Page 112 - Multifunctional Photocatalytic Materials for Energy
P. 112

Graphene photocatalysts                                           101

            [101]  M. Xing, F. Shen, B. Qiu, J. Zhang, Highly-dispersed boron-doped graphene nanosheets
                 loaded with TiO 2  nanoparticles for enhancing CO 2  photoreduction, Sci. Rep. 4 (2014)
                 6341.
            [102]  S. Liu, B. Weng, Z.-R. Tang, Y.-J. Xu, Constructing one-dimensional silver nanowire-
                 doped reduced graphene oxide integrated with CdS nanowire network hybrid structures
                 toward artificial photosynthesis, Nanoscale 7 (3) (2015) 861–866.
            [103]  R. Bera, S. Kundu, A. Patra, 2D hybrid nanostructure of reduced graphene oxide–CdS
                 nanosheet for enhanced photocatalysis,  ACS  Appl. Mater. Interfaces 7 (24) (2015)
                 13251–13259.
            [104]  X. Li, J. Yu, S. Wageh, A.A. Al-Ghamdi, J. Xie, Graphene in photocatalysis: a review,
                 Small 12 (48) (2016) 6640–6696.
            [105]  Y. Li, H. Zhang, P. Liu, D. Wang, Y. Li, H. Zhao, Cross-linked g-C3N4/rGO nanocom-
                 posites with tunable band structure and enhanced visible light photocatalytic activity,
                 Small 9 (19) (2013) 3336–3344.
            [106]  Y. Fu, J. Zhu, C. Hu, X. Wu, X. Wang, Covalently coupled hybrid of graphitic carbon ni-
                 tride with reduced graphene oxide as a superior performance lithium-ion battery anode,
                 Nanoscale 6 (21) (2014) 12555–12564.
            [107]  S.  Cao, J.  Yu, Carbon-based H 2 -production photocatalytic materials, J Photochem.
                 Photobiol. C: Photochem. Rev. 27 (2016) 72–99.
            [108]  J.  Zhang, J.  Yu, M.  Jaroniec, J.R.  Gong, Noble metal-free reduced graphene
                   oxide-ZnxCd1–xS nanocomposite with enhanced solar photocatalytic H 2 -production
                 performance, Nano Lett. 12 (9) (2012) 4584–4589.
            [109]  J. Zhang, L. Qi, J. Ran, J. Yu, S.Z. Qiao, Ternary NiS/ZnxCd1-xS/reduced graphene
                 oxide nanocomposites for enhanced solar photocatalytic H 2 -production activity, Adv.
                 Energy Mater. 4 (10) (2014) 1301925, https://doi.org/10.1002/aenm.201301925.
            [110]  J. Low, S. Cao, J. Yu, S. Wageh, Two-dimensional layered composite photocatalysts,
                 Chem. Commun. 50 (74) (2014) 10768–10777.
            [111]  D.W. Chang, J.-B. Baek, Nitrogen-doped graphene for photocatalytic hydrogen genera-
                 tion, Chem. Asian. J. 11 (8) (2016) 1125–1137.
            [112]  L.  Jia, D.-H.  Wang,  Y.-X.  Huang,  A.-W.  Xu, H.-Q.  Yu, Highly durable N-doped
                 graphene/cds nanocomposites with enhanced photocatalytic hydrogen evolution from
                 water under visible light irradiation, J. Phys. Chem. C 115 (23) (2011) 11466–11473.
            [113]  Z. Mou, Y. Wu, J. Sun, P. Yang, Y. Du, C. Lu, TiO 2  nanoparticles-functionalized N-doped
                 graphene with superior interfacial contact and enhanced charge separation for photocat-
                 alytic hydrogen generation, ACS Appl. Mater. Interfaces 6 (16) (2014) 13798–13806.
            [114]  F. Pei, S. Xu, W. Zuo, Z. Zhang, Y. Liu, S. Cao, Effective improvement of photocatalytic
                 hydrogen evolution via a facile in-situ solvothermal N-doping strategy in N-TiO 2 /N-
                 graphene nanocomposite, Int. J. Hydrog. Energy 39 (13) (2014) 6845–6852.
            [115]  E.S. Baeissa, Green synthesis of methanol by photocatalytic reduction of CO 2  under
                 visible light using a graphene and tourmaline co-doped titania nanocomposites, Ceram.
                 Int. 40 (8, Part A) (2014) 12431–12438.
            [116]  W. Tu, Y. Zhou, Q. Liu, Z. Tian, J. Gao, X. Chen, H. Zhang, J. Liu, Z. Zou, Robust hol-
                 low spheres consisting of alternating titania nanosheets and graphene nanosheets with
                 high photocatalytic activity for CO 2  conversion into renewable fuels, Adv. Funct. Mater.
                 22 (6) (2012) 1215–1221.
            [117]  L.-Y. Lin, Y. Nie, S. Kavadiya, T. Soundappan, P. Biswas, N-doped reduced graphene
                 oxide promoted nano TiO 2  as a bifunctional adsorbent/photocatalyst for CO 2  photore-
                 duction: effect of N species, Chem. Eng. J. 316 (2017) 449–460.
   107   108   109   110   111   112   113   114   115   116   117