Optical Determination of Silicon Nanowire Diameters for Intracellular Applications
نویسندگان
چکیده
Silicon nanowires (SiNWs) are an important class of materials for biomedical and electronics applications, with the nanowire diameter playing a fundamental role in device functionality. Here we present a method, based on light scattering intensity and ensemble electron microcopy (EM) measurements, that allows for a precise optical determination of a specific NW’s diameter within an accuracy of a few nanometers (4.8 nm), an error of only ∼8.0%. This method takes advantage of the strong dependence of optical scattering on SiNW diameter to construct an optical to EM transform, with Lorentz-Mie theory showing that this method can be used for NWs up to ∼150 nm in diameter. Additionally, this technique offers some potential insights into biophysical interactions, allowing the optical calibration of individual intracellular SiNW force probes, enabling a ∼100-fold improvement in experimental uncertainty. Using these probes, we were able to measure drug-induced vasoconstriction in human aortic smooth muscle cells (HASMCs), which exerted ∼171 pN of force after ∼30 min of exposure to the hormone angiotension II. These findings represent a scalable method for characterizing SiNW-based devices that are easily extendable to other materials and could be of use in ensuring quality control for future photovoltaics, optical sensors, and nanomaterial biosensors.
منابع مشابه
Study the Effect of Silicon Nanowire Length on Characteristics of Silicon Nanowire Based Solar Cells by Using Impedance Spectroscopy
Silicon nanowire (SiNW) arrays were produced by electroless method on polycrystalline Si substrate, in HF/ AgNO3 solution. Although the monocrystalline silicon wafer is commonly utilized as a perfect substrate, polycrystalline silicon as a low cost substrate was used in this work for photovoltaic applications. In order to study the influence of etching time (which affects the SiNWs length) on d...
متن کاملEffect of Silicon Nanowire on Crystalline Silicon Solar Cell Characteristics
Nanowires (NWs) are recently used in several sensor or actuator devices to improve their ordered characteristics. Silicon nanowire (Si NW) is one of the most attractive one-dimensional nanostructures semiconductors because of its unique electrical and optical properties. In this paper, silicon nanowire (Si NW), is synthesized and characterized for application in photovoltaic device. Si NWs are ...
متن کاملHighly organised and dense vertical silicon nanowire arrays grown in porous alumina template on <100> silicon wafers
In this work, nanoimprint lithography combined with standard anodization etching is used to make perfectly organised triangular arrays of vertical cylindrical alumina nanopores onto standard <100>-oriented silicon wafers. Both the pore diameter and the period of alumina porous array are well controlled and can be tuned: the periods vary from 80 to 460 nm, and the diameters vary from 15 nm to an...
متن کاملOptical Characterization of Silicon Nanowire Array
In this paper characterization on optical properties of silicon nanowire arrays has been made. Nanowire array has potential applications in solar cells. The effects of wire length and wavelength on the Transmission and reflection properties of nanowire arrays have been simulated. The analysis of simulated resulted has also been presented.
متن کاملSurface depletion thickness of p-doped silicon nanowires grown using metal-catalysed chemical vapour deposition
An accurate evaluation of the radial dopant profile in a nanowire is crucial for designing future nanoscale devices synthesized using bottom-up techniques. We developed a very slow wet chemical etchant for gradually reducing the diameters of metal-catalysed, boron-doped silicon nanowires with varying diameters and lengths. Particular care has been taken to perform the experiment at room tempera...
متن کامل