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1.
Chemistry ; 24(5): 1062-1066, 2018 Jan 24.
Article in English | MEDLINE | ID: mdl-29168907

ABSTRACT

Photoregulation is among the most promising tools for development of dynamic DNA nanosystems, due to its high spatiotemporal precision, biocompatibility, and ease of use. So far, azobenzene and its derivatives have shown high potential in photocontrolling DNA duplex hybridization by light-dependent photoisomerization. Despite many recent advances, obtaining sufficiently high photoswitching efficiency under conditions more suitable for work with DNA nanostructures are challenging. Here we introduce a pair of arylazopyrazoles as new photoswitches for efficient and reversible control of DNA hybridization achieved even at room temperature with a low number of required modifications. Their photophysical properties in the native state and in DNA strands result in near-quantitative isomerization rates by irradiation with UV and orange light. To demonstrate the applicability of these photoswitches, we have successfully applied one of them to open and close a DNA hairpin by light at room temperature.


Subject(s)
DNA/chemistry , Nanostructures/chemistry , Photochemical Processes , Pyrazoles/chemistry , Chromatography, High Pressure Liquid/methods , Isomerism , Kinetics , Light , Nanotechnology/methods , Temperature
2.
Sensors (Basel) ; 13(9): 12012-29, 2013 Sep 09.
Article in English | MEDLINE | ID: mdl-24021970

ABSTRACT

Currently there are a few fields of application using quartz crystal microbalances (QCM). Because of environmental conditions and insufficient resolution of the microbalance, chemical sensing of volatile organic compounds in an open system was as yet not possible. In this study we present strategies on how to use 195 MHz fundamental quartz resonators for a mobile sensor platform to detect airborne analytes. Commonly the use of devices with a resonant frequency of about 10 MHz is standard. By increasing the frequency to 195 MHz the frequency shift increases by a factor of almost 400. Unfortunately, such kinds of quartz crystals tend to exhibit some challenges to obtain a reasonable signal-to-noise ratio. It was possible to reduce the noise in frequency in a continuous air flow of 7.5 m/s to 0.4 Hz [i.e., σ(τ) = 2 × 10-9] by elucidating the major source of noise. The air flow in the vicinity of the quartz was analyzed to reduce turbulences. Furthermore, we found a dependency between the acceleration sensitivity and mechanical stress induced by an internal thermal gradient. By reducing this gradient, we achieved reduction of the sensitivity to acceleration by more than one decade. Hence, the resulting sensor is more robust to environmental conditions such as temperature, acceleration and air flow.


Subject(s)
Air Pollutants/analysis , Atmosphere/analysis , Atmosphere/chemistry , Environmental Monitoring/instrumentation , Micro-Electrical-Mechanical Systems/instrumentation , Rheology/instrumentation , Volatile Organic Compounds/analysis , Air Movements , Equipment Design , Equipment Failure Analysis
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