Page 136 - Read Online
P. 136

Page 18 of 19         Lee et al. Microstructures 2023;3:2023021  https://dx.doi.org/10.20517/microstructures.2023.08

                   encapsulation with an amphiphilic polymer. Chem Commun 2012;48:9361-3.  DOI  PubMed
               67.      Sharma A, Das J. Small molecules derived carbon dots: synthesis and applications in sensing, catalysis, imaging, and biomedicine. J
                   Nanobiotechnol 2019;17:92.  DOI  PubMed  PMC
               68.      Wang F, Pang S, Wang L, Li Q, Kreiter M, Liu C. One-step synthesis of highly luminescent carbon dots in noncoordinating solvents.
                   Chem Mater 2010;22:4528-30.  DOI
               69.      Chen S, Sun T, Zheng M, Xie Z. Carbon dots based nanoscale covalent organic frameworks for photodynamic therapy. Adv Funct
                   Mater 2020;30:2004680.  DOI
               70.      Fonseca J, Gong T, Jiao L, Jiang H. Metal-organic frameworks (MOFs) beyond crystallinity: amorphous MOFs, MOF liquids and
                   MOF glasses. J Mater Chem A 2021;9:10562-611.  DOI
               71.      Hou J, Sutrisna PD, Wang T, et al. Unraveling the interfacial structure-performance correlation of flexible metal-organic framework
                   membranes on polymeric substrates. ACS Appl Mater Interfaces 2019;11:5570-7.  DOI
               72.      Baumann AE, Burns DA, Liu B, Thoi VS. Metal-organic framework functionalization and design strategies for advanced
                   electrochemical energy storage devices. Commun Chem 2019:2.  DOI
               73.      Howarth AJ, Peters AW, Vermeulen NA, Wang TC, Hupp JT, Farha OK. Best practices for the synthesis, activation, and
                   characterization of metal-organic frameworks. Chem Mater 2017;29:26-39.  DOI
               74.      Hong DH, Shim HS, Ha J, Moon HR. MOF-on-MOF architectures: applications in separation, catalysis, and sensing. Bull Korean
                   Chem Soc 2021;42:956-69.  DOI
               75.      Kalaj M, Bentz KC, Ayala S Jr, et al. MOF-polymer hybrid materials: from simple composites to tailored architectures. Chem Rev
                   2020;120:8267-302.  DOI
               76.      Kwon O, Kim JY, Park S, et al. Computer-aided discovery of connected metal-organic frameworks. Nat Commun 2019;10:3620.  DOI
                   PubMed  PMC
               77.      Tripathy SP, Subudhi S, Parida K. Inter-MOF hybrid (IMOFH): a concise analysis on emerging core-shell based hierarchical and
                   multifunctional nanoporous materials. Coord Chem Rev 2021;434:213786.  DOI
               78.      Chen P, Bai Y, Wang S, Lyu M, Yun J, Wang L. Perovskite solar cells: in situ growth of 2D perovskite capping layer for stable and
                   efficient perovskite solar cells. Adv Funct Mater 2018;28:1870113.  DOI
               79.      Peng J, Kremer F, Walter D, et al. Centimetre-scale perovskite solar cells with fill factors of more than 86 per cent. Nature
                   2022;601:573-8.  DOI
               80.      Shi L, Wang J, Zhou L, Chen Y, Yan J, Dai C. Facile in-situ preparation of MAPbBr @UiO-66 composites for information encryption
                                                                          3
                   and decryption. J Solid State Chem 2020;282:121062.  DOI
               81.      Zhang Y, Lyu M, Qiu T, et al. Halide perovskite single crystals: optoelectronic applications and strategical approaches. Energies
                   2020;13:4250.  DOI
               82.      He R, Ren S, Chen C, et al. Wide-bandgap organic-inorganic hybrid and all-inorganic perovskite solar cells and their application in all-
                   perovskite tandem solar cells. Energy Environ Sci 2021;14:5723-59.  DOI
               83.      Lu H, Krishna A, Zakeeruddin SM, Grätzel M, Hagfeldt A. Compositional and interface engineering of organic-inorganic lead halide
                   perovskite solar cells. iScience 2020;23:101359.  DOI  PubMed  PMC
               84.      Kong Z, Liao J, Dong Y, et al. Core@Shell CsPbBr @Zeolitic imidazolate framework nanocomposite for efficient photocatalytic CO   2
                                                     3
                   reduction. ACS Energy Lett 2018;3:2656-62.  DOI
               85.      Yuan S, Zou L, Qin JS, et al. Construction of hierarchically porous metal-organic frameworks through linker labilization. Nat Commun
                   2017;8:15356.  DOI  PubMed  PMC
               86.      Aubert T, Golovatenko AA, Samoli M, et al. General expression for the size-dependent optical properties of quantum dots. Nano Lett
                   2022;22:1778-85.  DOI
               87.      Wang T, Gao L, Hou J, et al. Rational approach to guest confinement inside MOF cavities for low-temperature catalysis. Nat Commun
                   2019;10:1340.  DOI  PubMed  PMC
               88.      Jiang Z, Xue W, Huang H, Zhu H, Sun Y, Zhong C. Mechanochemistry-assisted linker exchange of metal-organic framework for
                   efficient kinetic separation of propene and propane. Chem Eng J 2023;454:140093.  DOI
               89.      Qi SC, Qian XY, He QX, et al. Generation of hierarchical porosity in metal-organic frameworks by the modulation of cation valence.
                   Angew Chem Int Ed 2019;58:10104-9.  DOI
               90.      Yang P, Mao F, Li Y, Zhuang Q, Gu J. Hierarchical porous Zr-based MOFs synthesized by a facile monocarboxylic acid etching
                   strategy. Chemistry 2018;24:2962-70.  DOI  PubMed
               91.      Qiao GY, Guan D, Yuan S, et al. Perovskite quantum dots encapsulated in a mesoporous metal-organic framework as synergistic
                   photocathode materials. J Am Chem Soc 2021;143:14253-60.  DOI
               92.      Hou J, Sapnik AF, Bennett TD. Metal-organic framework gels and monoliths. Chem Sci 2020;11:310-23.  DOI  PubMed  PMC
               93.      Tuffnell JM, Ashling CW, Hou J, et al. Novel metal-organic framework materials: blends, liquids, glasses and crystal-glass
                   composites. Chem Commun 2019;55:8705-15.  DOI
               94.      Hou J, Ashling CW, Collins SM, et al. Metal-organic framework crystal-glass composites. Nat Commun 2019;10:2580.  DOI  PubMed
                   PMC
               95.      Hou J, Chen P, Shukla A, et al. Liquid-phase sintering of lead halide perovskites and metal-organic framework glasses. Science
                   2021;374:621-5.  DOI
               96.      Keen DA, Bennett TD. Structural investigations of amorphous metal-organic frameworks formed via different routes. Phys Chem
   131   132   133   134   135   136   137   138   139   140   141