supported by the National Key Research and Development Program of China(Grant No.2022YFB3804100);the National Natural Science Foundation of China(Grant Nos.52371149 and 52171153).
Enhancing saturation magnetic flux density(Bs)while reducing high-frequency core loss in Finemet-type nanocrystalline alloys is of great significance in achieving the miniaturization,high-frequency,and energy-saving o...
supported by the National Key R&D Program of China(No.2021YFB3803004);the National Natural Science Foundation of China(Nos.52101239 and 52171153);Ningbo Natural Science Foundation(No.2021J222);the“Pioneer”R&D Program of Zhejiang Province(No.2023C01075);Youth Innovation Promotion Association CAS(No.2021294);Zhejiang Provincial Key Research and Development Projects(No.2021C01033);CITIC Group Major Science and Technology Innovation Project(HT-FZB-2022190).
Unique rapid solidified structure and nanocrystallization mechanism enable the Fe-based nanocrystalline alloys with high Cu content excellent soft magnetic properties and good manufacturability,and also results in unu...
supported by the National Natural Science Foundation of China(Nos.52002109,52071124);the key project of Natural Science Foundation of Tianjin(No.20JCZDJC00440);the key project of Natural Science Foundation of Hebei(No.E2021202135);the Central Funds Guiding the Local Science and Technology Development of Hebei Province(Nos.226Z1001G and 226Z1012G);the Innovation Funding Project for Postgraduate of the Hebei Province(No.GXZZSS2023028).
1.Introduction High strength and large deformability are greatly desirable for advanced structural metallic materials.Typically strengthening methods in crystalline materials rely on controlling the generation,propaga...
the National Natural Science Foundation of China(Nos.U22A20107,U1967215,22078307,22208314,22278379,22238003,and 22002008);the Science and Technology R&D Program Joint Fund Project of Henan Provincial,China(No.222301420001);the Distinguished Young Scholars Innovation Team of Zhengzhou University,China(No.32320275);the Postgraduate Education Reform Project of Henan Province,China(No.2021SJGLX093Y);the National Funded Postdoctoral Researcher Program,China(No.GZC20232382);the Key Research Projects of University in Henan Province,China(No.24A150041).
Zeolite-confined Fe-site catalysts(ZFCs)have emerged as superior materials for sustainably producing high-value chemicals through CO_(2) hydrogenation,owing to their adaptable framework,customizable composition,and th...