Role of plasmonic Au nanoparticles embedded in the diamond-like carbon overlayer in the performance of CuFeO2 solar photocathodes

Fatemeh Aqaei1, Maryam Zare2, Azizollah Shafiekhani1
1Department of Physics, Alzahra University, Tehran, Iran
2School of Physics, Institute for Research in Fundamental Sciences (IPM), Tehran, Iran

Tóm tắt

Từ khóa


Tài liệu tham khảo

Prévot MS, Li Y, Guijarro N, Sivula K (2016) Improving charge collection with delafossite photocathodes: a host–guest CuAlO2/CuFeO2 approach. J Mater Chem A 4:3018–3026

Jang YJ, Park YB, Kim HE, Choi YH, Choi SH, Lee JS (2016) Oxygen intercalated CuFeO2 photocathode fabricated by hybrid microwave annealing for efficient solar hydrogen production. Chem Mater 28(17):6054–6061

Prévot MS, Jeanbourquin XA, Bouree WS, Abdi F, Friedrich D, Krol R, Guijarro N, Formal FL, Sivula K (2017) Evaluating charge carrier transport and surface states in CuFeO2 photocathodes. Chem Mater 29(11):4952–4962

Read CG, Park Y, Choi KS (2012) Electrochemical synthesis of p-type CuFeO2, electrodes for use in a photoelectrochemical cell. J Phys Chem Lett 3(14):1872–1876

Yuan J, Yang L, Hao C (2019) Photoelectrochemical reduction of CO2 to alcohols at CuO/CuFeO2 thin film electrode. Int J Electrochem Sci 14:8569–8578

Riveros G, Garín C, Ramírez D, Dalchiele EA, Marotti RE, Pereyra CJ, Spera E, Gómez H, Grez P, Martín F, Ramos-Barrado JR (2015) Delafossite CuFeO2 thin films electrochemically grown from a DMSO based solution. Electrochim Acta 164:297–306

Riveros G, Ramirez D, Tello A, Schrebler R, Henriquez R, Gomez H (2012) Electrodeposition of ZnO from DMSO solution: influence of anion nature and its concentration in the nucleation and growth mechanisms. J Braz Chem Soc 23(3):505–512

Riveros G, Ramírez D, Dalchiele EA, Marotti R, Peter LM, Grez P, Martín F, Ramos-Barrado JR (2013) Electrodeposition and characterization of hematite films obtained from DMSO solution. ECS Trans 58(11):97–116

Zare M, Shafiekhani A, Mortezaali A (2019) Tuning the density distribution of deep localized states of TiO2 nanotube arrays through decoration with Pt and Pt@DLC. J Photochem Photobiol A 380:111858–111864

Ortiz ME, Nunez-Vergara LJ, Squella JA (2002) Cyclic voltammetric behaviour of the O2/O2− redox couple at a HMDE and its interaction with nisoldipine. J Electroanal Chem 519(1-2):46–52

Riveros G, Garmendia A, Ramirez D, Tejos M, Grez P, Gomez H, Dalchiele EA (2013) Study of the electrodeposition of Cu2O thin films from DMSO solution. J Electrochem Soc 160(1):D28–D33

Bera A, Deb K, Chattopadhyay KK, Thapa R, Saha B (2016) Mixed phase delafossite structured p type CuFeO2/CuO thin film on FTO coated glass and its Schottky diode characteristics. Microelectron Eng 162:23–26

Jiang CM, Reyes-Lillo SE, Liang Y, Liu YS, Liu G, Toma FM, Prendergast D, Sharp ID, Cooper JK (2019) The electronic structure and performance bottlenecks of CuFeO2 photocathodes. Chem Mater 31(7):2524–2534

Garcia-Torregrosa I, Geertzema YG, Ismail ASM, Lee TL, Groot FMF, Weckhuysen BM (2019) Facile two-step synthesis of delafossite CuFeO2 photocathodes by ultrasonic spray pyrolysis and hybrid microwave annealing. Chem Photo Chem 3:1238–1245

Saito R, Miseki Y, Sayama K (2012) Highly efficient photoelectrochemical water splitting using a thin film photoanode of BiVO4/SnO2/WO3 multi-composite in a carbonate electrolyte. Chem Commun 48(32):3833–3835

Baglio JA, Calabrese GS, Harrison DJ, Kamieniecki E, Ricco AJ, Wrighton MS, Zoski GD (1983) Electrochemical characterization of P-type semiconducting tungsten disulfide photocathodes: efficient photoreduction processes at semiconductor/liquid electrolyte interfaces. J Am Chem Soc 105: 2246–2256, 8

Nagasubramanian G, Wheeler BL, Bard AJ (1983) Semiconductor electrodes XLIX. Evidence for fermi level pinning and surface-state distributions from impedance measurements in acetonitrile solutions with various redox couples. J Electrochem Soc 130:1680–1688

Wang Y, He Y, Lai Q, Fan M (2014) Review of the progress in preparing nano TiO2: an important environmental engineering material. J Environ Sci 26(11):2139–2177

Bignozzi CA (2011) Photocatalysis, vol 303. Springer Heidelberg, Dordrecht

Prévot MS, Guijarro N, Sivula K (2015) Enhancing the performance of a robust sol–gel processed P-type delafossite CuFeO2 photocathode for solar water reduction. Chem Sus Chem 8(8):1359–1367

Trasatti S, Petrii OA (1992) Real surface area measurements in electrochemistry. J Electroanal Chem 327(1-2):353–376

Ramsundar RM, Debgupta J, Pillai VK, Joy PA (2015) Co3O4 nanorods-efficient non-noble metal electrocatalyst for oxygen evolution at neutral pH. Electrocatalysis 6(4):331–340

McCrory CCL, Jung S, Peters JC, Jaramillo TF (2013) Benchmarking heterogeneous electrocatalysts for the oxygen evolution reaction. J Am Chem Soc 135(45):16977–16987

Benck JD, Chen ZB, Kuritzky LY, Forman AJ, Jaramillo TF (2012) Amorphous molybdenum sulfide catalysts for electrochemical hydrogen production: insights into the origin of their catalytic activity. ACS Catal 2(9):1916–1923

Zhang Q, Wei ZD, Liu C, Liu X, Qi XQ, Chen SG, Ding W, Ma Y, Shi F, Zhou YM (2012) Copper-doped cobalt oxide electrodes for oxygen evolution reaction prepared by magnetron sputtering. Int J Hydrogen Energ 37(1):822–830