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50 results about "Bioelectronics" patented technology

Bioelectronics is a field of research in the convergence of biology and electronics.

Micro-nano corrugated structure and preparation method thereof, and device and application of preparation method

The invention discloses a preparation method of a micro-nano corrugated structure. The preparation method comprises the following steps of: (1) adding electrostatic spinning macromolecular solution into a syringe of a syringe pump, and fully filling the solution into a metal nozzle connected with the anode of a high pressure generator; (2) placing a metal cathode collecting plate connected with the ground electrode of the high pressure generator below the metal nozzle of the syringe, placing a flexible base material on the collecting plate, controlling the macromolecular solution to flow out at certain velocity, and electrifying the macromolecular solution to form jet flow; and (3) moving the metal collecting plate so that the jet flow falls on the flexible base material, namely the corrugated structure is formed on the whole base material. The invention also discloses the micro-nano corrugated structure prepared by using the method, a device for implementing the method and application of the method. When the elastic rubber base material stretches, the formed nano fiber graph can produce great deformation together with the elastic rubber base material and does not break, so that effective interconnection and stretching of flexible electrons are realized, and the invention has broad application prospect on the aspects of electronic skin, artificial muscles, bioelectronics and the like.
Owner:HUAZHONG UNIV OF SCI & TECH

Organic semicondutor element

The present invention relates to an organic semiconductor thin film suitably employed in electronics, photonics, bioelectronics, or the like, and a method for forming the same. The present invention further relates to a solution for an organic semiconductor used to form the organic semiconductor thin film and an organic semiconductor device using the organic semiconductor thin film. The transistor of the present invention is manufactured by forming sequentially a gate electrode (2), an insulator layer (3), a source electrode and drain electrode (4, 4) on a glass substrate (5), applying thereto a 0.05% (by mass) solution of pentacene in o-dichlorobenzene and drying the solution to form an organic semiconductor thin film (1). The present invention provides a transistor with superior electronic characteristics because the organic semiconductor thin film (1), which can be formed easily at low cost, is almost free of defects.
Owner:ASAHI KASEI KK

Nanobioelectronics

The present invention generally relates to nanobioelectronics and, in some cases, to circuits comprising nanoelectronic elements, such as nanotubes and / or nanowires, and biological components, such as neurons. In one aspect, cells, such as neurons, are positioned in electrical communication with one or more nanoscale wires. The nanoscale wires may be used to stimulate the cells, and / or determine an electrical condition of the cells. More than one nanoscale wire may be positioned in electrical communication with the cell, for example, in distinct regions of the cell. However, the nanoscale wires may be positioned such that they are relatively close together, for example, spaced apart by no more than about 200 nm. The nanoscale wires may be disposed on a substrate, for example, between electrodes, and the cells may be adhered to the substrate, for example, using cell adhesion factors such as polylysine. Also provided in other aspects of the invention are methods for making and using such devices, kits for using the same, and the like.
Owner:PRESIDENT & FELLOWS OF HARVARD COLLEGE

Differential amplifier with improved zero-point calibration

The present invention covers novel approaches to the differential amplification of an input signal. Embodiments of the present invention have precise gain, swing to within micro-volts (μV) of ground, and have high CMRR without the need for precision resistors or tuned potentiometers. Embodiments of the present invention are particularly suited for the amplification of an instrumentation signal for delivery to an analog-to-digital converter. Examples of such signals include the product of a strain-gauge front end, a temperature sensor front end, and certain devices for bioelectronics detection. Embodiments of the present invention which are systems for amplification of a differential input signal can comprise a differential input stage transconducing a differential voltage input signal into a single-ended intermediate current signal using a follower transconductance amplifier, and a single-ended output stage comprising an amplifier producing an output voltage across a resistor network that forms a negative feedback network of the amplifier.
Owner:NAT SEMICON CORP

