- 鄭詠梅 教授
- 北京航空航天大學(xué) 化學(xué)學(xué)院
- 網(wǎng)址: zhengyongmei.polymer.cn 訪問量:757872
- ACS Nano: High-efficiency fog collector
- 國際仿生工程學(xué)會
- 鄭詠梅教授研究進(jìn)展主頁
- 中國聚合物網(wǎng)
- 中國流變網(wǎng)
- 中國化學(xué)儀器網(wǎng)
- 化學(xué)化工論壇
- 通信地址:北京市昌平區(qū)高教園南三街9號北京航空航天大學(xué)實(shí)驗(yàn)七號樓409
- 郵編:102206
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關(guān)鍵字:Spider silk, Water collection
論文來源:期刊
具體來源:Soft Matter, 2011, 7, 9468–9473
發(fā)表時間:2011年
Larger hanging-drops on a fiber have been significant for water-acquiring engineering or filtering projects in recent years. Cribellate spider capture silks after wetting hang amazingly large pearly water drops and display strong water capture ability. This ability wouldn’t exist without a special wet adhesion on a surface. Here, we investigate the capillary adhesion on wetted cribellate spider’s capture silk during the hanging of larger pearly water drops. Based on the roughness and curvature of a spindle-knot on wetted spider silk, the novel models of capillary adhesion force are proposed to value the larger pearly hanging-drops. The strong water-capturing ability can be demonstrated by as-designed artificial fibers. This investigation opens an insight into the wet adhesive property of spider silk, which is helpful to design artificial polymer fibers that will be applied into water collecting tents and webs, and extended
into filtering projects such as the noxious emission of aerosol and dust pollution from chemical plants.