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单一添加剂即可实现高浓度氧化铁悬浮液的 3D 打印。

Single Additive Enables 3D Printing of Highly Loaded Iron Oxide Suspensions.

机构信息

Faculty of Engineering and Natural Sciences , Sabanci University , Orhanli-Tuzla , Istanbul 34956 , Turkey.

3D Bioprinting Laboratory , Sabanci University Nanotechnology Research and Application Center , Orhanli-Tuzla , Istanbul 34956 , Turkey.

出版信息

ACS Appl Mater Interfaces. 2018 Mar 21;10(11):9873-9881. doi: 10.1021/acsami.8b00551. Epub 2018 Mar 8.

Abstract

A single additive, a grafted copolymer, is designed to ensure the stability of suspensions of highly loaded iron oxide nanoparticles (IOPs) and to facilitate three-dimensional (3D) printing of these suspensions in the filament form. This poly (ethylene glycol)-grafted copolymer of N-[3(dimethylamino)propyl]methacrylamide and acrylic acid harnesses both electrostatic and steric repulsion to realize an optimum formulation for 3D printing. When used at 1.15 wt % (by the weight of IOPs), the suspension attains ∼81 wt % solid loading-96% of the theoretical limit as calculated by the Krieger-Dougherty equation. Rectangular, thick-walled toroidal, and thin-walled toroidal magnetic cores and a porous lattice structure are fabricated to demonstrate the utilization of this suspension as an ink for 3D printing. The electrical and magnetic properties of the magnetic cores are characterized through impedance spectroscopy (IS) and vibrating sample magnetometry (VSM), respectively. The IS indicates the possibility of utilizing wire-wound 3D printed cores as the inductive coils. The VSM verifies that the magnetic properties of IOPs before and after the ink formulation are kept almost unchanged because of the low dosage of the additive. This particle-targeted approach for the formulation of 3D printing inks allows embodiment of a fully aqueous system with utmost target material content.

摘要

一种单添加剂——接枝共聚物,旨在确保高载铁氧化物纳米粒子(IOPs)悬浮液的稳定性,并促进这些悬浮液以丝状形式进行三维(3D)打印。这种聚(乙二醇)接枝共聚物由 N-[3(二甲基氨基)丙基]甲基丙烯酰胺和丙烯酸组成,利用静电和空间排斥来实现 3D 打印的最佳配方。当使用量为 1.15wt%(以 IOPs 的重量计)时,悬浮液达到约 81wt%的高固体含量-96%为 Krieger-Dougherty 方程计算的理论极限。矩形、厚壁环形、薄壁环形磁芯和多孔晶格结构被制造出来,以展示这种悬浮液作为 3D 打印墨水的用途。磁性核的电学和磁学性质分别通过阻抗谱(IS)和振动样品磁强计(VSM)进行表征。IS 表明,利用绕线 3D 打印磁芯作为感应线圈是可行的。VSM 验证了由于添加剂的低用量,IOPs 的墨水配方前后的磁学性质几乎保持不变。这种针对 3D 打印墨水配方的靶向颗粒方法允许实现具有最大目标材料含量的全水系统。

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