Synthesis of Metal-Organic Frameworks and Crystalline Porous Polymers and Studies of Their Reactivity

Porous crystalline solids such as metal-organic frameworks (MOFs) and crystalline porous polymers are unparalleled platforms for studying fundamental processes involving gaseous components, which ultimately leads to applications such as catalysis, gas sorption and gas separation. To that end, new ma...

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Main Author: Sun, Chenyue
Other Authors: Dincă, Mircea
Format: Thesis
Published: Massachusetts Institute of Technology 2022
Online Access:https://hdl.handle.net/1721.1/144097
https://orcid.org/0000-0002-7524-5323
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author Sun, Chenyue
author2 Dincă, Mircea
author_facet Dincă, Mircea
Sun, Chenyue
author_sort Sun, Chenyue
collection MIT
description Porous crystalline solids such as metal-organic frameworks (MOFs) and crystalline porous polymers are unparalleled platforms for studying fundamental processes involving gaseous components, which ultimately leads to applications such as catalysis, gas sorption and gas separation. To that end, new materials, and new synthetic methods are constantly needed to fuel the growth of our knowledge. The aim of this thesis is to provide new avenues to constructing crystalline frameworks in a designed, target-driven manner. Applications of the newly synthesized materials are also detailed to demonstrate their unique advantages and showcase their versatility. Chapter 1 provides a summary of the current landscape of gas-solid reactions in MOFs with an emphasis on introducing MOFs to chemists from a homogeneous catalysis background. Both important concepts and practical examples are presented to compare and contrast chemistry in solution and chemistry inside MOFs. Opportunities and challenges are identified for future development of the field and deeper realization of MOFs’ potential. Chapter 2 introduces a new strategy, i.e. in-situ metalation, for incorporating flexible ligands into the backbone of MOFs and showcases this method with the synthesis of a new MOF, ZrTpmC*, which acts as a site-isolated and well-defined trispyrazolylmethane ligand in the solid state. In Chapter 3, the merit of site isolation in ZrTpmC* was demonstrated through study of Cu(I)-mediated NO reductive coupling, a reaction of importance to biological systems and automobile emission abatement. A previously hypothesized but unseen N₂O₂•– intermediate was fully characterized by a range of spectroscopic techniques. In Chapter 4, photochemical topochemical dimerization reaction is introduced as a new strategy for synthesis of porous crystalline polymers. To exemplify, topochemical polymerization of the tetrahedral monomer MTBA is described and the adsorption property, solution processibility and recyclability of polyMTBA is discussed.
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spelling mit-1721.1/1440972022-07-28T03:28:39Z Synthesis of Metal-Organic Frameworks and Crystalline Porous Polymers and Studies of Their Reactivity Sun, Chenyue Dincă, Mircea Massachusetts Institute of Technology. Department of Chemistry Porous crystalline solids such as metal-organic frameworks (MOFs) and crystalline porous polymers are unparalleled platforms for studying fundamental processes involving gaseous components, which ultimately leads to applications such as catalysis, gas sorption and gas separation. To that end, new materials, and new synthetic methods are constantly needed to fuel the growth of our knowledge. The aim of this thesis is to provide new avenues to constructing crystalline frameworks in a designed, target-driven manner. Applications of the newly synthesized materials are also detailed to demonstrate their unique advantages and showcase their versatility. Chapter 1 provides a summary of the current landscape of gas-solid reactions in MOFs with an emphasis on introducing MOFs to chemists from a homogeneous catalysis background. Both important concepts and practical examples are presented to compare and contrast chemistry in solution and chemistry inside MOFs. Opportunities and challenges are identified for future development of the field and deeper realization of MOFs’ potential. Chapter 2 introduces a new strategy, i.e. in-situ metalation, for incorporating flexible ligands into the backbone of MOFs and showcases this method with the synthesis of a new MOF, ZrTpmC*, which acts as a site-isolated and well-defined trispyrazolylmethane ligand in the solid state. In Chapter 3, the merit of site isolation in ZrTpmC* was demonstrated through study of Cu(I)-mediated NO reductive coupling, a reaction of importance to biological systems and automobile emission abatement. A previously hypothesized but unseen N₂O₂•– intermediate was fully characterized by a range of spectroscopic techniques. In Chapter 4, photochemical topochemical dimerization reaction is introduced as a new strategy for synthesis of porous crystalline polymers. To exemplify, topochemical polymerization of the tetrahedral monomer MTBA is described and the adsorption property, solution processibility and recyclability of polyMTBA is discussed. Ph.D. 2022-07-27T18:22:09Z 2022-07-27T18:22:09Z 2021-09 2022-07-27T11:43:34.693Z Thesis https://hdl.handle.net/1721.1/144097 https://orcid.org/0000-0002-7524-5323 In Copyright - Educational Use Permitted Copyright MIT http://rightsstatements.org/page/InC-EDU/1.0/ application/pdf Massachusetts Institute of Technology
spellingShingle Sun, Chenyue
Synthesis of Metal-Organic Frameworks and Crystalline Porous Polymers and Studies of Their Reactivity
title Synthesis of Metal-Organic Frameworks and Crystalline Porous Polymers and Studies of Their Reactivity
title_full Synthesis of Metal-Organic Frameworks and Crystalline Porous Polymers and Studies of Their Reactivity
title_fullStr Synthesis of Metal-Organic Frameworks and Crystalline Porous Polymers and Studies of Their Reactivity
title_full_unstemmed Synthesis of Metal-Organic Frameworks and Crystalline Porous Polymers and Studies of Their Reactivity
title_short Synthesis of Metal-Organic Frameworks and Crystalline Porous Polymers and Studies of Their Reactivity
title_sort synthesis of metal organic frameworks and crystalline porous polymers and studies of their reactivity
url https://hdl.handle.net/1721.1/144097
https://orcid.org/0000-0002-7524-5323
work_keys_str_mv AT sunchenyue synthesisofmetalorganicframeworksandcrystallineporouspolymersandstudiesoftheirreactivity