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Rice University


Clues to foam formation could help find oil

Rice University scientists have discovered two novel mechanisms for bubble formation in foam, known as pinch-off behaviors. This discovery could improve the efficiency of enhanced oil recovery methods by making gas act more like a liquid and increasing its contact with reservoir rock.

SourceRice University·JournalSoft Matter·DateOct 8, 2013

'White graphene' halts rust in high temps

Researchers have discovered that sheets of hexagonal boron nitride can protect metals from oxidizing even at very high temperatures, such as 1,100 degrees Celsius. The ultrathin films are made of just a few atoms thick and have potential applications in industries like turbines, jet engines, and oil exploration.

SourceRice University·JournalNature Communications·DateOct 7, 2013

New password in a heartbeat

Researchers at Rice University have developed a secure system to protect wireless implantable medical devices from unauthorized access. The technology uses the patient's unique heartbeat as a password, which can only be accessed through touch with a programmer device. This provides a secure way to monitor patients and prevent potential...

Bold idea for 'big data'

Rice University researchers are developing a customized, energy-efficient optical network called BOLD to handle the growing amounts of data in various scientific fields. The new network will utilize optical switches with high capacity and low power consumption, enabling faster processing and analysis of large datasets.

'Vicious cycle' shields, spreads cancer cells

Cancer cells exploit a vicious cycle of mucus production to protect themselves from the immune system and promote tumor growth. Researchers at Rice University have identified a potential therapeutic target in rosiglitazone, a diabetes medication that can attenuate this cycle.

SourceRice University·JournalJournal of Cellular Biochemistry·DateSep 16, 2013

Are women less corrupt?

A new study from Rice University finds that women are more likely to disapprove of and participate in anti-corruption efforts in countries where corruption is publicly condemned. However, the relationship between gender and corruption depends on institutional context.

SourceRice University·JournalPolitics and Gender·DateSep 12, 2013

Rice University wins neuroengineering grant

Rice University has been awarded a $2.8 million National Science Foundation grant to establish a multidisciplinary training program in neuroengineering for graduate students. The program, led by bioengineer Robert Raphael, will focus on problem-based learning and the development of online educational resources.

Bismuth-carrying nanotubes show promise for CT scans

Rice University scientists have developed bismuth-filled nanotubes as a contrast agent for CT scans, producing brighter images than common iodine-based agents. The nanotube capsules are small enough to diffuse into cells and aggregate to produce high-contrast images.

SourceRice University·JournalJournal of Materials Chemistry B·DateSep 4, 2013

Clay key to high-temperature supercapacitors

Researchers at Rice University have created a supercapacitor that operates reliably at temperatures of up to 200 degrees Celsius, overcoming key limitations of conventional energy storage devices. The device uses a clay-based membrane electrolyte, which provides high thermal stability and conductivity.

SourceRice University·JournalScientific Reports·DateSep 3, 2013

NEETs are prime suspects in breast cancer proliferation

A study by an international consortium of researchers found that reducing the expression of NEET proteins significantly reduced cancer cell proliferation and tumor size. The overabundance of these proteins is linked to the progression of the disease, making them a prime target for anticancer drugs.

SourceRice University·JournalProceedings of the National Academy of Sciences·DateAug 19, 2013

Rice technique expands options for molecular imaging

The technique, dubbed 'multiple-dimensional vibrational spectroscopy,' captures the conformation of small molecules with great accuracy, measuring vibrations and determining angles between bonds. This method could revolutionize the study of catalysis, energy storage, and biomembranes.

SourceRice University·JournalThe Journal of Physical Chemistry·DateAug 15, 2013

Rice U. biophysicists zoom in on pore-forming toxin

Researchers have gained a comprehensive understanding of melittin's molecular-level action, which involves opening pores in cell membranes to attack cancer and bacteria. The study sheds light on how melittin forms transient pores at low concentrations and stable pores at higher concentrations.

SourceRice University·JournalProceedings of the National Academy of Sciences·DateAug 14, 2013

Ecosystems change long before species are lost

A recent study by Rice University researchers found that altering the dynamics of a population can have measurable consequences on complex ecosystems. The study's results suggest that changing the structure of populations can alter entire food webs and ecosystems, highlighting their fragility.

