Entrepreneurs' Organization had seven of its members give TED-style talks on April 25. Ammar Selo

Moving the needle on something — whether it's changing the world or growing your business — hearing how others accomplished their own goals can be a beacon of hope and guidance for others.

The local Entrepreneurs' Organization chapter, EO Houston, hosted a series of seven TED Talk-style talks by members of the organization. These seven entrepreneurs discussed everything from being an introvert in a world of extroverts to the biggest security threat to American citizens: obesity. EO Talks took place at a breakfast event on April 25 at Houston Baptist University. If you missed the event, check out these overheard quotes from the day of discussions.

“When you get people involved in your organization, your job (as CEO) is alignment. Keep your team aligned with the strategic objectives of your company.”

— Paul Sarvadi, chairman, CEO and co-founder of Insperity, in his talk, "Take Care of Your People: An Entrepreneur's Journey." Connectivity is key, says Sarvadi.

“Taking care of your people is not rocket science. In fact, rocket science would be easier. It involves math and science — it works the same every day. But as soon as you put people in the mix, what worked yesterday might not work today.”

— Sarvadi continued in his talk about the importance of human resources in the the work place.

“What if everyone in the world knew what they stood for — imagine what that world would look like. We would know how we fit. We would be the best versions of ourselves. And, the world would be the best version of itself.”

— Winnie Hart, founder of TwinEngine in her talk, "What Do You Stand For?" Hart discussed finding one's identity and motivators — both in business and in life.

“Everywhere we look introverts are living in an extroverted world. It’s natural if you’re an introvert, like me, to feel a little insecure or that you feel the need to compete with your extraverted friends.”

— Darlene Gagnon, CEO and co-founder of Kinnect Global Management Services in her talk, "The Introverted Entrepreneur Competing in an Extroverted World." Gagnon says that introverts on track to be the most successful entrepreneurs with their execution skills, detail oriented nature, and ability to tune out the noise.

“It is the men in our lives that need to take action. Gentlemen, stand with us. Help us create a better presence so that we can sustain a future.”

— Shoshi Kaganovsky, CEO and founder of SensoLeak Global, in her talk, "Women Entrepreneurs—To Be..Or..To Be The Best." Kaganovsky compared how people say, "behind every great man is a woman," to how female leaders also need the support from the other gender.

“Entrepreneurship is an endless circle of reinventing yourself, being able to change, and keeping a positive attitude while doing so.”

— Kaganovsky continued in her talk as advice to the room of entrepreneurs.

“We can escape this crushing threat we call obesity. How are you going to make your escape?”

— Dr. Joe Galati, liver disease expert, radio host and author in his talk, "America's #1 National Security Threat." Galati argued that it's not Russia or North Korea that pose a major threat to the United States — it's our own health issues caused by obesity.

“We’ve all heard of the term ‘side hustle.' Maybe my dad invented the ‘side hustle.’”

— Chris Hotze, CEO and founder of Crescere Capital, in his talk, "Understanding the Power of Recurring Revenue." Hotze tells the story of how his father created a residential real estate side business out of necessity, and how that entrepreneurialism affected his own business career.

“As entrepreneurs, as long as we see control, we visualize an opportunity far greater than we see the risk.”

— Ali Nasser, CEO of AltruVista in his talk, "The Entrepreneur's Opportunity Cost," Nasser explains how entrepreneurs are hesitant to put money in the stock market, yet dive into ownership and risks for their own businesses.

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UH receives $2.6M gift to support opioid addiction research and treatment

drug research

The estate of Dr. William A. Gibson has granted the University of Houston a $2.6 million gift to support and expand its opioid addiction research, including the development of a fentanyl vaccine that could block the drug's ability to enter the brain.

The gift builds upon a previous donation from the Gibson estate that honored the scientist’s late son Michael, who died from drug addiction in 2019. The original donation established the Michael C. Gibson Addiction Research Program in UH's department of psychology. The latest donation will establish the Michael Conner Gibson Endowed Professorship in Psychology and the Michael Conner Gibson Research Endowment in the College of Liberal Arts and Social Sciences.

“This incredibly generous gift will accelerate UH’s addiction research program and advance new approaches to treatment,” Daniel O’Connor, dean of the College of Liberal Arts and Social Sciences, said in a news release.

The Michael C. Gibson Addiction Research Program is led by UH professor of psychology Therese Kosten and Colin Haile, a founding member of the UH Drug Discovery Institute. Currently, the program produces high-profile drug research, including the fentanyl vaccine.

