Institute of Wood Science and Technology, 18th Cross Malleswaram, Bengaluru 560003, India.
CSIR-National Aerospace Laboratories, HAL Airport Road, Bangalore 560017, India.
Int J Biol Macromol. 2024 Mar;262(Pt 2):130025. doi: 10.1016/j.ijbiomac.2024.130025. Epub 2024 Feb 8.
Application of nanomaterials is gaining tremendous interest in the field of wood science and technology for value addition and enhancing performance of wood and wood-based composites. This review focuses on the use of nanomaterials in improving the properties of wood and wood-based materials and protecting them from weathering, biodegradation, and other deteriorating agents. UV-resistant, self-cleaning (superhydrophobic) surfaces with anti-microbial properties have been developed using the extraordinary features of nanomaterials. Scratch-resistant nano-coatings also improve durability and aesthetic appeal of wood. Moreover, nanomaterials have been used as wood preservatives for increasing the resistance against wood deteriorating agents such as fungi, termites and borers. Wood can be made more resistant to ignition and slower to burn by introducing nano-clays or nanoparticles of metal-oxides. The use of nanocellulose and lignin nanoparticles in wood-based products has attracted huge interest in developing novel materials with improved properties. Nanocellulose and lignin nanoparticles derived/synthesized from woody biomass can enhance the mechanical properties such as strength and stiffness and impart additional functionalities to wood-based products. Cellulose nano-fibres/crystals find application in wide areas of materials science like reinforcement for composites. Incorporation of nanomaterials in resin has been used to enhance specific properties of wood-based composites. This review paper highlights some of the advancements in the use of nanotechnology in wood science, and its potential impact on the industry.
纳米材料在木材科学与技术领域的应用引起了极大的关注,因为它可以增加木材和木材基复合材料的附加值并提高其性能。本文综述了纳米材料在改善木材和木材基材料性能以及保护它们免受风化、生物降解和其他劣化剂影响方面的应用。利用纳米材料的特殊性质,已经开发出了具有耐紫外线、自清洁(超疏水)和抗菌性能的表面。具有耐划伤性能的纳米涂层也提高了木材的耐久性和美观度。此外,纳米材料还被用作木材防腐剂,以提高木材对真菌、白蚁和蛀虫等木材劣化剂的抵抗力。通过引入纳米粘土或金属氧化物的纳米颗粒,可以使木材更能抵抗点火并减缓燃烧速度。纳米纤维素和木质素纳米颗粒在木材基产品中的应用引起了人们极大的兴趣,因为它们可以开发出具有改善性能的新型材料。源自木质生物质的纳米纤维素和木质素纳米颗粒可以增强木材的机械性能,如强度和刚度,并赋予木材基产品额外的功能。纤维素纳米纤维/晶体在复合材料的增强等材料科学的广泛领域得到了应用。将纳米材料掺入树脂中可增强木材基复合材料的某些特性。本文综述了纳米技术在木材科学中的一些应用进展及其对该行业的潜在影响。