SourceRice University·JournalNature Communications·DateAug 13, 2013

Rice writes rules for gene-therapy vectors

Researchers at Rice University have made strides toward creating a set of rules to design custom viral capsid proteins for gene therapy. By combining pieces of different adeno-associated viruses, they can create new, benign viruses that deliver DNA payloads to specific cells. This research has the potential to treat diseases such as ge...

SourceRice University·JournalACS Synthetic Biology·DateAug 12, 2013

Water clears path for nanoribbon development

Rice University researchers have discovered a novel technique to create sub-10-nanometer graphene nanoribbons by utilizing the meniscus effect of water. This breakthrough enables the formation of long wires only a few nanometers wide, which is crucial for the development of microelectronics devices.

SourceRice University·JournalACS Nano·DateJul 30, 2013

Prison reform results in strain on welfare system

A study by Rice University and Louisiana State University found that court-mandated prison reforms led to a 22% decrease in welfare spending. The researchers discovered that states that were ordered to improve living conditions spent significantly more on correctional facilities, but less on social programs.

Off-grid sterilization with Rice U.'s 'solar steam'

Researchers at Rice University developed a solar-powered sterilization system using nanomaterials to kill microbes and viruses in human waste. The 'solar steam' technology has an overall energy efficiency of 24 percent, making it suitable for off-grid use and sanitation for billions of people.

SourceRice University·JournalProceedings of the National Academy of Sciences·DateJul 22, 2013

Rice researchers part of new LHC discovery

Researchers at Rice University have made a significant contribution to the Large Hadron Collider's (LHC) latest discovery, confirming the Standard Model's prediction of the rare B-sub-s meson decay. This finding eliminates any possibility that the decay is related to dark matter theories, such as supersymmetry.

Graphene 'onion rings' have delicious potential

Researchers at Rice University have successfully synthesized graphene nanoribbons on metal from the bottom up, a process that could lead to breakthroughs in electronics and energy storage. The 'onion rings' of graphene were grown using a new method that relies on hydrogen pressure and controlled growth conditions.

SourceRice University·JournalJournal of the American Chemical Society·DateJul 18, 2013

Broadband photodetector for polarized light

Rice University and Sandia National Laboratories have created a solid-state electronic device that detects polarized light across the visible and infrared spectrum. The new photodetector uses aligned carbon nanotubes to provide intrinsic polarization sensing, unlike traditional methods which rely on filters or gratings.

SourceRice University·JournalACS Nano·DateJul 16, 2013

Silicon oxide memories transcend a hurdle

Rice University scientists have developed a 1-kilobit rewritable silicon oxide device with diodes that eliminate data-corrupting crosstalk. The technique creates a channel of pure metallic phase silicon, allowing for high on/off ratio and multibit switching.

SourceRice University·JournalAdvanced Materials·DateJul 9, 2013

Not-weak knots bolster carbon fiber

Researchers at Rice University developed a new type of carbon fiber with unique properties, achieving '100% knot efficiency' where the fiber is equally likely to break anywhere along its length. The fibers were created by spinning large graphene oxide flakes into fibers, resulting in enhanced strength and flexibility.

SourceRice University·JournalAdvanced Materials·DateJul 8, 2013

Wiggling worms make waves in gene pool

Researchers at Rice University analyzed thousands of mutant worms to identify genes controlling movement, revealing 87 new links in the process. The study also uncovered evidence for a protein-signaling pathway regulating locomotion, with implications for prioritizing genetic tests in humans.

SourceRice University·JournalProceedings of the National Academy of Sciences·DateJul 1, 2013

Does your salad know what time it is?

Scientists found they could use light to coax postharvest vegetables to produce more cancer-fighting antioxidants at certain times of day. This study suggests that storing fruits and vegetables in dark conditions may reduce their ability to keep daily rhythms.

