Researchers found that gold nanoclusters can change shape under an applied electric field, transforming from a three-dimensional structure to a planar flat structure. Oxygenation of gold nanowires also enables magnetic properties, with conductive behavior up to a certain length and insulating behavior beyond.
Researchers used astronomy technology to develop a system that provides more precise images of single molecules tagged with nanoprobes, allowing for detailed information about molecular binding and gene sequences. The technology enables high-speed detection and identification of individual molecules at nanometer resolution.
Researchers at Georgia Institute of Technology have developed a strategy to capture, store and recycle carbon from vehicles, enabling the creation of zero emission cars. The technology involves an onboard fuel processor that separates hydrogen from carbon, allowing for the production of clean energy.
A team of researchers at Georgia Institute of Technology has developed a computer version of the honeybee dance, which directs server power between tasks to reduce the chances of server overload. This system improves service by up to 25% in tests based on real Internet traffic.
Georgia Tech researchers develop method to predict evanescent wave behavior in nanoscale radiation heat transfer, enabling design of new nanodevices and technologies. The discovery opens path for various applications, including solar thermal energy technologies.
Researchers analyzed stalagmites from Borneo caves to reconstruct the tropical Pacific's climate history. Their findings suggest a more active role for the tropical Pacific in abrupt climate changes than previously thought, providing new insights into past climate trends.
A computer simulation created by Georgia Tech and Emory researchers sheds light on how the nervous system adapts to sensory loss, enabling patients to regain balance despite impaired sensory information. The findings could lead to better diagnosis and rehabilitation for patients with balance problems.
Researchers at The Origins Project aim to understand which molecules and chemical reactions led to the emergence of life on Earth. They will investigate the formation of lifelike polymers and their evolution into life as we know it.
Embryonic stem cells exhibit improved development when subjected to moderate fluid motion, similar to the womb's gentle rocking motions. This phenomenon was discovered by accident using a lab shaker, offering a simpler method for producing healthier cells with reduced clumping and increased cell survival rates.
Scientists at Georgia Tech have developed a new technique for nanolithography that is extremely fast and capable of being used in various environments. The thermochemical nanolithography technique uses an atomic force microscope to heat a silicon tip, inducing a chemical reaction that transforms the film's surface.
Researchers at Georgia Tech and Emory University developed a nanoparticle that can detect and image trace amounts of hydrogen peroxide in animals. This innovation could lead to the creation of a simple diagnostic tool for detecting early stages of various diseases.
Researchers at Georgia Institute of Technology have discovered a phenomenon that allows measurement of mechanical motion in nanostructures using the AC Josephson effect. The technique enables the identification and characterization of structural and mechanical properties of nanoparticles, including those of biological interest.
A magnitude 7.8 earthquake triggered a slow-rupturing tsunami with unexpectedly high wave heights, catching lifeguards off guard and claiming over 600 lives in Java, Indonesia. The study highlights the limitations of traditional warning systems for tsunami events near earthquakes.
A long-term study validates Georgia's vehicle emissions inspection program, reducing emissions by half since the late 1970s. Newer fuels and cleaner vehicle models have also contributed to the decline in emissions, making the inspections program a cost-effective solution.
Researchers found that Phaeocystis globosa can change its colony formation based on the presence of nearby grazers, enhancing or suppressing colonies to avoid being eaten. This complex defensive behavior has implications for global climate change, as Phaeocystis blooms play a key role in the carbon cycle.
A recent study has found that the gene p53, which is thought to assist chemotherapy in killing cancer cells, may actually help them thrive. In contrast, patients with normal p53 had only a 30% survival rate after five years. The research suggests that inhibiting p53 in tumors during chemotherapy could improve patients' long-term survival.
Researchers have developed a new form of platinum nanocrystals with improved catalytic activity, enabling more efficient fuel oxidation and hydrogen production. The nanocrystals, with tetrahexahedral structures, remain stable at high temperatures and can be controlled in size, making them suitable for industrial use.
