College of Chemistry and Chemical Engineering, Instrumental Analysis Center, Shandong Sino-Japanese Center for Collaborative Research of Carbon Nanomaterials, Qingdao University, 266071 Qingdao, China.
College of Chemistry, Jilin University, 130012 Changchun, China.
Adv Colloid Interface Sci. 2022 Jul;305:102683. doi: 10.1016/j.cis.2022.102683. Epub 2022 May 2.
As a power-driving approach, ultrasound irradiation is very appealing to the preparation or modification of new materials. In the review, we overviewed the latest development of ultrasound-mediated effects or reactions in polymer composites, and demonstrated its unique and powerful aspects on the polymerization or aggregation. The review generalized the different categories of heterogeneous polymer composites by defining the constituents, and described the shapes, sizes and basic properties of various purpose-specific or site-specific products. Importantly, the review paid more attention to the main biomedicine applications of heterogeneous polymer composites, such as drug or bioactive substance entrapment, delivery, release, imaging, and therapy, and emphasized many advantages of ultrasound-assembling approaches and heterogeneous polymer composites in biology and medicine fields. In addition, the review also indicated the prospective challenges of heterogeneous polymer composites both in ultrasound-assembling designs and in biomedical applications.
作为一种有力的驱动方法,超声辐射非常适合于新材料的制备或改性。在这篇综述中,我们综述了超声介导的聚合物复合材料中的效应或反应的最新发展,并展示了其在聚合或聚集方面的独特而强大的方面。该综述通过定义成分对不同种类的多相聚合物复合材料进行了概括,并描述了各种特定用途或特定部位的产品的形状、大小和基本性质。重要的是,该综述更多地关注了多相聚合物复合材料在生物医学中的主要应用,如药物或生物活性物质的包封、输送、释放、成像和治疗,并强调了超声组装方法和多相聚合物复合材料在生物学和医学领域的许多优势。此外,该综述还指出了在超声组装设计和生物医学应用中多相聚合物复合材料的未来挑战。