LSM (Lanthanum Strontium Manganite) Electrode Powder for SOFC/SOEC, 100 or 500 g/bottle, CSOFECEPLSM
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In both Solid Oxide Fuel Cells (SOFC) and Solid Oxide Electrolysis Cells (SOEC), LSM (Lanthanum Strontium Manganite) is the most well-characterized and established cathode (or oxygen electrode) material. While newer "MIEC" materials like LSCF are favored for lower temperatures, LSM remains the industry benchmark for high-temperature operations (>750 °C) due to its exceptional chemical compatibility with Zirconia-based electrolytes and its proven long-term structural stability.
LSM is a perovskite oxide with the general formula La{1-x}SrxMnO3. Its performance is defined by its high electronic conductivity but relatively low ionic conductivity. (1) Operating Window: Best suited for 750 °C to 1000 °C. At temperatures below 700 °C, the kinetics of the Oxygen Reduction Reaction (ORR) become too sluggish for pure LSM. (2) Compatibility: LSM has a Thermal Expansion Coefficient (TEC) that matches YSZ (~10-11 * 10^{-6} K^{-1}) almost perfectly, preventing delamination during thermal cycling. (3) A-Site Deficiency: Professional grade LSM powder is often prepared with a "slight A-site deficiency" (e.g., (La,Sr){0.95}MnO3). This prevents the formation of insulating secondary phases like La2Zr2O7 at the electrolyte interface during high-temperature sintering.
| Part Number |
CSOFECEPLSM (C-SOFEC-EP-LSM) |
| CAS |
66402-68-4 |
| Purity |
≥99.5% |
| Chemical Formula |
(La0.75Sr0.25)0.95MnO3-δ Other chemical formulas with customized ratios, such as (La0.80Sr0.20)0.95MnO3-δ, can be supplied upon request. |
| PSD (D50) | 0.5-2.0 um |
| XRD |
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| Ionic Conductivity |
≥150S/m@600℃~800℃ ![]() |
| Package Grade |
100 or 500 g/bottle (other grades, such as 1000 g or larger can be supplied upon request) |
References:
- M. Liang, et al., Preparation of LSM–YSZ composite powder for anode of solid oxide electrolysis cell and its activation mechanism, J. Power Sources, 2009, 190, 341-345.
- W. Wang, et al., A Comparison of LSM, LSF, and LSCo for Solid Oxide Electrolyzer Anodes, J. Electrochem. Soc., 2006, 153, A2066.
- H. Turk, et al., Boon and Bane of Local Solid State Chemistry on the Performance of LSM-Based Solid Oxide Electrolysis Cells, Adv. Energy Mater., 2025, 15, 2405599.

