功能材料
功能材料
공능재료
JOURNAL OF FUNCTIONAL MATERIALS
2014年
1期
1099-1103
,共5页
赵广超%石勇%肇启东%李新勇%李春艳%薛方红
趙廣超%石勇%肇啟東%李新勇%李春豔%薛方紅
조엄초%석용%조계동%리신용%리춘염%설방홍
分子印迹传感器%电化学沉积%纳米金%自组装%双酚 A
分子印跡傳感器%電化學沉積%納米金%自組裝%雙酚 A
분자인적전감기%전화학침적%납미금%자조장%쌍분 A
molecular imprinting sensor%electrochemical deposition%gold nanoparticles%self-assembly%bisphenol A
通过电化学和分子印迹技术,在金基底表面成功制备出基于三维纳米金膜修饰的双酚 A(BPA)分子印迹传感器电极.扫描电镜、透射电镜表征和电化学分析结果表明,电化学沉积法可以使纳米金规则成粒,并均匀成膜;纳米金膜使电极表面具备三维结构;纳米金颗粒(AuNPs)可以在分子印迹聚合物(MIPs)中形成内镶嵌结构,使电极表面电导率显著增高.在对 BPA 的检测中,MIPs-AuNPs-Au 电极的响应信号强度约是 MIPs-Au 电极的2.6倍,检测限为1.47×10-8 mol/L.而且,MIPs-AuNPs-Au 电极具有良好的选择性与稳定性.
通過電化學和分子印跡技術,在金基底錶麵成功製備齣基于三維納米金膜脩飾的雙酚 A(BPA)分子印跡傳感器電極.掃描電鏡、透射電鏡錶徵和電化學分析結果錶明,電化學沉積法可以使納米金規則成粒,併均勻成膜;納米金膜使電極錶麵具備三維結構;納米金顆粒(AuNPs)可以在分子印跡聚閤物(MIPs)中形成內鑲嵌結構,使電極錶麵電導率顯著增高.在對 BPA 的檢測中,MIPs-AuNPs-Au 電極的響應信號彊度約是 MIPs-Au 電極的2.6倍,檢測限為1.47×10-8 mol/L.而且,MIPs-AuNPs-Au 電極具有良好的選擇性與穩定性.
통과전화학화분자인적기술,재금기저표면성공제비출기우삼유납미금막수식적쌍분 A(BPA)분자인적전감기전겁.소묘전경、투사전경표정화전화학분석결과표명,전화학침적법가이사납미금규칙성립,병균균성막;납미금막사전겁표면구비삼유결구;납미금과립(AuNPs)가이재분자인적취합물(MIPs)중형성내양감결구,사전겁표면전도솔현저증고.재대 BPA 적검측중,MIPs-AuNPs-Au 전겁적향응신호강도약시 MIPs-Au 전겁적2.6배,검측한위1.47×10-8 mol/L.이차,MIPs-AuNPs-Au 전겁구유량호적선택성여은정성.
The gold nanoparticles (AuNPs)modified molecularly imprinted polymers (MIPs)sensing electrode towards bisphenol A has been made by electrochemical methods and molecular imprinting technique on the sur-face of the gold electrode substrate.SEM,TEM and electrochemical analysis were employed to characterize the films on electrode.The results show that the electrochemical deposition method can make the gold nanoparticles grow regularly and the obtained film uniform.AuNPs modified Au electrode has a three-dimensional structure on the surface,and part of gold nanoparticles can be found within the mosaic structure in the MIPs,which in-creases the surface conductivity of the electrode significantly.The signals response to bisphenol A show that the MIP-AuNPs-Au electrode has a 2.63 times higher response compared to the MIPs-Au electrode and its detection limit was 1.47×10 -8 mol/L in detecting bisphenol A.Besides,the MIPs-AuNPs-Au electrode has a good selec-tivity towards bisphenol A and favorable stability.