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Exploiting the good water affinity of graphene oxide, the filler can be easily dispersed in oligomers formulations and printed by using a low cost DLP equipment.
Data analysis has been performed by using a low cost, fast approximate inversion method, suitable to deal with the huge quantities of data generated from this kind of archaeological surveys.
By using a low cost, low-temperature hydrothermal approach, well-aligned ZnO nanorods with high aspect ratio have been successfully prepared on ITO substrates that were pre-modified with ZnO nanoparticles.
This paper investigates the possibility to achieve an automatic, dynamic update of the virtual cell by using a low cost depth sensor (i.e., a commercial Microsoft Kinect) to detect the presence of completely unknown objects, moving inside the real cell.
It may be highlighted that magnesium aluminate spinel nanoparticles can be obtained by using a low cost solid state reaction method (in few grams to Kgs) and can be used as photocatalyst in place of Ag2O doped ZnO, Cu doped ZnO, Ag doped TiO2, W doped TiO2, TiO2, TiO2 doped ZnO, SnO2 (Tin oxide), and Indium tin oxide (ITO) due to their good optical properties, high thermal and chemical stability.
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Si/alloy was prepared by using a low-cost and low-temperature mechanical ball milling process.
The newly developed system was designed by using a low-cost and scalable multistep synthesis protocol involving a combination of electrospinning and layer by layer (LBL) synthetic growth of MOFs.
A cell can be implemented by using a low-cost micro-computer (e.g., Raspberry Pi2 single-board computer1) that can be equipped with a sensor to detect the presence of shoppers and receive their wishlists, an actuator to send recommendations to the shoppers, and a wireless mechanism to communicate with its neighbors.
Upon addition of buffered surfactant (1X PBS-Tween 20 buffer) into the medium, the surfactant immediately hydrolyzed the conjugated liposome, and released the encapsulated glucose from the nanocarriers, which could be quantitatively determined by using a low-cost personal glucometer (PGM).
Therefore, UC emission is achievable by using a low-cost CW laser diode, thus eliminating the need of an expensive high peak power pulsed laser excitation as required in conventional multiphoton experiments.
Firstly, PCL/gelatin nanofibrous scaffold was fabricated by electrospinning using a low cost solvent mixture [chloroform/methanol for PCL and acetic acid (80% v/v) for gelatin], and then the nanofibrous PCL/gelatin scaffold was modified by collagen type I (0.2 1.5 wt.%) grafting.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com