Polycondensation of Bridged Amino-Functionalized Trialkoxysilanes.

The reduction of CO2 emission has been a worldwide mission to resolve global warming predicament. Mesoporous silsesquioxanes, which stabilized by organobridges and has high content aminon absorption site, can serve as a potential CO2 adsorbent. Synthesis of such material is done by hydrolysis and po...

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Main Author: Zhou, Guannan
Format: Others
Published: Digital Commons @ East Tennessee State University 2011
Subjects:
Online Access:https://dc.etsu.edu/etd/1292
https://dc.etsu.edu/cgi/viewcontent.cgi?article=2483&context=etd
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spelling ndltd-ETSU-oai-dc.etsu.edu-etd-24832019-05-16T04:43:27Z Polycondensation of Bridged Amino-Functionalized Trialkoxysilanes. Zhou, Guannan The reduction of CO2 emission has been a worldwide mission to resolve global warming predicament. Mesoporous silsesquioxanes, which stabilized by organobridges and has high content aminon absorption site, can serve as a potential CO2 adsorbent. Synthesis of such material is done by hydrolysis and polycondensation of trialkoxysilane. The fastest gelation was observed at reaction in the absence of acids or bases. However, addition of surfactant to the reaction mixture catalyzed formation of silsesquioxanes in acidic media. Obtained materials are strongly hydrophilic and possess a high thermostability. Study of particle size distributions showed that in all cases it was bimodal. The largest particles formed in basic media. Mesoporous silsesquioxanes were obtained from bridged alkyltrimethoxysilanes in the presence of surfactants. 2011-05-07T07:00:00Z text application/pdf https://dc.etsu.edu/etd/1292 https://dc.etsu.edu/cgi/viewcontent.cgi?article=2483&context=etd Copyright by the authors. Electronic Theses and Dissertations Digital Commons @ East Tennessee State University trialkoxysilanes amino group surfactant bridged silsesquioxanes polycondensation mesoporous material Chemistry Environmental Chemistry Physical Sciences and Mathematics
collection NDLTD
format Others
sources NDLTD
topic trialkoxysilanes
amino group
surfactant
bridged silsesquioxanes
polycondensation
mesoporous material
Chemistry
Environmental Chemistry
Physical Sciences and Mathematics
spellingShingle trialkoxysilanes
amino group
surfactant
bridged silsesquioxanes
polycondensation
mesoporous material
Chemistry
Environmental Chemistry
Physical Sciences and Mathematics
Zhou, Guannan
Polycondensation of Bridged Amino-Functionalized Trialkoxysilanes.
description The reduction of CO2 emission has been a worldwide mission to resolve global warming predicament. Mesoporous silsesquioxanes, which stabilized by organobridges and has high content aminon absorption site, can serve as a potential CO2 adsorbent. Synthesis of such material is done by hydrolysis and polycondensation of trialkoxysilane. The fastest gelation was observed at reaction in the absence of acids or bases. However, addition of surfactant to the reaction mixture catalyzed formation of silsesquioxanes in acidic media. Obtained materials are strongly hydrophilic and possess a high thermostability. Study of particle size distributions showed that in all cases it was bimodal. The largest particles formed in basic media. Mesoporous silsesquioxanes were obtained from bridged alkyltrimethoxysilanes in the presence of surfactants.
author Zhou, Guannan
author_facet Zhou, Guannan
author_sort Zhou, Guannan
title Polycondensation of Bridged Amino-Functionalized Trialkoxysilanes.
title_short Polycondensation of Bridged Amino-Functionalized Trialkoxysilanes.
title_full Polycondensation of Bridged Amino-Functionalized Trialkoxysilanes.
title_fullStr Polycondensation of Bridged Amino-Functionalized Trialkoxysilanes.
title_full_unstemmed Polycondensation of Bridged Amino-Functionalized Trialkoxysilanes.
title_sort polycondensation of bridged amino-functionalized trialkoxysilanes.
publisher Digital Commons @ East Tennessee State University
publishDate 2011
url https://dc.etsu.edu/etd/1292
https://dc.etsu.edu/cgi/viewcontent.cgi?article=2483&context=etd
work_keys_str_mv AT zhouguannan polycondensationofbridgedaminofunctionalizedtrialkoxysilanes
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