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State of arts on the bio-synthesis of noble metal nanoparticles and their biological application 被引量:2
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作者 Kok Bing Tan Daohua Sun +2 位作者 Jiale Huang Tareque Odoom-Wubah Qingbiao Li 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2021年第2期272-290,共19页
Nanomaterials are materials in which at least one of the dimensions of the particles is 100 nm and below.There are many types of nanomaterials,but noble metal nanoparticles are of interest due to their uniquely large ... Nanomaterials are materials in which at least one of the dimensions of the particles is 100 nm and below.There are many types of nanomaterials,but noble metal nanoparticles are of interest due to their uniquely large surface-to-volume ratio,high surface area,optical and electronic properties,high stability,easy synthesis,and tunable surface functionalization.More importantly,noble metal nanoparticles are known to have excellent compatibility with bio-materials,which is why they are widely used in biological applications.The synthesis method of noble metal nanoparticles conventionally involves the reduction of the noble metal salt precursor by toxic reaction agents such as NaBH4,hydrazine,and formaldehyde.This is a major drawback for researchers involved in biological application researches.Hence,the bio-synthesis of noble metal nanoparticles(NPs)by bio-materials via bio-reduction provides an alternative method to synthesize noble metal nanoparticles which are potentially non-toxic and safer for biological application.In this review,the bio-synthesis of noble metal nanoparticle including gold nanoparticle(AuNPs),silver nanoparticle(AgNPs),platinum nanoparticle(PtNPs),and palladium nanoparticle(PdNPs)are first discussed.This is followed by a discussion of these biosynthesized noble metal in biological applications including antimicrobial,wound healing,anticancer drug,and bioimaging.Based on these,it can be concluded that the study on bio-synthesized noble metal nanoparticles will expand further involving bio-reduction by unexplored bio-materials.However,many questions remain on the feasibility of bio-synthesized noble metal nanoparticles to replace existing methods on various biological applications.Nevertheless,the current development of the biological application by bio-synthesized noble metal NPs is still intensively ongoing,and will eventually reach the goal of full commercialization. 展开更多
关键词 Noble metal nanoparticles bio-synthesis bio-templating bio-material bio-logical application NANOMATERIALS
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Mn掺杂对尖晶石型NiFe1.97Pd0.03O4-δ催化剂脱硝性能的影响 被引量:2
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作者 赵跃飞 闫涛涛 +1 位作者 陈凯 霍超 《化工进展》 EI CAS CSCD 北大核心 2020年第2期577-583,共7页
采用生物模板法,通过掺杂Mn对尖晶石型NiFe1.97Pd0.03O4-δ催化剂中的Fe离子进行取代,制备一系列不同Mn掺杂量的NiFe1.97-xMnxPd0.03O4-δ催化剂(x=0、0.01、0.02、0.05、0.10),并在单管固定床反应器中进行H2-SCR脱硝性能评价。运用X射... 采用生物模板法,通过掺杂Mn对尖晶石型NiFe1.97Pd0.03O4-δ催化剂中的Fe离子进行取代,制备一系列不同Mn掺杂量的NiFe1.97-xMnxPd0.03O4-δ催化剂(x=0、0.01、0.02、0.05、0.10),并在单管固定床反应器中进行H2-SCR脱硝性能评价。运用X射线衍射仪(X RD)、场发射扫描电子显微镜(FE-SEM)、程序升温-脱附(N H3-TPD)和程序升温还原(H 2-TPR)以及傅里叶红外光谱仪(FTIR)等手段对催化剂进行表征、分析。结果表明:适量Mn的掺杂不仅可以提高活性物种Pd在催化剂上的分散度,还显著提高了其催化剂表面的总酸量及其氧化还原能力,从而提高了NiFe1.97Pd0.03O4-δ催化剂在低温下的H2-SCR脱硝活性,并拓宽了其催化活性温度窗口。在实验范围内,NiFe1.92Mn0.05Pd0.03O4-δ催化剂在150℃下的NO转化率高达95%,且在150~200℃温度区间内,NO转化率均在90%以上。 展开更多
关键词 生物模板 尖晶石 MN掺杂 H2-SCR 催化剂
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Bio-templated formation of defect-abundant VS2 as a bifunctional material toward high-performance hydrogen evolution reactions and lithium-sulfur batteries 被引量:4
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作者 Tianqi Guo Yingze Song +7 位作者 Zhongti Sun Yuhan Wu Yu Xia Yayun Li Jianhui Sun Kai Jiang Shixue Dou Jingyu Sun 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2020年第3期34-42,共9页
Transition metal chalcogenides have nowadays garnered burgeoning interest owing to their fascinating electronic and catalytic properties,thus possessing great implications for energy conversion and storage application... Transition metal chalcogenides have nowadays garnered burgeoning interest owing to their fascinating electronic and catalytic properties,thus possessing great implications for energy conversion and storage applications.In this regard,their controllable synthesis in a large scale at low cost has readily become a focus of research.Herein we report diatomite-template generic and scalable production of VS2 and other transition metal sulfides targeting emerging energy conversion and storage applications.The conformal growth of VS2over diatomite template would endow them with defect-abundant features.Throughout detailed experimental investigation in combination with theoretical simulation,we reveal that the enriched active sites/sulfur vacancies of thus-derived VS2 architectures would pose positive impacts on the catalytic performance such in electrocatalytic hydrogen evolution reactions.We further show that the favorable electrical conductivity and highly exposed sites of VS2 hold promise for serving as sulfur host in the realm of Li-S batteries.Our work offers new insights into the templated and customized synthesis of defect-rich sulfides in a scalable fashion to benefit multifunctional energy applications. 展开更多
关键词 bio-templated VANADIUM DISULFIDE Defect-abundant Hydrogen evolution reaction Lithium-sulfur BATTERIES
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OB纳米结构仿生及光学特性研究进展
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作者 刘锋 黄磊 《上海师范大学学报(自然科学版)》 2009年第5期543-550,共8页
纳米微结构具有对光线进行调制的能力,在新型光电子和光子器件方面已显示出广泛的应用前景,而不同类型光学尺度纳米微结构的人工制备却始终是一个难点.从纳米仿生角度对利用生物模板构筑人工纳米微结构的制备手段和研究现状进行分类阐述... 纳米微结构具有对光线进行调制的能力,在新型光电子和光子器件方面已显示出广泛的应用前景,而不同类型光学尺度纳米微结构的人工制备却始终是一个难点.从纳米仿生角度对利用生物模板构筑人工纳米微结构的制备手段和研究现状进行分类阐述;随后着重介绍了近年来出现的一种新型纳米结构仿生制备方法,即利用原子层沉积技术实现对生物模板纳米结构的三维复制和原子尺度的精确生长控制;最后探讨了仿生纳米结构的光学特性和潜在光学应用. 展开更多
关键词 纳米微结构 纳米仿生 生物模板 原子层沉积
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