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Showing items 1-6 of 6 (1 Page(s) Totally) 1 View [10|25|50] records per page
| 臺大學術典藏 |
2021-08-05T02:40:08Z |
Erratum: Active-site-rich 1T-phase CoMoSe2 integrated graphene oxide nanocomposite as an efficient electrocatalyst for electrochemical sensor and energy storage applications (Analytical Chemistry (2019) 91:13 (8358?8365) DOI: 10.1021/acs.analchem.9b01152)
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Ramaraj S;Sakthivel M;Chen S.-M;Ho K.-C.; Ramaraj S; Sakthivel M; Chen S.-M; Ho K.-C.; KUO-CHUAN HO |
| 臺大學術典藏 |
2020-01-06T03:09:11Z |
Bimetallic vanadium cobalt diselenide nanosheets with additional active sites for excellent asymmetric pseudocapacitive performance: Comparing the electrochemical performances with M-CoSe 2 (M = Zn, Mn, and Cu)
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Sakthivel, M.; Ramaraj, S.; Chen, S.-M.; Ho, K.-C.; KUO-CHUAN HO |
| 臺大學術典藏 |
2020-01-06T03:09:11Z |
Ultrasound-assisted synthesis of two-dimensional layered ytterbium substituted molybdenum diselenide nanosheets with excellent electrocatalytic activity for the electrochemical detection of diphenylamine anti-scald agent in fruit extract
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Ramaraj, S.; Sakthivel, M.; Chen, S.-M.; Ho, K.-C.; KUO-CHUAN HO |
| 臺大學術典藏 |
2020-01-06T03:09:11Z |
Electrochemical sensing of anti-inflammatory agent in paramedical sample based on FeMoSe2 modified SPCE: Comparison of various preparation methods and morphological effects
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Ramaraj, S.; Sakthivel, M.; Chen, S.-M.; Elshikh, M.S.; Chen, T.-W.; Yu, M.-C.; Ho, K.-C.; KUO-CHUAN HO |
| 臺大學術典藏 |
2020-01-06T03:09:10Z |
Transition-Metal-Doped Molybdenum Diselenides with Defects and Abundant Active Sites for Efficient Performances of Enzymatic Biofuel Cell and Supercapacitor Applications
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Sakthivel, M.; Ramaraj, S.; Chen, S.-M.; Chen, T.-W.; Ho, K.-C.; KUO-CHUAN HO |
| 臺大學術典藏 |
2020-01-06T03:09:10Z |
Active-Site-Rich 1T-Phase CoMoSe2 Integrated Graphene Oxide Nanocomposite as an Efficient Electrocatalyst for Electrochemical Sensor and Energy Storage Applications
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Ramaraj, S.; Sakthivel, M.; Chen, S.-M.; Ho, K.-C.; KUO-CHUAN HO |
Showing items 1-6 of 6 (1 Page(s) Totally) 1 View [10|25|50] records per page
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