化学研究
化學研究
화학연구
CHEMICAL RESEARCHES
2014年
5期
504-508
,共5页
张磊%周文静%龚雪云%缪娟
張磊%週文靜%龔雪雲%繆娟
장뢰%주문정%공설운%무연
罗丹明 B%二氧化钛%溶胶-凝胶法%分子印迹聚合物%吸附性能
囉丹明 B%二氧化鈦%溶膠-凝膠法%分子印跡聚閤物%吸附性能
라단명 B%이양화태%용효-응효법%분자인적취합물%흡부성능
Rhodamine B%titanium dioxide%sol-gel method%molecularly imprinted polymer%adsorption performance
以罗丹明 B 为模板分子,以钛酸丁酯为交联剂,采用溶胶-凝胶法在酸性条件下制备了罗丹明 B 二氧化钛溶胶-凝胶分子印迹聚合物;利用傅立叶变换红外光谱和透射电镜分析了分子印迹聚合物的结构,使用热重分析测定了其热稳定性,采用静态吸附和动态吸附方法考察了其吸附性能,并与非印迹聚合物进行了对比。结果表明,与非印迹聚合物相比,印迹聚合物具有网络状多孔隙凝胶微结构及对模板分子的特异性识别结合位点,因而对模板分子具有更好的吸附性能和特异选择性。其原因可能在于,模板分子上的羰基与钛酸丁酯水解产生的羟基产生氢键作用,使钛酸围绕于模板分子周围,并通过缩聚形成凝胶;当模板分子洗脱后,孔隙得到保留并形成网络状凝胶,从而能够吸附更多的模板分子。
以囉丹明 B 為模闆分子,以鈦痠丁酯為交聯劑,採用溶膠-凝膠法在痠性條件下製備瞭囉丹明 B 二氧化鈦溶膠-凝膠分子印跡聚閤物;利用傅立葉變換紅外光譜和透射電鏡分析瞭分子印跡聚閤物的結構,使用熱重分析測定瞭其熱穩定性,採用靜態吸附和動態吸附方法攷察瞭其吸附性能,併與非印跡聚閤物進行瞭對比。結果錶明,與非印跡聚閤物相比,印跡聚閤物具有網絡狀多孔隙凝膠微結構及對模闆分子的特異性識彆結閤位點,因而對模闆分子具有更好的吸附性能和特異選擇性。其原因可能在于,模闆分子上的羰基與鈦痠丁酯水解產生的羥基產生氫鍵作用,使鈦痠圍繞于模闆分子週圍,併通過縮聚形成凝膠;噹模闆分子洗脫後,孔隙得到保留併形成網絡狀凝膠,從而能夠吸附更多的模闆分子。
이라단명 B 위모판분자,이태산정지위교련제,채용용효-응효법재산성조건하제비료라단명 B 이양화태용효-응효분자인적취합물;이용부립협변환홍외광보화투사전경분석료분자인적취합물적결구,사용열중분석측정료기열은정성,채용정태흡부화동태흡부방법고찰료기흡부성능,병여비인적취합물진행료대비。결과표명,여비인적취합물상비,인적취합물구유망락상다공극응효미결구급대모판분자적특이성식별결합위점,인이대모판분자구유경호적흡부성능화특이선택성。기원인가능재우,모판분자상적탄기여태산정지수해산생적간기산생경건작용,사태산위요우모판분자주위,병통과축취형성응효;당모판분자세탈후,공극득도보류병형성망락상응효,종이능구흡부경다적모판분자。
Rhodamine B/titanium dioxide molecularly imprinted polymers were prepared under acidic conditions by sol-gel method with Rhodamine B as the template molecule and butyl titan-ate as the cross-linking agent.The structure of as-synthesized molecularly imprinted polymers were analyzed by Fourier transform infrared spectrometry and transmission electron microsco-py,their thermal stability was evaluated based on thermogravimetric analysis,and their ad-sorption properties were determined and compared with those of non-imprinted polymers by static and dynamic adsorption experiments.Results show that,as compared with non-imprin-ted polymers,as-synthesized molecularly imprinted polymers exhibit better adsorption capacity and specific selectivity to template molecule,because they have reticular porous gel microstruc-ture network and binding sites with specific recognition to template molecules.The reason might lie in that the hydrogen bonding interaction between the carbonyl of the template mole-cule and the hydroxyl generated via the hydrolysis of butyl titanate allows titanic acid to sur-round the template molecule and form gel via condensation.After elution,the pores that could accommodate the template molecules are maintained to form network-like gel so that more template molecules could be adsorbed.