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Synthesis and single-crystal structure analysis of a new layered zinc phosphate

Authorized Users Only
2005
Authors
Zabukovec-Logar, Nataša
Rajić, Nevenka
Stojaković, D.
Golobić, Amalija
Kaučič, Venčeslav
Article (Published version)
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Abstract
A new 2D zinc phosphate [H3NCH(CH3)CH 2NH3]2+0.75[COOH(CH 2)COOH]0.25 (Zn3P3O 11OH)2-* 0.5NH4+ consists of zinc phosphate layers, which are intercalated by diprotonated 1,2-diaminopropane, malonic acid, and NH4+ ions. The inorganic layers are composed of alternating ZnO4 and PO4 (PO3OH) tetrahedra that form 8-membered ring apertures. The intercalated species strongly interact with the zinc phosphate layers through hydrogen bonds, which is a key factor in stabilizing the structure. Crystal data: monoclinic, P21/a, a = 8.3457(1) Å, b = 16.8953(3) Å, c = 10.1817(2) Å, β = 95.3121(8)°, Z = 4, R = 0.0423.
Keywords:
Layered / Low-dimensional / Open framework / Zinc phosphate / ZPAM
Source:
Pure and Applied Chemistry, 2005, 77, 10, 1707-1717
Funding / projects:
  • We are thankful for the support by the Slovenian Ministry of Education, Science and Sport through the research program P0-0516-0104 and by the Ministry of Science and Technology of Serbia (Project No: OI 1603).

DOI: 10.1351/pac200577101707

ISSN: 0033-4545

PubMed:

WoS: 000232991500005

Scopus: 2-s2.0-27644469066
[ Google Scholar ]
5
4
URI
http://TechnoRep.tmf.bg.ac.rs/handle/123456789/726
Collections
  • Radovi istraživača / Researchers’ publications (TMF)
Institution/Community
Tehnološko-metalurški fakultet
TY  - JOUR
AU  - Zabukovec-Logar, Nataša
AU  - Rajić, Nevenka
AU  - Stojaković, D.
AU  - Golobić, Amalija
AU  - Kaučič, Venčeslav
PY  - 2005
UR  - http://TechnoRep.tmf.bg.ac.rs/handle/123456789/726
AB  - A new 2D zinc phosphate [H3NCH(CH3)CH 2NH3]2+0.75[COOH(CH 2)COOH]0.25 (Zn3P3O 11OH)2-* 0.5NH4+ consists of zinc phosphate layers, which are intercalated by diprotonated 1,2-diaminopropane, malonic acid, and NH4+ ions. The inorganic layers are composed of alternating ZnO4 and PO4 (PO3OH) tetrahedra that form 8-membered ring apertures. The intercalated species strongly interact with the zinc phosphate layers through hydrogen bonds, which is a key factor in stabilizing the structure. Crystal data: monoclinic, P21/a, a = 8.3457(1) Å, b = 16.8953(3) Å, c = 10.1817(2) Å, β = 95.3121(8)°, Z = 4, R = 0.0423.
T2  - Pure and Applied Chemistry
T1  - Synthesis and single-crystal structure analysis of a new layered zinc phosphate
EP  - 1717
IS  - 10
SP  - 1707
VL  - 77
DO  - 10.1351/pac200577101707
ER  - 
@article{
author = "Zabukovec-Logar, Nataša and Rajić, Nevenka and Stojaković, D. and Golobić, Amalija and Kaučič, Venčeslav",
year = "2005",
abstract = "A new 2D zinc phosphate [H3NCH(CH3)CH 2NH3]2+0.75[COOH(CH 2)COOH]0.25 (Zn3P3O 11OH)2-* 0.5NH4+ consists of zinc phosphate layers, which are intercalated by diprotonated 1,2-diaminopropane, malonic acid, and NH4+ ions. The inorganic layers are composed of alternating ZnO4 and PO4 (PO3OH) tetrahedra that form 8-membered ring apertures. The intercalated species strongly interact with the zinc phosphate layers through hydrogen bonds, which is a key factor in stabilizing the structure. Crystal data: monoclinic, P21/a, a = 8.3457(1) Å, b = 16.8953(3) Å, c = 10.1817(2) Å, β = 95.3121(8)°, Z = 4, R = 0.0423.",
journal = "Pure and Applied Chemistry",
title = "Synthesis and single-crystal structure analysis of a new layered zinc phosphate",
pages = "1717-1707",
number = "10",
volume = "77",
doi = "10.1351/pac200577101707"
}
Zabukovec-Logar, N., Rajić, N., Stojaković, D., Golobić, A.,& Kaučič, V.. (2005). Synthesis and single-crystal structure analysis of a new layered zinc phosphate. in Pure and Applied Chemistry, 77(10), 1707-1717.
https://doi.org/10.1351/pac200577101707
Zabukovec-Logar N, Rajić N, Stojaković D, Golobić A, Kaučič V. Synthesis and single-crystal structure analysis of a new layered zinc phosphate. in Pure and Applied Chemistry. 2005;77(10):1707-1717.
doi:10.1351/pac200577101707 .
Zabukovec-Logar, Nataša, Rajić, Nevenka, Stojaković, D., Golobić, Amalija, Kaučič, Venčeslav, "Synthesis and single-crystal structure analysis of a new layered zinc phosphate" in Pure and Applied Chemistry, 77, no. 10 (2005):1707-1717,
https://doi.org/10.1351/pac200577101707 . .

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