Reginald E. Rogers, Ph.D.

Affiliations: 
2010 University of Michigan, Ann Arbor, Ann Arbor, MI 
Area:
Chemical Engineering
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"Reginald Rogers"
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Parents

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Michael J Solomon grad student 2010 University of Michigan
 (Assembly of colloidal crystals with well-characterized pair interaction potentials.)
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Publications

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Cresce AV, Russell SM, Borodin O, et al. (2016) Solvation behavior of carbonate-based electrolytes in sodium ion batteries. Physical Chemistry Chemical Physics : Pccp
Dichiara AB, Webber MR, Gorman WR, et al. (2015) Removal of copper ions from aqueous solutions via adsorption on carbon nanocomposites. Acs Applied Materials & Interfaces
Dichiara AB, Harlander SF, Rogers RE. (2015) Fixed bed adsorption of diquat dibromide from aqueous solution using carbon nanotubes Rsc Advances. 5: 61508-61512
Dichiara AB, Weinstein SJ, Rogers RE. (2015) On the Choice of Batch or Fixed Bed Adsorption Processes for Wastewater Treatment Industrial and Engineering Chemistry Research. 54: 8579-8586
Dichiara AB, Sherwood TJ, Benton-Smith J, et al. (2014) Free-standing carbon nanotube/graphene hybrid papers as next generation adsorbents. Nanoscale. 6: 6322-7
Dichiara AB, Webber MR, Rogers RE. (2014) Removal of Metal Ions and Organic Compounds from Aqueous Environments Using Versatile Carbon Nanotube/Graphene Hybrid Adsorbents Mrs Proceedings. 1752: 89-94
Dichiara AB, Benton-Smith J, Rogers RE. (2014) Enhanced adsorption of carbon nanocomposites exhausted with 2,4-dichlorophenoxyacetic acid after regeneration by thermal oxidation and microwave irradiation Environ. Sci.: Nano. 1: 113-116
Dichiara AB, Sherwood TJ, Rogers RE. (2013) Binder free graphene-single-wall carbon nanotube hybrid papers for the removal of polyaromatic compounds from aqueous systems Journal of Materials Chemistry A. 1: 14480
DiLeo RA, Ganter MJ, Thone MN, et al. (2013) Balanced approach to safety of high capacity silicon-germanium-carbon nanotube free-standing lithium ion battery anodes Nano Energy. 2: 268-275
Rogers RE, Clarke GM, Matthew ON, et al. (2013) Impact of microwave synthesis conditions on the rechargeable capacity of LiCoPO4 for lithium ion batteries Journal of Applied Electrochemistry. 43: 271-278
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