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Zn-Zr-Al oxides derived from hydrotalcite precursors for ethanol conversion to diethyl carbonate 被引量:7
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作者 Jian Zhang Tingting Yan +3 位作者 Yusen Yang Jialue Sun yanjun lin Min Wei 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2019年第4期515-522,M0002,共9页
Ethanol conversion to high-value-added products has attracted considerable attention in both academic research and industrial fields.In this study,we synthesized a series of tunable acid–base bifunctional Zn-Zr-Al me... Ethanol conversion to high-value-added products has attracted considerable attention in both academic research and industrial fields.In this study,we synthesized a series of tunable acid–base bifunctional Zn-Zr-Al metal oxides(represented as Zn2ZrxAl-MMO)in light of the structural topotactic transformation of Zn2ZrxAl-hydrotalcite precursors(Zn2ZrxAl-LDH).The resulting Zn2ZrxAl-MMO catalysts were employed in the conversion of ethanol to diethyl carbonate.The Zr^4+ ion content of the LDH precursor plays a key role in modulating the acid-base properties and determining catalytic performance:the Zn2Zr0.1Al-MMO sample exhibits the optimal catalytic behavior with a diethyl carbonate(DEC)yield of 42.1%,which is the highest reported for metal oxide catalysts.Structure-property correlation investigations revealed that the synergic catalysis between medium-strong basic sites and weak acid sites plays a predominant role in the catalytic behavior.Furthermore,in situ Fourier transform infrared measurements showed that the weak acidic site promotes activation adsorption of the reactant(urea)and the intermediate product(ethyl carbamate),while the medium-strong basic site accelerates ethanol activation.Moreover,the Zn2Zr0.1Al-MMO catalyst has the advantages of cost effectiveness,good stability,and reusability.Therefore,the acid-base bifunctional catalysts developed in this work can be employed as promising candidates in acid-base catalytic reactions such as ethanol conversion. 展开更多
关键词 HYDROTALCITE Metal oxides Acid-base catalytic reactions Ethanol conversion
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β-防御素130在大肠杆菌中的串联表达、纯化及生物活性分析 被引量:3
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作者 蔺艳君 董彬 《生物工程学报》 CAS CSCD 北大核心 2019年第6期1088-1096,共9页
为了研究抗菌肽β-防御素130的生物学活性和实现大规模制备,通过改良其分子结构,构建表达载体pET28a-3×β-defensin130,利用大肠杆菌BL21 (DE3)作为宿主细胞诱导表达后为水溶性蛋白。对纯化后抗菌肽进行抑菌实验、稳定性实验、MTT... 为了研究抗菌肽β-防御素130的生物学活性和实现大规模制备,通过改良其分子结构,构建表达载体pET28a-3×β-defensin130,利用大肠杆菌BL21 (DE3)作为宿主细胞诱导表达后为水溶性蛋白。对纯化后抗菌肽进行抑菌实验、稳定性实验、MTT实验和溶血性实验确定其生物活性。最终成功制备出25 kDa的重组蛋白,对金黄色葡萄球菌(ATCC25923)(45μg/mL)和单增李斯特菌(ATCC221633)(80μg/mL)等革兰氏阴性和阳性菌都表现出极强的抗菌活性,且其抗菌活性不受温度、pH值和蛋白酶消化等影响,MTT细胞毒性实验显示其对HEK293细胞无毒性且对兔源红细胞具有极低的溶血性。这将为新型抗菌肽的开发提供理论基础并推动抗生素替代产业快速发展。 展开更多
关键词 防御素 抗菌肽 原核表达 蛋白纯化 抗菌活性
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不同产地牛蒡子的指纹图谱研究 被引量:1
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作者 宾婕 施建莲 +5 位作者 胡珊珊 梁梦洁 郭亚东 林彦君 吴双凤 邓亮 《药物资讯》 2017年第5期121-126,共6页
应用HPLC对九个不同产地牛蒡子药材进行指纹图谱研究。使用岛津ODS柱(4.6mm×215;150mm,5μm),以乙腈–水为流动相,梯度洗脱,流动相流速:1.0mL-min-1,柱温:25℃,检测波长:280nm,得到11个共有峰,建立了牛蒡子药材的HPLC指纹图谱可用... 应用HPLC对九个不同产地牛蒡子药材进行指纹图谱研究。使用岛津ODS柱(4.6mm×215;150mm,5μm),以乙腈–水为流动相,梯度洗脱,流动相流速:1.0mL-min-1,柱温:25℃,检测波长:280nm,得到11个共有峰,建立了牛蒡子药材的HPLC指纹图谱可用于牛蒡子药材的专属性鉴别,九个不同产地牛蒡子药材HPLC指纹图谱中,其相似度都大于0.99,说明不同产地的牛蒡子其质量的均一性很好。 展开更多
关键词 牛蒡子 指纹图谱 高效液相色谱 鉴别
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LDHs薄膜基纳米荧光传感器的制备及其研究进展 被引量:1
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作者 马瑞丽 李冉 +3 位作者 杨雪婷 林彦军 张慧 陆军 《中国科学:化学》 CAS CSCD 北大核心 2020年第1期18-29,共12页
