化工进展
化工進展
화공진전
CHEMICAL INDUSTRY AND ENGINEERING PROGRESS
2012年
7期
1542-1548,1580
,共8页
樊明德%袁鹏%何宏平%陈天虎%朱建喜%刘冬%郝娇
樊明德%袁鵬%何宏平%陳天虎%硃建喜%劉鼕%郝嬌
번명덕%원붕%하굉평%진천호%주건희%류동%학교
化学液相还原%零价铁纳米颗粒%水合肼%多元醇%碱金属硼氢化物
化學液相還原%零價鐵納米顆粒%水閤肼%多元醇%堿金屬硼氫化物
화학액상환원%령개철납미과립%수합정%다원순%감금속붕경화물
chemical solution reduction%zerovalent iron nanoparticle%hydrazine hydrate%polyol%alkali metal borohydride
零价铁纳米颗粒磁性能卓越应用潜力巨大,已受到广泛关注。本文综述了采用化学液相还原法制备纳米铁的研究进展。总结了纳米铁制备过程中容易团聚和氧化两个关键问题:使用稳定剂可降低纳米铁团聚程度,表面包覆外壳可抑制纳米铁深度氧化。并详细介绍了水合肼、多元醇、碱金属硼氢化物3种常用还原剂的还原性能及其在制备过程中表现出的优缺点。提出化学液相还原制备纳米铁技术的发展依赖于对稳定剂与包覆剂的深入研究,对于还原反应工艺流程的工业化放大以及如何降低成本。
零價鐵納米顆粒磁性能卓越應用潛力巨大,已受到廣汎關註。本文綜述瞭採用化學液相還原法製備納米鐵的研究進展。總結瞭納米鐵製備過程中容易糰聚和氧化兩箇關鍵問題:使用穩定劑可降低納米鐵糰聚程度,錶麵包覆外殼可抑製納米鐵深度氧化。併詳細介紹瞭水閤肼、多元醇、堿金屬硼氫化物3種常用還原劑的還原性能及其在製備過程中錶現齣的優缺點。提齣化學液相還原製備納米鐵技術的髮展依賴于對穩定劑與包覆劑的深入研究,對于還原反應工藝流程的工業化放大以及如何降低成本。
령개철납미과립자성능탁월응용잠력거대,이수도엄범관주。본문종술료채용화학액상환원법제비납미철적연구진전。총결료납미철제비과정중용역단취화양화량개관건문제:사용은정제가강저납미철단취정도,표면포복외각가억제납미철심도양화。병상세개소료수합정、다원순、감금속붕경화물3충상용환원제적환원성능급기재제비과정중표현출적우결점。제출화학액상환원제비납미철기술적발전의뢰우대은정제여포복제적심입연구,대우환원반응공예류정적공업화방대이급여하강저성본。
Zerovalent iron nanoparticles(ZVINs) have attracted much attention for their excellent magnetic properties and great potential in many practical applications.This review summarizes the details of synthesizing ZVINs by chemical reduction of iron salts in aqueous solution.ZVINs are easy to agglomerate and oxidize,which makes them difficult to prepare,study,and utilize.Agglomeration of ZVINs can be largely inhibited by stabilizing them with various dispersing agents and oxidation of ZVINs can be minimized by coating them with different shells.In the chemical solution reduction process,three kinds of reducing agents of hydrazine hydrate and polyols and alkali metal borohydrides with different reduction performance are often used to synthesize ZVINs.The advantages and disadvantages of these reducing agents for synthesizing ZVINs are discussed.Further developments of the chemical solution reduction process,to a great extent,depend on the insight into the behavior of dispersing agents and coated shells,on the industrial scale-up of the chemical reduction process,and on the low-cost preparation of ZVINs.