With Houston having the fastest growing veteran population in the country, the innovation ecosystem has plenty of veterans turned entrepreneurs. Here are five to know today. Courtesy photos

Over a quarter of a million United States military veterans call Houston home, and that number is growing.

"Houston has the second largest and fastest growing veteran population in the country," says Reda Hicks, a Houston entrepreneur and military spouse herself. "That's a very significant chunk of our city to share an affinity, and it's not something Houston has talked about."

For its large veteran population, Houston was selected in January 2018 as the third location to set up a chapter of Bunker Labs, an acceleration and incubation organization for military-affiliated entrepreneurs.

"Our whole goal is to help empower military-affiliated people to start and grow businesses," says Hicks, who is one of the Houston leads for the program, a lawyer, and the founder of GotSpot Inc.

The program provides resources for veterans, military spouses, or anyone whose lives were affected by a family member in the military. Bunker Labs provides a digital platform for early-stage ideas called Launch Lab that's used by hundreds annually, and also has face-to-face programming through its Veterans in Business program hosted through WeWork.

"It can be the case that veterans can feel siloed, and it's wonderful to have those people around you who can really understand you, but for businesses to grow, they have to really understand the ecosystem they live in," Hicks says.

In honor of Veterans Day, here are a few Houston veteran entrepreneurs to know.

Dyan Gibbens, founder and CEO of Trumbull Unmanned

Dyan Gibbons

Dyan Gibbons translated her Air Force experience with unmanned missiles into a drone services company. Courtesy of Alice

Dyan Gibbons found her dream career in the United States Air Force Academy. She served as engineering acquisitions officer managing stealth nuclear cruise missiles, and even went on to supported Air Force One and Global Hawk UAS engineering and logistics. After her years of service, she transitioned into the reserves, when she discovered she was ineligible to serve again. She went back to the drawing board to recreate herself — this time, as an entrepreneur.

She went into a doctorate program — she already had her MBA — and was close to finishing up when her drone startup took flight. Trumbull Unmanned provides drone services to the energy sector for various purposes. With her experience as a pilot and managing unmanned missiles, she knew the demand for drones was only growing — and, being from Texas, she knew what industry to focus on.

"I wanted to start a company that uses unmanned systems or drones to improve safety and improve the environment and support energy," Gibbons tells InnovationMap in a previous interview.

Nicole Baldwin, chief visionary officer and founder of Biao Skincare

Nicole Baldwin

Photo via toryburchfoundation.org

Before founding her tech-enabled, all-natural skincare line, Biao, Nicole Baldwin served in the Army Civil Affairs Units and was deployed to Bagram, Afghanistan. In honor of Veterans Day, she shared on Facebook an image of her with young girls outside the compound she lived in.

"I often tell people not to thank me for my service, because I don't feel like I should be thanked for doing something I genuinely wanted to do," she writes in the post. "I am grateful every moment of my life knowing that I did all the things in and out of uniform that was felt from the heart."

Baldwin's company, which uses a skin-scanning technology has taken off, and she's participated in Houston's Bunker Labs programming, and she has also been a Tory Burch fellow and appeared on Shark Tank.

Brett Rosenberg, founder of Semper Fi Systems

Photo via LinkedIn.com

Brett Rosenberg spent a few years in the U.S. Air Force before he took his experience from national security to a different kind of security.

Rosenberg's startup is another one utilizing the resources of Houston's Bunker Labs. Semper Fi Systems takes information security experts' knowledge and machine learning solutions to optimize cybersecurity and avoid regulatory financial exclusion.

Nathan Wilkes, CEO of Guidon Holdings

Photo via LinkedIn.com

After four years in the U.S. Army based in Georgia, Nathan Wilkes enrolled in business school at Texas A&M University. It was during the program when he founded Guidon Holdings, a Cypress-based aggregates company that — through screening, washing, separating, clarifying, and much more — can turn a natural resource that is considered waste into something of value.

Wilkes is also a West Point Academy graduate and a member of the 2019 Bunker Labs Houston cohort.

Tim Kopra, partner at Blue Bear Capital

An U.S. Army vet, Tim Kopra spent over 244 days in space, and now he's using his tech background to invest in emerging energy companies. Courtesy of Tim Kopra

Before he spent a career total of 244 days in space, Tim Kopra first served his country in the United States Army. Nowadays, he serves the Houston innovation ecosystem as an investor and adviser to startups and entrepreneurs in the energy tech industry.

As a partner at venture fund Blue Bear Capital, Kopra uses his experience in the Army and in space to do figure out if entrepreneurs have what it takes to go the distance and if their technology is worth investing in.

"On face value, it may sound like an odd match, taking someone with a tech and operational background and putting them in venture, but quite frankly it feels very familiar to me because my career has really been focused on working on complex technology and operations with very small teams," tells InnovationMap in a previous interview. "It's not just a theoretical understanding of the technology, but understanding how to use the technology and how it works."

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UH researchers develop breakthrough material to boost efficiency of sodium-ion batteries

eyes on clean energy

A research lab at the University of Houston has developed a new type of material for sodium-ion batteries that could make them more efficient and boost their energy performance.