层状复合氢氧化物(LDHs)是一种层板金属元素和层间离子可调的无机层状材料,利用其独特的插层组装特性,基于静电、氢键、范德华力等相互作用力,功能性荧光客体分子可与LDHs纳米片复合构筑多功能荧光薄膜材料.LDHs薄膜基荧光材料用于荧光... 层状复合氢氧化物(LDHs)是一种层板金属元素和层间离子可调的无机层状材料,利用其独特的插层组装特性,基于静电、氢键、范德华力等相互作用力,功能性荧光客体分子可与LDHs纳米片复合构筑多功能荧光薄膜材料.LDHs薄膜基荧光材料用于荧光传感器,在有机挥发性气体(VOCs)、温度、压力、重要生物分子等的检测中显示了良好性能.本文总结了LDHs复合薄膜的制备方法以及近年来其在纳米荧光传感领域的进展,并对其未来发展做出了展望. 展开更多
关键词 层状双金属氢氧化物(LDHs) 插层组装 制备 多功能复合薄膜 纳米荧光传感器
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An Effective Asphalt UV Blocking Material Based on Host-vip Schiff Base/Layered Double Hydroxides 被引量:4
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作者 Chunhui Xia Rui Gao +3 位作者 Kaitao Li Yang Yang yanjun lin Dongpeng Yan 《Chinese Journal of Chemistry》 SCIE CAS CSCD 2017年第11期1701-1705,共5页
The development of asphalt-based UV blocking materials is important to extend the alphalt lifespan in road construction. In this work, we put forward that the fabrication of host-vip system can be an effective way t... The development of asphalt-based UV blocking materials is important to extend the alphalt lifespan in road construction. In this work, we put forward that the fabrication of host-vip system can be an effective way to obtain UV blocking materials. Firstly, a new anionic Schiff base, N,N'bis(salicylidine)-4,4'-diaminostilbene-2,2'-disulfonic acid (SDSD), has been synthesized, which was intercalated into Zn-Al-LDH by anion-exchange method. FT-IR and XRD illustrate the layered organic-inorganic composite, Zn-Al-SDSD-LDH, has been successfully synthesized with high crystallinity. Laser particle size analyzer, SEM and TEM show that particle size distributions of Zn-Al-SDSD-LDH is in the range 100--500 nm. UV-vis absorption spectra show that Zn-Al-SDSD-LDH has better UV absorption than the pristine Zn-Al-LDH and SDSD. Furthermore, the mixture of asphalt and 3 wt% Zn-Al-SDSD-LDH presents enhanced UV blocking property relative to the pristine asphalt after irradiating by UV spray accelerated weathering test. Therefore, this work not only develops a new type of host-vip Zn-Al-SDSD- LDH, but also confirms it can be an effective asphalt UV blocking material for practical application. 展开更多
关键词 layered double hydroxides UV blocking ASPHALT Schiffbase
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Smoke suppressant in flame retarded thermoplastic polyurethane composites: Synergistic effect and mechanism study 被引量:2
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作者 Hongyuan Ren Kelan Qing +2 位作者 Ying Chen yanjun lin Xue Duan 《Nano Research》 SCIE EI CSCD 2021年第11期3926-3934,共9页
Considerable smoke and toxic volatiles generation has compromised the application of thermoplastic polyurethane (TPU) and caused a great threat to human life. Here, nano-MgFe layered double hydroxide (MgFe-LDH) with u... Considerable smoke and toxic volatiles generation has compromised the application of thermoplastic polyurethane (TPU) and caused a great threat to human life. Here, nano-MgFe layered double hydroxide (MgFe-LDH) with uniform particle size was synthesized to reduce smoke density and toxic gases of TPU composites using ammonium polyphosphate (APP) as a flame retardant agent. The results show that the combination of 16 wt.% APP and 4 wt.% MgFe-LDH greatly decreased the smoke density (D20min and Ds, max), smoke production rate (SPR) and heat release rate (HRR) of TPU composites. Furthermore, the MgFe-LDH synergist demonstrated high efficiency in decreasing total volatiled products and toxic volatiles evolved, such as the CO, HCN and isocyanates. The reason was mainly attributed to the chemical reaction between MgFe-LDH and APP, which can promote the compactness of char layers with fine microstructure formed in the decomposition process of MgFe-LDH/APP/TPU composites. The protective char layers could act as barriers between combustion zone and matrix to protect the unburned substrate and promote smoke suppression effect. 展开更多
