
School Photos, Deepfakes, and Graphene Sensory Innovations
School photos used in deepfake AI, graphene sensory innovations, and a dyslexic student's assistive tech invention discussed

School photos used in deepfake AI, graphene sensory innovations, and a dyslexic student's assistive tech invention discussed

Nhóm nghiên cứu tại Đại học Bắc Kinh phát triển phương pháp sản xuất graphene cấu trúc thoi hiệu quả, có độ tinh khiết 99% và kích thước lớn, giúp thúc đẩy phát triển máy tính lượng tử chống nhiễu tốt.

A research team led by Liu Kaihui has successfully fabricated rhombohedral graphene at a scale and purity previously unachievable.

Researchers have developed a micro-sensor, dubbed an 'electronic tongue,' using graphene derived from waste tea leaves. This device can rapidly measure the theophylline concentration and pH of tea within one minute, offering potential applications in smart agriculture and food safety.
Researchers at KAIST in South Korea have discovered how graphene oxide selectively attacks harmful bacteria while leaving human cells largely unaffected. The material binds to phosphatidylglycerol (POPG), a lipid found in bacterial membranes but not in human cells, causing bacterial membranes to destabilise and break apart. This mechanism helps explain the antibacterial effect of graphene-based products, including toothbrushes that have already sold over 10 million units, though researchers caution that real-world effectiveness varies and most evidence comes from laboratory and animal studies rather than human clinical trials.