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Study of Physically Transient Insulating Materials as a Potential Platform for Transient Electronics and Bioelectronics

机译:物理瞬态绝缘材料作为瞬态电子和生物电化学潜在平台的研究

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摘要

Controlled degradation and transiency of materials is of significant importance in the design and fabrication of degradable and transient biomedical and electronic devices and platforms. Here, the synthesis of programmable biodegradable and transient insulating polymer films is reported, which have sufficient physical and chemical properties to be used as substrates for the construction of transient electronics. The composite structure can be used as a means to control the dissolution and transiency rate of the polymer composite film. Experimental and computational studies demonstrate that the addition of gelatin or sucrose to a PVA polymer matrix can be used as a means to program and either slow or enhance the transiency of the composite. The dissolution of the polymer composites are fitted with inverse exponential functions of different time constants; the lower time constants are an indication of faster transiency of the polymer composite. The addition of gelatin results in larger time constants, whereas the addition of sucrose generally results in smaller time constants.
机译:在可降解和瞬态生物医学和电子设备和平台的设计和制造方面,材料的受控劣化和不足具有重要意义。这里,报道了可编程可生物降解和瞬态绝缘聚合物膜的合成,其具有足够的物理和化学性质,以用作基板以构建瞬态电子器件。复合结构可用作控制聚合物复合膜的溶解和不足率的方法。实验和计算研究表明,将明胶或蔗糖添加到PVA聚合物基质中可以用作编程的手段,并且慢或增强复合材料的不变性。聚合物复合材料的溶解配有不同时间常数的逆指数函数;较低的时间常数是聚合物复合物的更快不足的指示。加入明胶导致较大的时间常数,而添加蔗糖通常导致较小的时间常数。

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