SourceRice University·JournalCurrent Biology·DateJun 20, 2013

Working backward: Computer-aided design of zeolite templates

Researchers at Rice University have developed a computational method to tailor the properties of zeolites, a crucial step in producing industrial minerals. The method uses organic structure directing agents (OSDAs) to guide the growth of zeolite crystals and can potentially produce new types of zeolites.

SourceRice University·JournalJournal of Materials Chemistry A·DateJun 17, 2013

2-D electronics take a step forward

Researchers at Rice University and Oak Ridge National Laboratory have advanced on the goal of two-dimensional electronics by controlling the growth of uniform atomic layers of molybdenum disulfide. The material is a semiconductor, one of three needed to make functioning 2-D electronic components.

SourceRice University·JournalNature Materials·DateJun 10, 2013

Biologists take snapshot of fleeting protein process

Researchers have captured the first three-dimensional crystalline snapshot of the initial step in actin filament formation, crucial for understanding cell shape and cancer. The study's dual-mutant approach helped overcome challenges in forming crystals, revealing critical contacts involved in nucleation.

SourceRice University·JournalCell Reports·DateMay 30, 2013

Organic polymers show sunny potential

Researchers at Rice and Penn State universities have created solar cells using block copolymers, which outperform other polymer compounds as active elements. The new cells reach about 3% efficiency, surprisingly better than previous labs have achieved.

SourceRice University·JournalNano Letters·DateMay 29, 2013

Diamonds, nanotubes find common ground in graphene

Scientists at Rice University and Honda Research Institute have created a hybrid material that combines diamonds, nanotubes, and graphene for superior thermal management. The researchers successfully grew vertically aligned carbon nanotubes on diamond using graphene as a middleman, demonstrating its potential as a heat sink.

SourceRice University·JournalScientific Reports·DateMay 28, 2013

Children of married parents less likely to be obese

Research from Rice University found that children living in traditional two-parent married households have a lower obesity rate (17 percent) compared to those living with cohabitating parents or other non-traditional family structures. This study highlights the impact of family structure on childhood obesity, suggesting that marriage a...

Rice unveils method for tailoring optical processors

Researchers at Rice University have developed a novel approach to arrange metal nanoparticles in geometric patterns, enabling control of light with light. The breakthrough enables the creation of optical devices that can transform incoming light signals into output of a different color.

SourceRice University·JournalProceedings of the National Academy of Sciences·DateMay 21, 2013

Minus environment, patterns still emerge

A Rice University study found that regulatory patterns in E. coli cells can arise from mutation, genetic drift, and neutral evolution, challenging the idea that environmental factors drive such patterns. The researchers generated computer models of random regulatory networks, which evolved through millions of generations without progra...

SourceRice University·JournalProceedings of the National Academy of Sciences·DateMay 21, 2013

Add boron for better batteries

Researchers at Rice University found that adding boron to graphene improves its ability to store lithium ions, resulting in a capacity two times larger than graphite. The discovery also enables the material to hold a proper voltage, making it suitable for commercial use.

SourceRice University·JournalThe Journal of Physical Chemistry Letters·DateMay 16, 2013

'Going negative' pays for nanotubes

Researchers at Rice University have discovered a way to create liquid crystals from negatively charged carbon nanotubes, allowing for easier functionalization and potentially leading to stronger, more conductive fibers. This breakthrough could significantly improve the creation of macro materials out of microscopic nanotubes.

SourceRice University·JournalACS Nano·DateMay 3, 2013

Heart cells change stem cell behavior

Researchers found that amniotic fluid stem cells can communicate with mature heart cells through channels in the membrane, forming functional gap junction connections. However, these cells do not differentiate into cardiac tissue under these conditions.

SourceRice University·JournalJournal of Cellular and Molecular Medicine·DateMay 2, 2013

Silicone liquid crystal stiffens with repeated compression

Rice University researchers have discovered that the liquid crystal phase of silicone becomes significantly stiffer when subjected to repeated compression. This breakthrough could lead to new strategies for self-healing materials, as well as biocompatible materials that mimic human tissues. The stiffening effect is reversible and occur...

SourceRice University·JournalNature Communications·DateApr 29, 2013