ManufacturingScienceTechnology

Breakthrough Silver Nanoparticle Shielding Blocks 99.99% of Electromagnetic Interference

Scientists have developed a revolutionary electromagnetic interference shielding material using porous silver nanoparticles. The breakthrough technology achieves 56.5 dB shielding effectiveness across a wide frequency range, making it ideal for modern wireless communication systems.

Revolutionary EMI Shielding Material Development

Researchers have reportedly developed a groundbreaking electromagnetic interference (EMI) shielding material using porous silver nanoparticles that blocks over 99.99% of electromagnetic waves, according to a recent study published in Scientific Reports. The innovative pressureless low-temperature sintering process creates a highly effective shielding layer that could transform protection for electronic devices against electromagnetic interference.

EnergyScience

Engineered Molecular Layer Boosts Perovskite Solar Cell Performance and Stability

A breakthrough in perovskite-silicon tandem solar cells has been achieved through molecular engineering of interfacial layers. The new design controls crystallization dynamics and reduces defects, leading to substantial efficiency gains.

Molecular Engineering Breakthrough in Solar Technology

Researchers have developed an engineered self-assembled monolayer that significantly improves the performance and stability of perovskite-silicon tandem solar cells, according to reports in Nature Photonics. The novel molecular design addresses critical challenges in perovskite crystallization control at the buried interface, sources indicate.

ResearchScience

Mitochondrial Protein Discovery Reveals New Pathway for Heart Failure Prevention

Scientists have uncovered a critical mitochondrial protein that coordinates cellular energy production and prevents heart failure. The findings reveal new mechanisms behind cardiomyopathy development and potential therapeutic strategies.

Breakthrough in Cardiac Research

Researchers have identified a mitochondrial protein that plays a pivotal role in preventing heart failure by coordinating cellular energy production, according to a recent study published in Cell Research. The protein, known as NDUFAB1, reportedly serves as a master regulator of mitochondrial function, with its absence leading to progressive dilated cardiomyopathy and early death in experimental models.