2015
DOI: 10.1016/j.matlet.2014.09.134
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Direct synthesis of Ni2Al(OH)7−x(NO3)x·nH2O layered double hydroxide nanolayers by SILD and their capacitive performance

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Cited by 15 publications
(8 citation statements)
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“…[37][38][39] The broad band in the range of 3700~3200 cm À 1 is assigned to the OÀ H stretching vibration of the interlayered crystal water, which is hydrogenbonded to the TM slabs consisting of [TM(OH) 6 ] octahedra (Figure 2b). [40][41][42][43][44] Notably, the OÀ H vibration peaks corresponding to the crystal water molecules in NCÀ AcO À (3379 cm À 1 ) and NCÀ SO 4 2À (3363 cm À 1 ) shift to lower wavenumbers compared to those in NCÀ Cl À (3491 cm À 1 ) and NCÀ NO 3 À (3529 cm À 1 ), which indicates weaker hydrogen bonding between the crystal water and the TM slab in NCÀ AcO À and NCÀ SO 4…”
Section: àmentioning
confidence: 99%
“…[37][38][39] The broad band in the range of 3700~3200 cm À 1 is assigned to the OÀ H stretching vibration of the interlayered crystal water, which is hydrogenbonded to the TM slabs consisting of [TM(OH) 6 ] octahedra (Figure 2b). [40][41][42][43][44] Notably, the OÀ H vibration peaks corresponding to the crystal water molecules in NCÀ AcO À (3379 cm À 1 ) and NCÀ SO 4 2À (3363 cm À 1 ) shift to lower wavenumbers compared to those in NCÀ Cl À (3491 cm À 1 ) and NCÀ NO 3 À (3529 cm À 1 ), which indicates weaker hydrogen bonding between the crystal water and the TM slab in NCÀ AcO À and NCÀ SO 4…”
Section: àmentioning
confidence: 99%
“…The infrared (IR) spectrum of the pristine LDH in Figure 1 presents remarkable bands from -OH, nitrate and M-O stretching modes around 3400, 1370 and 600 cm −1 , respectively, typical in LDH structures [10]. The set of bands between 1750 and 550 cm −1 in the spectra of compounds, synthesized with gallic acid under air atmosphere, correspond to the aromatic ring, phenol and carboxylic groups [4,11].…”
Section: Resultsmentioning
confidence: 99%
“…The SILD method provides a simple and effective means for creating metal oxide nanolayers for thin-film electrodes, which may result in significantly improved electronic conductivity and high electrochemical performance of pseudocapacitors. The possibility of creating electrode materials on the basis of thin-film nanolayers of layered double hydroxides, which showed a good electrochemical performance, has been shown in our previous work [15,16].…”
Section: Introductionmentioning
confidence: 88%