Cho Jung-Min, Ko Young-Jin, Lee Hak-Joo, Choi Heon-Jin, Baik Young-Joon, Park Jong-Keuk, Kwak Joon Young, Kim Jaewook, Park Jongkil, Jeong YeonJoo, Kim Inho, Lee Kyeong-Seok, Lee Wook-Seong
Electronic Materials Research Center, Korea Institute of Science and Technology, Seoul, 02792, Republic of Korea.
Department of Materials Science and Engineering, Yonsei University, Seoul, 03722, Republic of Korea.
Small. 2022 Feb;18(8):e2105087. doi: 10.1002/smll.202105087. Epub 2021 Dec 11.
The diamond-graphite hybrid thin film with low-dimensional nanostructure (e.g., nitrogen-included ultrananocrystalline diamond (N-UNCD) or the alike), has been employed in many impactful breakthrough applications. However, the detailed picture behind the bottom-up evolution of such intriguing carbon nanostructure is far from clarified yet. Here, the authors clarify it, through the concerted efforts of microscopic, physical, and electrochemical analyses for a series of samples synthesized by hot-filament chemical vapor deposition using methane-hydrogen precursor gas, based on the hydrogen-dependent surface reconstruction of nanodiamond and on the substrate-temperature-dependent variation of the growth species (atomic hydrogen and methyl radical) concentration near substrate. The clarified picture provides insights for a drastic enhancement in the electrochemical activities of the hybrid thin film, concerning the detection of important biomolecule, that is, ascorbic acid, uric acid, and dopamine: their limits of detections are 490, 35, and 25 nm, respectively, which are among the best of the all-carbon thin film electrodes in the literature. This work also enables a simple and effective way of strongly enhancing AA detection.
具有低维纳米结构的金刚石-石墨混合薄膜(例如含氮超纳米晶金刚石(N-UNCD)或类似材料)已被应用于许多具有重大影响力的突破性应用中。然而,这种有趣的碳纳米结构自下而上演化背后的详细情况仍远未明晰。在此,作者通过对一系列使用甲烷-氢气前驱体气体经热丝化学气相沉积合成的样品进行微观、物理和电化学分析,基于纳米金刚石的氢依赖表面重构以及衬底附近生长物种(原子氢和甲基自由基)浓度随衬底温度的变化,阐明了这一情况。所阐明的情况为混合薄膜在检测重要生物分子(即抗坏血酸、尿酸和多巴胺)方面的电化学活性的大幅提高提供了见解:它们的检测限分别为490、35和25 nM,这在文献中所有碳薄膜电极中是最佳之一。这项工作还实现了一种简单有效的大幅增强抗坏血酸检测的方法。