Yuanzhe Piao
Seoul National University
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Publication
Featured researches published by Yuanzhe Piao.
Talanta | 2016
Sohee Lee; Jiseop Oh; Dong-Won Kim; Yuanzhe Piao
We report an analytical assessment of an iron oxide (Fe2O3)/graphene (G) nanocomposite electrode used in combination with in situ plated bismuth (Bi) working as an electrochemical sensor for the determination of trace Zn(2+), Cd(2+), and Pb(2+). The as-synthesized nanocomposites were characterized by transmission electron microscopy, scanning electron microscopy, thermo-gravimetric analyzer, and X-ray diffraction. The electrochemical properties of the Fe2O3/G/Bi composite modified electrode were investigated. Differential pulse anodic stripping voltammetry was applied for the detection of metal ions. Due to the synergetic effect between graphene and the Fe2O3 nanoparticles, the modified electrode showed improved electrochemical catalytic activity high sensitivity toward trace heavy metal ions. Several parameters such as the preconcentration potential, bismuth concentration, preconcentration time, and pH were carefully optimized to determine the target metal ions. Under optimized conditions, the linear range of the electrode was 1-100μgL(-1) for Zn(2+), Cd(2+), and Pb(2+), and the detection limits were 0.11μgL(-1), 0.08μgL(-1), and 0.07μgL(-1), respectively (S/N =3). Repeatability (% RSD) was found to be 1.68% for Zn(2+), 0.92% for Cd(2+), and 1.69% for Pb(2+) for single sensor with 10 measurements and 0.89% for Zn(2+), 1.15% for Cd(2+), and 0.91% for Pb(2+) for 5 different electrodes. The Fe2O3/G/Bi composite electrode was successfully applied to the analysis of trace metal ions in real samples. The solventless thermal decomposition method applied to the simple and easy synthesis of nanocomposite electrode materials can be extended to the synthesis of nanocomposites and promising electrode materials for the determination of heavy metal ions.
ACS Applied Materials & Interfaces | 2016
Wang Zhang; Zhenxing Yin; Alvin Chun; Jeeyoung Yoo; Youn Sang Kim; Yuanzhe Piao
One-dimensional flexible metallic nanowires (NWs) are of considerable interest for next-generation wearable devices. The unavoidable challenge for a wearable electrode is the assurance of high conductivity, flexibility, and durability with economically feasible materials and simple manufacturing processes. Here, we use a straightforward solvothermal method to prepare a flexible conductive material that contains reduced graphene oxide (RGO) nanosheets bridging oriented copper NWs. The GO-assistance route can successfully meet the criteria listed above and help the composite films maintain high conductivity and durable flexibility without any extra treatment, such as annealing or acid processes. The composite film exhibits a high electrical performance (0.808 Ω·sq(-1)) without considerable change over 30 days under ambient conditions. Moreover, the Cu NW-RGO composites can be deposited on polyester cloth as a lightweight wearable electrode with high durability and simple processability and are very promising for a wide variety of electronic devices.
Journal of Nanoparticle Research | 2016
Haeyun Jang; Chaedong Lee; Gi-Eun Nam; Bo Quan; Hyuck Jae Choi; Jung Sun Yoo; Yuanzhe Piao
The difficulty in delineating tumor is a major obstacle for better outcomes in cancer treatment of patients. The use of single-imaging modality is often limited by inadequate sensitivity and resolution. Here, we present the synthesis and the use of monodisperse iron oxide nanoparticles coated with fluorescent silica nano-shells for fluorescence and magnetic resonance dual imaging of tumor. The as-synthesized core–shell nanoparticles were designed to improve the accuracy of diagnosis via simultaneous tumor imaging with dual imaging modalities by a single injection of contrast agent. The iron oxide nanocrystals (~11xa0nm) were coated with Rhodamine B isothiocyanate-doped silica shells via reverse microemulsion method. Then, the core–shell nanoparticles (~54xa0nm) were analyzed to confirm their size distribution by transmission electron microscopy and dynamic laser scattering. Photoluminescence spectroscopy was used to characterize the fluorescent property of the dye-doped silica shell-coated nanoparticles. The cellular compatibility of the as-prepared nanoparticles was confirmed by a trypan blue dye exclusion assay and the potential as a dual-imaging contrast agent was verified by in vivo fluorescence and magnetic resonance imaging. The experimental results show that the uniform-sized core–shell nanoparticles are highly water dispersible and the cellular toxicity of the nanoparticles is negligible. In vivo fluorescence imaging demonstrates the capability of the developed nanoparticles to selectively target tumors by the enhanced permeability and retention effects and ex vivo tissue analysis was corroborated this. Through in vitro phantom test, the core/shell nanoparticles showed a T2 relaxation time comparable to Feridex® with smaller size, indicating that the as-made nanoparticles are suitable for imaging tumor. This new dual-modality-nanoparticle approach has promised for enabling more accurate tumor imaging.Graphical Abstract
Journal of Electroanalytical Chemistry | 2016
Sohee Lee; Seung-Keun Park; Eunjin Choi; Yuanzhe Piao
Electrochimica Acta | 2016
Minsik Hwang; Jiseop Oh; Jeongmin Kang; Kwang-dong Seong; Yuanzhe Piao
Journal of Electroanalytical Chemistry | 2016
Suyeon Yoo; Jeongyeon Lee; Jong Min Kim; Chae-Yong Seong; Kwang-dong Seong; Yuanzhe Piao
Electrochimica Acta | 2016
Jeongyeon Lee; Seung-Keun Park; Yuanzhe Piao
Journal of Electroanalytical Chemistry | 2016
Minjeong Kwak; Sohee Lee; Dong-Won Kim; Seung-Keun Park; Yuanzhe Piao
Nanoscale | 2016
Jin Gyeong Son; Eunjin Choi; Yuanzhe Piao; Sang Woo Han; Tae Geol Lee
PRiME 2016/230th ECS Meeting (October 2-7, 2016) | 2016
Wang Zhang; Zhenxing Yin; Youn Sang Kim; Yuanzhe Piao