Established in June 2010, the Energy Research Institute @NTU (ERI@N) distinguishes itself through excellence in basic research directed towards outcomes of high industry relevance, with focus on systems-level research for tropical megacities.

It achieves this via seven Interdisciplinary Research Programmes (IRP) and two Flagship Programmes that covers the energy value chain from generation, transmission to end use. The IRPs address research covering the domains of renewables, low carbon generation along with energy storage and fuel cells; renewables integration, multi-energy systems and grids; sustainable buildings, future mobility solutions and maritime clean energy.

The two flagship projects, EcoCampus and Renewable Energy Integration Demonstrator Singapore (REIDS) serve as strong “Living Lab” platforms to engage industry developed innovation, focusing on solutions that achieves energy efficiency and renewable energy integration into smart micro grids, respectively.

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PNG Image - 492.4 KB - MD5: fa161ee304553327e08489559f44fe1f
31P–1H HETCOR ssNMR spectra of (a) crystalline OPA reference, (b) CsPbBr3 NCs treated with OPA after ethyl acetate and (c) acetonitrile purification cycles, and (d) unpurified CsPbBr3 NCs synthesized using OPA and TOPO. The 1D 31P MAS NMR spectrum is shown above each 2D HETCOR sp...
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CsPbBr3 NC LED device characteristics. (a) Band diagram, (b) current–voltage–luminance, (c) EQE/current efficiency against current density, and (d) power efficiency against luminance plots. CON denotes reference NC inks, OPA denotes OPA-treated inks; 1w and 2w denotes inks washed...
PNG Image - 2.1 MB - MD5: baadb11acd75f05c0cef0dd320898496
ATR FTIR spectra. (a) REF (solid) and OPA (dashed) NC samples for purified once (black) and twice (red). The C−O stretching region is shown. (b) Crystalline OPA (blue) and OPA NC samples after one purified cycle with 2:1 ethyl acetate (black) and after a second purification cycle...
PNG Image - 105.2 KB - MD5: 8fc1e7d2cd4876afece00dca78d704bf
Proposed attachment mechanism of octylphosphonic acid ligands to the surface of CsPbBr3 NCs (R = octyl, R’ =oleyl). The Pb–Br–Pb linkages represent corner sharing [PbBr6]4− octahedra of the perovskite lattice.
PNG Image - 524.0 KB - MD5: c9f0c8545c21711a6255f541f0ecf0c6
Photoluminescence spectra of (a) OPA−2w and (b) REF−2w CsPbBr3 NC solutions (concentration ≈ 0.05 mg mL-1) monitored over time. Insets show magnified sections of the same spectra at the emission maximum.
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The purification and ligand exchange protocol employed herein. The green, blue and red arrows represent the NC isolation (0w), 1st purification (1w) and 2nd purification (2w) cycles, respectively. Also shown are the stages of the cycles at which precipitated samples were extracte...
PNG Image - 162.7 KB - MD5: c1916101a1751600c78e07b100b21b06
Thermal Gravimetric Analysis, showing the weight loss of each CsPbBr3 NC sample between 100 and 550 C.
Alasdair Angus Macintyre Brown(Nanyang Technological University)
Apr 28, 2020
Apr 27, 2020 - Padinhare Cholakkal Harikesh
P.C. Harikesh; Abhijith Surendran; Biplab Ghosh; Rohit Abraham John; Arjun Moorthy; Natalia Yantara; Teddy Salim; Krishnamoorthy Thirumal; Wei Lin Leong; Subodh Mhaisalkar; Nripan Mathews, 2020, "Raw Data for: Cubic NaSbS2 as an Ionic–Electronic Coupled Semiconductor for Switchable Photovoltaic and Neuromorphic Device Applications", https://doi.org/10.21979/N9/C9MD12, DR-NTU (Data), V1, UNF:6:tTqxCHSdFTMAg6aS3mHC3g== [fileUNF]
This is the raw data for Cubic NaSbS2 as an Ionic–Electronic Coupled Semiconductor for Switchable Photovoltaic and Neuromorphic Device Applications
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