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Rice University


Rice's carbon nanotube fibers outperform copper

Carbon nanotube-based fibers have been shown to carry electrical current up to four times that of copper wires of the same mass. The fibers' ability to transmit current makes them ideal for lightweight power transmission in aerospace applications, where weight is a significant factor.

SourceRice University·JournalAdvanced Functional Materials·DateFeb 14, 2014

Is height important in matters of the heart? New study says yes

A new study from Rice University and the University of North Texas suggests that physical similarity is not the dominant rule in human mating when it comes to height preferences. Women prefer taller partners mostly for protection and femininity, while men prefer shorter women but not extremely short ones for intimacy purposes.

SourceRice University·JournalJournal of Family Issues·DateFeb 10, 2014

Quick test finds signs of diarrheal disease

Researchers have created a rapid, affordable diagnostic test for cryptosporidiosis using recombinase polymerase amplification (RPA) technique. The test can detect the presence of even one parasite in a sample, with high accuracy rates, and requires minimal equipment.

SourceRice University·JournalAnalytical Chemistry·DateFeb 6, 2014

Diamond film possible without the pressure

Scientists at Rice University and Russia have calculated a road map for creating ultra-thin diamond films without high pressure. The 'phase diagram' outlines conditions necessary to turn stacked graphene sheets into flawless diamond lattices, with potential applications in nanocapacitors, electronics, and nano-optics.

SourceRice University·JournalNano Letters·DateFeb 3, 2014

Rice lab clocks 'hot' electrons

Researchers at Rice University measured the speed and efficiency of excited 'hot' electrons drawn from gold nanoparticles into a sheet of graphene. They found that graphene accelerated damping of plasmons, shortening its lifetime, and calculated the electrons' transfer time.

SourceRice University·JournalACS Nano·DateJan 30, 2014

Don't forget the customers after mergers

A recent study found that companies that successfully achieve a dual emphasis of improving efficiency and customer satisfaction experience the highest increase in long-term financial performance. The research suggests that ignoring customers during mergers can lead to missed opportunities and decreased value for firms.

SourceRice University·JournalJournal of Service Research·DateJan 29, 2014

Researchers tune in to protein pairs

Rice University scientists create method to quantify how mutations affect protein pairs' ability to transmit signals. The new metric helps understand crosstalk and specificity in two-component systems, essential for bioengineering applications.

SourceRice University·JournalProceedings of the National Academy of Sciences·DateJan 27, 2014

Better protein capture a boon for drug manufacturers

Researchers create method to pinpoint locations for single proteins and improve chromatography process, leading to faster and cheaper drug production. This breakthrough could widen bottleneck in pharmaceutical industry and expand application to other industries.

SourceRice University·JournalProceedings of the National Academy of Sciences·DateJan 22, 2014

New test targets salmonella

Researchers at Rice University have developed a novel biosensor that can detect multiple strains of salmonella pathogens in food quickly and easily. The sensor uses microcantilevers decorated with peptides to identify the presence of specific bacteria, delivering results within minutes and outperforming existing standard tests.

SourceRice University·JournalAnalytical Chemistry·DateJan 21, 2014

Researchers 'detune' a molecule

Researchers at Rice University found that they can control the bonds between atoms in a molecule by applying a voltage and running an electric current through a single buckyball. The effect appears when the buckyball attaches to a gold surface, causing its internal bonds to undergo a subtle shift.

SourceRice University·JournalProceedings of the National Academy of Sciences·DateJan 16, 2014

Some motor proteins cooperate better than others

Researchers at Rice University have found that motor proteins cooperate differently, with myosinVa producing more force than kinesin-1. This cooperation is crucial for regulating the transport of organelles within cells, and breakdowns in motor function are implicated in human diseases.

SourceRice University·JournalProceedings of the National Academy of Sciences·DateJan 9, 2014

Synthetic genetic clock checks the thermometer

Researchers created a robust synthetic genetic clock in E. coli bacteria to regulate protein production accurately across a wide temperature range. The breakthrough resolves a long-standing problem in synthetic biology and has potential applications in biotechnology and reprogramming cellular regulatory mechanisms.

