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首页> 外文期刊>Journal of the European Ceramic Society >Assembly of 8YSZ nanoparticles into gas-tight 1-2 μm thick 8YSZ electrolyte layers using wet coating methods
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Assembly of 8YSZ nanoparticles into gas-tight 1-2 μm thick 8YSZ electrolyte layers using wet coating methods

机译:使用湿涂法将8YSZ纳米颗粒组装成厚度为1-2μm的气密8YSZ电解质层

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The application of a thin film electrolyte layer with a thickness in the micrometer range could greatly improve current solid oxide fuel cells (SOFCs) in terms of operating temperature and power output. Since the achievable minimal layer thickness with conventional powder coating methods is limited to ~5 μm, a variety of thin film methods have been studied, but results on regular large-scale anode substrates are still lacking in the literature. In this paper, a wet coating process is presented for fabricating gas-tight 1-2 μm thick 8YSZ electrolyte layers on a regular NiO/8YSZ substrate, with a rough surface, a high porosity and a large pore size. These layers were deposited in a similar way as conventional suspension based layers, but the essential difference includes the use of coating liquids (nano-dispersion, sol) with a considerably smaller particle size (85 nm, 60 nm, 35 nm, 6 nm). Successful deposition of such layers was accomplished by means of an innovative coating process, which involves the preparation of a hybrid polyvinyl alcohol/8YSZ membrane by dip-coating or spin-coating and subsequently burning out the polymer part at 500 °C. Results from He leak tests confirmed that the sintered layers posses a very low number of defects and with values in the range 10~(-4)-10~(-6) (hPa dm~3)/(s cm2) the gas-tightness of the thin film layers is satisfactory for fuel cell operation. Moreover, preliminary results have also indicated a potential reduction of the sintering temperature from 1400 °C to the range 1200-1300 °C, using the presented coating process.
机译:厚度在微米范围内的薄膜电解质层的应用可以在工作温度和功率输出方面极大地改善当前的固体氧化物燃料电池(SOFC)。由于常规粉末涂覆方法可达到的最小层厚度限制在〜5μm,因此已研究了各种薄膜方法,但文献中仍缺乏常规的大型阳极基板的结果。在本文中,提出了一种湿法涂覆工艺,用于在具有粗糙表面,高孔隙率和大孔径的常规NiO / 8YSZ基底上制造不透气的1-2μm厚的8YSZ电解质层。这些层的沉积方式与传统的基于悬浮液的层类似,但本质区别在于使用了粒径明显较小(85 nm,60 nm,35 nm,6 nm)的涂布液(纳米分散体,溶胶) 。这种层的成功沉积是通过创新的涂覆工艺完成的,该工艺包括通过浸涂或旋涂制备杂化聚乙烯醇/ 8YSZ膜,然后在500°C下烧掉聚合物部分。氦气泄漏测试的结果证实,烧结层的缺陷数量非常少,气体的值在10〜(-4)-10〜(-6)(hPa dm〜3)/(s cm2)范围内。薄膜层的气密性对于燃料电池操作而言是令人满意的。此外,初步结果还表明,使用提出的涂层工艺,烧结温度有可能从1400°C降低到1200-1300°C。

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