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The Biophysical and Biomedical Measurement Group at NIST is seeking a postdoctoral research associate to develop DNA origami charge amplifiers for biomolecular sensing. Candidates should hold a Ph.D. in a relevant field and have experience in DNA nanotechnology, experimental skills, and data analysis.
The position involves designing nanostructures and conducting electronic measurements. Applications are to be sent via email, including a CV and a statement of interest.
The Biophysical and Biomedical Measurement Group at NIST (Gaithersburg, MD) is seeking a postdoctoral research associate to develop DNA‑origami‑based charge amplifiers for biomolecular sensing and bioelectronic measurement.
This project builds on recent NIST work showing that engineered DNA nanostructures can function as programmable signal amplifiers for biosensing. DNA origami structures can be designed to undergo target‑triggered and field‑controlled conformational changes, producing large electronic/capacitive signals when integrated with chip‑scale measurement platforms. The long‑term goal is to develop quantitative, modular biosensing approaches for nucleic acids, proteins, small molecules, and other biomarkers relevant to biomedical, environmental, and biotechnology applications.
This position is within the Biophysical Metrology and Inference program at NIST, which develops interpretable measurement approaches, physical models, and data‑analysis methods to connect biological signals to quantitative mechanism and uncertainty.
U.S. citizenship is preferred; for some appointment mechanisms, eligibility depends on citizenship.
Email a CV, a brief statement of interest and technical experience, and names/contact information for 2–3 references to biome@nist.gov. Please describe your relevant technical background, including specific techniques, instruments, assays, software, and your role in developing or applying them.
https://www.nist.gov/pml/microsystems-and-nanotechnology-division/biophysical-and-biomedical-measurement-group
Variable gain DNA nanostructure charge amplifiers for biosensing, Nanoscale 16, 20893–20902 (2024). https://doi.org/10.1039/D4NR02959C