SourceRice University·JournalProceedings of the National Academy of Sciences·DateJan 7, 2014

RAMBO a small but powerful magnet

RAMBO allows researchers to run spectroscopy-based experiments in pulsed magnetic fields of up to 30 tesla on a tabletop. The device enables direct optical access to the sample and combines ultrastrong magnetic fields with short and intense optical pulses.

SourceRice University·JournalReview of Scientific Instruments·DateJan 6, 2014

'Superbugs' found breeding in sewage plants

Scientists have discovered 'superbugs' carrying multidrug-resistant bacteria in treated wastewater from two plants in northern China. The study reveals the microbes breed and spread their dangerous cargo, highlighting a significant public health risk.

SourceRice University·JournalEnvironmental Science & Technology Letters·DateDec 16, 2013

Graphene nanoribbons an ice-melting coat for radar

Rice University scientists have developed a spray-on coating made from graphene nanoribbons that can melt ice on sensitive radar domes without interfering with radio frequencies. The material is also transparent and durable, making it a promising competitor to existing deicing technologies.

SourceRice University·JournalACS Applied Materials & Interfaces·DateDec 16, 2013

Ethanol blends carry hidden risk

Researchers at Rice University found that blending more ethanol into fuel can lead to the release of toxic or explosive gases, which can accumulate in buildings and pose health risks. The study highlights the need for new thinking on managing vapor-intrusion risks due to fuel spills.

SourceRice University·JournalEnvironmental Science & Technology·DateDec 13, 2013

Light and sound fire scientists' imaginations

Researchers have discovered new abilities to manipulate light and sound using structured polymers, which could lead to breakthroughs in computing, sensing technology, and soundproofing. The findings suggest the potential for creating thin soundproofing materials that can guide rather than absorb sound.

SourceRice University·JournalAdvanced Materials·DateDec 12, 2013

Liquid to gel to bone

Researchers have developed a hydrogel scaffold that solidifies into a gel at body temperature, providing a platform for functional and aesthetic tissue regeneration. The material is intended as an alternative to prefabricated implantable scaffolds and can be injected to the point of need.

SourceRice University·JournalBiomacromolecules·DateDec 11, 2013

Scientists scale terahertz peaks in nanotubes

In a breakthrough discovery, Rice University researchers found that free electrons in metallic and doped carbon nanotubes create plasmons at terahertz frequencies, enabling the potential for advanced optoelectronic devices. This finding clarifies the origin of the previously observed terahertz peak in nanotubes.

SourceRice University·JournalNano Letters·DateDec 9, 2013

Morphing material has mighty potential

Researchers develop composite material that can change shape in response to temperature, enabling applications such as dynamic scaffolds and implantable materials. The material's reversible properties make it suitable for biomedical applications where shape changes need to be repeated.

SourceRice University·JournalSoft Matter·DateDec 9, 2013

Coal yields plenty of graphene quantum dots

Rice University scientists have discovered a simple method for producing graphene quantum dots in bulk from coal, opening up new opportunities for medical imaging, sensing, and electronic applications. The process allows for control over the size of the dots, which can be tuned to produce different fluorescent wavelengths.

SourceRice University·JournalNature Communications·DateDec 6, 2013

Proteins' passing phases revealed

Rice University researchers have developed a new method to identify previously hidden details about proteins' structures, potentially accelerating novel drug design. By combining structural data and genomic analysis, the team predicted intermediate configurations of proteins that were hard to detect.

SourceRice University·JournalProceedings of the National Academy of Sciences·DateDec 5, 2013

Study shows how water dissolves stone, molecule by molecule

Scientists at Rice University and MARUM developed a new computerized model to simulate the complex chemistry at the boundary layer, where quartz and water meet. The model accurately predicts dissolution rates, which could revolutionize engineering calculations related to building materials and radioactive waste storage.

SourceRice University·JournalThe Journal of Physical Chemistry C·DateDec 5, 2013

When aluminum outshines gold

Researchers at Rice University have discovered aluminum's valuable plasmonic properties, which make it suitable for harvesting solar energy and creating large-area optical devices. The study also found that aluminum exhibits quantum mechanical effects stronger than gold in certain nanomatryushka structures.

