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首页> 外文期刊>Sensors and Actuators. B, Chemical >Compatibility of screen-printing technology with micro-hotplate for gas sensor and solid oxide micro fuel cell development
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Compatibility of screen-printing technology with micro-hotplate for gas sensor and solid oxide micro fuel cell development

机译:丝网印刷技术与用于气体传感器的微热板和固态氧化物微燃料电池开发的兼容性

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摘要

Screen-printing technology is widely used in the field of gas sensors and can also be used to fabricate electrodes for solid oxide fuel cell (SOFC). The compatibility of this technique with micro-hotplate is studied to produce micro sensors and micro SOFC. For sensors application, development of inks containing precursor of sensing element allows to decrease annealing temperature and to improve adhesion. For SOFC development, we investigated a new type of device named single-chamber fuel cell (SCFC) for which the fuel and the oxygen are mixed and in contact with both the anode and cathode. Such devices were firstly built at a millimeter scale using LSM for cathode, YSZ for electrolyte and Ni-YSZ cermet for anode. Two types of configuration were studied: SCFC developed on YSZ support with screen-printed electrodes, and SCFC entirely manufactured by screen-printing on a inert ceramic substrate made of alumina. Although weak power densities were measured, around 1 mW/cm~2, the feasibility of SCFC was confirmed. Then, preliminary results concerning LSM cathode deposition on micro-hotplate were obtained. LSM layers annealed up to 800℃ resist well to temperature cycling but exhibit low conductivity.
机译:丝网印刷技术广泛应用于气体传感器领域,也可用于制造固体氧化物燃料电池(SOFC)的电极。研究了该技术与微热板的兼容性,以生产微传感器和微SOFC。对于传感器应用,开发包含传感元件前体的墨水可降低退火温度并提高附着力。对于SOFC的开发,我们研究了一种称为单室燃料电池(SCFC)的新型设备,该设备将燃料和氧气混合并与阳极和阴极接触。首先使用LSM作为阴极,使用YSZ作为电解质,使用Ni-YSZ金属陶瓷作为阳极,以毫米为单位构建此类设备。研究了两种类型的配置:在具有丝网印刷电极的YSZ支架上开发的SCFC,以及通过丝网印刷在由氧化铝制成的惰性陶瓷基板上完全制造的SCFC。尽管测得的功率密度较弱,约为1 mW / cm〜2,但仍证实了SCFC的可行性。然后,获得了有关LSM阴极在微热板上沉积的初步结果。退火至800℃的LSM层能很好地抵抗温度循环,但导电率低。

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