Dr. Hannah Wendlandt assists Choate’s life sciences and technology clients by utilizing her background in organic chemistry to help with the preparation and prosecution of patent applications, as well as freedom-to-operate and patentability analyses. Prior to joining Choate, Hannah was a Scientific Advisor for the chemistry practice group of a global law firm. In this role, she prepared and prosecuted U.S. and foreign patent applications and advised clients on patent drafting and filing strategies across a range of technologies, including pharmaceutical compositions, small molecules, polymer materials, catalysts, medical technologies, and energy-related innovations. Hannah earned her PhD from The University of Texas at Austin, where her research focused on the development of novel transition metal-catalyzed organic reactions. In particular, her doctoral thesis investigated intercepted polymerization strategies for the multicomponent assembly of amine-containing small molecules, as well as kinetic and mechanistic investigations to validate novel transformations. Hannah previously interned at The Ohio State University Comprehensive Cancer Center – James Cancer Hospital & Solove Research Institute, where she investigated fibroblast involvement in epithelial-mesenchymal transition in human thyroid cancer. Publications and Presentations “A General Platform for Copper-Catalyzed Atom Transfer Radical Addition with Electron-Deficient Olefins,” co-first author, Organic Letters, 2025 “Copper-Catalyzed Three-Component Carboiminolactonization of Electron-Deficient Olefins,” first author, Journal of Organic Chemistry, 2024 “Palladium and Iron Co-Catalyzed N-selective Aminoboration with Indoles,” poster presentation, Gordon Research Conference: Heterocyclic Compounds, 2023 “Cu-Catalyzed Three Component Carboamination of Electron Deficient Olefins,” co-first author, Organic Letters, 2023 Education & Credentials University of Texas, at Austin, PhD (2024) Chemistry Kenyon College, BA (2019) Biochemistry, magna cum laude with distinction