材料导报
材料導報
재료도보
MATERIALS REVIEW
2009年
z2期
145-146,150
,共3页
陈建君%邓慧芳%王尚平%罗龙飞%徐蓉%王师金%钟声亮
陳建君%鄧慧芳%王尚平%囉龍飛%徐蓉%王師金%鐘聲亮
진건군%산혜방%왕상평%라룡비%서용%왕사금%종성량
低温合成%CeO%水热合成%纳米粒子
低溫閤成%CeO%水熱閤成%納米粒子
저온합성%CeO%수열합성%납미입자
low temperature synthesis%CeO2%hydrothermal synthesis%nanoparticles
在低温水热条件下,通过一步法合成了尺寸可控的二氧化铈纳米粒子.采用XRD和SEM对合成的样品进行表征.XRD结果表明,在三乙烯四胺(C6H18 N4)存在的条件下,通过水热法在80℃加热48h即可直接合成出二氧化铈纳米粒子,而无需将产物在高温下处理.SEM图显示,在80℃反应48h得到的二氧化铈为球形纳米颗粒,其平均粒径约为13nm.实验发现通过改变反应温度可以很容易地控制二氧化铈纳米粒子的粒径,其随着反应温度的升高而增大.由于整个反应过程可以在低温下完成,因而此合成方法具备实现工业化生产的潜力.
在低溫水熱條件下,通過一步法閤成瞭呎吋可控的二氧化鈰納米粒子.採用XRD和SEM對閤成的樣品進行錶徵.XRD結果錶明,在三乙烯四胺(C6H18 N4)存在的條件下,通過水熱法在80℃加熱48h即可直接閤成齣二氧化鈰納米粒子,而無需將產物在高溫下處理.SEM圖顯示,在80℃反應48h得到的二氧化鈰為毬形納米顆粒,其平均粒徑約為13nm.實驗髮現通過改變反應溫度可以很容易地控製二氧化鈰納米粒子的粒徑,其隨著反應溫度的升高而增大.由于整箇反應過程可以在低溫下完成,因而此閤成方法具備實現工業化生產的潛力.
재저온수열조건하,통과일보법합성료척촌가공적이양화시납미입자.채용XRD화SEM대합성적양품진행표정.XRD결과표명,재삼을희사알(C6H18 N4)존재적조건하,통과수열법재80℃가열48h즉가직접합성출이양화시납미입자,이무수장산물재고온하처리.SEM도현시,재80℃반응48h득도적이양화시위구형납미과립,기평균립경약위13nm.실험발현통과개변반응온도가이흔용역지공제이양화시납미입자적립경,기수착반응온도적승고이증대.유우정개반응과정가이재저온하완성,인이차합성방법구비실현공업화생산적잠력.
CeO2 nanoparticles with controllable sizes are successfully synthesized via a facile one-step low temperature hydrothermal synthesis route. The as-synthesized samples are characterized using XRD and SEM. XRD results demonstrate that ceria nanopartilces can be directly obtained via one-step hydrothermal method at 80℃ for 48 h in the presence of triethylenetetramine, without the request of process at high temperature. SEM results show that the synthesized ceria powders prepared at 80℃ for 48 h have a spherical shape with particle size of about 13 nm. It is found that the particle size of ceria increases with the increase of reaction temperature,which indicates that particle size of ceria can be readily controlled by varying the reaction temperature. As the procedure can be realized at low temperature, it has the potential to be industrialized.