Replication data of Lotsch group for: "Postsynthetic Transformation of Imine- into Nitrone-Linked Covalent Organic Frameworks for Atmospheric Water Harvesting at Decreased Humidity" (doi:10.18419/darus-3658)

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Part 2: Study Description
Part 3: Data Files Description
Part 5: Other Study-Related Materials
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Document Description

Citation

Title:

Replication data of Lotsch group for: "Postsynthetic Transformation of Imine- into Nitrone-Linked Covalent Organic Frameworks for Atmospheric Water Harvesting at Decreased Humidity"

Identification Number:

doi:10.18419/darus-3658

Distributor:

DaRUS

Date of Distribution:

2024-01-29

Version:

1

Bibliographic Citation:

Grunenberg, Lars; Savasci, Gökcen; Emmerling, Sebastian; Heck, Fabian; Bette, Sebastian; Cima Bergesch, Afonso; Ochsenfeld, Christian; Lotsch, Bettina V., 2024, "Replication data of Lotsch group for: "Postsynthetic Transformation of Imine- into Nitrone-Linked Covalent Organic Frameworks for Atmospheric Water Harvesting at Decreased Humidity"", https://doi.org/10.18419/darus-3658, DaRUS, V1, UNF:6:6qLrfVdxi4dySJ6NPLMHUw== [fileUNF]

Study Description

Citation

Title:

Replication data of Lotsch group for: "Postsynthetic Transformation of Imine- into Nitrone-Linked Covalent Organic Frameworks for Atmospheric Water Harvesting at Decreased Humidity"

Identification Number:

doi:10.18419/darus-3658

Authoring Entity:

Grunenberg, Lars (Max Planck Institute for Solid State Research and LMU Munich)

Savasci, Gökcen (Max Planck Institute for Solid State Research and LMU Munich)

Emmerling, Sebastian (Max Planck Institute for Solid State Research and LMU Munich)

Heck, Fabian (Max Planck Institute for Solid State Research and LMU Munich)

Bette, Sebastian (Max Planck Institute for Solid State Research)

Cima Bergesch, Afonso (Max Planck Institute for Solid State Research and LMU Munich)

Ochsenfeld, Christian (Max Planck Institute for Solid State Research and LMU Munich)

Lotsch, Bettina V. (Max Planck Institute for Solid State Research and LMU Munich)

Software used in Production:

MestReNova

Software used in Production:

PerkinElmer Spectrum

Software used in Production:

TOPAS

Software used in Production:

WinXPow

Software used in Production:

OriginPro 2019b

Software used in Production:

BIOVIA Materials Studio 2017

Software used in Production:

Quantachrome ASiQwin

Software used in Production:

raw2aif online

Grant Number:

358283783 - SFB 1333

Grant Number:

EXC 2089 - 390776260

Distributor:

DaRUS

Access Authority:

Lotsch, Bettina V.

Depositor:

Grunenberg, Lars

Date of Deposit:

2023

Holdings Information:

https://doi.org/10.18419/darus-3658

Study Scope

Keywords:

Chemistry, Adsorption, Covalent Organic Frameworks, Materials, Nitrogen Compounds, Oxidation

Abstract:

Herein, we report a facile postsynthetic linkage conversion method giving synthetic access to nitrone-linked covalent organic frameworks (COFs) from imine- and amine-linked COFs. The new two-dimensional (2D) nitrone-linked covalent organic frameworks, NO-PI-3-COF and NO-TTI-COF, are obtained with high crystallinity and large surface areas. Nitrone-modified pore channels induce condensation of water vapor at 20% lower humidity compared to their amine- or imine-linked precursor COFs. Thus, the topochemical transformation to nitrone linkages constitutes an attractive approach to postsynthetically fine-tune water adsorption properties in framework materials. Open *.cif files with a visualization software (see http://ww1.iucr.org/iucr-top/cif/), *.raw files with WinXPOW, *.txt, *.csv, *.xyd and *.aif files with a text editor, *.sp files with PerkinElmer Spectrum software, *.mnova files with MestReNova, and *.pro files with TOPAS.

Kind of Data:

experimental data

Notes:

View data by "tree" to understand the file structure and file names according to the designations used in the original publication.

Methodology and Processing

Sources Statement

Data Access

Other Study Description Materials

Related Publications

Citation

Title:

L. Grunenberg, G. Savasci, S.T. Emmerling, F. Heck, S. Bette, A. Cima Bergesch, C. Ochsenfeld and B.V. Lotsch J. Am. Chem. Soc. 2023, 145, 24, 13241-13248.

Identification Number:

10.1021/jacs.3c02572

Bibliographic Citation:

L. Grunenberg, G. Savasci, S.T. Emmerling, F. Heck, S. Bette, A. Cima Bergesch, C. Ochsenfeld and B.V. Lotsch J. Am. Chem. Soc. 2023, 145, 24, 13241-13248.

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