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钙钛矿铁电材料光电化学性能调控策略 被引量:1
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作者 张哲琨 黎昌昊 +2 位作者 李扬帆 于鹏 宁成云 《功能材料》 CAS CSCD 北大核心 2022年第5期5066-5073,共8页
钙钛矿铁电材料晶体的正负电荷中心不重合引起其内部自发极化产生内建电场,利于光激发载流子的传输与分离。然而钙钛矿铁电材料多属于宽带隙半导体,存在光生电子空穴易复合问题,因此调控其光电化学性能是研究热点。介绍了元素掺杂与取... 钙钛矿铁电材料晶体的正负电荷中心不重合引起其内部自发极化产生内建电场,利于光激发载流子的传输与分离。然而钙钛矿铁电材料多属于宽带隙半导体,存在光生电子空穴易复合问题,因此调控其光电化学性能是研究热点。介绍了元素掺杂与取代、表面贵金属沉积、半导体异质结构建和多机制耦合等调控钙钛矿铁电材料光电化学性能的原理与进展。重点关注了近年来该材料在光催化降解污染物、光催化制氢和光电化学分解水制氢等应用现状。 展开更多
关键词 钙钛矿 铁电材料 光电化学
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Endogenous electric field as a bridge for antibacterial ion transport from implant to bacteria 被引量:3
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作者 Jinxia Zhai Yahong Zhou +12 位作者 Zhengao Wang Lei Fan Cairong Xiao Xiaolan Wang Yangfan Li Zhengnan Zhou Yian Luo Changhao Li Suijian Qi Guoxin Tan Lei Zhou Peng Yu Chengyun Ning 《Science China Materials》 SCIE EI CSCD 2020年第9期1831-1841,共11页
Tissue implant-related infections are among the most serious complications after surgical implantation,including orthopedics and dentistry.Implants with antibacterial ion release systems are efficient and economical a... Tissue implant-related infections are among the most serious complications after surgical implantation,including orthopedics and dentistry.Implants with antibacterial ion release systems are efficient and economical antibiotic substitutes to fight against bacterial infections.However,the excessive amount of released antibacterial ions may cause biological toxicity while killing bacteria.This raises a fundamental issue on how to properly control the amounts of ions and their efficacy.Here,we develop low-dose antibacterial ions-incorporated ferroelectric implants(copper-doped potassium sodium niobate,K0.5Na0.5NbO3-Cu,KNNCu)whose surface potential can be tuned via external polarization.The released Cu2+ions can be targeted to bacteria via endogenous electric field(EEF)between KNNCu implants and negatively charged bacteria.Intriguingly,the antibacterial efficacy of the implants is determined by the amount of Cu^2+ions that reaches bacteria,instead of the total amount of released Cu2+ions.The amount of Cu2+ions reaching bacteria from the high-surface-potential implant is 2.4 times that from the lowsurface-potential implant within 12 h,resulting in the increased antibacterial ratio from about 65%to 100%,while remaining low cell toxicity.This work provides insights into the specific role of the EEF in guiding mass transport between charged materials and living organisms,and a new perspective for the design of high-performance antibacterial biomaterials. 展开更多
关键词 bacterial infection endogenous electric field ion transport ferroelectric implant
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