Publications Filter Date From To AuthorA. A. BakulinA. EmwasA. FakharuddinA. GerailiA. GuhaA. IpA. M. NajarianA. Morteza NajarianA. Morteza NajjariyanA. OzdenA. Pinilla-SánchezA. R. b. Mohd YusoffA. R. KirmaniA. RobbA. Sedighian RasouliA. WalshB. BelsaB. ChenB. DavaasurenB. N. KhiarakB. PolessoB. SunB. ZhangC. A. ObasanjoC. CombeC. D. FlynnC. DinhC. LiuC. ZhengC.‐T. DinhD. BaranD. ChangD. EcijaD. G. GeorgiadouD. SintonD. V. TalapinE. CortesE. H. SargentE. PastorE. SargentF. GaoF. P. de García de ArquerF. P. García de ArquerG. GaoG. T. PapadakisG. T. S. T. da SilvaH. Il KimH. J. BolinkH. KimH. LiH. WangH. WuH. YousefiH. ZhangI. GrigioniJ. ArbiolJ. CraneJ. Erick HuangJ. LeeJ. LiJ. R. DurrantJ. R. Galán-MascarósJ. SuJ. WicksJ. YeJ. Z. FanJoao M. PinaK. BertensK. ChoiK. WangK. XuL. GaoL. H. MascaroL. Huerta HernandezL. Kishore SagarL. LevinaL. LiL. San MartínL. XiaL. ZhangLu XiaM. Azimul HaqueM. BayerM. BiondiM. ChoiM. HuangM. Insan NugrahaM. K. NazeeruddinM. LiuM. SachsM. VafaieM. VasilopoulouN. LópezP. CaoP. LiP. OuP. TodorovicPan XiaQ. ChenQ. XuR. HuangR. RamR. TounesiR. WangR. XuR. YangS. BaekS. GiménezS. HooglandS. LeeS. LuoS. O. KelleyS. SelimS. Un RyuS.BarjaT. ParkT. PengT. ZhuV. GolovanovaV. GrangeV. I. KlimovW. JiangW. ZhouX. JiangX. LiX. WangX. XiaoX. ZhouXue WangY. ArakawaY. GaoY. LiY. LiuY. ShangY. WenY. ZhouZ. LianZ. LiuZ. LuZ. Ning[et al.][et al] Apply Cancel ResetRegular Papers Cu‐based tandem architectures for CO2 electrolysis to multicarbon productsR. Yang, [et al.] Adv. Energy Mater. 15, 2405964 (2025) Asymmetrically tailored catalysts towards electrochemical energy conversion with non-precious materialsL. Zhang, Q. Xu, L. Xia, W. Jiang, K. Wang, P. Cao, Q. Chen, M. Huang, F. P. García de Arquer, Y. Zhou Chem. Soc. Rev. 54, 5108-5145 (2025) Operando-informed precatalyst programming towards reliable high-current-density electrolysisLu Xia, [et al.] Nat. Mater. 24, 753-761 (2025) Colloidal quantum dots shine in liquidF. P. García de Arquer Nat. Mater. 24, 2-3 (2025) Introducing cambridge prisms: carbon technologiesC. Dinh, F. P. García de Arquer Camb. Prisms Carbon Technol. 1, e2, 1-2 (2025) Macro‐ and nano‐porous Ag electrodes enable selective and stable aqueous CO2 reductionB. N. Khiarak, G. T. S. T. da Silva, V. Grange, G. Gao, V. Golovanova, F. P. de García de Arquer, L. H. Mascaro, C.‐T. Dinh Small 21, 2409669 (2024) Highly stable biotemplated InP/ZnSe/ZnS quantum dots for in situ bacterial monitoringH. Yousefi, L. Kishore Sagar, A. Geraili, D. Chang, F. P. García de Arquer, C. D. Flynn, S. Lee, E. H. Sargent, S. O. Kelley ACS Appl. Mater. Interfaces 16, 55086–55096 (2024) CO2 electrolysis technologies: bridging the gap toward scale-up and commercializationB. Belsa, L. Xia, F. P. García de Arquer ACS Energy Lett. 9, 4293-4305 (2024) Materials challenges on the path to gigatonne CO2 electrolysisB. Belsa, L. Xia, V. Golovanova, B. Polesso, A. Pinilla-Sánchez, L. San Martín, J. Ye, C. Dinh, F. P. García de Arquer Nat Rev Mater 9, 535-549 (2024) Water-hydroxide trapping in cobalt tungstate for proton exchange membrane water electrolysisR. Ram, [et al.] Science 384, 1373-1380 (2024) The critical analysis of membranes toward sustainable and efficient vanadium redox flow batteriesJ. Ye, L. Xia, H. Li, F. P. García de Arquer, H. Wang Adv. Mater. 