华东师范大学学报(自然科学版)
華東師範大學學報(自然科學版)
화동사범대학학보(자연과학판)
2008年
4期
78-87
,共10页
孔爱国%李疆%赖克强%张贵荣%丁旵明%单永奎
孔愛國%李疆%賴剋彊%張貴榮%丁旵明%單永奎
공애국%리강%뢰극강%장귀영%정참명%단영규
Dawson结构%多金属含氧酸盐%热解
Dawson結構%多金屬含氧痠鹽%熱解
Dawson결구%다금속함양산염%열해
Dawson structure%metal-oxygen clusters%thermal decomposition
用变温XRD,变温IR以及TG-DTA等方法,系统地研究了具有Dawson结构的Ym Hn P2 M12 O62·qH2O(Y=K+,NH4+,Cu2+;M=Mo,W)的热解性质,获得了它们较为精确的热分解温度,对其热分解的判断方法提出了一些新的见解.结果表明,以钼为配位原子的Dawson结构钾盐,铵盐,铜盐分别在250℃,210℃,240℃发生了热重排,生成了具有Keggin结构的化合物.以钨为配位原子的钾盐在410℃也有相似的行为,但铵盐和铜盐却没有观察到类似的热重排现象,分别在400℃,450℃直接热分解为WO3.这些结果显示,热重排现象的发生可能与相应的Keggin结构化合物的热稳定性有关.
用變溫XRD,變溫IR以及TG-DTA等方法,繫統地研究瞭具有Dawson結構的Ym Hn P2 M12 O62·qH2O(Y=K+,NH4+,Cu2+;M=Mo,W)的熱解性質,穫得瞭它們較為精確的熱分解溫度,對其熱分解的判斷方法提齣瞭一些新的見解.結果錶明,以鉬為配位原子的Dawson結構鉀鹽,銨鹽,銅鹽分彆在250℃,210℃,240℃髮生瞭熱重排,生成瞭具有Keggin結構的化閤物.以鎢為配位原子的鉀鹽在410℃也有相似的行為,但銨鹽和銅鹽卻沒有觀察到類似的熱重排現象,分彆在400℃,450℃直接熱分解為WO3.這些結果顯示,熱重排現象的髮生可能與相應的Keggin結構化閤物的熱穩定性有關.
용변온XRD,변온IR이급TG-DTA등방법,계통지연구료구유Dawson결구적Ym Hn P2 M12 O62·qH2O(Y=K+,NH4+,Cu2+;M=Mo,W)적열해성질,획득료타문교위정학적열분해온도,대기열분해적판단방법제출료일사신적견해.결과표명,이목위배위원자적Dawson결구갑염,안염,동염분별재250℃,210℃,240℃발생료열중배,생성료구유Keggin결구적화합물.이오위배위원자적갑염재410℃야유상사적행위,단안염화동염각몰유관찰도유사적열중배현상,분별재400℃,450℃직접열분해위WO3.저사결과현시,열중배현상적발생가능여상응적Keggin결구화합물적열은정성유관.
The thermal decomposition behavior of metal-oxygen clusters with Dawson structure,Ym Hn P2 M18 O62?qH2O, was systematically investigated using the X-ray power thermodiffractometry and FTIR at different temperatures, TG-DTA. The experimental results indicated that Dawson-typ emetal-oxygen clusters with anion, [P2 Mo18 O62]6- , and different counter cations, NH4+, Cu2+, K+, un-derwent an irreversible thermal rearrangement around 210℃,240℃,250℃, respectively to give the corresponding Keggin-type metal-oxygen clusters containing[PMo12O40]3- as one of the prod-ucts. For the metal-oxygen clusters containing tungsten, the pyrolysis procedure of potassium salt with [P2 W18 O62]6- anion is similar to that of metal-oxygen dusters with [P2 Mo18 O62]-6 an-ion, whenas the NH4+, Cu2+ salts of [P2 W18O62]6- seem to decompose directly into WO3 at 400℃, 450℃, respectively. These results testify that the thermal solid-state rearrangements of Dawson-type anions correlated with the thermal stability of the corresponding Keggin-type com-pounds. Furthermore, some proposals about the criterion and the adjudication of thermal decom-position temperature for metal-oxygen clusters with different thermal decomposition behavior are also given.