Gu, Feijiao, Jin, Shuangling, Tang, Shan, Wang, Jiangcan, Yang, Shuo, Wu, Jiahui, Wei, Xudong, Zhang, Rui, Liu, Yan, Qiao, Wenming, Ling, Licheng, Jin, Minglin (2020) Comparative study of deoxygenation behavior for graphene oxide with different oxidation degree and mildly reduced graphene oxide via solid-state microwave irradiation. Materials Chemistry and Physics, 241. 122411pp. doi:10.1016/j.matchemphys.2019.122411
| Reference Type | Journal (article/letter/editorial) | ||
|---|---|---|---|
| Title | Comparative study of deoxygenation behavior for graphene oxide with different oxidation degree and mildly reduced graphene oxide via solid-state microwave irradiation | ||
| Journal | Materials Chemistry and Physics | ||
| Authors | Gu, Feijiao | Author | |
| Jin, Shuangling | Author | ||
| Tang, Shan | Author | ||
| Wang, Jiangcan | Author | ||
| Yang, Shuo | Author | ||
| Wu, Jiahui | Author | ||
| Wei, Xudong | Author | ||
| Zhang, Rui | Author | ||
| Liu, Yan | Author | ||
| Qiao, Wenming | Author | ||
| Ling, Licheng | Author | ||
| Jin, Minglin | Author | ||
| Year | 2020 (February) | Volume | 241 |
| Publisher | Elsevier BV | ||
| DOI | doi:10.1016/j.matchemphys.2019.122411Search in ResearchGate | ||
| Generate Citation Formats | |||
| Mindat Ref. ID | 3066357 | Long-form Identifier | mindat:1:5:3066357:2 |
| GUID | 0 | ||
| Full Reference | Gu, Feijiao, Jin, Shuangling, Tang, Shan, Wang, Jiangcan, Yang, Shuo, Wu, Jiahui, Wei, Xudong, Zhang, Rui, Liu, Yan, Qiao, Wenming, Ling, Licheng, Jin, Minglin (2020) Comparative study of deoxygenation behavior for graphene oxide with different oxidation degree and mildly reduced graphene oxide via solid-state microwave irradiation. Materials Chemistry and Physics, 241. 122411pp. doi:10.1016/j.matchemphys.2019.122411 | ||
| Plain Text | Gu, Feijiao, Jin, Shuangling, Tang, Shan, Wang, Jiangcan, Yang, Shuo, Wu, Jiahui, Wei, Xudong, Zhang, Rui, Liu, Yan, Qiao, Wenming, Ling, Licheng, Jin, Minglin (2020) Comparative study of deoxygenation behavior for graphene oxide with different oxidation degree and mildly reduced graphene oxide via solid-state microwave irradiation. Materials Chemistry and Physics, 241. 122411pp. doi:10.1016/j.matchemphys.2019.122411 | ||
| In | (2020) Materials Chemistry and Physics Vol. 241. Elsevier BV | ||
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