Zirconia microspheres synthesized by a wet-chemical sol–gel process are promising building blocks for various photonic applications considered for heat management and energy systems, including highly effi cient refl ective thermal barrier coatings and absorbers/emitters used in thermophotovoltaic systems. As previously shown, pure zirconia microparticles deteriorate at working temperatures of ≥1000 °C. While the addition of yttrium as a dopant has been shown to improve their phase stability, pronounced grain growth at temperatures of ≥1000 °C compromises the photonic structure of the assembled microspheres. Here, a new approach for the fabrication of highly stable ceramic microparticles by doping with lanthanum, gadolinium, and a combinatio...
Zirconia nanoceramics are interesting materials for numerous high-temperature applications. Because ...
Sub-micron sized crystalline particles of Eu3+ and Er3+-doped zirconia (ZrO2) were prepared via a we...
Sub-micron sized crystalline particles of Eu3+ and Er3+-doped zirconia (ZrO2) were prepared via a we...
Zirconia microspheres synthesized by a wet-chemical sol–gel process arepromising building blocks for...
Zirconia microspheres synthesized by a wet-chemical sol–gel process arepromising building blocks for...
Zirconia-based ceramics cover a huge variety of applications, including refractories, electro- and b...
Phase stability is one of the crucial requirements for any material that can be used at elevated tem...
Zirconia microparticles produced by sol-gel synthesis have great potential for photonic applications...
AbstractHypothesisZirconia microparticles produced by sol–gel synthesis have great potential for pho...
High yield synthesis of yttria-stabilized zirconia (YSZ) porous microspheres can enable application ...
High yield synthesis of yttria-stabilized zirconia (YSZ) porous microspheres can enable application ...
For the development of ceramic thermal barrier coatings, spray-grade yttria-stabilized zirconia micr...
Most recently, there has been an increasing interest in transparent ceramics for applications in fie...
ZrO2@SiO2 core–shell submicron particles are promising candidates for the development of advanced op...
Near-net-shaped zirconia minispheres were prepared by a novel processing technique based on the sol-...
Zirconia nanoceramics are interesting materials for numerous high-temperature applications. Because ...
Sub-micron sized crystalline particles of Eu3+ and Er3+-doped zirconia (ZrO2) were prepared via a we...
Sub-micron sized crystalline particles of Eu3+ and Er3+-doped zirconia (ZrO2) were prepared via a we...
Zirconia microspheres synthesized by a wet-chemical sol–gel process arepromising building blocks for...
Zirconia microspheres synthesized by a wet-chemical sol–gel process arepromising building blocks for...
Zirconia-based ceramics cover a huge variety of applications, including refractories, electro- and b...
Phase stability is one of the crucial requirements for any material that can be used at elevated tem...
Zirconia microparticles produced by sol-gel synthesis have great potential for photonic applications...
AbstractHypothesisZirconia microparticles produced by sol–gel synthesis have great potential for pho...
High yield synthesis of yttria-stabilized zirconia (YSZ) porous microspheres can enable application ...
High yield synthesis of yttria-stabilized zirconia (YSZ) porous microspheres can enable application ...
For the development of ceramic thermal barrier coatings, spray-grade yttria-stabilized zirconia micr...
Most recently, there has been an increasing interest in transparent ceramics for applications in fie...
ZrO2@SiO2 core–shell submicron particles are promising candidates for the development of advanced op...
Near-net-shaped zirconia minispheres were prepared by a novel processing technique based on the sol-...
Zirconia nanoceramics are interesting materials for numerous high-temperature applications. Because ...
Sub-micron sized crystalline particles of Eu3+ and Er3+-doped zirconia (ZrO2) were prepared via a we...
Sub-micron sized crystalline particles of Eu3+ and Er3+-doped zirconia (ZrO2) were prepared via a we...