Samanmali V G C, Rathnayake A R M A M, Dharmaweera Nishan, Bandara T, De Silva R T, Mantilaka M M M G P G
Faculty of Graduate Studies, University of Sri Jayewardenepura Gangodawila Nugegoda Sri Lanka.
CodeGen International (Pvt) Ltd Bay 1-5, Trace Expert City Colombo 10 Sri Lanka
RSC Adv. 2025 Sep 10;15(39):32721-32731. doi: 10.1039/d5ra05937b. eCollection 2025 Sep 5.
Superhydrophobic printable and writable cellulose paper preparation requirements are becoming increasingly significant in the current climate for a variety of important applications. The present work introduces a simple and successful approach for creating a superhydrophobic paper that can be printed and written on while maintaining its water repellent properties. The paper is coated with modified silica utilizing tetraethyl orthosilicate (TEOS), methyltriethoxysilane (MTES), 1H, 1H, 2H, 2H - perfluorooctyltriethoxysilane (PFOTES), and acrylic binder a dip coating process. As a result of multi-layer deposition of silicon dioxide (SiO) microbeads with nano-micro size mountain-like wrinkled coating on each bead, the treated paper develops a nano/microstructure with a water contact angle (WCA) of 152° ± 2° and a water sliding angle (WSA) of 7° ± 0.5°. This superhydrophobic surface retains its superhydrophobicity after 50 abrasion cycles on sandpaper and maintains its self-cleaning property with soil particles and many types of liquids. The superhydrophobic paper products have a higher tensile strength (∼6 MPa) than non-treated paper (∼2 MPa) while preserving superhydrophobicity across pH ranges 5-11. The treated papers show excellent printability and writability and retain their superhydrophobicity after printing and writing. This superhydrophobic paper can be used to create waterproof paper-based printed products and artwork.
在当前环境下,超疏水可打印和可书写纤维素纸的制备要求对于各种重要应用而言变得越来越重要。本工作介绍了一种简单且成功的方法来制备一种超疏水纸,这种纸能够在保持其疏水性能的同时进行打印和书写。通过使用正硅酸乙酯(TEOS)、甲基三乙氧基硅烷(MTES)、1H,1H,2H,2H - 全氟辛基三乙氧基硅烷(PFOTES)和丙烯酸粘合剂,采用浸涂工艺对纸张进行改性二氧化硅涂层处理。由于二氧化硅(SiO)微珠多层沉积,每个微珠上形成纳米 - 微米尺寸的山状皱纹涂层,处理后的纸张形成了一种纳米/微结构,其水接触角(WCA)为152°±2°,水滑动角(WSA)为7°±0.5°。这种超疏水表面在经过50次在砂纸上的磨损循环后仍保持其超疏水性,并且对于土壤颗粒和多种液体保持其自清洁性能。超疏水纸产品的拉伸强度(约6 MPa)高于未处理的纸张(约2 MPa),同时在pH值范围5 - 11内保持超疏水性。处理后的纸张表现出优异的可打印性和可书写性,并且在打印和书写后仍保持其超疏水性。这种超疏水纸可用于制造防水纸质印刷产品和艺术品。