Timothy F. Jamison

Timothy F. Jamison

Massachusetts Institute of Technology

H-index: 82

North America-United States

About Timothy F. Jamison

Timothy F. Jamison, With an exceptional h-index of 82 and a recent h-index of 48 (since 2020), a distinguished researcher at Massachusetts Institute of Technology, specializes in the field of Organic Chemistry, Catalysis, Continuous Flow Synthesis, Pharmaceutical Manufacturing.

His recent articles reflect a diverse array of research interests and contributions to the field:

Continuous-flow copper hydride-catalyzed reduction of 2, 1-benzoisoxazoles

Correction to “Toward a Practical, Nonenzymatic Process for Investigational COVID-19 Antiviral Molnupiravir from Cytidine: Supply-Centered Synthesis”

Multi-platform synthesis of ondansetron featuring process intensification in flow

Application of Chiral Transfer Reagents to Improve Stereoselectivity and Yields in the Synthesis of the Antituberculosis Drug Bedaquiline

Systems and methods for synthesizing chemical products, including active pharmaceutical ingredients

Synthesis of (±)-Emtricitabine and (±)-Lamivudine by Chlorotrimethylsilane–Sodium Iodide-Promoted Vorbrüggen Glycosylation

Diastereoselectivity is in the details: minor changes yield major improvements to the synthesis of bedaquiline

Fe (III)-Catalysis in Flow Enables Bimolecular Proton Transfer as an Alternative to Superelectrophiles in Carbonyl-Olefin Metathesis

Timothy F. Jamison Information

University

Position

___

Citations(all)

22612

Citations(since 2020)

10793

Cited By

16719

hIndex(all)

82

hIndex(since 2020)

48

i10Index(all)

213

i10Index(since 2020)

170

Email

University Profile Page

Massachusetts Institute of Technology

Google Scholar

View Google Scholar Profile

Timothy F. Jamison Skills & Research Interests

Organic Chemistry

Catalysis

Continuous Flow Synthesis

Pharmaceutical Manufacturing

Top articles of Timothy F. Jamison

Title

Journal

Author(s)

Publication Date

Continuous-flow copper hydride-catalyzed reduction of 2, 1-benzoisoxazoles

Reaction Chemistry & Engineering

Cristian Cavedon

Sarah Jane Mear

Austin Croke

Timothy F Jamison

2024

Correction to “Toward a Practical, Nonenzymatic Process for Investigational COVID-19 Antiviral Molnupiravir from Cytidine: Supply-Centered Synthesis”

Organic Process Research & Development

Vijayagopal Gopalsamuthiram

Appasaheb L Kadam

Jeffrey M Noble

David R Snead

Corshai Williams

...

2023/6/22

Multi-platform synthesis of ondansetron featuring process intensification in flow

Reaction Chemistry & Engineering

Yoshio Hato

Timothy F Jamison

2023

Application of Chiral Transfer Reagents to Improve Stereoselectivity and Yields in the Synthesis of the Antituberculosis Drug Bedaquiline

Organic Process Research & Development

Juliana MS Robey

Sanjay Maity

Sarah L Aleshire

Angshuman Ghosh

Ajay K Yadaw

...

2023/10/13

Systems and methods for synthesizing chemical products, including active pharmaceutical ingredients

2023/6/29

Synthesis of (±)-Emtricitabine and (±)-Lamivudine by Chlorotrimethylsilane–Sodium Iodide-Promoted Vorbrüggen Glycosylation

The Journal of Organic Chemistry

Sarah Jane Mear

Long V Nguyen

Ashley J Rochford

Timothy F Jamison

2022/1/14

Diastereoselectivity is in the details: minor changes yield major improvements to the synthesis of bedaquiline

Chemistry–A European Journal

Sarah Jane Mear

Tobias Lucas

Grace P Ahlqvist

Juliana MS Robey

Jule‐Philipp Dietz

...

2022/8/22

Fe (III)-Catalysis in Flow Enables Bimolecular Proton Transfer as an Alternative to Superelectrophiles in Carbonyl-Olefin Metathesis

Corinna Schindler

Ashlee Davis

Evan Ferry

Christopher Breen

Jianyu Zhai

...

2022/8/3

Bayesian optimization of computer-proposed multistep synthetic routes on an automated robotic flow platform

ACS Central Science

Anirudh MK Nambiar

Christopher P Breen

Travis Hart

Timothy Kulesza

Timothy F Jamison

...

2022/6/10

Towards a practical, non-enzymatic process for molnupiravir from cytidine

Vijayagopal Gopalsamuthiram

Appasaheb L Kadam

Jeffrey Noble

David Snead

Corshai Williams

...

2021/6/8

Design of dynamic trajectories for efficient and data-rich exploration of flow reaction design spaces

Reaction Chemistry & Engineering

Federico Florit

Anirudh MK Nambiar

Christopher P Breen

Timothy F Jamison

Klavs F Jensen

2021

Ready, set, flow! Automated continuous synthesis and optimization

Christopher P Breen

Anirudh MK Nambiar

Timothy F Jamison

Klavs F Jensen

2021/5/1

Toward a practical, nonenzymatic process for investigational COVID-19 antiviral molnupiravir from cytidine: Supply-centered synthesis

Organic Process Research & Development

Vijayagopal Gopalsamuthiram

Appasaheb L Kadam

Jeffrey M Noble

David R Snead

Corshai Williams

...

2023/6/22

Continuous flow strategies for using fluorinated greenhouse gases in fluoroalkylations

Wai Chung Fu

Preston M MacQueen

Timothy F Jamison

2021

Sistemas para a produção de um produto químico

2021/4/13

Reconfigurable multi-step chemical synthesis system and related components and methods

2021/11/30

Continuous dimethyldioxirane generation for polymer epoxidation

Polymer Chemistry

Grace P Ahlqvist

Eileen G Burke

Jeremiah A Johnson

Timothy F Jamison

2021

Progress toward a large-scale synthesis of molnupiravir (MK-4482, EIDD-2801) from cytidine

ACS omega

Grace P Ahlqvist

Catherine P McGeough

Chris Senanayake

Joseph D Armstrong

Ajay Yadaw

...

2021/4/8

Synthesis of rac-Emtricitabine and rac-Lamivudine by Chlorotrimethylsilane-Sodium Iodide Promoted Vorbrüggen Glycosylation

Sarah Jane Mear

Long V Nguyen

Ashley J Rochford

Timothy F Jamison

2021/11/5

Di-tert-butyl Phosphonate Route to the Antiviral Drug Tenofovir

Jule-Philipp Dietz

Dorota Ferenc

Timothy F Jamison

B Frank Gupton

Till Opatz

2021/2/11

See List of Professors in Timothy F. Jamison University(Massachusetts Institute of Technology)