According to UH, the vaccine can eliminate the drug’s “high” and could have major implications for the nation’s opioid epidemic, as research reveals Opioid Use Disorder (OUD) is treatable.

The endowed professorship is combined with a one-to-one match from the Aspire Fund Challenge, a $50 million grant program established in 2019 by an anonymous donor. UH says the program has helped the university increase its number of endowed chairs and professorships, including this new position in the department of psychology.

“Our future discoveries will forever honor the memory of Michael Conner Gibson and the Gibson family,” O’Connor added in the release. “And I expect that the work supported by these endowments will eventually save many thousands of lives.”

CenterPoint and partners launch AI initiative to stabilize the power grid

AI infrastructure

Houston-based utility company CenterPoint Energy is one of the founding partners of a new AI infrastructure initiative called Chain Reaction.

Software companies NVIDIA and Palantir have joined CenterPoint in forming Chain Reaction, which is aimed at speeding up AI buildouts for energy producers and distributors, data centers and infrastructure builders. Among the initiative’s goals are to stabilize and expand the power grid to meet growing demand from data centers, and to design and develop large data centers that can support AI activity.

“The energy infrastructure buildout is the industrial challenge of our generation,” Tristan Gruska, Palantir’s head of energy and infrastructure, says in a news release. “But the software that the sector relies on was not built for this moment. We have spent years quietly deploying systems that keep power plants running and grids reliable. Chain Reaction is the result of building from the ground up for the demands of AI.”

CenterPoint serves about 7 million customers in Texas, Indiana, Minnesota and Ohio. After Hurricane Beryl struck Houston in July 2024, CenterPoint committed to building a resilient power grid for the region and chose Palantir as its “software backbone.”

“Never before have technology and energy been so intertwined in determining the future course of American innovation, commercial growth, and economic security,” Jason Wells, chairman, president and CEO of CenterPoint, added in the release.

In November, the utility company got the go-ahead from the Public Utility Commission of Texas for a $2.9 billion upgrade of its Houston-area power grid. CenterPoint serves 2.9 million customers in a 12-county territory anchored by Houston.

A month earlier, CenterPoint launched a $65 billion, 10-year capital improvement plan to support rising demand for power across all of its service territories.

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This article originally appeared on our sister site, EnergyCapitalHTX.com.

Houston researchers develop material to boost AI speed and cut energy use

ai research

A team of researchers at the University of Houston has developed an innovative thin-film material that they believe will make AI devices faster and more energy efficient.

AI data centers consume massive amounts of electricity and use large cooling systems to operate, adding a strain on overall energy consumption.

“AI has made our energy needs explode,” Alamgir Karim, Dow Chair and Welch Foundation Professor at the William A. Brookshire Department of Chemical and Biomolecular Engineering at UH, explained in a news release. “Many AI data centers employ vast cooling systems that consume large amounts of electricity to keep the thousands of servers with integrated circuit chips running optimally at low temperatures to maintain high data processing speed, have shorter response time and extend chip lifetime.”

In a report recently published in ACS Nano, Karim and a team of researchers introduced a specialized two-dimensional thin film dielectric, or electric insulator. The film, which does not store electricity, could be used to replace traditional, heat-generating components in integrated circuit chips, which are essential hardware powering AI.

The thinner film material aims to reduce the significant energy cost and heat produced by the high-performance computing necessary for AI.

Karim and his former doctoral student, Maninderjeet Singh, used Nobel prize-winning organic framework materials to develop the film. Singh, now a postdoctoral researcher at Columbia University, developed the materials during his doctoral training at UH, along with Devin Shaffer, a UH professor of civil engineering, and doctoral student Erin Schroeder.

Their study shows that dielectrics with high permittivity (high-k) store more electrical energy and dissipate more energy as heat than those with low-k materials. Karim focused on low-k materials made from light elements, like carbon, that would allow chips to run cooler and faster.

The team then created new materials with carbon and other light elements, forming covalently bonded sheetlike films with highly porous crystalline structures using a process known as synthetic interfacial polymerization. Then they studied their electronic properties and applications in devices.

According to the report, the film was suitable for high-voltage, high-power devices while maintaining thermal stability at elevated operating temperatures.

“These next-generation materials are expected to boost the performance of AI and conventional electronics devices significantly,” Singh added in the release.