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NIST Receives New Patent for Microbe-Killing Water Heater Spotlight: How NIST Helps Make Sure the Fish You Catch Are Safe to Eat SRM Story: SRM 1947a Great Lakes Fish Tissue SRM Story: SRMs 3672a and 3673a Organic Contaminants in Smokers’ and Nonsmokers’ Urine Space: The Final Frontier for Standards Securing Smart Speakers for Home Health Care: NIST Offers New Guidelines NIST’s ‘Living Reference Material’ Could Accelerate R&D of Lifesaving Biological Drugs NIST Awards Over $1.8 Million to Small Businesses Advancing AI, Semiconductors, Additive Manufacturing and More SRM Story: SRM 965c Glucose in Frozen Human Serum Second Seminar on Building an In-Space Circular Economy New NIST Reference Material to Strengthen Quality Control for Biological Drugs NIST Releases Trove of Genetic Data to Spur Cancer Research New NIST Research Grade Test Material to support mRNA therapeutics NIST Shares Preliminary Findings From Hurricane Maria Investigation New NIST Standard Helps Deliver the Right Dosage of Cancer-Fighting Drugs Second Series of Workshops on Measurements and Standards for Advanced Therapy NIST Researcher Addresses London Healthcare Innovation Forum NIST Releases Reference Material to Aid Gut Microbiome Research NIST Researchers Develop Material for Measuring Arsenic in Shellfish 2025 NIST Workshop on Rapid Microbial Testing Methods An SRM for Accuracy in Electrolyte Panel Clinical Tests Study Highlights Need for Standardized Measurement Methods in Gene Therapy NIST Develops Genetic Material for Validating H5N1 Bird Flu Diagnostic Tests PFAS Found in Firefighter Gloves, Hoods and Wildland Gear AI and Flow Cytometry Workshop Genome Editing Consortium Workshop Social Spotlight: Engineered Cells as a Shoebox NIST Scientists Use DNA Origami on a Chip to Detect Biomolecules NIST Awards Up to $1.5 Million to Support Development of Regenerative Medicine Standards Curricula NIST Research Leader Featured in Medical IoT Discussions Spotlight: Game-Changing Microscopy Technique for Identifying Cancerous Cells Spotlight: Cassie Stoffer Helps Run Calibration and Measurement Services Related to Magnetic Resonance NIST Researchers to Test New Approach for Detecting Cannabis in Breath Spotlight: SURF Student Zainab Altamimi Spends Her Summer Researching the Capsules and Tablets in 3D Drug Printing From Pandemics to Pedicures: NIST Rebuilds World-Class UV Calibration System NIST Partners With the Gates Foundation to Develop Breathalyzers for Malaria and Tuberculosis Research Finds Dolphins With Elevated Mercury Levels in Florida and Georgia NIST Awards Over $1.2 Million to Small Businesses to Advance Cybersecurity, Biopharmaceuticals, Semiconductors and More Spotlight: Shape-Shifting Probes Will Help Improve MRI Imaging NIST Researchers Use Cellphone Compass to Measure Tiny Concentrations of Compounds Important for Human Health CHIPS R&D National Advanced Packaging Manufacturing Program (NAPMP) Advanced Packaging Summit NIST-Led Working Group Developing Standards for Organ-on-a-Chip Research 2024 NIST Rapid Microbial Testing Methods Consortium Workshop
NIST Expands Its Library of ‘Chemical Fingerprints’ to Identify Unknown Substances
Ron Cowen · 2026-06-09 · via News and Events Feed by Topic
  • NIST has added tens of thousands of new items to its largest library of chemical fingerprints, now totaling hundreds of thousands of compounds.
  • Researchers and manufacturers rely on the library to identify unknown compounds in food, drugs, cosmetics, the environment, body fluids, forensic evidence and even space rocks.
  • Each fingerprint is generated using a mass spectrometer, which ionizes and shatters a substance into charged fragments to identify it.

Custom trays hold different kinds of vials for laboratory work.

Vials of some of the chemicals analyzed in the NIST mass spectral database.

Credit: T. Mak/NIST

Whether you’re a researcher stumped by a mystery compound or a manufacturer perplexed by an unknown substance, there’s a major resource you can rely on: a library of chemical fingerprints, known as mass spectra, that the National Institute of Standards and Technology (NIST) has maintained for decades.

Now, NIST has released the latest update to that library, which industry experts, forensic scientists and others have used since 1988 to identify unknown substances in food, drugs, cosmetics, the environment and even space rocks.

The expanded library, formally known as Standard Reference Database 1A, contains mass spectra measured from hundreds of thousands of compounds. 

NIST scientists generate chemical fingerprints using a mass spectrometer, an instrument that ionizes and shatters a compound into charged fragments and then sorts those fragments by their mass-to-charge ratio. That gives researchers enough information to create a bar-chart-like graph known as a mass spectrum that is unique to that particular chemical. 

Mass spectrum of the caffeine molecule

This bar graph shows the chemical fingerprint for caffeine. To create the fingerprint, a mass spectrometer shattered the caffeine molecule into charged fragments and sorted them according to their mass-to-charge ratio. The height of each peak indicates the relative abundance of the fragment.

Researchers and manufacturers can use mass spectrometry to create their own bar chart of a mystery substance and run it through the NIST library to find a match. 

“Just as a person may be identified by comparing their DNA to a database, a chemical compound may be identified by comparing its mass spectrum to the NIST database,” said Bill Wallace, group leader of NIST’s Mass Spectrometry Data Center. 

Commonly called NIST26, the NIST Mass Spectral Library comes preinstalled on many commercial mass spectrometers. Users can purchase the updated library from their instrument manufacturer or other independent distributors

To ensure that the updated library meets NIST’s standards, NIST scientists use a comprehensive, software-based evaluation process that relies on decades of experience.

One of the world’s largest mass spectral databases, the NIST26 library has two main components. The Electron Ionization (EI) Library contains fingerprints of compounds that are easily vaporized. Roughly 35,000 new compounds have been added to this library, for a total of over 382,180. The Tandem Library is used to identify nonvolatile compounds that dissolve in liquids. This library has 17,000 new compounds for a total of 68,635 substances. 

A woman wearing purple gloves and a lab coat opens the cover of a large piece of scientific equipment.

A NIST researcher injects a sample into a mass spectrometer, a laboratory instrument that scientists use to identify unknown chemical compounds.

Credit: D. Anderson/NIST

Compounds added to the new version of the NIST library include: 

  • Minor cannabinoids, trace chemicals hidden inside the cannabis plant that are being explored for medical uses, including pain relief.
  • Nitazenes, a potent class of opioids increasingly associated with fatal drug overdoses.
  • Thiophenes, a class of ring-shaped, sulfur-containing organic molecules found by NASA's Curiosity rover and which are a possible signature of ancient life on Mars.
  • Complex organic compounds known as alkylated polycyclic aromatic hydrocarbons (PAHs), found in dust from the near-Earth asteroid Bennu; PAHs may have seeded the infant Earth with some chemical compounds necessary for life.
  • Plant-based derivatives of serotonin and dopamine, known respectively as N-(p-Coumaroyl) serotonin and N-Methyldopamine, which are being studied as potential therapeutic agents due to their antioxidants and anti-inflammatory properties.
  • An expanded set of per- and polyfluoroalkyl substances (PFAS), “forever chemicals” found in the environment. 

Interested individuals can visit the Mass Spectrometry Data Center’s newly updated website chemdata.nist.gov for more information.