Duong Tung Pham
Chonnam National University
Network
Latest external collaboration on country level. Dive into details by clicking on the dots.
Publication
Featured researches published by Duong Tung Pham.
Journal of Materials Chemistry | 2017
Saiful M. Islam; Muhammad Hilmy Alfaruqi; Vinod Mathew; Jinju Song; Sungjin Kim; Seokhun Kim; Jeonggeun Jo; Joseph Paul Baboo; Duong Tung Pham; Dimas Yunianto Putro; Yang-Kook Sun; Jaekook Kim
Aqueous Zn-ion batteries (ZIBs) have emerged as promising and eco-friendly next-generation energy storage systems to substitute lithium-ion batteries. Therefore, discovering new electrode materials for ZIBs with high performance and unraveling their electrochemical reactions during Zn-ion insertion/extraction are of great interest. Here, we present, for the first time, tunnel-type β-MnO2 nanorods with exposed (101) planes, prepared via a facile microwave-assisted hydrothermal synthesis within only 10 min, for use as a high performance cathode for ZIBs. In contrast to its bulk counterpart, which showed no electrochemical reactivity, the present β-MnO2 nanorod electrode exhibited a high discharge capacity of 270 mA h g−1 at 100 mA g−1, high rate capability (123 and 86 mA h g−1 at 528 and 1056 mA g−1, respectively), and long cycling stability (75% capacity retention with 100% coulombic efficiency at 200 mA g−1) over 200 cycles. The Zn-ion storage mechanism of the cathode was also unraveled using in situ synchrotron, ex situ X-ray diffraction, ex situ X-ray photoelectron spectroscopy, and ex situ X-ray absorption spectroscopy. Our present study indicates that Zn intercalation occurred via a combination of solid solution and conversion reactions. During initial cycles, the β-MnO2 cathode was able to maintain its structure; however, after prolonged cycles, it transformed into a spinel structure. The present results challenge the common views on the β-MnO2 electrode and pave the way for the further development of ZIBs as cost-effective and environmentally friendly next-generation energy storage systems.
Electrochemistry Communications | 2015
Muhammad Hilmy Alfaruqi; Jihyeon Gim; Sungjin Kim; Jinju Song; Duong Tung Pham; Jeonggeun Jo; Zhiliang Xiu; Vinod Mathew; Jaekook Kim
Chemistry of Materials | 2017
Muhammad Hilmy Alfaruqi; Vinod Mathew; Jinju Song; Sungjin Kim; Saiful M. Islam; Duong Tung Pham; Jeonggeun Jo; Seokhun Kim; Joseph Paul Baboo; Zhiliang Xiu; Kug-Seung Lee; Yang-Kook Sun; Jaekook Kim
Chemical Physics Letters | 2016
Muhammad Hilmy Alfaruqi; Saiful M. Islam; Jihyeon Gim; Jinju Song; Sungjin Kim; Duong Tung Pham; Jeonggeun Jo; Zhiliang Xiu; Vinod Mathew; Jaekook Kim
Chemical Engineering Journal | 2017
Balaji Sambandam; Vaiyapuri Soundharrajan; Jinju Song; Sungjin Kim; Jeonggeun Jo; Duong Tung Pham; Seokhun Kim; Vinod Mathew; Jaekook Kim
Ceramics International | 2017
Vaiyapuri Soundharrajan; Balaji Sambandam; Jinju Song; Sungjin Kim; Jeonggeun Jo; Duong Tung Pham; Seokhun Kim; Vinod Mathew; Jaekook Kim
Electrochimica Acta | 2017
Joseph Paul Baboo; Hyosun Park; Jinju Song; Sungjin Kim; Jeonggeun Jo; Duong Tung Pham; Vinod Mathew; Zhiliang Xiu; Jaekook Kim
Nanoscale | 2018
Duong Tung Pham; Joseph Paul Baboo; Jinju Song; Sungjin Kim; Jeonggeun Jo; Vinod Mathew; Muhammad Hilmy Alfaruqi; Balaji Sambandam; Jaekook Kim
Journal of Electroanalytical Chemistry | 2018
Balaji Sambandam; Vaiyapuri Soundharrajan; Jinju Song; Sungjin Kim; Jeonggeun Jo; Duong Tung Pham; Seokhun Kim; Vinod Mathew; Kwang Ho Kim; Yang-Kook Sun; Jaekook Kim
Journal of Energy Chemistry | 2017
Saiful M. Islam; Muhammad Hilmy Alfaruqi; Jinju Song; Sungjin Kim; Duong Tung Pham; Jeonggeun Jo; Seokhun Kim; Vinod Mathew; Joseph Paul Baboo; Zhiliang Xiu; Jaekook Kim