Metal-Supported (MS) architecture offers various advantages over state-of-the-art ceramic supported SOCs, such as high tolerance towards thermal/redox cycling that are key features for flexible and reliable operation in high temperature fuel cell and electrolysis applications. Our target is to develop Proton-conducting Ceramic Cells (PCC) in MS architecture, of which combination can provide potentially high performances, mechanical stability and flexibility for wide range of electrochemical applications. The key challenge in the development of MS-PCC is to find a feasible process to fabricate gas-tight electrolyte on the porous metal substrate without degrading the metal support and the electrolyte. Our strategy is implementing multilayers ...
The global effort for reaching highly efficient CO2-neutral energy supply requires innovative techno...
Metal supports for planar MS-PCEC were manufactured using tape-casting of low-cost ferritic stainles...
Protonic ceramic solid oxide cells (P-SOCs) have gained widespread attention due to their potential ...
Reliability, long-term stability, lower cost as well as high performance are essential for Solid Oxi...
The high potential of Proton Conducting Ceramics (PCC) in fuel cell, steam electrolysis, and many ot...
In the context of the energy transition, high temperature fuel cells and electrolysis cells are cons...
Technological development of proton conducting ceramic cell (PCC) manufacturing is in progress. Both...
Solid Oxide Cells (SOC) have demonstrated many potential applications in electrochemical conversion ...
Electrochemical energy conversion from renewable resources offers promising routes to alternative en...
Manufacturing Protonic Ceramic Cells (PCCs) by scalable techniques is still challenging. One of the ...
Protonic ceramic cells (PCC) have many prospective applications in electrochemical energy conversion...
Having fast proton transport in the temperature range around 400-600 °C, Protonic Ceramic Cells (PCC...
Manufacturing of metal supported proton conducting ceramic cells is investigated in the present stu...
Energy transition targets amplify the need for economically viable hydrogen related technologies. Pr...
The energy transition targets amplify the need for economically viable hydrogen related technologies...
The global effort for reaching highly efficient CO2-neutral energy supply requires innovative techno...
Metal supports for planar MS-PCEC were manufactured using tape-casting of low-cost ferritic stainles...
Protonic ceramic solid oxide cells (P-SOCs) have gained widespread attention due to their potential ...
Reliability, long-term stability, lower cost as well as high performance are essential for Solid Oxi...
The high potential of Proton Conducting Ceramics (PCC) in fuel cell, steam electrolysis, and many ot...
In the context of the energy transition, high temperature fuel cells and electrolysis cells are cons...
Technological development of proton conducting ceramic cell (PCC) manufacturing is in progress. Both...
Solid Oxide Cells (SOC) have demonstrated many potential applications in electrochemical conversion ...
Electrochemical energy conversion from renewable resources offers promising routes to alternative en...
Manufacturing Protonic Ceramic Cells (PCCs) by scalable techniques is still challenging. One of the ...
Protonic ceramic cells (PCC) have many prospective applications in electrochemical energy conversion...
Having fast proton transport in the temperature range around 400-600 °C, Protonic Ceramic Cells (PCC...
Manufacturing of metal supported proton conducting ceramic cells is investigated in the present stu...
Energy transition targets amplify the need for economically viable hydrogen related technologies. Pr...
The energy transition targets amplify the need for economically viable hydrogen related technologies...
The global effort for reaching highly efficient CO2-neutral energy supply requires innovative techno...
Metal supports for planar MS-PCEC were manufactured using tape-casting of low-cost ferritic stainles...
Protonic ceramic solid oxide cells (P-SOCs) have gained widespread attention due to their potential ...