Torrisi L, Scolaro C, Restuccia N
Dottorato di Ricerca in Fisica, Università di Messina, V.le F.S. D'Alcontres 31, S. Agata (ME), 98166, Italy.
J Mater Sci Mater Med. 2017 Apr;28(4):63. doi: 10.1007/s10856-017-5871-1. Epub 2017 Mar 1.
The wetting ability of water and of some biological liquids was measured on different biocompatible surfaces with and without different colloidal metals. Insoluble nanoparticles disperse in biological tissues enhance some properties, such as the interface adhesion between two surfaces, the X-ray contrast of medical images and the absorbed dose during radiotherapy treatments. The introduction of nanoparticles in the liquids generally improves the wetting ability and changes other properties of the solution, due to the different distribution of the adhesion forces, to the nature, morphology and concentration of the added nanoparticles. An investigation on the contact angle of the liquid drops, physiological liquids, including the human blood, placed on different substrates (polymers, ceramics and metals) with and without the use of metallic nanoparticles is presented, evaluated and discussed.
在有无不同胶体金属的情况下,测量了水和一些生物液体在不同生物相容性表面上的润湿性。分散在生物组织中的不溶性纳米颗粒可增强某些特性,例如两个表面之间的界面附着力、医学图像的X射线对比度以及放射治疗期间的吸收剂量。由于附着力分布不同、添加的纳米颗粒的性质、形态和浓度不同,在液体中引入纳米颗粒通常会提高润湿性并改变溶液的其他性质。本文介绍、评估并讨论了对放置在有无金属纳米颗粒的不同基材(聚合物、陶瓷和金属)上的液滴、生理液体(包括人体血液)的接触角的研究。