A nanodevice, a transistor including the nanodevice, a method of manufacturing the nanodevice, and a method of manufacturing the transistor including the nanodevice are provided.
The nanodevice may include an array of nanoparticles.
There is provided a nanodevice composition for localizing and delivering therapeutically active agents, the nanodevice includes a PAM AM dendrimer and at least one therapeutically active agent attached to the PAM AM dendrimer.
The nanodevice includes a PAMAM dendrimer linked to the compound via a disulfide bond.
The nanodevice may further include a substrate that supports the array of nanoparticles.
The nano RFID device may be a passive, active or semi-passive nano RFID device.
The nano RFID device may include a nano battery.
The nano RFID device may be less than about 150 nanometers in size.
A nano RFID device or tag and method for using same are disclosed.
The nano RFID device may include a nano antenna that may comprise one or more carbon tubes.
The nano RFID device may be distributed to a target such as a human or animal or products, for example.
Disclosed are a nano-structure assembly comprising an insulating substrate and nano-structures formed on the insulating substrate, and a nano-device comprising the same.
World's 'first self-powered nanodevice with wireless data transmission' created
Disclosed is a method for arranging nanostructures and a method for fabricating a nano device.
A nanodevice composition including N-acetyl cysteine linked to a dendrimer, such as a PAMAM dendrimer, is provided.
World's First Self-powered Nano-device With Wireless Data Transmission
Chinese scientists develop bionic nanodevice to combat breast cancer
An electrical characteristic between the two terminals of each nanoscale device (411-415, 421-425) is able to be modified by a signal applied to the second terminal.
The nano RFID device may include an environmentally reactive layer that reacts to its immediate environment to affix or adhere to a target.
A nanodevice is disclosed wherein the gating member (150, 153'-157) can be either transverse to the conducting nanotube (150), or substantially surround the conducting nanotube (153'-157).
Requêtes fréquentes français :1-200, -1k, -2k, -3k, -4k, -5k, -7k, -10k, -20k, -40k, -100k, -200k, -500k, -1000k,
Requêtes fréquentes anglais :1-200, -1k, -2k, -3k, -4k, -5k, -7k, -10k, -20k, -40k, -100k, -200k, -500k, -1000k,
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