SourceRice University·JournalACS Nano·DateDec 2, 2013

Rice U. study: It's not easy 'being green'

A new Rice University study explores the complex relationship between self-evaluations and supportive behaviors towards environmental issues. Researchers found that individuals who experience mixed self-evaluations, including both positive self-assets and negative self-doubt, tend to exhibit less extensive issue-supportive behavior.

SourceRice University·JournalAcademy of Management Journal·DateDec 2, 2013

Dunn Foundation awards bioscience grants

The John S. Dunn Foundation awards seed grants to researchers at Rice University's BioScience Research Collaborative to support new collaborations in cancer diagnosis and treatment, vascular health, and plant-inspired energy conversion. The grants aim to foster interdisciplinary and multi-institutional research.

Bad proteins branch out

Rice University researchers used computer models to study the behavior of misfolded proteins, finding that they can form branching structures similar to those found in spider silk. These structures may be an early stage in the formation of amyloid plaques associated with Alzheimer's disease.

SourceRice University·JournalProceedings of the National Academy of Sciences·DateNov 25, 2013

Flashes of brilliance

Researchers at Rice University discovered the mechanism behind superfluorescent bursts in quantum wells, enabling compact semiconductor devices to produce picosecond pulses of light. The discovery may lead to new telecommunications equipment and other devices transmitting signals at picosecond speeds.

SourceRice University·JournalScientific Reports·DateNov 25, 2013

Nano magnets arise at 2-D boundaries

Researchers at Rice University discovered that imperfections in two-dimensional materials can create nanoscale magnetic fields. The study suggests a new degree of freedom for electronics, allowing for enhanced efficiency and enriched functions.

SourceRice University·JournalACS Nano·DateNov 14, 2013

Clotting protein hardens aging hearts

Researchers at Rice University discovered that the accumulation of von Willebrand factor (VWF) in heart valve tissues contributes to their progressive hardening with age. As tissues from pig valves are commonly used to make human heart-valve replacements, VWF helps regulate blood clotting in both pigs and humans.

Divorced people more likely to die from preventable accidents

A new study by sociologists at Rice University and the University of Pennsylvania found that divorced individuals are more than twice as likely to die from preventable causes such as fire, poisoning, and smoke inhalation. Single people and those with low educational attainment also face a higher risk of accidental death.

SourceRice University·JournalSocial Science Research·DateOct 30, 2013

Physicists decode decision circuit of cancer metastasis

Physicists at Rice University have deciphered the operating principles of a genetic switch that cancer cells use to decide when to metastasize and invade other parts of the body. The research found a three-way genetic switch that explains previously confusing experimental results, opening new avenues for cancer treatment.

SourceRice University·JournalProceedings of the National Academy of Sciences·DateOct 24, 2013

Rice scientists create a super antioxidant

Rice chemist Vicki Colvin led a team that created small, uniform spheres of cerium oxide with biocompatible coatings, enhancing its natural antioxidant properties. The nanoparticles can absorb and release oxygen ions to protect against radiation-induced side effects and may slow aging.

SourceRice University·JournalACS Nano·DateOct 15, 2013

'Ship in a bottle' detects dangerous vapors

Researchers at Rice University have created an 'artificial nose' that can detect dangerous fumes from solvents by trapping metallic compounds inside zeolite cages. The technology uses a 'ship in a bottle' type of chemical assembly, with each gas having a unique photoluminescent fingerprint.

SourceRice University·JournalAngewandte Chemie·DateOct 10, 2013

Carbon's new champion

Carbyne nanorods or nanoropes have a host of remarkable and useful properties, including surpassing the tensile strength of any other known material and having twice the tensile stiffness of graphene. Stretching carbyne alters its electronic band gap significantly, making it suitable for applications such as sensors and energy storage.

SourceRice University·JournalACS Nano·DateOct 9, 2013

Scientists use blur to sharpen DNA mapping

Scientists at Rice University have created a method to locate specific sequences along single strands of DNA, which could help diagnose genetic diseases. The 'motion blur point accumulation' technique resolves structures as small as 30 nanometers by capturing images of fluorescent probes binding to target DNA.

SourceRice University·JournalACS Applied Materials & Interfaces·DateOct 9, 2013