Sugar-anionic clay composite materials: intercalation of pentoses in layered double hydroxide

被引:60
作者
Aisawa, S [1 ]
Hirahara, H [1 ]
Ishiyama, K [1 ]
Ogasawara, W [1 ]
Umetsu, Y [1 ]
Narita, E [1 ]
机构
[1] Iwate Univ, Fac Engn, Dept Chem Engn, Morioka, Iwate 0208551, Japan
关键词
layered double hydroxides; intercalation; calcination-rehydration reaction; sugar; nanocomposite; organic inorganic hybrid materials;
D O I
10.1016/S0022-4596(03)00234-2
中图分类号
O61 [无机化学];
学科分类号
070301 ; 081704 ;
摘要
The intercalation of non-ionized guest pentoses (ribose and 2-deoxyribose) into the Mg-Al and Zn-Al layered double hydroxides (LDHs) was carried out at 298 K by the calcination-rehydration reaction using the Mg-Al and Zn-Al oxide precursors calcined at 773 K. The resulting solid products reconstructed the LDH structure with incorporating pentoses, and the maximum amount of ribose intercalated by the Mg-Al oxide precursor was approximately 20 times that by the Zn-Al oxide precursor. The ribose/Mg-Al LDH was observed to have the expanded LDH structure with a broad (003) spacing of 0.85 nm. As the thickness of the LDH hydroxide basal layer is 0.48 nm, the interlayer distance of the ribose/Mg-Al LDH is 0.37 nm. This value corresponds to molecular size of ribose in thickness (0.36 nm), supporting that ribose is horizontally oriented in the interlayer space of LDH. The maximum amount of ribose intercalated by the Mg-Al oxide precursor was approximately 5 times that of 2-deoxyribose. Ribose is substituted only by the hydroxyl group at C-2 position for 2-deoxyribose. Therefore, the number of hydroxyl group of sugar is essentially important for the intercalation of sugar molecule into the LDH, suggesting that the intercalation behavior of sugar for the LDH was greatly influenced by hydrogen bond between hydroxyl group of the intercalated pentose and the LDH hydroxide basal layers. (C) 2003 Elsevier Inc. All rights reserved.
引用
收藏
页码:342 / 348
页数:7
相关论文
共 30 条
[1]   Synthesis and thermal decomposition of Mn-Al layered double hydroxides [J].
Aisawa, S ;
Hirahara, H ;
Uchiyama, H ;
Takahashi, S ;
Narita, E .
JOURNAL OF SOLID STATE CHEMISTRY, 2002, 167 (01) :152-159
[2]  
Aisawa S., 2000, Clay Science, V11, P317
[3]   Direct intercalation of amino acids into layered double hydroxides by coprecipitation [J].
Aisawa, S ;
Takahashi, S ;
Ogasawara, W ;
Umetsu, Y ;
Narita, E .
JOURNAL OF SOLID STATE CHEMISTRY, 2001, 162 (01) :52-62
[4]   CRYSTAL STRUCTURE OF PYROAURITE [J].
ALLMANN, R .
ACTA CRYSTALLOGRAPHICA SECTION B-STRUCTURAL CRYSTALLOGRAPHY AND CRYSTAL CHEMISTRY, 1968, B 24 :972-&
[5]   REACTION OF MOLTEN SEBACIC ACID WITH A LAYERED (MG/AL) DOUBLE HYDROXIDE [J].
CARLINO, S ;
HUDSON, MJ .
JOURNAL OF MATERIALS CHEMISTRY, 1994, 4 (01) :99-104
[6]   THERMAL INTERCALATION OF LAYERED DOUBLE HYDROXIDES - CAPRIC ACID INTO AN MG-AL LDH [J].
CARLINO, S ;
HUDSON, MJ .
JOURNAL OF MATERIALS CHEMISTRY, 1995, 5 (09) :1433-1442
[7]   HYDROTALCITE-TYPE ANIONIC CLAYS: PREPARATION, PROPERTIES AND APPLICATIONS [J].
Cavani, F. ;
Trifiro, F. ;
Vaccari, A. .
CATALYSIS TODAY, 1991, 11 (02) :173-301
[8]  
Choy JH, 2000, ANGEW CHEM INT EDIT, V39, P4042
[9]   Intercalative nanohybrids of nucleoside monophosphates and DNA in layered metal hydroxide [J].
Choy, JH ;
Kwak, SY ;
Park, JS ;
Jeong, YJ ;
Portier, J .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1999, 121 (06) :1399-1400
[10]   Cellular uptake behavior of [γ-32P] labeled ATP-LDH nanohybrids [J].
Choy, JH ;
Kwak, SY ;
Park, JS ;
Jeong, YJ .
JOURNAL OF MATERIALS CHEMISTRY, 2001, 11 (06) :1671-1674