

Tan CL, Cao XH, Wu XJ, He QY, Yang J, Zhang X et al (2017) Recent advances in ultrathin two-dimensional nanomaterials. Chem Soc Rev 44:2702–2712įan Z, Zhang H (2016) Crystal phase-controlled synthesis, properties and applications of noble metal nanomaterials. Voiry D, Mohite A, Chhowalla M (2015) Phase engineering of transition metal dichalcogenides. Tan C, Zhang H (2015) Wet-chemical synthesis and applications of non-layer structured two-dimensional nanomaterials. Science 340:1226419īernal JD (1924) The structure of graphite.

Nicolosi V, Chhowalla M, Kanatzidis MG, Strano MS, Coleman JN (2013) Liquid exfoliation of layered materials. Tan C, Liu Z, Huang W, Zhang H (2015) Non-volatile resistive memory devices based on solution-processed ultrathin two-dimensional nanomaterials. Mendoza-Sánchez B, Gogotsi Y (2016) Synthesis of two-dimensional materials for capacitive energy storage. Nat Nanotechnol 11:218–230īonaccorso F, Colombo L, Yu G, Stoller M, Tozzini V, Ferrari AC et al (2015) Graphene, related two-dimensional crystals, and hybrid systems for energy conversion and storage. Nat Rev Mater 1:16052ĭeng D, Novoselov K, Fu Q, Zheng N, Tian Z, Bao X (2016) Catalysis with two-dimensional materials and their heterostructures. Nat Nanotechnol 9:768–779Ĭhhowalla M, Jena D, Zhang H (2016) Two-dimensional semiconductors for transistors. J Am Chem Soc 133:18034–18037įiori G, Bonaccorso F, Iannaccone G, Palacios T, Neumaier D, Seabaugh A et al (2014) Electronics based on two-dimensional materials. Okamoto Y, Ida S, Hyodo J, Hagiwara H, Ishihara T (2011) Synthesis and photocatalytic activity of rhodium-doped calcium niobate nanosheets for hydrogen production from a water/methanol system without cocatalyst loading.

Nature 529:68–71Įbina Y, Sasaki T, Harada M, Watanabe M (2002) Restacked perovskite nanosheets and their Pt-loaded materials as photocatalysts. Gao S, Lin Y, Jiao X, Sun Y, Luo Q, Zhang W et al (2016) Partially oxidized atomic cobalt layers for carbon dioxide electroreduction to liquid fuel. Nat Mater 6:183–191Ĭhen X, Shen S, Guo L, Mao SS (2010) Semiconductor-based photocatalytic hydrogen generation. Geim AK, Novoselov KS (2007) The rise of graphene. Yang W, Zhang X, Xie Y (2016) Advances and challenges in chemistry of two-dimensional nanosheets. Novoselov KS, Geim AK, Morozov SV, Jiang D, Zhang Y, Dubonos SV et al (2004) Electric field effect in atomically thin carbon films. Zhang H (2015) Ultrathin two-dimensional nanomaterials. Liu L, Li Y (2014) Understanding the reaction mechanism of photocatalytic reduction of CO 2 with H 2O on TiO 2-based photocatalysts: a review. Tu WG, Zhou Y, Zou ZG (2014) Photocatalytic conversion of CO 2 into renewable hydrocarbon fuels: state-of-the-art accomplishment, challenges, and prospects. Kong D, Tan JZY, Yang F, Zeng J, Zhang X (2013) Electrodeposited Ag nanoparticles on TiO 2 nanorods for enhanced UV visible light photoreduction CO 2 to CH 4. Gui MM, Chai S-P, Mohamed AR (2014) Modification of 2 core–shell nanocomposites with transition metal oxide dopants for photoreduction of carbon dioxide into methane. Liu G, Wang K, Hoivik N, Jakobsen H (2012) Progress on free-standing and flow-through TiO 2 nanotube membranes. Li K, An X, Park KH, Khraisheh M, Tang J (2014) A critical review of CO 2 photoconversion: catalysts and reactors. Acc Chem Res 42:1983–1994Īnpo M, Yamashita H, Ichihashi Y, Ehara S (1995) Photocatalytic reduction of CO 2 with H 2O on various titanium oxide catalysts. Morris AJ, Meyer GJ, Fujita E (2009) Molecular approaches to the photocatalytic reduction of carbon dioxide for solar fuels. Inoue T, Fujishima A, Konishi S, Honda K (1979) Photoelectrocatalytic reduction of carbon dioxide in aqueous suspensions of semiconductor powders. Yang J, Wang D, Han H, Li C (2013) Roles of cocatalysts in photocatalysis and photoelectrocatalysis. Ran J, Zhang J, Yu J, Jaroniec M, Qiao SZ (2014) Earth-abundant cocatalysts for semiconductor-based photocatalytic water splitting. Stott PA, Tett S, Jones G, Allen M, Mitchell J, Jenkins G (2000) External control of 20th century temperature by natural and anthropogenic forcings.
