1353118-75-8Relevant academic research and scientific papers
Monocrystalline iron metal organic frameworks
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Paragraph 0151; 0153; 0154, (2015/06/03)
The invention relates to large single crystals of iron metal-organic framework materials comprising at least one iron metal ion, processes for preparing the same, methods for employing the same, and the use thereof. The invention also relates to monocrystalline and polycrystalline iron metal-organic frameworks.
Aluminum Metal Organic Framework Materials
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Paragraph 0141; 0142; 0143, (2019/07/30)
The invention relates to monocrystalline single crystals of metal-organic framework materials comprising at least one aluminium metal ion, processes for preparing the same, methods for employing the same, and the use thereof. The invention also relates to monocrystalline aluminium metal-organic frameworks.
Aromatic tricarboxylic acid
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, (2018/10/31)
PROBLEM TO BE SOLVED: To provide a new aromatic tricarboxylic acid. SOLUTION: This aromatic tricarboxylic acid is represented by general formula (1). [In the formula, X represents a metoxy, amino, isocyano or hydroxy group, and n represents an integer of 0-3]. COPYRIGHT: (C)2012,JPO&INPIT
Structure-assisted functional anchor implantation in robust metal-organic frameworks with ultralarge pores
Park, Jihye,Feng, Dawei,Zhou, Hong-Cai
, p. 1663 - 1672 (2015/02/19)
A facile functionalization assisted by the structural attributes of PCN-333 has been studied while maintaining the integrity of the parent MOF including ultralarge pores, chemical robustness, and crystallinity. Herein we thoroughly analyzed ligand exchange phenomena in PCN-333 and demonstrate that the extent of exchange can be tailored by varying the exchange conditions as potential applications may require. Through this method a variety of functional groups are incorporated into PCN-333. To further show the capabilities of this system introduction of a BODIPY fluorophore as a secondary functionality was performed to the functionalized framework via a click reaction. We anticipate the PCN-333 with functional anchor can serve as a stable platform for further chemistry to be explored in future applications.
POROUS METAL COMPLEX, PROCESS FOR PRODUCING SAME, GAS STORAGE METHOD, AND GAS SEPARATION METHOD
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Paragraph 0066; 0067; 0068; 0069, (2013/05/09)
The porous coordination polymer of the invention contains metal complexes formed by coordination bonding between a trivalent metal ion and an aromatic tricarboxylic acid represented by formula (1). The porous coordination polymer also has a pore structure formed by integration of a plurality of the metal complexes. [In formula (1), n represents an integer of 0 to 4.]
