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Carbon-ionogel supercapacitors for integrated microelectronics

机译:用于集成微电子的碳离子超级电容器

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To exceed the performance limits of dielectric capacitors in microelectronic circuit applications, we design and demonstrate on-chip coplanar electric double-layer capacitors (EDLCs), or supercapacitors, employing carbon-coated gold electrodes with ionogel electrolyte. The formation of carbon-coated microelectrodes is accomplished by solution processing and results in a ten-fold increase in EDLC capacitance compared to bare gold electrodes without carbon. At frequencies up to 10 Hz, an areal capacitance of 2.1 pF mu m(-2) is achieved for coplanar carbon-ionogel EDLCs with 10 mu m electrode gaps and 0.14 mm(2) electrode area. Our smallest devices, comprised of 5 mu m electrode gaps and 80 mu m(2) of active electrode area, reach areal capacitance values of similar to 0.3 pF mu m(-2) at frequencies up to 1 kHz, even without carbon. To our knowledge, these are the highest reported values to date for on-chip EDLCs with sub-mm(2) areas. A physical EDLC model is developed through the use of computer-aided simulations for design exploration and optimization of coplanar EDLCs. Through modeling and comparison with experimental data, we highlight the importance of reducing the electrode gap and electrolyte resistance to achieve maximum performance from on-chip EDLCs.
机译:为了超出微电子电路应用中介电电容器的性能极限,我们设计并演示了采用带离子凝胶电解质的碳涂层金电极的片上共面双电层电容器(EDLC)或超级电容器。碳涂层微电极的形成是通过溶液处理完成的,与没有碳的裸金电极相比,EDLC电容增加了十倍。在高达10 Hz的频率下,具有10μm电极间隙和0.14 mm(2)电极面积的共面碳-离子凝胶EDLC的面电容为2.1 pFμm(-2)。我们的最小器件由5微米的电极间隙和80微米的有源电极面积组成,即使在没有碳的情况下,在高达1 kHz的频率下,其面积电容值也接近0.3 pF微米(-2)。据我们所知,这是迄今为止面积小于mm(2)的片上EDLC的最高报告值。通过使用计算机辅助仿真来开发物理EDLC模型,以进行共面EDLC的设计探索和优化。通过建模并与实验数据进行比较,我们强调了减小电极间隙和电解质电阻以实现片上EDLC的最佳性能的重要性。

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