Literature DB >> 21103585

Lowering grain boundary resistance of BaZr(0.8)Y(0.2)O(3-δ) with LiNO3 sintering-aid improves proton conductivity for fuel cell operation.

Ziqi Sun1, Emiliana Fabbri, Lei Bi, Enrico Traversa.   

Abstract

A novel sintering additive based on LiNO(3) was used to overcome the drawbacks of poor sinterability and low grain boundary conductivity in BaZr(0.8)Y(0.2)O(3-δ) (BZY20) protonic conductors. The Li-additive totally evaporated during the sintering process at 1600 °C for 6 h, which led to highly dense BZY20 pellets (96.5% of the theoretical value). The proton conductivity values of BZY20 with Li sintering-aid were significantly larger than the values reported for BZY sintered with other metal oxides, due to the fast proton transport in the "clean" grain boundaries and grain interior. The total conductivity of BZY20-Li in wet Ar was 4.45 × 10(-3) S cm(-1) at 600 °C. Based on the improved sinterability, anode-supported fuel cells with 25 μm-thick BZY20-Li electrolyte membranes were fabricated by a co-firing technique. The peak power density obtained at 700 °C for a BZY-Ni/BZY20-Li/La(0.6)Sr(0.4)Co(0.2)Fe(0.8)O(3-δ) (LSCF)-BZY cell was 53 mW cm(-2), which is significantly larger than the values reported for fuel cells using electrolytes made of BZY sintered with the addition of ZnO and CuO, confirming the advantage of using Li as a sintering aid. This journal is © the Owner Societies 2011

Entities:  

Year:  2010        PMID: 21103585     DOI: 10.1039/c0cp01470b

Source DB:  PubMed          Journal:  Phys Chem Chem Phys        ISSN: 1463-9076            Impact factor:   3.676


  2 in total

1.  Samples of Ba1-xSrxCe0.9Y0.1O3-δ, 0 < x < 0.1, with Improved Chemical Stability in CO2-H2 Gas-Involving Atmospheres as Potential Electrolytes for a Proton Ceramic Fuel Cell.

Authors:  Magdalena Dudek; Bartłomiej Lis; Radosław Lach; Salius Daugėla; Tomas Šalkus; Algimantas Kežionis; Michał Mosiałek; Maciej Sitarz; Alicja Rapacz-Kmita; Przemysław Grzywacz
Journal:  Materials (Basel)       Date:  2020-04-16       Impact factor: 3.623

2.  Channelized Substrates Made from BaZr0.75Ce0.05Y0.2O3-d Proton-Conducting Ceramic Polymer Clay.

Authors:  Sandrine Ricote; Benjamin L Kee; W Grover Coors
Journal:  Membranes (Basel)       Date:  2019-10-09
  2 in total

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