Literature DB >> 12916030

Endo- and exotemplating to create high-surface-area inorganic materials.

Ferdi Schüth1.   

Abstract

Porous and high-surface-area materials are of interest to many scientific communities. Templating pathways can be used to synthesize such materials with a high degree of control over their structural and textural properties. As templates molecular or supramolecular units are added to the synthesis mixture. They are occluded in the growing solid and leave a pore system after their removal. For such templates the term "endotemplate" is introduced. Alternatively, the templates can be materials with structural pores in which another solid is created, thus providing a scaffold for the synthesis. After removal of the scaffold, a porous or finely divided solid remains, depending on the connectivity of the template. Such a template is termed an "exotemplate". By judicious choice of the templating procedure, unprecedented control of the structure and texture on length scales between nanometers and micrometers has been achieved over the last few years.

Entities:  

Year:  2003        PMID: 12916030     DOI: 10.1002/anie.200300593

Source DB:  PubMed          Journal:  Angew Chem Int Ed Engl        ISSN: 1433-7851            Impact factor:   15.336


  19 in total

Review 1.  Lyotropic liquid crystal directed synthesis of nanostructured materials.

Authors:  Cuiqing Wang; Dairong Chen; Xiuling Jiao
Journal:  Sci Technol Adv Mater       Date:  2009-07-10       Impact factor: 8.090

2.  Mesoporous TiO2 single crystals delivering enhanced mobility and optoelectronic device performance.

Authors:  Edward J W Crossland; Nakita Noel; Varun Sivaram; Tomas Leijtens; Jack A Alexander-Webber; Henry J Snaith
Journal:  Nature       Date:  2013-03-06       Impact factor: 49.962

Review 3.  The emergence of nanoporous materials in lung cancer therapy.

Authors:  Deepika Radhakrishnan; Shan Mohanan; Goeun Choi; Jin-Ho Choy; Steffi Tiburcius; Hoang Trung Trinh; Shankar Bolan; Nikki Verrills; Pradeep Tanwar; Ajay Karakoti; Ajayan Vinu
Journal:  Sci Technol Adv Mater       Date:  2022-07-20       Impact factor: 7.821

4.  Inorganic-organic hybrid materials through post-synthesis modification: Impact of the treatment with azides on the mesopore structure.

Authors:  Miriam Keppeler; Jürgen Holzbock; Johanna Akbarzadeh; Herwig Peterlik; Nicola Hüsing
Journal:  Beilstein J Nanotechnol       Date:  2011-08-26       Impact factor: 3.649

5.  Palladium supported on a novel ordered mesoporous polypyrrole/carbon nanocomposite as a powerful heterogeneous catalyst for the aerobic oxidation of alcohols to carboxylic acids and ketones on water.

Authors:  Nasim Ganji; Babak Karimi; Sepideh Najafvand-Derikvandi; Hojatollah Vali
Journal:  RSC Adv       Date:  2020-04-03       Impact factor: 3.361

6.  Polystyrene-block-poly(ethylene oxide) copolymers as templates for stacked, spherical large-mesopore silica coatings: dependence of silica pore size on the PS/PEO ratio.

Authors:  Roberto Nisticò; Giuliana Magnacca; Sushilkumar A Jadhav; Dominique Scalarone
Journal:  Beilstein J Nanotechnol       Date:  2016-10-14       Impact factor: 3.649

7.  Multifunctional Hydrogels with Reversible 3D Ordered Macroporous Structures.

Authors:  Hongkun He; Saadyah Averick; Pratiti Mandal; Hangjun Ding; Sipei Li; Jeff Gelb; Naomi Kotwal; Arno Merkle; Shawn Litster; Krzysztof Matyjaszewski
Journal:  Adv Sci (Weinh)       Date:  2015-03-26       Impact factor: 16.806

8.  Synthesis of Mesoporous Metal Oxides by Structure Replication: Thermal Analysis of Metal Nitrates in Porous Carbon Matrices.

Authors:  Christian Weinberger; Jan Roggenbuck; Jan Hanss; Michael Tiemann
Journal:  Nanomaterials (Basel)       Date:  2015-08-28       Impact factor: 5.076

9.  Computational evaluation of metal pentazolate frameworks: inorganic analogues of azolate metal-organic frameworks.

Authors:  Mihails Arhangelskis; Athanassios D Katsenis; Andrew J Morris; Tomislav Friščić
Journal:  Chem Sci       Date:  2018-02-28       Impact factor: 9.825

10.  Mesoporous hexagonal Co3O4 for high performance lithium ion batteries.

Authors:  Dawei Su; Xiuqiang Xie; Paul Munroe; Shixue Dou; Guoxiu Wang
Journal:  Sci Rep       Date:  2014-10-06       Impact factor: 4.379

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