2022 Swanson School Summary of Faculty Research

Page 49

CHEMICAL & PETROLEUM ENGINEERING 804 Benedum Hall | 3700 O’Hara Street | Pittsburgh, PA 15261

John A. Keith, PhD R.K. Mellon Faculty Fellow in Energy Associate Professor

P: 412-624-7016 jakeith@pitt.edu www.klic.pitt.edu

Keith Lab in Computational Catalysis John A. Keith is the R.K. Mellon Faculty Fellow in Energy, a tenure-track assistant professor in the Chemical and Petroleum Engineering Department in the Swanson School of Engineering. His research interests are in the first-principles based computational modeling of reaction mechanisms, Carbon Neutral Chemical and Fuel Generation: Our society heavily relies on energy dense liquid fuels, but there is a pressing need to sustainably produce carbon neutral liquid fuels (CNLFs). Several independent researchers have reported energetically efficient CO2 reduction (CO2R) into methanol, but there are many open questions about the mechanisms for these processes. Our group aims to elucidate if and how this chemistry can occur. Our central hypothesis is that that if hydrogen transfer agents can catalyze CO2R, they do so serendipitously in specific electrochemical environments that facilitate unsuspected modes of hydrogenation. Our technique is to computationally characterize (electro) chemical phase diagrams for hypothetical catalysts to identify thermodynamically accessible states at ambient conditions as well as energetically efficient reaction pathways.

particular those pertaining to homogeneous and heterogeneous catalytic transformations for energy and sustainability. Dr. Keith has ~20 years of experience in computational chemistry modeling atomic scale reaction mechanisms. Current research projects include:

Modeling Local Solvation Effects: Computationally modeling atomic scale chemical reaction mechanisms in solvents is very challenging. The reliable and robust schemes usually involve dynamics-based treatments with explicit solvation models that involve large numbers of electronic structure calculations. While such efforts can be very insightful, they can also bring very large computational costs and/or technical challenges that restrict their use in more complex systems. Our group is developing calculation schemes that can be used to better design environmentally green chelates and analyze local solvation effects in mixed composition ionic and molten solvents.

Funding: NSF, Pitt MCSI Recent publication: Y. Basdogan and J. A. Keith, “A paramedic treatment for modeling explicitly solvated chemical reaction mechanism,” Chem. Sci. 9 (2018) 5341

Accelerated Methods for High-Throughput Screening of Catalyst Sites: Density functional theory (DFT)-based investigations of hypothetical catalysts are too computationally demanding for wide searches across materials space. We have been developing fast and accurate computational methods to accelerate characterizations of reaction energies and barrier heights across diverse materials space. Funding: R. K. Mellon Foundation, Naval Research Lab Recent publication: K. Saravanan, J. R. Kitchin, O. A. von Lilienfeld, J. A. Keith, “Alchemical Predictions for Computational Catalysis: Potential and Limitations,” J. Phys. Chem. Lett., 2017, 8, 5002-5007.

Funding: ACS Petroleum Research Fund, NSF Recent publication: S. Ilic et al., “Thermodynamic Hydricities of Biomimetic Organic Hydride Donors,” J. Am. Chem. Soc. 140 (2018) 4569.

