Wanying Chen
Zhejiang Sheng
As seen in:
Nature,
Wiley Online Library,
PLOS ONE,
Frontiers,
MDPI,
Omega,
ACS Publications,
Physical Review B,
Aging
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Horizontally arranged covalent organic framework nanowires on poly(amidoxime) fibers for high-efficiency uranium capture
Abstract The efficient capture of low-concentration uranium (with a concentration range of 10–50 ppm) from nuclear and metallurgical wastewaters is crucial for safeguarding the ecological security of water bodies. Herein, an ion coordination approach was proposed to achieve the controlled arrangement of covalent organic framework (COF) nanowires, with these nanowires being horizontally aligned on the surface of poly(amidoxime) (PAO) fibers.
RModBlock antisense oligonucleotides as a universal tool for precise and efficient inhibition of RNA modifications
Abstract The ability to selectively edit specific RNA modifications is needed to understand their roles in cellular function and disease. However, existing approaches, particularly catalytically inactive Cas (dCas)-based systems, have limited applicability owing to their reliance on eraser proteins, and their performance can vary depending on the modification type and target context.
A general method for synthesizing heteropore covalent organic framework membranes to rapidly enrich uranyl ions
Abstract Heteropore covalent organic framework membranes are predicted to exhibit excellent uranium extraction capabilities due to their combination of rapid transport and strong affinity. However, the growth orientation of covalent organic framework networks is susceptible to disturbance when a supporting substrate is introduced, posing a major challenge to the fabrication of covalent organic framework membranes with well-defined hierarchical pores.
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