Jinsung Park
성균관대학교 생명과학과 · 생화학·유전·분자생물학
Jinsung Park 교수의 연구실은 전자공학 및 나노스케일 물리학 분야에서 활동하며, 저잡음 RF 수신기 회로 설계와 단일 분자 수준의 생물분자 상호작용 분석을 주요 연구 주제로 다룹니다. 특히 0.18μm CMOS 공정을 활용한 고성능 혼합기 설계와 KPFM(켈빈 프로브 힘 현미경) 기반 단일 분자 표면 전위 측정 기술을 접목해, 나노스케일에서의 전자적 특성과 분자 상호작용을 정밀하게 분석합니다. 또한 복잡한 파동 패턴과 결함 구조를 포함한 반응-확산 시스템의 비선형 역학적 거동 연구를 통해 물리학적 현상의 일반성과 기초 원리를 탐구합니다.
표시된 성과는 수집된 데이터 기준으로 산출되며, 일부 차이가 있을 수 있습니다.
This paper presents the design and analysis of low flicker-noise RF mixers in a 0.18-mum CMOS process for C-band direct-conversion receivers. The low flicker-noise mixers are implemented by incorporating a double-balanced Gilbert-type configuration, the RF leakageless current bleeding technique, and the resonating technique for the tail capacitance. First, a double-balanced Gilbert-type mixer using the current bleeding technique has been fabricated and measured for lowering flicker corner freque
We report the scanning probe microscope (SPM)-based single-molecule recognition of biomolecular interactions between protein kinase and small ligands (i.e., ATP and Imatinib). In general, it is difficult to sense and detect the small ligands bound to protein kinase (at single-molecule resolution) using a conventional atomic force microscope (AFM) due to the limited resolution of conventional AFM for detecting the miniscule changes in molecular size driven by ligand binding. In this study, we hav
Recent numerical simulations on two-dimensional model reaction-diffusion systems have revealed unusual spiral waves with complex oscillations and turbulent patterns, both mediated by ``line defects.'' Here we report the observation of such patterns in a laboratory experiment for the first time; complex spiral waves with period-2 and period-3 and turbulent patterns filled with a tangle of line defects are observed and their spatiotemporal dynamics are elucidated by line defects. Since line defect
The instability of a period-1 spiral wave resulting in a period-2 spiral wave with a line defect is investigated for the first time in a laboratory system. At the very onset the transition proceeds by an emergence of a spiraling line defect, "breathing" intermittently while retaining its symmetry of a period-1 spiral wave. With a further change in a control parameter, the line defect undergoes a meandering transition producing a compound tip trajectory, following a dynamic shape transition. The
The work function of polyaniline nanoparticles in the emeraldine base state was determined by Kelvin probe force microscopy to be ~270 meV higher than that of similar nanoparticles in the emeraldine salt state. Normal tapping mode atomic force microscopy could not be used to distinguish between the particles due to their similar morphologies and sizes. Moreover, other potential measurement systems, such as using zeta potentials, were not suitable for the measurement of surface charges of doped n
ABSTRACT We discuss the decomposition of the ζ-determinant of the square of the Dirac operator into the contributions coming from the different parts of the manifold. The result was announced in the Note Ref. [16]. The proof sketched in the Note was based on results of Brüning and Lesch (see Ref. [4]). In the meantime we have found another proof, more direct and elementary, and closer to the spirit of the original papers which initiated the study of the adiabatic decomposition of the spectral in