In this article, we report on the heat-transfer resistance at interfaces as a novel, denaturation-based method to detect single-nucleotide polymorphisms in DNA. We observed that a molecular brush of double-stranded DNA grafted onto synthetic diamond surfaces does not notably affect the heat-transfer resistance at the solid-to-liquid Interface. In contrast to this, molecular brushes of single-stranded DNA cause, surprisingly, a substantially higher heat-transfer resistance and behave like a thermally insulating layer. This effect can be utilized to identify ds-DNA melting temperatures via the switching from low- to high heat-transfer resistance. The melting temperatures identified with this method for different DNA duplexes (29 base pairs wi...
In this paper we address the fundamental issue of temperature fluctuation during the thermal denatur...
Background: Several methods for detection of single nucleotide polymorphisms (SNPs; e.g., denaturing...
In this article, we report on the electronic monitoring of DNA denaturation by NaOH using electroche...
In this article, we report on the heat-transfer resistance at interfaces as a novel, denaturation-ba...
In this article, we report on the heat-transfer resistance at interfaces as a novel, denaturation-ba...
In this article, we report on the label-free real-time thermal monitoring of the denaturation of spe...
In this article, we report on a label-free real-time method based on heat transfer resistivity for t...
The common key to nearly all processes involving DNA is the hybridization and melting of the double ...
This work presents a simple microfluidic device with an integrated thin-film heater for studies of D...
Heat Transfer and Thermal Management have become important aspects of the developing field of uTAS s...
The design of microarrays rely on studies geared towards sequence-specific recognition between compl...
In this paper we address the fundamental issue of temperature fluctuation during the thermal denatur...
Background: Several methods for detection of single nucleotide polymorphisms (SNPs; e.g., denaturing...
In this article, we report on the electronic monitoring of DNA denaturation by NaOH using electroche...
In this article, we report on the heat-transfer resistance at interfaces as a novel, denaturation-ba...
In this article, we report on the heat-transfer resistance at interfaces as a novel, denaturation-ba...
In this article, we report on the label-free real-time thermal monitoring of the denaturation of spe...
In this article, we report on a label-free real-time method based on heat transfer resistivity for t...
The common key to nearly all processes involving DNA is the hybridization and melting of the double ...
This work presents a simple microfluidic device with an integrated thin-film heater for studies of D...
Heat Transfer and Thermal Management have become important aspects of the developing field of uTAS s...
The design of microarrays rely on studies geared towards sequence-specific recognition between compl...
In this paper we address the fundamental issue of temperature fluctuation during the thermal denatur...
Background: Several methods for detection of single nucleotide polymorphisms (SNPs; e.g., denaturing...
In this article, we report on the electronic monitoring of DNA denaturation by NaOH using electroche...