关键词 layered double hydroxide thermoplastic polyurethane smoke suppression synergistic effect
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Surface nucleation and independent growth of Ce(OH)4 within confinement space on modified carbon black surface to prepare nano-CeO2 without agglomeration
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作者 Xinyue ZHANG Chunhui XIA +1 位作者 Kaitao LI yanjun lin 《Frontiers of Materials Science》 SCIE CSCD 2018年第2期168-175,共8页
Highly dispersed negative carboxyl groups can be formed on carbon black (CB) surface modified with strong nitric acid. Therefore positive cations can be uniformly absorbed by carboxyl groups and precipitated within ... Highly dispersed negative carboxyl groups can be formed on carbon black (CB) surface modified with strong nitric acid. Therefore positive cations can be uniformly absorbed by carboxyl groups and precipitated within a confinement space on modified CB surface to prepare highly dispersed nanomaterials. In this paper, the formation and dispersion status of surface negative carboxyl groups, adsorption status of Ce^3+, surface confinement nucleation, crystallization and calcination process were studied by EDS, SEM, and laser particle size analysis. The results show that the carboxyl groups formed on modified CB surface are highly dispersed, and Ce^3+ cations can be uniformly anchored by carboxyl groups. Therefore, highly dispersed Ce^3+ can react with OH^- within a confinement surface region to form positive nano-Ce(OH)4 nuclei which also can be adsorbed by electrostatic attraction. After independent growth of Ce(OH)4 without agglomeration, highly dispersed CeO2 nanoparticles without agglomeration can be prepared together with the help of effectively isolates by CO2 released in the combustion of CB. 展开更多
关键词 surface nucleation confinement space modified CB AGGLOMERATION NANO-CEO2
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Surface control of layered double hydroxides by in-situ initiating&terminating polymerization
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作者 Dan Tong Yuquan Zhu +3 位作者 Kaitao Li Kuilin Du Wendi Liu yanjun lin 《Nano Research》 SCIE EI CSCD 2022年第2期1538-1546,共9页
Appropriate surface modification or functionalization is prerequisite for the application of inorganic nanoparticles.And surface control between organic and inorganic interface plays an important role in constructing ... Appropriate surface modification or functionalization is prerequisite for the application of inorganic nanoparticles.And surface control between organic and inorganic interface plays an important role in constructing organic-inorganic composites.In-situ polymerization has been extensively studied to improve the compatibility and dispersibility of inorganic nanoparticles,but the polymerized nanoparticles tend to concatenate and form large composites,restricting further applications.Herein,uniform and dense polyacrylic acid(PAA)membranes have been grafted on layered double hydroxide(LDH)nanosheets via an in-situ initiating and terminating radical graft polymerization method.With initiating and terminating on the same particle,the size,morphology and density of grafted PAA onto the surface of LDHs can be controlled by adjusting the ratio of initiated sites to terminated sites,the amount of redox initiator or monomer.As a result,with only 17.33%organic grafting ratio,PAA@LDHs with largely improved compatibility can be monodispersed in polyethylene(PE)and polyvinyl chloride(PVC)matrices,which is determined by a fluorescence microscope technique. 展开更多
关键词 surface control in-situ polymerization organic-inorganic interface layered double hydroxides
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