36, 2402090 (2024) Single-site iron-anchored amyloid hydrogels as catalytic platforms for alcohol detoxificationJ. Su, [et al.] Nat. Nanotechnol. 19, 1168–1177 (2024) Photophysical properties of materials for high-speed photodetectionA. M. Najarian, M. Vafaie, B. Chen, F. P. García de Arquer, E. H. Sargent Nat Rev Phys 6, 219–230 (2024) Complementary probes for the electrochemical interfaceE. Pastor, Z. Lian, L. Xia, D. Ecija, J. R. Galán-Mascarós, S.Barja, S. Giménez, J. Arbiol, N. López, F. P. García de Arquer Nat Rev Chem 8, 159-178 (2024) Electrical tunability of inorganic tin perovskites enabled by organic modifiersM. Azimul Haque, T. Zhu, L. Huerta Hernandez, R. Tounesi, C. Combe, B. Davaasuren, A. Emwas, F. P. García de Arquer, E. H. Sargent, D. Baran Cell Reports Physical Science 4, 101703 (2023) Quantum-tuned cascade multijunction infrared photodetectorW. Zhou, R. Xu, H. Wu, X. Jiang, H. Wang, F. P. García de Arquer, Z. Ning ACS Nano 17, 18864-18872 (2023) Molecular surface programming of rectifying junctions between inas colloidal quantum dot solidsM. Vafaie, [et al.] Proc. Natl. Acad. Sci. U.S.A. 120, e2305327120 (2023) Homomeric chains of intermolecular bonds scaffold octahedral germanium perovskitesA. Morteza Najarian, [et al.] Nature 620, 328-335 (2023) High-rate and selective conversion of CO2 from aqueous solutions to hydrocarbonsC. A. Obasanjo, G. Gao, J. Crane, V. Golovanova, F. P. García de Arquer, C. Dinh Nat. Commun. 14, 3176 (2023) Sequential co‐passivation in inas colloidal quantum dot solids enables efficient near‐infrared photodetectorsPan Xia, [et al.] Advanced Materials 28, e2301842 (2023) Energy- and carbon-efficient CO2/CO electrolysis to multicarbon products via asymmetric ion migration–adsorptionA. Ozden, [et al.] Nat. Energy. 8, 179-190 (2023) Quantum-size-effect tuning enables narrowband ir photodetection with low sunlight interferenceJoao M. Pina, [et al] Nano Lett. 22, 6802-6807 (2022) Introducing Brønsted acid sites to accelerate the bridging-oxygen-assisted deprotonation in acidic water oxidationY. Wen, C. Liu, R. Huang, H. Zhang, X. Li, F. P. García de Arquer, Z. Liu, Y. Li, B. Zhang Nat Commun 13, 4871 (2022) Fast near‐infrared photodetection using III–Vcolloidal quantum dotsB. Sun, [et al.] Advanced Materials 34, 2203039 (2022) Sub-millimetre light detection and ranging using perovskitesA. Morteza Najarian, [et al] Nat Electron 5, 511-518 (2022) Carbon-efficient carbon dioxide electrolysersA. Ozden, [et al.] Nat Sustain 5, 563–573 (2022) Efficient electrosynthesis of n-propanol from carbon monoxide using a AG–RU–CU catalystXue Wang, [et al.] Nat Energy 7, 170-176 (2022) Concentrated ethanol electrosynthesis from CO2 via a porous hydrophobic adlayerA. Robb, [et al.] ACS Appl. Mater. Interfaces 14, 4155-4162 (2022) Ternary alloys enable efficient production of methoxylated chemicals via selective electrocatalytic hydrogenation of lignin monomersT. Peng, [et al.] J. Am. Chem. Soc. 143, 17226-17235 (2021) Self‐aligned non‐centrosymmetric conjugated molecules enable electro‐optic perovskitesY. Gao, [et al.] Advanced Optical Materials 9, 2100730 (2021) Bright and stable light-emitting diodes based on perovskite quantum dots in perovskite matrixY. Liu, [et al.] J. Am. Chem. Soc. 143, 15606-15615 (2021) Stable, active CO2 reduction to formate via redox-modulated stabilization of active sitesL. Li, [et al.] Nat Commun 12, 5223 (2021) Advances in solution-processed near-infrared light-emitting diodesM. Vasilopoulou, A. Fakharuddin, F. P. García de Arquer, D. G. Georgiadou, H. Kim, A. R. b. Mohd Yusoff, F. Gao, M. K. Nazeeruddin, H. J. Bolink, E. H. SargentNature Photon. 