杰纳斯
Boosting(机器学习)
光催化
纳米技术
材料科学
机器人
可重用性
降级(电信)
工艺工程
计算机科学
生化工程
流动性有限
催化作用
清水
泄漏(经济)
工作(物理)
杰纳斯粒子
相容性(地球化学)
机器人学
环境科学
作者
Changming Lan,Jing Liang,Jiayi Xu,Xinxin Wang,Xiao Liu,Yiran Ni,Yingnan Zhou,Ming‐Bang Wu,Chao Zhang,Jiayi Liu,Baiheng Wu
出处
期刊:Research
[American Association for the Advancement of Science]
日期:2026-01-01
卷期号:9: 1167-1167
标识
DOI:10.34133/research.1167
摘要
Leveraging living materials such as algae as sustainable photocatalytic platform is highly promising for mitigating antibiotic water pollution; however, they are confronted with low catalytic efficiency and difficulty in recovery, as imposed by their passive, static working mode. Herein, we report a Janus microgel robot (JMR) that features the integration of magnetic-controlled mobility and living photocatalytic function, allowing for substantially boosting antibiotic degradation efficiency and efficient recovery in an actively magnetic-controlled manner. The key to the JMR lies in harnessing gas shear microfluidic technique to manipulate the spatial distribution of TiO 2 – Chlorella pyrenoidosa and Fe 3 O 4 phases into a Janus architecture, followed by gel encapsulation to prevent cell leakage. Under simulated sunlight, the JMR system achieves 77% antibiotic degradation within 10 h, which is 10 times that of the free C. pyrenoidosa (7.6%). Moreover, we demonstrate that the JMR can be imparted with enhanced degradation efficiency by 10.6% and over 95% effectiveness through 3 consecutive operational cycles in actively magnetic-controlled mode. This work establishes a prototype for sustainable environmental biorobots and provides a novel strategy for photocatalytic-biological hybrid system design, advancing the next-generation living materials for water treatment.
科研通智能强力驱动
Strongly Powered by AbleSci AI