S., Hickner, M. A., & Noble, D. R. (2005). Simplified models for predicting the onset of liquid water droplet instability at the gas diffusion layer/gas flow channel interface. International Journal of Energy Research, 29(12), 1113–1132. https://doi.org/10.1002/er.1143

Yuan Yang

Assistant Professor at Columbia University
Most Relevant Research Interests
Nuclear Energy and Engineering
Other Research Interests (46)
General Medicine
General Energy
Colloid and Surface Chemistry
Biochemistry
General Chemistry
And 41 more
About
Most Relevant Publications (4+)

142 total publications

Heteropoly acid functionalized fluoroelastomer with outstanding chemical durability and performance for vehicular fuel cells

Energy & Environmental Science / Jan 01, 2018

Motz, A. R., Kuo, M.-C., Horan, J. L., Yadav, R., Seifert, S., Pandey, T. P., Galioto, S., Yang, Y., Dale, N. V., Hamrock, S. J., & Herring, A. M. (2018). Heteropoly acid functionalized fluoroelastomer with outstanding chemical durability and performance for vehicular fuel cells. Energy & Environmental Science, 11(6), 1499–1509. https://doi.org/10.1039/c8ee00545a

A membrane-free lithium/polysulfide semi-liquid battery for large-scale energy storage

Energy & Environmental Science / Jan 01, 2013

Yang, Y., Zheng, G., & Cui, Y. (2013). A membrane-free lithium/polysulfide semi-liquid battery for large-scale energy storage. Energy & Environmental Science, 6(5), 1552. https://doi.org/10.1039/c3ee00072a

Rechargeable Li–O2 batteries with a covalently coupled MnCo2O4–graphene hybrid as an oxygen cathode catalyst

Energy & Environmental Science / Jan 01, 2012

Wang, H., Yang, Y., Liang, Y., Zheng, G., Li, Y., Cui, Y., & Dai, H. (2012). Rechargeable Li–O2 batteries with a covalently coupled MnCo2O4–graphene hybrid as an oxygen cathode catalyst. Energy & Environmental Science, 5(7), 7931. https://doi.org/10.1039/c2ee21746e

Nano-structured textiles as high-performance aqueous cathodes for microbial fuel cells

Energy & Environmental Science / Jan 01, 2011

Xie, X., Pasta, M., Hu, L., Yang, Y., McDonough, J., Cha, J., Criddle, C. S., & Cui, Y. (2011). Nano-structured textiles as high-performance aqueous cathodes for microbial fuel cells. Energy & Environmental Science, 4(4), 1293. https://doi.org/10.1039/c0ee00793e

Mengying Li

Assistant Professor at The Hong Kong Polytechnic University
Most Relevant Research Interests
Nuclear Energy and Engineering
Other Research Interests (28)
Electrical and Electronic Engineering
Instrumentation
General Materials Science
Renewable Energy, Sustainability and the Environment
Computer Science Applications
And 23 more
About
Most Relevant Publications (1+)

25 total publications

Multi-objective bi-level quantity regulation scheduling method for electric-thermal integrated energy system considering thermal and hydraulic transient characteristics

Energy Conversion and Management / Feb 01, 2022

Guo, S., Song, G., Li, M., Zhao, X., He, Y., Kurban, A., Ji, W., & Wang, J. (2022). Multi-objective bi-level quantity regulation scheduling method for electric-thermal integrated energy system considering thermal and hydraulic transient characteristics. Energy Conversion and Management, 253, 115147. https://doi.org/10.1016/j.enconman.2021.115147