Wafer-scale, three-dimensional helical porous thin films deposited at a glancing angle.
نویسندگان
چکیده
Minimization of helices opens a door to impose novel functions derived from the dimensional shrinkage of optical, mechanical and electronic devices. Glancing angle deposition (GLAD) enables one to deposit three-dimensional helical porous thin films (HPTFs) composed of separated spiral micro/nano-columns. GLAD integrates a series of advantageous features, including one-step deposition, wafer-scale production with mono-handedness of spirals, flexible engineering of spiral materials and dimensions, and the adaption to various kinds of substrates. Herein, we briefly review the fabrication of HPTFs by GLAD, specific growth mechanisms, physical properties in structures, mechanics and chiral optics, and the emerging applications in green energy. A prospective outlook is presented to illuminate some promising developments in enantioselection, bio-dynamic analyses, wirelessly-controlled drug delivery and mass production.
منابع مشابه
SUPPORTING INFORMATION Wafer scale fabrication of porous three dimensional plasmonic metamaterials for the visible: chiral and beyond Johnson
Fabrication: The SiO2 helical films were fabricated in a commercial Glancing Angle Deposition System equipped with electron beam evaporation and thermal evaporation. We have also experimented with other dielectrics, such as MgF2 and TiO2, and although the results differ in details, the general conclusions of this manuscript remain the same. A glass substrate was placed at 84° angle to the sourc...
متن کاملUltrahigh vacuum glancing angle deposition system for thin films with controlled three-dimensional nanoscale structure
An ultrahigh vacuum apparatus for the deposition of thin films with controlled three-dimensional nanometer-scale structure is described. Our system allows an alternate, faster, cheaper way of obtaining nanoscale structured thin films when compared to traditional procedures of patterning and etching. It also allows creation of porous structures that are unattainable with known techniques. The un...
متن کاملHydrophilicity of Silica Nano-Porous Thin Films: Calcination Temperature Effects
In this research work, silica nano-porous thin films were deposited on glass substrates by layer by layer method. The thin films were calcinated at various calcination temperatures (200, 300, 400, and 500 °C). The morphology, surface characteristics, surface roughness and hydrophilic properties of the thin films were investigated by field emission scanning electron microscopy, attenuated total ...
متن کاملMetal-to-dielectric transition induced by annealing of oriented titanium thin films
Titanium thin films were deposited by dc magnetron sputtering. The GLancing Angle Deposition (GLAD) method was implemented to prepare two series of titanium films: perpendicular and oriented columnar structures. The first one was obtained with a conventional incidence angle of the sputtered particles ( = 0°), whereas the second one used a grazing incidence angle = 85°. Afterwards, films were an...
متن کاملHighly Sensitive H2S Sensor Based on the Metal-Catalyzed SnO2 Nanocolumns Fabricated by Glancing Angle Deposition
As highly sensitive H2S gas sensors, Au- and Ag-catalyzed SnO2 thin films with morphology-controlled nanostructures were fabricated by using e-beam evaporation in combination with the glancing angle deposition (GAD) technique. After annealing at 500 °C for 40 h, the sensors showed a polycrystalline phase with a porous, tilted columnar nanostructure. The gas sensitivities (S = Rgas/Rair) of Au a...
متن کاملذخیره در منابع من
با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید
عنوان ژورنال:
- Nanoscale
دوره 6 16 شماره
صفحات -
تاریخ انتشار 2014