FY2026 NIH awards · Principal investigators
Chemistry at University of Wisconsin-Madison
Madison, WI
- NIH names only the principal investigators on an award, so this page lists only them. The department is the award's: it is where ScienceDex counts the award, not a list of the department's members.
- These are the awards in the Chemistry row of the University of Wisconsin-Madison page.
Leads a grant in this department
16 contact PIs of these awards, by the funding they lead. Other principal investigators on an award are listed with it and under Co-investigators.
Randall H Goldsmith
Leads 1 award · $2,196,715
- 1R35GM162238-01Department: NIH department codeOptical microcavities for label-free single-molecule analysis of biomolecules$2,196,715award amount
Lloyd M Smith
Leads 3 awards · $1,144,627
- 5R35GM126914-09Department: NIH department codeRevealing Proteoforms: The Primary Effectors of Biological Function$621,738award amount
- 2R01CA193481-09Department: NIH department codeSequence-specific Hybridization Capture to Reveal the lncRNA Interactome in Prostate Cancer
Principal investigators: Lloyd M Smith (contact PI), David F. Jarrard
$418,570award amount - 3R35GM126914-09S1Department: NIH department codeRevealing Proteoforms: The Driving Effectors of Biological Function$104,319award amount
Tehshik P Yoon
Leads 2 awards · $1,005,334
- 5R35GM144129-05Department: NIH department codeSYNTHETIC PHOTOCHEMISTRY$576,351award amount
- 2R35GM144129-06Department: NIH department codeSYNTHETIC PHOTOCHEMISTRY$428,983award amount
Helen E. Blackwell
Leads 2 awards · $950,084
- 5T32GM152341-03Department: NIH department codeChemistry-Biology Interface Training Program$540,671award amount
- 5R35GM131817-07Department: NIH department codeChemical Strategies to Modulate Intercellular Bacterial Communication$409,413award amount
Samuel H. Gellman
Leads 1 award · $643,125
- 5R35GM151985-03Department: NIH department codeProcesses mediated by polypeptides$643,125award amount
Martin T Zanni
Leads 1 award · $633,533
- 5R01DK079895-20Department: NIH department codeStructural mechanism of diabetic amyloid formation$633,533award amount
Shannon S Stahl
Leads 1 award · $617,553
- 5R35GM134929-07Department: NIH department codeCatalytic Redox Reactions for Pharmaceutical Synthesis$617,553award amount
Zachary Kimble Wickens
Leads 2 awards · $607,513
- 5R01GM146063-05Department: NIH department codeNew precursors for diverse radical reactions enabled by potent photoreductants$305,122award amount
- 5R01GM149674-04Department: NIH department codeelectrochemical dication pool: a new strategy to couple alkenes and abundant nucleophiles$302,391award amount
Jennifer Marie Schomaker
Leads 1 award · $448,279
- 5R35GM152043-03Department: NIH department codeHarnessing divergent reactivities of unusual reactive intermediates as platforms to explore high Fsp3 amine chemical space$448,279award amount
Silvia Cavagnero
Leads 1 award · $429,203
- 1R35GM161252-01Department: NIH department codeMethod Development and Applications for the Hypersensitive High-Resolution Analysis of Biomolecular Structure, Dynamics and Interactions$429,203award amount
Eszter Boros
Leads 1 award · $416,311
- 2R01EB032349-06Department: NIH department codeHarnessing the Radiochelation Chemistry of Theranostic, Rare Earth Isotopes$416,311award amount
Xuhui Huang
Leads 1 award · $344,380
- 5R01GM147652-04Department: NIH department codeTheory and Modeling of Functional Conformational Changes of RNA Polymerases$344,380award amount
Daniel John Weix
Leads 1 award · $337,077
- 5R01GM097243-17Department: NIH department codeCross-Electrophile Coupling for C(sp2)–C(sp3) Bond Formation: Broadened Access to Abundant Electrophiles, Solutions to Challenging Couplings, and Improved Mechanistic Understanding$337,077award amount
Jeffrey Daniel Martell
Leads 1 award · $314,242
- 5R01GM150698-04Department: NIH department codeHybrid Biological-Abiotic Proximity Labeling Catalysts for Enhancing Spatially-Resolved Proteomics$314,242award amount
Tina Wang
Leads 1 award · $181,055
- 5R21AG088715-03Department: NIH department codeA high-throughput assay to measure amyloid-β oligomer formation$181,055award amount
Alyssa Paige Clay
Leads 1 award · $76,300
- 5F32GM155981-02Department: NIH department codeDesign and application of small molecules for the interception of quorum sensing in Staphylococcus aureus$76,300award amount
Co-investigators
Named as principal investigators on these awards, which someone else leads. They may belong to another department or institution: their own, below, comes from the awards they lead.
David F. Jarrard
Co-investigator on 2R01CA193481-09, led by Lloyd M Smith
From the FY2026 awards this person leads
- University of Wisconsin-Madison · Urology (NIH department code, 1 award)