Synthesis and characterization of two new silica sodalites containing ethanolamine or ethylenediamine as guest species: [C2H7NO]2[Si6O12] 2 and [C2H8N2]2[Si6O 12]2

Publikation: Beitrag in FachzeitschriftArtikelForschungPeer-Review

Autorschaft

  • Carola M. Braunbarth
  • Peter Behrens
  • Jürgen Felsche
  • Gianpietro De Van Goor
  • Gerhard Wildermuth
  • Günter Engelhardt

Externe Organisationen

  • Universität Konstanz
  • Ludwig-Maximilians-Universität München (LMU)
  • Universität Stuttgart
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Details

OriginalspracheEnglisch
Seiten (von - bis)207-217
Seitenumfang11
FachzeitschriftZeolites
Jahrgang16
Ausgabenummer2-3
PublikationsstatusVeröffentlicht - 1996
Extern publiziertJa

Abstract

Two new clathrasils with sodalite structure were obtained using ethanolamine (EA) and ethylenediamine (ED), respectively, as structure-directing agents that also serve as solvents during the synthesis. Crystallization in the systems SiO2-Na2O-EA and SiO2-Na2O-ED, respectively, yields silica sodalites with each sodalite cage occupied by the corresponding organic molecule. The EA and ED molecules are the first amines that were found to direct the formation of silica sodalites. The two new silica sodalites were characterized by temperature-dependent powder X-ray diffraction, infrared and n.m.r. spectroscopy 1H, 29Si, 13C), thermal analysis, and differential scanning calorimetry. Their properties are discussed and compared with ethylene glycol silica sodalite.

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Synthesis and characterization of two new silica sodalites containing ethanolamine or ethylenediamine as guest species: [C2H7NO]2[Si6O12] 2 and [C2H8N2]2[Si6O 12]2. / Braunbarth, Carola M.; Behrens, Peter; Felsche, Jürgen et al.
in: Zeolites, Jahrgang 16, Nr. 2-3, 1996, S. 207-217.

Publikation: Beitrag in FachzeitschriftArtikelForschungPeer-Review

Braunbarth CM, Behrens P, Felsche J, Van Goor GD, Wildermuth G, Engelhardt G. Synthesis and characterization of two new silica sodalites containing ethanolamine or ethylenediamine as guest species: [C2H7NO]2[Si6O12] 2 and [C2H8N2]2[Si6O 12]2. Zeolites. 1996;16(2-3):207-217. doi: 10.1016/0144-2449(95)00123-9
Braunbarth, Carola M. ; Behrens, Peter ; Felsche, Jürgen et al. / Synthesis and characterization of two new silica sodalites containing ethanolamine or ethylenediamine as guest species : [C2H7NO]2[Si6O12] 2 and [C2H8N2]2[Si6O 12]2. in: Zeolites. 1996 ; Jahrgang 16, Nr. 2-3. S. 207-217.
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title = "Synthesis and characterization of two new silica sodalites containing ethanolamine or ethylenediamine as guest species: [C2H7NO]2[Si6O12] 2 and [C2H8N2]2[Si6O 12]2",
abstract = "Two new clathrasils with sodalite structure were obtained using ethanolamine (EA) and ethylenediamine (ED), respectively, as structure-directing agents that also serve as solvents during the synthesis. Crystallization in the systems SiO2-Na2O-EA and SiO2-Na2O-ED, respectively, yields silica sodalites with each sodalite cage occupied by the corresponding organic molecule. The EA and ED molecules are the first amines that were found to direct the formation of silica sodalites. The two new silica sodalites were characterized by temperature-dependent powder X-ray diffraction, infrared and n.m.r. spectroscopy 1H, 29Si, 13C), thermal analysis, and differential scanning calorimetry. Their properties are discussed and compared with ethylene glycol silica sodalite.",
keywords = "Clathrasil, Host-guest interaction, Phase transition, Silica sodalite, Sodalite, Structure-directed synthesis",
author = "Braunbarth, {Carola M.} and Peter Behrens and J{\"u}rgen Felsche and {Van Goor}, {Gianpietro De} and Gerhard Wildermuth and G{\"u}nter Engelhardt",
note = "Funding information: We thank Alfred Straub (Konstanz) for help with the XRD heating and cooling experiments. This work was supported by Deutsche Forschungsgemeinschaft Project Fe 72/17, Be 1664/l-2, and En 270/1-l.",
year = "1996",
doi = "10.1016/0144-2449(95)00123-9",
language = "English",
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pages = "207--217",
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Download

TY - JOUR

T1 - Synthesis and characterization of two new silica sodalites containing ethanolamine or ethylenediamine as guest species

T2 - [C2H7NO]2[Si6O12] 2 and [C2H8N2]2[Si6O 12]2

AU - Braunbarth, Carola M.

AU - Behrens, Peter

AU - Felsche, Jürgen

AU - Van Goor, Gianpietro De

AU - Wildermuth, Gerhard

AU - Engelhardt, Günter

N1 - Funding information: We thank Alfred Straub (Konstanz) for help with the XRD heating and cooling experiments. This work was supported by Deutsche Forschungsgemeinschaft Project Fe 72/17, Be 1664/l-2, and En 270/1-l.

PY - 1996

Y1 - 1996

N2 - Two new clathrasils with sodalite structure were obtained using ethanolamine (EA) and ethylenediamine (ED), respectively, as structure-directing agents that also serve as solvents during the synthesis. Crystallization in the systems SiO2-Na2O-EA and SiO2-Na2O-ED, respectively, yields silica sodalites with each sodalite cage occupied by the corresponding organic molecule. The EA and ED molecules are the first amines that were found to direct the formation of silica sodalites. The two new silica sodalites were characterized by temperature-dependent powder X-ray diffraction, infrared and n.m.r. spectroscopy 1H, 29Si, 13C), thermal analysis, and differential scanning calorimetry. Their properties are discussed and compared with ethylene glycol silica sodalite.

AB - Two new clathrasils with sodalite structure were obtained using ethanolamine (EA) and ethylenediamine (ED), respectively, as structure-directing agents that also serve as solvents during the synthesis. Crystallization in the systems SiO2-Na2O-EA and SiO2-Na2O-ED, respectively, yields silica sodalites with each sodalite cage occupied by the corresponding organic molecule. The EA and ED molecules are the first amines that were found to direct the formation of silica sodalites. The two new silica sodalites were characterized by temperature-dependent powder X-ray diffraction, infrared and n.m.r. spectroscopy 1H, 29Si, 13C), thermal analysis, and differential scanning calorimetry. Their properties are discussed and compared with ethylene glycol silica sodalite.

KW - Clathrasil

KW - Host-guest interaction

KW - Phase transition

KW - Silica sodalite

KW - Sodalite

KW - Structure-directed synthesis

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U2 - 10.1016/0144-2449(95)00123-9

DO - 10.1016/0144-2449(95)00123-9

M3 - Article

AN - SCOPUS:0000454346

VL - 16

SP - 207

EP - 217

JO - Zeolites

JF - Zeolites

SN - 0144-2449

IS - 2-3

ER -