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Ryan L. Hartman, Ph.D.

2006 University of Michigan, Ann Arbor, Ann Arbor, MI 
 2015- Chemical and Biomolecular Engineering New York University, New York, NY, United States 
Chemical Engineering
"Ryan L. Hartman"


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H Scott Fogler grad student 2006 University of Michigan
 (Zeolite dissolution phenomena.)
Klavs Flemming Jensen post-doc 2008-2010 MIT
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Rizkin BA, Hartman RL. (2020) Activation of homogenous polyolefin catalysis with a machine-assisted reactor laboratory-in-a-box (μAIR-LAB) Reaction Chemistry and Engineering. 5: 1450-1460
Rizkin BA, Shkolnik AS, Ferraro NJ, et al. (2020) Combining automated microfluidic experimentation with machine learning for efficient polymerization design Nature Machine Intelligence. 2: 200-209
Hartman RL. (2020) Flow chemistry remains an opportunity for chemists and chemical engineers Current Opinion in Chemical Engineering. 29: 42-50
Chen W, Guo T, Kapoor Y, et al. (2019) An automated microfluidic system for the investigation of asphaltene deposition and dissolution in porous media. Lab On a Chip
Rizkin BA, Popovic FG, Hartman RL. (2019) Review Article: Spectroscopic microreactors for heterogeneous catalysis Journal of Vacuum Science & Technology A. 37: 050801
Liu Y, Hartman RL. (2019) Reaction kinetics of a water-soluble palladium–β-cyclodextrin catalyst for a Suzuki–Miyaura cross-coupling in continuous flow Reaction Chemistry & Engineering. 4: 1341-1346
Chen W, Vashistha P, Yen A, et al. (2018) Asphaltenes Dissolution Mechanism Study by in Situ Raman Characterization of a Packed-Bed Microreactor with HZSM-5 Aluminosilicates Energy & Fuels. 32: 12205-12217
Chen W, Hartman RL. (2018) Methane Hydrate Intrinsic Dissociation Kinetics Measured in a Microfluidic System by Means of in Situ Raman Spectroscopy Energy & Fuels. 32: 11761-11771
Pinho B, Minsariya K, Yen A, et al. (2017) Role of HZSM-5 Aluminosilicates on Asphaltenes Deposition by High-Throughput in Situ Characterizations of a Microreservoir Energy & Fuels. 31: 11640-11650
Hu C, Yen A, Joshi N, et al. (2016) Packed-bed microreactors for understanding of the dissolution kinetics and mechanisms of asphaltenes in xylenes Chemical Engineering Science. 140: 144-152
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