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unravel 原声和热响应的全氟碳液体液滴稳定的纤维素纳米纤维。

Unravelling the Acoustic and Thermal Responses of Perfluorocarbon Liquid Droplets Stabilized with Cellulose Nanofibers.

机构信息

Department of Biomedical Engineering and Health Systems , KTH Royal Institute of Technology , SE-100 44 Stockholm , Sweden.

Mechatronics Engineering Program, Faculty of Engineering and Natural Science , Sabanci University , Istanbul 34956 , Turkey.

出版信息

Langmuir. 2019 Oct 8;35(40):13090-13099. doi: 10.1021/acs.langmuir.9b02132. Epub 2019 Sep 24.

Abstract

The attractive colloidal and physicochemical properties of cellulose nanofibers (CNFs) at interfaces have recently been exploited in the facile production of a number of environmentally benign materials, e.g. foams, emulsions, and capsules. Herein, these unique properties are exploited in a new type of CNF-stabilized perfluoropentane droplets produced via a straightforward and simple mixing protocol. Droplets with a comparatively narrow size distribution (ca. 1-5 μm in diameter) were fabricated, and their potential in the acoustic droplet vaporization process was evaluated. For this, the particle-stabilized droplets were assessed in three independent experimental examinations, namely temperature, acoustic, and ultrasonic standing wave tests. During the acoustic droplet vaporization (ADV) process, droplets were converted to gas-filled microbubbles, offering enhanced visualization by ultrasound. The acoustic pressure threshold of about 0.62 MPa was identified for the cellulose-stabilized droplets. A phase transition temperature of about 22 °C was observed, at which a significant fraction of larger droplets (above ca. 3 μm in diameter) were converted into bubbles, whereas a large part of the population of smaller droplets were stable up to higher temperatures (temperatures up to 45 °C tested). Moreover, under ultrasound standing wave conditions, droplets were relocated to antinodes demonstrating the behavior associated with the negative contrast particles. The combined results make the CNF-stabilized droplets interesting in cell-droplet interaction experiments and ultrasound imaging.

摘要

纤维素纳米纤维(CNF)在界面处具有吸引人的胶体和物理化学性质,最近已被用于制备许多环保材料,例如泡沫、乳液和胶囊。在此,通过简单而简单的混合方案,利用这些独特的性质来制备新型 CNF 稳定的全氟戊烷液滴。制备了具有相对较窄的尺寸分布(直径约为 1-5μm)的液滴,并评估了其在声致液滴蒸发过程中的潜在应用。为此,通过三个独立的实验评估了颗粒稳定的液滴,即温度、声和超声驻波测试。在声致液滴蒸发(ADV)过程中,液滴转化为充满气体的微泡,通过超声增强了可视化效果。确定纤维素稳定液滴的声压阈值约为 0.62MPa。观察到约 22°C 的相变温度,在此温度下,相当一部分较大的液滴(直径大于约 3μm)转化为气泡,而大部分较小的液滴群在更高的温度下保持稳定(测试的最高温度可达 45°C)。此外,在超声驻波条件下,液滴被重新定位到节点,表现出与负对比颗粒相关的行为。综合结果使 CNF 稳定的液滴在细胞-液滴相互作用实验和超声成像中具有吸引力。

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