Core-shell nanosize particles Mg@Ni: synthesis and propertiesCore-shell nanosize particles Mg@Ni: synthesis and properties
Low-temperature magnetic ordering in Co core/CoO shell nanoparticles on the copper surface properties at these temperatures. Here, it is shown that the approach
based on the random anisotropy model
Energy-cascaded upconversion in an organic dye-sensitized core/shell fluoride nanocrystalChen, Guanying,
Qiu, Hailong,
Shao, Wei,
Ohulchanskyy, Tymish Y.,
Valiev, Rashid R.,
Wu, Xiang,
Han, Gang,
Wang, Yan,
Yang, Chunhui,
Damasco, Jossana,
Agren, Hans,
Prasad, Paras N. of an epitaxially designed
core/shell inorganic nanostructure, with a sequential nonradiative energy transfer
Ni2+-zeolite/ferrosphere and Ni2+-silica/ferrosphere beads for magnetic affinity separation of histidine-tagged proteinsVereshchagina, T. A.,
Fedorchak, M. A.,
Sharonova, O. M.,
Fomenko, E. V.,
Shishkina, N. N.,
Zhizhaev, A. M.,
Kudryavtsev, A. N.,
Frank, L. A.,
Anshits, A. G. ) of a
core–shell structure were synthesized starting from coal fly ash ferrospheres having diameters
Modeling Thrombus Shell: Linking Adhesion Receptor Properties and Macroscopic Dynamics physical obstacle for bleeding. An arterial thrombus is heterogeneous; it has a dense inner part (
core