Chen Jingze, Zhao Meicheng, Liu Zhichao, Wang Fazhou, Hu Shuguang
School of Materials Science and Engineering, Wuhan University of Technology, Wuhan 430070, China.
State Key Laboratory of Silicate Materials for Architectures, Wuhan University of Technology, Wuhan 430070, China.
ACS Nano. 2025 Jan 14;19(1):1732-1742. doi: 10.1021/acsnano.4c15768. Epub 2025 Jan 2.
Traditional high-temperature fabrication methods for ceramics suffer from significant energy consumption and limit the development of advanced ceramics incorporating temperature-sensitive materials. While bioinspired mineralization provides an effective strategy to realize the room-temperature preparation of ceramics, scaling up production remains a challenge. Herein, we demonstrate a room-temperature procedure for the fabrication of large-scale ceramics by using the carbonation reaction of sodium alginate (SA)-doped γ-dicalcium silicate (γ-CS) compacts. This bioinspired mineralization process regulates molecular interactions and microscopic crystal alignment, resulting in the formation of CO mineralized ceramics with specifically oriented mesocrystals and exceptional mechanical properties rivaling those of biological materials. Through this strategy, we demonstrate that the advanced ceramic composites with compressive strength approaching 300 MPa can be fabricated at a large scale, with the additional benefits of fixing about 200 kg of CO per ton of CO mineralized ceramics. Our innovative approach shows great potential for the efficient and cost-effective fabrication of large-scale and high-performance bioceramics, aligning with the goals of sustainable development involving reducing the energy consumption and achieving carbon neutrality.
传统的陶瓷高温制造方法能耗巨大,限制了包含温度敏感材料的先进陶瓷的发展。虽然仿生矿化提供了一种实现陶瓷室温制备的有效策略,但扩大生产规模仍然是一项挑战。在此,我们展示了一种通过使用掺有海藻酸钠(SA)的γ-二硅酸钙(γ-CS)坯体的碳酸化反应来制造大规模陶瓷的室温工艺。这种仿生矿化过程调节分子相互作用和微观晶体排列,导致形成具有特定取向中晶的CO矿化陶瓷,其优异的机械性能可与生物材料相媲美。通过这种策略,我们证明了抗压强度接近300 MPa的先进陶瓷复合材料可以大规模制造,每吨CO矿化陶瓷还具有固定约200 kg CO的额外优势。我们的创新方法在大规模、高性能生物陶瓷的高效且经济高效制造方面显示出巨大潜力,符合涉及降低能耗和实现碳中和的可持续发展目标。