2021
DOI: 10.1016/j.jallcom.2020.157931
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Atomic layer deposition of titanium dioxide films using a metal organic precursor (C12H23N3Ti) and H2O (DI water)

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Cited by 12 publications
(19 citation statements)
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“…In the case of precursor injection time, the thin film growth rate is saturated when it exceeds a certain level. According to previous published paper, the growth rate of TiO 2 thin films was saturated when Ti precursor was injected for 4 s, and the growth rate of Al 2 O 3 thin film was saturated when TMA precursor was injected 1 s. Therefore, in this study, we injected Ti precursor for 4 s and TMA precursor for 1 s. 15,27 The Al 2 O 3 thin film ALD process consisted of precursor injection (1 s), purging (30 s), reactant supply (1 s), and purging (40 s). In this study, TiO 2 : Al 2 O 3 thin films were deposited in three proportions (120: 1, 90: 1, 60: 1) and the characteristics of as-deposited TiO 2 z E-mail: hjeon@hanyang.ac.kr ECS Journal of Solid State Science and Technology, 2021 10 083006 thin films and Al doped TiO 2 thin films were analyzed.…”
Section: Methodsmentioning
confidence: 85%
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“…In the case of precursor injection time, the thin film growth rate is saturated when it exceeds a certain level. According to previous published paper, the growth rate of TiO 2 thin films was saturated when Ti precursor was injected for 4 s, and the growth rate of Al 2 O 3 thin film was saturated when TMA precursor was injected 1 s. Therefore, in this study, we injected Ti precursor for 4 s and TMA precursor for 1 s. 15,27 The Al 2 O 3 thin film ALD process consisted of precursor injection (1 s), purging (30 s), reactant supply (1 s), and purging (40 s). In this study, TiO 2 : Al 2 O 3 thin films were deposited in three proportions (120: 1, 90: 1, 60: 1) and the characteristics of as-deposited TiO 2 z E-mail: hjeon@hanyang.ac.kr ECS Journal of Solid State Science and Technology, 2021 10 083006 thin films and Al doped TiO 2 thin films were analyzed.…”
Section: Methodsmentioning
confidence: 85%
“…11,12 In the ALD process, thin film can be deposited at a lower temperature compared to the CVD (chemical vapor deposition) process, and is excellent in many aspects such as uniformity of thin film and step coverage. [13][14][15] Therefore ALD is being studied as a next-generation deposition process. TiO 2 thin films have two crystalline structures, anatase and rutile crystal structures, which have a relatively high k value greater than 20.…”
mentioning
confidence: 99%
“…It offers some advantages as a precursor, including the noncorrosive nature of by-products of ligand elimination, higher reactivity due to the weak Me-N bonds and good thermal stability. [54] We perform DFT calculations to study the feasibility of the growth of titanicone films using Ti(DMA)4 and EG or GL as MLD precursors and to investigate the molecular mechanism behind the possible growth. The hydroxylated anatase TiO2 surface, hydroxylated rutile TiO2 surface and hydroxylated Al2O3 surface were selected as surface models.…”
Section: Resultsmentioning
confidence: 99%
“…Ti(DMA) 4 is a metalorganic precursor containing Ti–N bonds to the organic ligands, dimethylamino (DMA, N(CH 3 ) 2 ), and with a much larger molecular size when compared to TiCl 4 . It offers some advantages as a precursor, including the noncorrosive nature of by-products of ligand elimination, higher reactivity due to the weak Me–N bonds and good thermal stability [ 38 ]. We performed DFT calculations to study the feasibility of the growth of titanicone films using Ti(DMA) 4 and EG or GL as MLD precursors and to investigate the molecular mechanism behind the possible growth.…”
Section: Resultsmentioning
confidence: 99%
“…In contrast this is non-corrosive compared to HCl by-products released during the TiCl 4 process. For TiCl 4 this is considered a significant drawback [ 38 ].…”
Section: Introductionmentioning
confidence: 99%