Preparation method for field effect transistor

The invention discloses a preparation method for a field effect transistor. The field effect transistor comprises a substrate, a gate electrode, a dielectric layer, a semiconductor layer, a source electrode and a drain electrode, and a packaging layer from the bottom up in sequence. Based on the adhesive characteristic of lac, the dielectric material can be physically peeled off so as to form the stable dielectric layer having a thickness equal to that of several molecules, so that a solution method preparation step of the dielectric layer is omitted, the usage of poisonous reagents is effectively eliminated, and the stability is improved; meanwhile, the lac is used as the substrate and the packaging layer; due to the characteristics of high compactness, ultraviolet resistance, radiation resistance and the like of the lac, corrosion to the whole device by water and oxygen can be blocked, and interference on the device by ultraviolet and electromagnetic radiation can be prevented, so that the stability of the overall device is improved and the service life of the overall device is prolonged; the field effect transistor adopts the peelable dielectric layer and the biological material as the substrate and the packaging layer, so that the field effect transistor is easier to prepare and lower in cost; and in addition, the application range of the field effect transistor is expanded, so that the field effect transistor can be applicable to the fields of wearable equipment and bioelectronics, and is suitable for large-scale mass production.
Owner:JIANGSU YOURUN MICROELECTRONICS CO LTD

Method for treating uranium-containing wastewater by using electricity-generating microorganism supported Fe/C nano composite material

The invention provides a method for reducing and adsorbing uranium in wastewater by using nano-synthetic material combined with self electricity-generating microorganisms under illumination conditions. The method uses nano-zero valent iron (nZVI), a high-electroconductivity nano carbon material (C), and electricity-generating microorganisms as raw materials, uses the high reduction activity of thenZVI, the photocatalytic effect of an nZVI oxidation product combined with the C, and the characteristics of producing bioelectronics of the electricity-generating microorganisms for efficient reduction and adsorption treatment of the uranium-containing wastewater. The method comprises the following specific steps: (1) synthesizing a nano material (nZVI-CNT); (2) loading the nZVI-CNT on the surfaces of the microorganisms to obtain bio-nZVI-CNT; (3) placing the bio-nZVI-CNT into the uranium-containing wastewater with a concentration of <=50 mg/L under illumination, adjusting the pH to 4-6, andperforming uniform mixing under stirring; (4) performing solid-liquid separation after 2 hours; and (5) performing desorption to recover the uranium, and recycling the bio-nZVI-CNT. The method can reduce the uranium content in the uranium-containing wastewater with the concentration of <=50 mg/L by 96% or more, and the adsorption capacity is as high as 436.4 mg/g; and the method is simple and convenient to operate, has high removal efficiency and short removal time, and has good environmental, social and economic benefits.
Owner:SOUTHWEAT UNIV OF SCI & TECH

Bioelectronic signal processor and procedure to locate and destroy pancreatic cancer cells

Methods and systems for treating pancreatic cancer. A signal associated with pancreatic cancer in a body can be detected and recorded, and then reprogrammed to generate a confounding treatment signal with respect to the pancreatic cancer. The confounding treatment signal can be aimed at the pancreatic cancer in the body to shut down pancreatic cancer cells associated with said pancreatic cancer. The treatment signals can be provided as tiny encoded signals powered by ultra-low voltage approximated to the power level of the actual live pancreatic cancerous cell targets. An audio-light-optic system can seek out spreading pancreatic cancer cells that have moved onto nerves and blood vessels and the nearby organs, which include, for example, the liver, stomach, gall-bladder, spleen, and duodenum. Once the aberrant pancreatic cells are identified, the confounding treatment signals can be applied to destroy them.
Owner:NEURO CODE TECH HLDG

Air-lift type anaerobic bioreactor

The invention relates to an air-lift type anaerobic bioreactor, and belongs to the technical field of bioelectronics equipment. The reactor comprises a reaction tank, a gas inlet pipe, a gas ejector pipe, a separator and a nitrogen tank. The separator is located at the bottom inside the reaction tank. The bottom of the reaction tank is provided with a sewage discharge outlet. The gas inlet pipe penetrates through the top of the reaction tank to extent to the bottom of the reaction tank. The gas ejector pipe is connected with the bottom end of the gas inlet pipe. The gas ejector pipe is horizontally arranged at the bottom of the reaction tank. A plurality of gas nozzles are uniformly formed in the gas ejector pipe. The middle of the top of the reaction tank is provided with an exhaust opening. A plurality of staggered baffles are further arranged inside the reaction tank. One edges of the baffles are fixedly connected to the reaction tank. According to the air-lift type anaerobic bioreactor, the staggered baffles are adopted for limiting the gas flowing direction, so that a solution inside the tank is stirred, and the stirring effect is generated; meanwhile, due to the staggered baffles, the gas speed is lowered, and liquid with the high viscosity can be sufficiently stirred.
Owner:JIANGSU LVYANG BIOLOGICAL ELECTRONICS ENG CO LTD
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