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Navy Research Could Lead to Millions of New Materials

JANUARY 8, 2024 – Extraordinarily rugged with a melting temperature of several thousand degrees Fahrenheit. That describes the results of research into new ceramic materials sponsored by the Office of Naval Research (ONR) and recently published in the Journal Nature.

A research team, led by ONR’s Principal Investigator, Dr. Stefano Curtarolo, Duke University, developed a computational method for creating new types of ceramics using transition metals – carbonitrides or borides – through a process called Disordered Enthalpy-Entropy Descriptor (DEED).

The applications are endless, said Dr. Eric Wuchina, a research materials engineer who was the program officer with ONR’s Sea Warfare and Weapons department when Curtarolo’s research team was awarded the Multidisciplinary University Research Initiative (MURI).

“Wuchina said. “Now we can help design any material for high voltage, breakdown resistance for strength, for high temperature capability, for high or low thermal conductivities – a variety of things that you can do because of the thermodynamic database that Professor Curtarolo has been putting together for the last 20-25 years.”

Curtarolo’s team maintains the Duke Automatic-FLOW for Materials Database (AFLOW)—a database that allows algorithms to accurately predict the properties of unexplored mixtures without having create them in the laboratory.

“We’ve used the same iron, copper, nickel and other alloys throughout history and just added stuff in to change the properties,” Wuchina said. “Rather than limit ourselves to just 10 chemical elements, this allows us to look at the whole periodic table of 100 elements – and to look at a variety of different compositions.”

According to Wuchina, the variety of new compositions could create potentially millions of new materials.

“Professor Curtarolo has developed the ability to for us to look at a wide variety of materials and potential materials that have never been made and predict what their properties are going to be. And then how to make real materials out of those for applications for specific applications.”

So far, DEED has predicted 900 possible new formulations of high-performance materials – 17 of which have already been successfully created in laboratories.

Instead of focusing solely on the orderly atomic structure of conventional materials, Curtarolo’s team worked to develop the predictive properties of “high-entropy” materials – that is, materials that could be created through a chaotic mixture of atoms.

“The high-entropy carbides all had a relatively uniform amount of enthalpy, so we could ignore part of the equation,” Curtarolo said. “But to predict new ceramic recipes with other transition metals, we had to address the enthalpy.”

Enthalpy is a measure of the sturdiness of a design while entropy is the number of possible designs that have similar strength. Curtarolo’s computational method not only calculates what elements need to go into creating a ceramic for a certain application, but how to arrange the microstructure – the atoms – so that it has also high temperature capabilities.

“Typically to get higher or lower thermal conductivity you will use a ceramic,” Wuchina said. “You might make it a little more porous so that it has better insulating properties, right? Well, how do you do that without harming the mechanical properties?”

That’s what makes Curtarolo’s research and computational method so unique. It allows him to predict how different compounds will behave and to what applications these new compounds would be best suited.

Wuchina said. “The DEED process can capture and develop a wide range of materials and the materials properties that we don’t have now, and it allows us to use computational tools to tell us what compositions and what microstructures are best and how to make them. And that’s something that has historically been trial and error.”

The results of Curtarolo’s research were published online, Jan. 3, in the journal Nature, which includes contributions from collaborators at Penn State University, the Missouri University of Science and Technology, North Carolina State University and the State University of New York at Buffalo.

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Iran’s Defense Industrial Base Nearing Complete Destruction

MARCH 13, 2026 – Secretary of War Pete Hegseth told reporters today that, in addition to the extensive damage the U.S. and Israeli militaries have been inflicting upon the Iranian terrorist regime’s active combat forces, the country’s defense industrial base is now nearing complete destruction as well. “Soon and very soon, all of Iran’s defense […]

Air National Guard Unveils New Bonus Program

MARCH 11, 2023 – On March 1st, the Air National Guard (ANG) launched a new bonus program to attract and retain personnel in critical specialties. The initiative offers significant financial rewards, with bonuses of up to $90,000 for eligible members, depending on their Air Force Specialty Codes (AFSCs). This strategic move aims to strengthen the […]

Military Students’ Tips to Balance Service and Studies

OCTOBER 10, 2025 – Studying in college while serving in the military can be highly rewarding but also extremely demanding in some respects. Military members, veterans, and their families typically balance demanding duty schedules, deployments, family responsibilities, and school schedules. It requires careful planning, flexibility, and being willing to seek and take advantage of available […]

Transition Assistance Program Cultivates Success

FEBRUARY 4, 2026 — When Drevon Turner met with the Transition Assistance Program team he knew two things – he wanted to stay in the area, and he wanted to pursue a career in law enforcement. “Ever since I was a kid, I knew I was going to join the military, and I knew I […]

Estate Planning for Vets and Service Members

FEBRUARY 2, 2026 – Why a Will is not enough along with VA Burial Benefit Facts You Need To Know, 10 Important Facts About Your VA Burial Benefits. Join us for our next webinar: Estate Planning Made Easy – Did You Know Everyone has an Estate Plan? Unfortunately most people find this out too late! […]

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