Yumin Lee
Ewha Womans University
Network
Latest external collaboration on country level. Dive into details by clicking on the dots.
Publication
Featured researches published by Yumin Lee.
Analytical Chemistry | 2012
Jun Ho Shim; Yumin Lee; Minkyung Kang; Jaeyeon Lee; Jeong Min Baik; Youngmi Lee; Chongmok Lee; Myung Hwa Kim
Applying nanoscale device fabrications toward biomolecules, ultra sensitive, selective, robust, and reliable chemical or biological microsensors have been one of the most fascinating research directions in our life science. Here we introduce hierarchically driven iridium dioxide (IrO(2)) nanowires directly on a platinum (Pt) microwire, which allows a simple fabrication of the amperometric sensor and shows a favorable electronic property desired for sensing of hydrogen peroxide (H(2)O(2)) and dihydronicotinamide adenine dinucleotide (NADH) without the aid of enzymes. This rational engineering of a nanoscale architecture based on the direct formation of the hierarchical 1-dimensional (1-D) nanostructures on an electrode can offer a useful platform for high-performance electrochemical biosensors, enabling the efficient, ultrasensitive detection of biologically important molecules.
Analytical Chemistry | 2012
Minkyung Kang; Yumin Lee; Hayoung Jung; Jun Ho Shim; Nam-Suk Lee; Jeong Min Baik; Sang Cheol Lee; Chongmok Lee; Youngmi Lee; Myung Hwa Kim
We demonstrate highly efficient electocatalytic activities of single crystalline RuO(2) nanorods grown on carbon fiber (CF), i.e., RuO(2) nanorod-CF hybrid microelectrode, prepared by a simple thermal annealing process from the Ru(OH)(3) precursor at 300 °C. The general electrochemical activity of a RuO(2) nanorod-CF microelectrode represents faster electron transfer for the [Fe(CN)(6)](3-/4-) couple than that of the bare CF microelectrode which are confirmed from the cyclic voltammetry (CV) measurement. Also, the amperometric response for the H(2)O(2) oxidation is remarkably facilitated at the RuO(2) nanorod-CF microelectrode by not only the enlarged surface area but the high electrocatalytic activity of the RuO(2) nanorod material itself. Furthermore, a single microelectrode of RuO(2) nanorod-CF exhibits the superior tolerance to Cl(-) ion poisoning unlike Pt-based electrocatalysts, indicating the promising sensor candidate in physiological conditions.
Journal of Chemical Physics | 2012
Ah-Young Jee; Yumin Lee; Minyung Lee; Myung Hwa Kim
We report the enhanced fluorescence with the remarkably long lifetime (1.17 ns) in the first excited state (S(1)) of highly crystalline molecular wires of azobenzene at the excitation wavelength of 467 nm for the first time. This observation suggests that trans-cis photoisomerization through the rotation or inversion mechanism may not be a favorable pathway after excitation to the S(1) state in highly single crystalline molecular wires of azobenzene due to the hindered motion within densely packed crystal structure. We also measured the fluorescence lifetime image of a single crystalline molecular wire of azobenzene, indicating that the lifetime was remarkably uniform and that there was only a very minor variation within the crystal.
Journal of Physical Chemistry C | 2011
Yumin Lee; Byeong-Uk Ye; Hak Ki Yu; Jong-Lam Lee; Myung Hwa Kim; Jeong Min Baik
Journal of Physical Chemistry C | 2012
Yumin Lee; Hae-Young Shin; Sung Hee Chun; Jaeyeon Lee; Won Jeong Park; Jeong Min Baik; Seokhyun Yoon; Myung Hwa Kim
Journal of Physical Chemistry C | 2012
Yumin Lee; Minkyung Kang; Jun Ho Shim; Nam-Suk Lee; Jeong Min Baik; Youngmi Lee; Chongmok Lee; Myung Hwa Kim
Crystal Growth & Design | 2012
Ji-eun Park; Yumin Lee; Jaeyeon Lee; Hye Soo Jang; Hae-Young Shin; Seokhyun Yoon; Jeong Min Baik; Myung Hwa Kim; Sungjin Kim
Materials Letters | 2012
Yumin Lee; Byungwoo Kim; Hyun Jung Jung; Youngmi Lee; Chongmok Lee; Jeong Min Baik; Woong Kim; Myung Hwa Kim
Physica Status Solidi-rapid Research Letters | 2010
Dongshin Myung; Yumin Lee; Jaeyeon Lee; Hak Ki Yu; Jong-Lam Lee; Jeong Min Baik; Woong Kim; Myung Hwa Kim
Journal of Physical Chemistry C | 2014
Hae-Young Shin; Jaeyeon Lee; Yumin Lee; Sewon Jeong; Hayoung Jung; Hak Ki Yu; Jeong Min Baik; Myung Hwa Kim; Seokhyun Yoon