Researchers at Georgia Tech have developed a new technique to create films of barium titanate nanoparticles in a polymer matrix, allowing for improved capacitors that store twice as much energy as existing devices. The technique uses tailored organic phosphonic acids to encapsulate and modify the surface of the nanoparticles.
A Georgia Tech research team discovered that water exhibits layered properties when confined to channels less than two nanometers wide. The study found that the viscosity of water increases dramatically as it approaches one nanometer in thickness, potentially making it a more suitable lubricant for applications.
Researchers found that cortisol production is cyclic in nature, involving rhythmic binding and unbinding of a protein essential to its production. This process starts with a signal from the hypothalamus, causing adrenal cells to increase cAMP production.
Researchers have developed unique three-dimensional solar cells that capture nearly all of the light that strikes them, increasing efficiency and reducing size, weight and mechanical complexity. The new cells could also enable improvements in photovoltaic coating materials and change the way solar cells are designed.
Researchers have developed a prototype nanogenerator that produces continuous direct-current electricity by harvesting mechanical energy from environmental sources. The device uses arrays of vertically-aligned zinc oxide nanowires to generate power, which could be used to power nanometer-scale devices such as biosensors and robots.
Researchers have developed new two-photon absorbing molecules that enable the creation of polymer features as small as 65 nanometers wide using simplified lithography techniques. This breakthrough reduces the cost and complexity of fabricating nanoscale electronic and photonic devices.
A team of researchers led by Susan Cozzens is working to improve water supply and sanitation in developing countries. They aim to create new approaches to water supply and sanitation, focusing on storing, treating, and disinfecting water, as well as developing sanitation systems that minimize pathogen release.
GTRI researchers patented a digital process for aircraft radar warning receivers, improving stability and reducing cost. The new digital crystal video receiver can detect RF signals over a wide range of frequencies, making it more robust and efficient.
Scientists have created a new class of gas sensors using the three-dimensional shells of diatoms, which can detect nitric oxide at high sensitivity and speed. The converted shells retain their intricate shapes and nanoscale detail, making them useful for battery electrodes, chemical purifiers, and other applications.
Researchers discovered that brain regions involved in spatial attention, planning movements, and decision-making activate simultaneously when preparing for a task. This preparation enables the brain to get a 'running start', leading to quicker responses. The study's findings have implications for understanding real-world tasks like dri...
Researchers found that ovarian cancer cells form by using the PAX8 protein to direct adult stem cell proliferation. This discovery opens new avenues for basic research and provides a potential biomarker for detecting ovarian cancer.
The research team created field-effect transistors, diodes, sensors, and current-producing nanogenerators by bending zinc oxide nanowires and nanobelts. These devices take advantage of the relationship between mechanical and electronic coupled behavior in piezoelectric nanomaterials, enabling novel applications.
Researchers Uzi Landman and Wei Kang show that Navier-Stokes equations can accurately describe liquid bridge behavior in realistic environments. Their study reveals the importance of molecular evaporation and condensation processes in shaping the nanobridge's shape.
The new Georgia Tech satellite engine uses solar power and fine-tuned exhaust velocity to reduce fuel consumption by up to 40 percent. This allows for more payload in orbit and potentially lower launch costs.
Researchers created dual-modality microbeads to identify disease biomarkers, allowing for faster and more efficient detection of viruses and proteins in human blood and urine. The new technology can analyze very low concentrations of target molecules, enabling diagnosis of diseases like Alzheimer's with high sensitivity.
Scientists at Georgia Tech have found that the electrical conductance of metal nanowires varies due to a pair of atoms, known as a dimer, shuttling back and forth between the bulk electrical leads. This discovery has significant implications for the development of nanotechnology and nanodevices.
Researchers have unveiled the size-dependent evolution of structural and electronic structural motifs of gold nanoclusters. The experiments show near perfect agreement pertaining to the cluster structures occurring in the experiments, which is crucial for understanding their behavior as nanocatalysts or in medical applications.
