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A novel nanometric DNA thin film as a sensor for alpha radiation.


ABSTRACT: The unexpected nuclear accidents have provided a challenge for scientists and engineers to develop sensitive detectors, especially for alpha radiation. Due to the high linear energy transfer value, sensors designed to detect such radiation require placement in close proximity to the radiation source. Here we report the morphological changes and optical responses of artificially designed DNA thin films in response to exposure to alpha radiation as observed by an atomic force microscope, a Raman and a reflectance spectroscopes. In addition, we discuss the feasibility of a DNA thin film as a radiation sensing material. The effect of alpha radiation exposure on the DNA thin film was evaluated as a function of distance from an ²?¹Am source and exposure time. Significant reflected intensity changes of the exposed DNA thin film suggest that a thin film made of biomolecules can be one of promising candidates for the development of online radiation sensors.

SUBMITTER: Kulkarni A 

PROVIDER: S-EPMC3690391 | biostudies-literature | 2013

REPOSITORIES: biostudies-literature

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A novel nanometric DNA thin film as a sensor for alpha radiation.

Kulkarni Atul A   Kim Byeonghoon B   Dugasani Sreekantha Reddy SR   Joshirao Pranav P   Kim Jang Ah JA   Vyas Chirag C   Manchanda Vijay V   Kim Taesung T   Park Sung Ha SH  

Scientific reports 20130101


The unexpected nuclear accidents have provided a challenge for scientists and engineers to develop sensitive detectors, especially for alpha radiation. Due to the high linear energy transfer value, sensors designed to detect such radiation require placement in close proximity to the radiation source. Here we report the morphological changes and optical responses of artificially designed DNA thin films in response to exposure to alpha radiation as observed by an atomic force microscope, a Raman a  ...[more]

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