Defect engineering is the deliberate introduction, removal, or manipulation of structural imperfections in nanomaterials to tailor their properties for specific applications. Unlike the traditional ...
Aquaculture has quietly become the world’s fastest-growing food production sector, delivering a record 122.6 million tonnes ...
Tissue engineering combines cells, biomaterials, biochemical signals, and engineering design to repair, replace, model, or regenerate biological tissues. It draws on cell biology, materials science, ...
Modern wearable sensors equipped with nanomaterials and nano-additives are more efficient, sensitive, and accurate than conventional healthcare sensing mechanisms. 1 The incorporation of ...
Vadim Tokranov, Ph.D., Ioffe Physical-Technical Institute, Russian Academy of Sciences-St. Petersburg Natalya Tokranova, Ph.D., Ioffe Physical-Technical Institute, Russian Academy of Sciences-St.
Nanotechnology is at the heart of critical and emerging technologies from quantum computing to precision farming—yielding tremendous economic, societal, and national security benefits. As global ...
Nanotechnology represents one of the most transformative fields in modern science, bridging physics, chemistry, biology, and engineering to create breakthroughs that redefine how the world works. It ...
The field of bone tissue engineering leverages nanotechnology to create materials and devices that can support, guide and enhance the regeneration of bone tissue. Nanoscale features mimic the natural ...
Xiaochun Li, a professor at the UCLA Samueli School of Engineering, has been elected to the National Academy of Engineering, one of the highest professional honors granted to American engineers. He is ...
A new $21 million gift from San Diego-based biotech leader and philanthropist Aiiso Yufeng “Jeff” Li and his wife, DongDong “Doreen” Li, honors unique efforts at the University of California San Diego ...