Heterostructure engineering of atomically thin two-dimensional materials offers an exciting opportunity to fabricate atomically sharp interfaces for highly tunable electronic and optoelectronic… (More)
This letter proposes a surface-energy driven process for economically creating polymer microlens array (MLA) with well controllable curvatures. When a UV-curable prepolymer flows into a cell… (More)
In vibration control of adjacent buildings under seismic excitations, a twofold objective has to be considered: (i) to mitigate the vibrational response of the individual structures and (ii) to… (More)
The magnetostructural coupling between the structural and the magnetic transition has a crucial role in magnetoresponsive effects in a martensitic-transition system. A combination of various… (More)
Mushroom-shaped micropillars (MSMPs) have a unique microscopic shape that is suitable to produce a highly robust nonwetting surface. This commercially important property is possible thanks to the… (More)
Vertically stacked van der Waals (vdW) heterojunctions based on two-dimensional (2D) transition metal dichalcogenides (TMDs) have attracted a great deal of attention and have created a powerful new… (More)
6.2% and 5.8% giant magnetic field induced strains (MFIS) are achieved along two different orthogonal directions of a Ni/sub 50/Mn/sub 27.5/Ga/sub 22.5/ single variant sample with a switching… (More)
van der Waals heterojunctions formed by stacking various two-dimensional (2D) materials have a series of attractive physical properties, thus offering an ideal platform for versatile electronic and… (More)
We have studied the composition dependence, thermal stability, long-term stability at 500°C, and magnetic properties of the nanostructural TbCu<sub>7</sub>-type (1:7) Sm-Co-Ti alloys. We prepared the… (More)
High temperature resistance improvement (500 °C) and corrosion resistance in salt spray test (47 °C) at different time intervals with and without surface modified with Ni coating of… (More)