简历: |
1999.9-2003.7 吉林大学 材料物理专业 学士 2009.7-2012.7 中国科学院金属研究所 “葛庭燧奖研金”获得者 |
研究领域: |
太阳能光催化材料 新型太阳能电池 |
1. Y. Y. Kang, Y. Q. Yang, L. C. Yin, X. D. Kang, L. Z. Wang, G. Liu,* H. M. Cheng, Selective breaking of hydrogen bonds of layered carbon nitride towards greatly enhanced visible light photocatalysis, Advanced Materials, 28(30), 6471–6477, (2016).
2. Y. Q. Yang, G. Liu,* J. TS Irvine, H. M. Cheng,* Enhanced photocatalytic H2 production in core-shell engineered rutile TiO2, Advanced Materials, 28(28), 5850-5856, (2016).
3. G. Zhang, G. Liu,* L. Z. Wang,* J. TS Irvine,* Inorganic perovskite photocatalysts for solar energy utilization, Chemical Society Reviews, 45 (21), 5951-5984 (2016).
4. Y. Y. Kang, Y. Q. Yang, L. C. Yin, X. D. Kang, G. Liu,* H. M. Cheng, An amorphous carbon nitride photocatalyst with greatly extended visible-light-responsive range for photocatalytic hydrogen generation, Advanced Materials, 27(31), 4572–4577, (2015).
5. G. Liu, L. C. Yin, J. Pan, F. Li, L. Wen, C. Zhen, H. M. Cheng*, Greatly enhanced electronic conduction and lithium storage of faceted TiO2 crystals supported on metallic substrates by tuning crystallographic orientation of TiO2, Advanced Materials, 27(23), 3507–3512, (2015).
6. P. Niu, L. C. Yin, Y. Q. Yang, G. Liu,* H. M. Cheng, Increasing the visible light absorption of graphitic carbon nitride (melon) photocatalysts by homogeneous self-modification with nitrogen vacancies, Advanced Materials 26 (47), 8046–8052, (2014).
7. Y. Q. Yang, C. H. Sun, L. Z. Wang, Z. Liu, G. Liu,* X. L. Ma, H. M. Cheng, Constructing metallic/semiconducting TaB2/Ta2O5 core/shell heterostructure for photocatalytic hydrogen evolution, Advanced Energy Materials 4 (12), 1400057, (2014).
8. G. Liu, H. G. Yang, J. Pan, Y. Q. Yang, G. Q. Lu,* H. M. Cheng,* Titanium dioxide crystals with tailored facets, Chemical Reviews 114 (19), 9559?9612, (2014).
9. Y. P. Xie, Z. B. Yu, G. Liu,* X. L. Ma, H.-M. Cheng,* CdS-mesoporous ZnS core-shell particles for efficient and stable photocatalytic hydrogen evolution under visible light, Energy & Environmental Science 7 (6), 1895–1901, (2014).
10. G. Liu, L. C. Yin, P. Niu, W. Jiao, H. M. Cheng,* Visible-light-responsive β-rhombohedral boron photocatalysts, Angewandte Chemie International Edition 52 (24), 6242-6245, (2013).
11. P. Niu, L. L. Zhang, G. Liu*, H. M. Cheng, Graphene-like carbon nitride nanosheets for improved photocatalytic activities, Advanced Functional Materials 22 (22), 4763-4770, (2012).
12. G. Liu, L.-C. Yin, J. Q. Wang, P. Niu, C. Zhen, Y. P. Xie, H.-M. Cheng,* A red anatase TiO2 photocatalyst for solar energy conversion, Energy & Environmental Science 5 (11), 9603-9610, (2012).
13. G. Liu, P. Niu, L. C. Yin, H. M. Cheng*, α-sulfur crystals as a visible light active photocatalyst, Journal of the American Chemical Society, 134 (22), 9070-9073, (2012).
14. G. Liu, J. Pan, L. C. Yin, J. TS Irvine, F. Li, J. Tan, P. Wormald, H.-M. Cheng*, Heteroatom-modulated switching of photocatalytic hydrogen and oxygen evolution preferences of anatase TiO2 microspheres, Advanced Functional Materials 22 (15), 3233–3238, (2012).
15. J. Pan, G. Liu*, G. Q. (Max) Lu, H. M. Cheng*, On the true photoreactivity order of {001}, {010} and {101} facets of anatase TiO2 crystals, Angewandte Chemie International Edition 50 (9), 2133-2137, (2011).