Tunable phase transition temperature and nonlinear optical properties of organic–inorganic hybrid perovskites enabled by dimensional engineering. Issue 43 (20th October 2022)
- Record Type:
- Journal Article
- Title:
- Tunable phase transition temperature and nonlinear optical properties of organic–inorganic hybrid perovskites enabled by dimensional engineering. Issue 43 (20th October 2022)
- Main Title:
- Tunable phase transition temperature and nonlinear optical properties of organic–inorganic hybrid perovskites enabled by dimensional engineering
- Authors:
- Jia, Qiang-Qiang
Ni, Hao-Fei
Lun, Meng-Meng
Xie, Li-Yan
Lu, Hai-Feng
Fu, Da-Wei
Guo, Qiang - Abstract:
- Abstract : Improving the phase transition temperature and enriching optoelectronics properties have become the top priorities. Herein, we have successfully synthesized two bilayer (2D/3D) perovskite materials based on a single layer perovskite. Abstract : Organic–inorganic hybrid materials have received extensive interest due to their easily adjustable structures, environmentally friendly features and excellent properties. Recently, plenty of organic–inorganic hybrids have been reported. However, low phase transition temperature and limited properties restrict their applications. Therefore, improving the phase transition temperature and enriching optoelectronics properties have become the top priorities. Herein, we have successfully synthesized two bilayer (2D/3D) perovskites, (MACH)2 ·CsPb2 Br7 (Prv-2) and (BMACH)·CsPb2 Br7 (Prv-3), based on a single layer perovskite, (MACH)2 ·PbBr4 (Prv-1), (MACH = cyclohexanemethylaminium and BMACH = 1, 3-cyclohexanedimethanaminium). The experimental results show that the phase transition temperature (385–415 K) of bilayer perovskites has been significantly improved by increasing the thickness of the inorganic framework. Meanwhile, the offset of the mineralizer (Cs +, (0.5, 0.5, 0.5) → (0.5, 0.76, 0.47)) in the Prv-3 makes it crystallize in the polar space group ( Pmc 21 ). Therefore, the SHG (second harmonic generation) measurement indicates that it possesses 0.5 times the signal intensity compared to KDP. Finally, opticalAbstract : Improving the phase transition temperature and enriching optoelectronics properties have become the top priorities. Herein, we have successfully synthesized two bilayer (2D/3D) perovskite materials based on a single layer perovskite. Abstract : Organic–inorganic hybrid materials have received extensive interest due to their easily adjustable structures, environmentally friendly features and excellent properties. Recently, plenty of organic–inorganic hybrids have been reported. However, low phase transition temperature and limited properties restrict their applications. Therefore, improving the phase transition temperature and enriching optoelectronics properties have become the top priorities. Herein, we have successfully synthesized two bilayer (2D/3D) perovskites, (MACH)2 ·CsPb2 Br7 (Prv-2) and (BMACH)·CsPb2 Br7 (Prv-3), based on a single layer perovskite, (MACH)2 ·PbBr4 (Prv-1), (MACH = cyclohexanemethylaminium and BMACH = 1, 3-cyclohexanedimethanaminium). The experimental results show that the phase transition temperature (385–415 K) of bilayer perovskites has been significantly improved by increasing the thickness of the inorganic framework. Meanwhile, the offset of the mineralizer (Cs +, (0.5, 0.5, 0.5) → (0.5, 0.76, 0.47)) in the Prv-3 makes it crystallize in the polar space group ( Pmc 21 ). Therefore, the SHG (second harmonic generation) measurement indicates that it possesses 0.5 times the signal intensity compared to KDP. Finally, optical characterization and theoretical calculation synergistically verify that all three perovskites belong to direct bandgap semiconductors. Consequentially, the strategies in this work might pave the way for the design and construction of multifunctional materials with a narrow band gap, non-linear optics and ferroelectricity. … (more)
- Is Part Of:
- Journal of materials chemistry. Volume 10:Issue 43(2022)
- Journal:
- Journal of materials chemistry
- Issue:
- Volume 10:Issue 43(2022)
- Issue Display:
- Volume 10, Issue 43 (2022)
- Year:
- 2022
- Volume:
- 10
- Issue:
- 43
- Issue Sort Value:
- 2022-0010-0043-0000
- Page Start:
- 16330
- Page End:
- 16336
- Publication Date:
- 2022-10-20
- Subjects:
- Materials -- Periodicals
Chemistry, Analytic -- Periodicals
Optical materials -- Research -- Periodicals
Electronics -- Materials -- Research -- Periodicals
543.0284 - Journal URLs:
- http://pubs.rsc.org/en/journals/journalissues/tc# ↗
http://www.rsc.org/ ↗ - DOI:
- 10.1039/d2tc03497b ↗
- Languages:
- English
- ISSNs:
- 2050-7526
- Deposit Type:
- Legaldeposit
- View Content:
- Available online (eLD content is only available in our Reading Rooms) ↗
- Physical Locations:
- British Library DSC - 5012.205300
British Library DSC - BLDSS-3PM
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- 24495.xml