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用于光电器件的石墨烯基接触

Graphene-Based Contacts for Optoelectronic Devices.

作者信息

Fernández Susana, Molinero Antonio, Sanz David, González José Pablo, Cruz Marina de la, Gandía José Javier, Cárabe Julio

机构信息

CIEMAT, Departamento de Energía, Unidad de Energía Solar Fotovoltaica, Avda. Complutense 40, 28040 Madrid, Spain.

CIEMAT, Departamento de Electrónica, Avda. Complutense 40, 28040 Madrid, Spain.

出版信息

Micromachines (Basel). 2020 Oct 1;11(10):919. doi: 10.3390/mi11100919.

Abstract

Hybrid transparent contacts based on combinations of a transparent conductive oxide and a few graphene monolayers were developed in order to evaluate their optical and electrical performance with the main aim to use them as front contacts in optoelectronic devices. The assessment of the most suitable strategies for their fabrication was performed by testing different protocols addressing such issues as the protection of the device structure underneath, the limitation of sample temperature during the graphene-monolayer transfer process and the determination of the most suitable stacking structure. Suitable metal ohmic electrodes were also evaluated. Among a number of options tested, the metal contact based on Ti + Ag showed the highest reproducibility and the lowest contact resistivity. Finally, with the objective of extracting the current generated from optoelectronic devices to the output pins of an external package, focusing on a near future commercial application, the electrical properties of the connections made with an ultrasonic bonding machine (sonic welding) between the optimized Ti + Ag metal contacts and Al or Au micro-wires were also evaluated. All these results have an enormous potential as hybrid electrodes based on graphene to be used in novel designs of a future generation of optoelectronic devices, such as solar cells.

摘要

基于透明导电氧化物和少数石墨烯单层组合的混合透明触点被开发出来,以评估其光学和电学性能,主要目的是将其用作光电器件的正面触点。通过测试不同方案来评估最适合其制造的策略,这些方案涉及诸如保护下方的器件结构、限制石墨烯单层转移过程中的样品温度以及确定最合适的堆叠结构等问题。还评估了合适的金属欧姆电极。在测试的多种选项中,基于Ti + Ag的金属触点显示出最高的可重复性和最低的接触电阻率。最后,为了将光电器件产生的电流引出到外部封装的输出引脚,着眼于近期的商业应用,还评估了在优化的Ti + Ag金属触点与Al或Au微线之间使用超声波键合机(超声焊接)进行连接的电学性能。所有这些结果作为基于石墨烯的混合电极在新一代光电器件(如太阳能电池)的新颖设计中具有巨大的应用潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4f0c/7601039/2c0ddfddc34d/micromachines-11-00919-g001.jpg

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