Led by Pieremanuele Canepa, Robert Welch assistant professor of electrical and computer engineering at UH, the Canepa Research Laboratory is working on a new material called sodium vanadium phosphate, which improves sodium-ion battery performance by increasing the energy density. Energy density is the amount of energy stored per kilogram, and the new material can do so by more than 15 percent. With a higher energy density of 458 watt-hours per kilogram — compared to the 396 watt-hours per kilogram in older sodium-ion batteries — this material brings sodium technology closer to competing with lithium-ion batteries, according to the researchers.

The Canepa Lab used theoretical expertise and computational methods to discover new materials and molecules to help advance clean energy technologies. The team at UH worked with the research groups headed by French researchers Christian Masquelier and Laurence Croguennec from the Laboratoire de Reáctivité et de Chimie des Solides, which is a CNRS laboratory part of the Université de Picardie Jules Verne, in Amiens France, and the Institut de Chimie de la Matière Condensée de Bordeaux, Université de Bordeaux, Bordeaux, France for the experimental work on the project.

The researchers then created a battery prototype using the new materia sodium vanadium phosphate, which demonstrated energy storage improvements. The material is part of a group called “Na superionic conductors” or NaSICONs, which is made to let sodium ions move in and out of the battery during charging and discharging.

“The continuous voltage change is a key feature,” Canepa says in a news release. “It means the battery can perform more efficiently without compromising the electrode stability. That’s a game-changer for sodium-ion technology.”

The synthesis method used to create sodium vanadium phosphate may be applied to other materials with similar chemistries, which could create new opportunities for advanced energy storage. A paper of this work was published in the journal Nature Materials.

"Our goal is to find clean, sustainable solutions for energy storage," Canepa adds. "This material shows that sodium-ion batteries can meet the high-energy demands of modern technology while being cost-effective and environmentally friendly."

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This article originally appeared on EnergyCapital.

Houston hospital names leading cancer scientist as new academic head

new hire

Houston Methodist Academic Institute has named cancer clinician and scientist Dr. Jenny Chang as its new executive vice president, president, CEO, and chief academic officer.

Chang was selected following a national search and will succeed Dr. H. Dirk Sostman, who will retire in February after 20 years of leadership. Chang is the director of the Houston Methodist Dr. Mary and Ron Neal Cancer Center and the Emily Herrmann Presidential Distinguished Chair in Cancer Research. She has been with Houston Methodist for 15 years.

Over the last five years, Chang has served as the institute’s chief clinical science officer and is credited with strengthening cancer clinical trials. Her work has focused on therapy-resistant cancer stem cells and their treatment, particularly relating to breast cancer.

Her work has generated more than $35 million in funding for Houston Methodist from organizations like the National Institutes of Health and the National Cancer Institute, according to the health care system. In 2021, Dr. Mary Neal and her husband Ron Neal, whom the cancer center is now named after, donated $25 million to support her and her team’s research on advanced cancer therapy.

In her new role, Chang will work to expand clinical and translational research and education across Houston Methodist in digital health, robotics and bioengineered therapeutics.

“Dr. Chang’s dedication to Houston Methodist is unparalleled,” Dr. Marc L. Boom, Houston Methodist president and CEO, said in a news release. “She is committed to our mission and to helping our patients, and her clinical expertise, research innovation and health care leadership make her the ideal choice for leading our academic mission into an exciting new chapter.”

Chang is a member of the American Association of Cancer Research (AACR) Stand Up to Cancer Scientific Advisory Council. She earned her medical degree from Cambridge University in England and completed fellowship training in medical oncology at the Royal Marsden Hospital/Institute for Cancer Research. She earned her research doctorate from the University of London.

She is also a professor at Weill Cornell Medical School, which is affiliated with the Houston Methodist Academic Institute.

Texas A&M awarded $1.3M federal grant to develop clean energy tech from electronic waste

seeing green

Texas A&M University in College Station has received a nearly $1.3 million federal grant for development of clean energy technology.

The university will use the $1,280,553 grant from the U.S. Department of Energy to develop a cost-effective, sustainable method for extracting rare earth elements from electronic waste.

Rare earth elements (REEs) are a set of 17 metallic elements.

“REEs are essential components of more than 200 products, especially high-tech consumer products, such as cellular telephones, computer hard drives, electric and hybrid vehicles, and flat-screen monitors and televisions,” according to the Eos news website.

REEs also are found in defense equipment and technology such as electronic displays, guidance systems, lasers, and radar and sonar systems, says Eos.

The grant awarded to Texas A&M was among $17 million in DOE grants given to 14 projects that seek to accelerate innovation in the critical materials sector. The federal Energy Act of 2020 defines a critical material — such as aluminum, cobalt, copper, lithium, magnesium, nickel, and platinum — as a substance that faces a high risk of supply chain disruption and “serves an essential function” in the energy sector.

“DOE is helping reduce the nation’s dependence on foreign supply chains through innovative solutions that will tap domestic sources of the critical materials needed for next-generation technologies,” says U.S. Energy Secretary Jennifer Granholm. “These investments — part of our industrial strategy — will keep America’s growing manufacturing industry competitive while delivering economic benefits to communities nationwide.”

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This article originally appeared on EnergyCapital.