Researchers develop Janus Bi, a platform for creating highly asymmetrical nano-architectures with 2D materials, inspired by nature's efficient light transformation processes. The project aims to produce scalable nanotechnological objects with light conversion capabilities.
Scientists review natural structures with exceptional properties, such as wood, bones, spider webs, and sea sponges. These hierarchical structures can be used to design innovative materials for vibration damping and acoustic wave control.
Researchers at Politecnico di Torino developed a new method for creating nanoresonators using 3D printing, achieving mechanical performances similar to silicon-based devices. The technique enables the creation of complex and miniature sensors with improved sensitivity and strength.
The CryForm project aims to replace synthetic stabilizing agents with crystalline materials, enabling innovative multiphase formulations for safer, more sustainable and affordable products. The project will develop biocompatible crystals for pharmaceutical, cosmetic and food applications, contributing to the European Green Deal.
The RETRACE project aims to define specific territorial policies on Circular Economy through a Systemic Approach. The project will focus on the Covid-19 impacts on regional circular economy practices and new best practices.
A study by Politecnico di Torino and Universidade de Ribeirão Preto found that wet scrubbers used in Brazilian sugarcane industry waste up to 70% of water. Dry technologies can achieve similar emissions control with significant energy and water savings.
The Politecnico di Torino team creates hydrogels with complex architectures and self-healing properties using 3D printing activated by light. This breakthrough enables the production of highly complex devices with unique features, paving the way for innovative applications in regenerative medicine and soft-robotics.
The WE-TRANSFORM project investigates the effects of automation and digitalization on the transport workforce, generating a sector policy agenda based on artificial intelligence and collective intelligence. A collaborative platform will be created to produce knowledge that can be easily used and shared to support durable innovations.
The study reveals that the propensity to molecular aggregation is the main control parameter of the sorting process, with an optimal value ensuring maximum speed. This finding has implications for understanding the origin of pathologies like cancer and developing targeted therapies.
The report analyzes 1217 European incubators and accelerators in France, Germany, Italy, Spain, and the UK, providing insights into their impact, services, and focus on social entrepreneurship. The study reveals a high number of employees (7165) and a prevalence of corporate and university incubators.
A mathematical model reveals human spaceflight reduces exercise tolerance and ages astronauts' hearts, with features similar to accelerated aging. Understanding 0G configuration is crucial for ensuring astronaut health in future missions to the Moon and Mars.
Researchers at Politecnico di Torino have developed a new composite material that can store heat during the summer and release it during the winter using a low-cost technology. The innovative material combines cement, salt, and water to produce heat through hydration, offering an affordable solution to balance energy supply and demand.
Researchers have successfully created supramolecular poly-catenanes through molecular self-assembly, forming hierarchical structures composed of interconnected rings. The nano-poly[n]catenanes exhibit unprecedented physical properties and potential applications in molecular machines and active materials.
A new study proposes a device that generates a cooling load without electricity, using evaporation of pure water and highly concentrated salty solution. The device's modular design allows for fine-tuning of cooling power and has the potential to overcome limitations of traditional passive cooling technologies.
Researchers will develop multiscale molecular models to design new classes of artificial materials with bioinspired dynamic properties. The project aims to explore new ways to build bioinspired materials with unprecedented dynamical properties, active materials able to perform complex functions.
A new prototype using solar energy can double the amount of drinking water produced at given solar energy levels. The technology uses 'passive' processes without mechanical or electrical components, making it inexpensive and simple to install.
A new minimally invasive method provides obstetricians with detailed information on the anal sphincter innervation before child delivery, enabling them to perform episiotomies safely and minimize damage. The technique has been tested on 250 women in 10 EU countries.
Researchers have modeled water properties at the nanoscale, revealing surprising characteristics that can benefit various technological applications. The study's findings may lead to advancements in biomedical imaging, particularly Magnetic Resonance Imaging (MRI), by optimizing contrast agents and improving image quality.