A new automated system installs raised pavement markers (RPMs) along lane stripes while in motion, reducing risk to workers and drivers. The system is less labor-intensive, faster, and safer than manual placement, using less fuel and causing less wear on equipment.
Researchers at Georgia Tech found that multiwalled carbon nanotubes (MWNTs) remain suspended for over a month when mixed with natural organic matter in water, making them more likely to be transported in the environment. The study highlights the need to study nanomaterials' environmental impact before commercial applications.
Scientists at Georgia Tech have demonstrated a new technique for fabricating nanoscale optical waveguides and splitters using artificial butterfly wing scales. The replicas accurately replicated the physical features and optical properties of the natural wing scales, exhibiting similar shape, orientation, and distribution.
A recent study by Marie Thursby and Jerry Thursby found that 49.6% of R&D effort in developed nations is for new science, while in emerging countries it's only 22%, suggesting universities play a crucial role in driving innovation.
Analyses of a classic, slow-rupturing tsunami earthquake have provided insight into seismologists and engineers. The data revealed a secondary underwater movement that amplified the original tsunami, creating a wave run-up of over 60 feet along a one-mile section of coastline.
Researchers are studying how unicellular micro-algae, known as diatoms, create complex cell walls and aim to learn from their intricate micro-architectures. Genetic engineering of diatoms using microparticle bombardment enables the insertion of mutated or foreign genes into the genome, potentially leading to novel silica nanostructures.
Researchers have developed a noninvasive imaging technique that uses a contrast agent and microcomputed tomography to image cartilage in osteoarthritis research. The technique, dubbed EPIC-microCT, reveals information about cartilage thickness and composition, allowing for the monitoring of osteoarthritis progression and treatment.
Researchers develop a 3D model of a child's heart using MRI scans to simulate blood flow and optimize surgical procedures for complex congenital heart defects. The system aims to improve quality of life for children with single-ventricle hearts by reducing the need for multiple surgeries.
A new 'inverse planning' system developed by the Georgia Institute of Technology improves brachytherapy treatment for prostate and other cancers. The system optimizes radiation doses to tumor cells while minimizing effects on nearby structures, leading to better local tumor control and reduced side effects.
A new mechanism has been discovered linking chemical emissions from ocean phytoplankton to increased cloud cover, which could impact global climate models. The study found that airborne particles produced by oxidation of the chemical isoprene may contribute to a doubling of cloud droplet concentrations.
Georgia Tech/Emory researchers used dopamine to create a polymer that stimulates nerve tissue to regrow and reconnect, offering a potential treatment for neurological disorders. The material degrades over time, allowing the nerve to grow in a hostile environment.
A new study suggests microbes produce repugnant chemicals to compete with larger animals for valuable food resources like decaying meat and seeds. Microbes can outcompete other organisms if they can produce chemicals that make these resources unpalatable to higher species.
Georgia Tech researchers have developed a self-cleaning surface inspired by the lotus plant to improve photovoltaic arrays and micro-electromechanical systems (MEMS). The unique surface combines nano- and micron-scale structures with a waxy coating, allowing water and dirt to bead up and roll off instantly.
New research at Georgia Tech and Zoo Atlanta shows that giant pandas can discriminate between colors and various shades of gray. The study found that both pandas were able to choose the correct colored pipe in tests, indicating they have some sort of color vision.
Researchers at Georgia Institute of Technology have developed a new technique for creating vertical alignment among liquid crystal molecules, eliminating the need for manual rubbing and potentially increasing device yield. The technique uses in-situ photopolymerization to create a cellular matrix of liquid crystalline droplets with con...
The Georgia Guidebook for Pedestrian Planning provides a vision, goals, and objectives for pedestrian planning in the state. The guidebook aims to enhance safety, create seamless integration of pedestrian facilities, and encourage a pedestrian-friendly environment.