This work introduces a simple and facile approach for the morphology and size controlled synthesis of Co-doped MIL-96.By using different bases as modulators,Co-doped MIL-96 was obtained with sizes that varied from 5 ...This work introduces a simple and facile approach for the morphology and size controlled synthesis of Co-doped MIL-96.By using different bases as modulators,Co-doped MIL-96 was obtained with sizes that varied from 5 μm to 300 nm,and four different morphologies,including hexagonal prism,icosahedron,hexagonal spindle and ellipsoid.Among these,nano-sized Co-doped MIL-96 with an ellipsoid morphology exhibited the highest electroactive surface area and good conductivity as well as the best electrochemical sensing performance towards α-fetoprotein.展开更多
基金supported by National Natural Science Foundation of China(Nos.U1904215 and 21471134)Program for Innovative Research Team in Science and Technology in University of Henan Province(No.20IRTSTHN003)。
文摘This work introduces a simple and facile approach for the morphology and size controlled synthesis of Co-doped MIL-96.By using different bases as modulators,Co-doped MIL-96 was obtained with sizes that varied from 5 μm to 300 nm,and four different morphologies,including hexagonal prism,icosahedron,hexagonal spindle and ellipsoid.Among these,nano-sized Co-doped MIL-96 with an ellipsoid morphology exhibited the highest electroactive surface area and good conductivity as well as the best electrochemical sensing performance towards α-fetoprotein.