Sendong Zhou, Huihe Chen, Zekun Cheng, Yuan Gao, Meng Zhao, Yu Wang, Qingli Xue, Zujing Feng, Shuting Hou, Yuanyuan Zhang, Rui Xu, Yahan Pang, Jianfeng Zhang, Hui Wu, Sen Lin
Blood analysis is essential for managing critically ill patients, yet plasma/serum separation in point-of-care testing (POCT) remains centrifugation-dependent, hindering utility in resource-limited settings. Conventional filtration materials suffer from poor mechanical strength, fragile structures, and suboptimal separation performance. Herein, we fabricate a silica microfiber sponge (Turb-SiO2) with a 3D disordered network via a turbulence spinning technique. The material exhibits exceptional flexibility, retaining >64% initial stress after 2500 compression cycles, and superior breathability (99.51% air permeability, 0.12 mm H2O pressure drops) under compression. The Turb-SiO2 achieves efficient plasma separation with filtrate hemoglobin at 15.7 mg dL-1, matching centrifugation efficacy and outperforming commercial filters. Its crimped fiber structure minimizes hemolysis by eliminating sharp tips that can damage red blood cells. With advantages in weight, volume, cost and operability, the Turb-SiO2 offers a high-performance solution for portable low-cost POCT blood separation.