DEPARTMENT OF CHEMICAL AND PETROLEUM ENGINEERING

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Xiayun (Sharon) Zhao, PhD

37min
pages 133-154

Jörg M.K. Wiezorek, PhD

2min
page 131

Wei Xiong, PhD, D.Eng

1min
page 132

Guofeng Wang, PhD

2min
page 130

Jeffrey Vipperman, PhD

2min
page 129

Albert C. To, PhD

1min
page 128

Patrick Smolinski, PhD

1min
page 127

Inanc Senocak, PhD

1min
page 126

David Schmidt, PhD

2min
page 125

Ian Nettleship, PhD

2min
page 124

Scott X. Mao, PhD

2min
page 123

Jung-Kun Lee, PhD

3min
page 122

Tevis D. B. Jacobs, PhD

1min
page 121

William W. Clark, PhD

2min
page 118

Daniel G. Cole, PhD, PE

2min
page 119

Katherine Hornbostel, PhD

1min
page 120

Minking K. Chyu, PhD

2min
page 117

Heng Ban, PhD, PE

2min
page 115

Hessam Babaee, PhD

2min
page 114

Michael D. Sherwin, PhD, P.E

2min
pages 111-113

Markus Chmielus, PhD

1min
page 116

M. Ravi Shankar, PhD

2min
page 110

Amin Rahimian, PhD

1min
page 108

Jayant Rajgopal, PhD, P.E

2min
page 109

Lisa M. Maillart, PhD

2min
page 107

Paul W. Leu, PhD

1min
page 106

Daniel R. Jiang, PhD

1min
page 105

Oliver Hinder, PhD

2min
page 104

Joel M. Haight, PhD, P.E., CIH, CSP

2min
page 103

Renee M. Clark, PhD

2min
page 102

Karen M. Bursic, PhD

1min
page 100

Youngjae Chun, PhD

3min
page 101

Mary Besterfield-Sacre, PhD

2min
page 99

Minhee Yun, PhD

2min
pages 96-97

Mostafa Bedewy, PhD

1min
page 98

Nathan Youngblood, PhD

2min
page 95

Jun Yang, PhD

3min
page 94

Gregory F. Reed, PhD

3min
page 91

Feng Xiong, PhD

2min
page 93

Inhee Lee, PhD

2min
page 88

Guangyong Li, PhD

2min
page 89

Alexis Kwasinski, PhD

2min
page 87

Hong Koo Kim, PhD

2min
page 86

Alex K. Jones, PhD

3min
page 85

Brandon M. Grainger, PhD

2min
page 83

Alan D. George, PhD, FIEEE

2min
page 82

Masoud Barati, PhD

2min
page 81

Mai Abdelhakim, PhD

1min
page 80

Meng Wang, PhD

1min
pages 78-79

Radisav Vidic, PhD

2min
page 77

Julie M. Vandenbossche, PhD, PE

2min
page 76

Aleksandar Stevanovic, PhD, P.E., FASCE

2min
page 75

Piervincenzo Rizzo, PhD

2min
page 74

Xu Liang, PhD

2min
page 71

Jeen-Shang Lin, PhD, P.E

2min
page 72

Carla Ng, PhD

2min
page 73

Sarah Haig, PhD

2min
page 69

Lei Fang, PhD

3min
page 66

Andrew P. Bunger, PhD

2min
page 65

Alessandro Fascetti, PhD

2min
page 67

Melissa Bilec, PhD

2min
page 64

Judith C. Yang, PhD

2min
pages 61-63

Götz Veser, PhD

2min
page 59

Christopher E. Wilmer, PhD

1min
page 60

Sachin S. Velankar, PhD

2min
page 58

Tagbo Niepa, PhD

2min
page 55

Jason E. Shoemaker, PhD

1min
page 57

Giannis Mpourmpakis, PhD

2min
page 54

Badie Morsi, PhD

3min
page 53

James R. McKone, PhD

1min
page 52

Lei Li, PhD

1min
page 50

Steve R. Little, PhD

2min
page 51

John A. Keith, PhD

2min
page 49

J. Karl Johnson, PhD

2min
page 48

Susan Fullerton, PhD

2min
page 47

Robert M. Enick, PhD

2min
page 46

Eric J. Beckman, PhD

2min
page 45

Ipsita Banerjee, PhD

2min
page 44

Ioannis Zervantonakis, PhD

2min
pages 41-43

Savio L-Y. Woo, PhD, D.Sc., D.Eng

2min
page 40

Justin S. Weinbaum, PhD

1min
page 39

Jonathan Vande Geest, PhD

1min
page 37

David A. Vorp, PhD

2min
page 38

Sanjeev G. Shroff, PhD

2min
page 34

Gelsy Torres-Oviedo, PhD

3min
page 36

George Stetten, MD, PhD

2min
page 35

Joseph Thomas Samosky, PhD

2min
page 33

Warren C. Ruder, PhD

1min
page 32

Partha Roy, PhD

2min
page 31

Prashant N. Kumta, PhD

2min
page 27

Spandan Maiti, PhD

2min
page 29

Mark Redfern, PhD

2min
page 30

Patrick J. Loughlin, PhD

2min
page 28

Mangesh Kulkarni, PhD

1min
page 26

Takashi “TK” Kozai, PhD

2min
page 25

Katrina M. Knight, PhD

2min
page 24

Bistra Iordanova, PhD

1min
page 23

Alan D. Hirschman, PhD

1min
page 21

Mark Gartner, PhD

1min
page 20

William Federspiel, PhD

2min
page 18

Neeraj J. Gandhi, PhD

2min
page 19

Tamer S. Ibrahim, PhD

5min
page 22

Richard E. Debski, PhD

1min
page 17

Lance A. Davidson, PhD

2min
page 16

Rakié Cham, PhD

2min
page 13

Steven Abramowitch, PhD

2min
page 8

Moni Kanchan Datta, PhD

2min
page 15

Bryan N. Brown, PhD

1min
page 12

Kurt E. Beschorner, PhD

2min
page 10

Harvey Borovetz, PhD

1min
page 11

Aaron Batista, PhD

4min
page 9

Tracy Cui, PhD

2min
page 14
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