15, 656-669 (2021) Gold adparticles on silver combine low overpotential and high selectivity in electrochemical CO2 conversionA. Ozden, Y. Liu, C. Dinh, J. Li, P. Ou, F. P. García de Arquer, E. H. Sargent, D. Sinton ACS Appl. Energy Mater. 4, 7504-7512 (2021) Semiconductor quantum dots: Technological progress and future challengesF. P. García de Arquer, D. V. Talapin, V. I. Klimov, Y. Arakawa, M. Bayer, E. H. SargentScience 373, eaaz8541 (2021) Facet‐oriented coupling enables fast and sensitive colloidal quantum dot photodetectorsM. Biondi, [et al.] Advanced Materials 33, 2101056 (2021) Ligand exchange at a covalent surface enables balanced stoichiometry in III–V colloidal quantum dotsM. Choi, L. Kishore Sagar, B. Sun, M. Biondi, S. Lee, A. Morteza Najjariyan, L. Levina, F. P. García de Arquer, E. H. Sargent Nano Lett. 21, 6057-6063 (2021) CO2 electrolysis to multicarbon products in strong acidJ. Erick Huang, [et al.] Science 372, 1074-1078 (2021) Dopant-assisted matrix stabilization enables thermoelectric performance enhancement in n-type quantum dot filmsM. Insan Nugraha, [et al.] ACS Appl. Mater. Interfaces 13, 18999-19007 (2021) Control over ligand exchange reactivity in hole transport layer enables high-efficiency colloidal quantum dot solar cellsM. Biondi, [et al.] ACS Energy Lett. 6, 468-476 (2021) CO2 electroreduction to formate at a partial current density of 930 mA cm –2 with InP colloidal quantum dot derived catalystsI. Grigioni, [et al.] ACS Energy Lett. 6, 79-84 (2021) Colloidal quantum dot solar cell band alignment using two-step ionic dopingK. Bertens, J. Z. Fan, M. Biondi, A. Sedighian Rasouli, S. Lee, P. Li, B. Sun, S. Hoogland, F. P. García de Arquer, Z. Lu, E. H. Sargent ACS Materials Lett. 2, 1583-1589 (2020) InP-quantum-dot-in-ZnS-matrix solids for thermal and air stabilityS. Lee, [et al.] Chem. Mater. 32, 9584-9590 (2020) Sub-nanosecond infrared photodetection using III-V colloidal quantum dotsB. Sun, [et al.] Research Square (2020) High-valence metals improve oxygen evolution reaction performance by modulating 3d metal oxidation cycle energeticsB. Zhang, [et al.] Nat Catal 3, 985-992 (2020) Orthogonal colloidal quantum dot inks enable efficient multilayer optoelectronic devicesS. Lee, [et al.] Nat Commun 11, 4814 (2020) Monolithic organic/colloidal quantum dot hybrid tandem solar cells via buffer engineeringH. Il Kim, [et al.] Advanced Materials 32, (2020) Efficient and stable colloidal quantum dot solar cells with a green‐solvent hole‐transport layerH. Il Kim, J. Lee, M. Choi, S. Un Ryu, K. Choi, S. Lee, S. Hoogland, F. P. García de Arquer, E. H. Sargent, T. Park Advanced Energy Materials 10, 2002084 (2020) Suppression of auger recombination by gradient alloying in InAs/CdSe/CdS QDsL. Kishore Sagar, [et al.] Chem. Mater. 32, 7703-7709 (2020) High-rate and efficient ethylene electrosynthesis using a catalyst/promoter/transport layerA. Ozden, [et al.] ACS Energy Lett. 5, 2811-2818 (2020) 12