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纳米SiO_2改性壳聚糖载体的制备及固定化壳聚糖酶的研究 被引量:6
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作者 王艳君 卓少玲 陈盛 《食品工业科技》 CAS CSCD 北大核心 2012年第21期104-108,111,共6页
利用壳聚糖与硅酸乙酯(TEOS)形成的溶胶-凝胶制备杂化载体,经戊二醛交联后固定化壳聚糖酶,结合扫描电镜观察、X射线衍射及红外光谱分析对杂化载体进行了表征,初步比较了固定化酶与游离酶的酶学特性。结果表明,以5%的戊二醛浓度交联载体... 利用壳聚糖与硅酸乙酯(TEOS)形成的溶胶-凝胶制备杂化载体,经戊二醛交联后固定化壳聚糖酶,结合扫描电镜观察、X射线衍射及红外光谱分析对杂化载体进行了表征,初步比较了固定化酶与游离酶的酶学特性。结果表明,以5%的戊二醛浓度交联载体时,固定化酶的活性最高;最大结合酶量为2mL(U=2.5);固定化酶的最适pH7.0,酶活曲线向碱性偏移;固定化酶的最适酶促反应温度比游离酶升高5℃,在更宽的温度范围内具有活性。通过Lineweaver-Burk作图得出固定化酶的K'm为10.64g/L,较游离酶1.29g/L有所升高。该固定化酶具有较强的热稳定性,重复使用10次后,酶活力损失小于30%;在4℃低温条件下,稳定性较好,半衰期约为28d。 展开更多
关键词 杂化载体 壳聚糖酶 固定
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有机/无机纳米杂化材料负载钛催化剂及聚合研究 Ⅰ.乙烯聚合 被引量:3
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作者 朱宁 唐涛 +3 位作者 王晓东 于广谦 冯之榴 黄葆同 《应用化学》 CAS CSCD 北大核心 2000年第3期233-237,共5页
以苯乙烯与马来酸酐无规共聚物 ( SMA)为有机组分 ,以正硅酸乙酯 ( TEOS)为无机组分 ,利用 sol- gel方法制得纳米杂化材料 ,以此为载体合成了杂化材料载体钛系催化剂 .利用 XPS、IR分析了载体与 Ti Cl4 的结合方式 ,并进行了乙烯聚合的... 以苯乙烯与马来酸酐无规共聚物 ( SMA)为有机组分 ,以正硅酸乙酯 ( TEOS)为无机组分 ,利用 sol- gel方法制得纳米杂化材料 ,以此为载体合成了杂化材料载体钛系催化剂 .利用 XPS、IR分析了载体与 Ti Cl4 的结合方式 ,并进行了乙烯聚合的研究 .结果表明 ,聚乙烯活性并不高( 1.72× 10 6g/h·mol)且分子量分布为 4 .0左右 ;堆密度范围是 0 .30~ 0 .39g/cm3. 展开更多
关键词 材料载体 钛催 乙烯聚合 SMA TEOS
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聚4—乙烯基吡啶/SiO2纳米杂化材料负载茂钛催化剂的制备及苯乙烯聚合 被引量:3
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作者 朱宁 唐涛 +3 位作者 汪丽梅 崔冬梅 冯之榴 黄葆同 《化学学报》 SCIE CAS CSCD 北大核心 2001年第3期426-432,共7页
以聚4-乙烯基吡啶(PVP)为有机组分,正硅酸乙酯(TEOS)为无机组分,利用sol-gel方法制得PVP/siO2纳米杂化材料,以此为载体制备了杂化材料负载单茂钛催化剂.利用XPS和IR分析了载体与CpTiCl3的结合方式,确认对苯乙烯聚合有两种活性中心.... 以聚4-乙烯基吡啶(PVP)为有机组分,正硅酸乙酯(TEOS)为无机组分,利用sol-gel方法制得PVP/siO2纳米杂化材料,以此为载体制备了杂化材料负载单茂钛催化剂.利用XPS和IR分析了载体与CpTiCl3的结合方式,确认对苯乙烯聚合有两种活性中心.苯乙烯聚合结果表明在50℃左右间规度达到最大;在70℃,n(Al)/n(Ri)=1500时活性最高可达1.09×106g PS/(mol Ti·h).GPC结果表明产物分子量分布呈双峰分布. 展开更多
关键词 纳米材料载体 茂钛催 苯乙烯 聚合反应 聚4-乙烯基吡啶 二氧 负载型催 制备
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中药有效成分有机-无机杂化纳米载体的研究进展 被引量:3
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作者 蒋自飞 刘颖 冯年平 《中国实验方剂学杂志》 CAS CSCD 北大核心 2020年第5期202-209,共8页
纳米载体在改善中药有效成分溶解性、生物膜透过性与生物体内行为、增效减毒等方面发挥着重要作用,具有广阔的应用前景。作为新型纳米载体,有机-无机杂化纳米载体由有机和无机材料或载体复合而形成,结合了两者的优势,能够更好地发挥其... 纳米载体在改善中药有效成分溶解性、生物膜透过性与生物体内行为、增效减毒等方面发挥着重要作用,具有广阔的应用前景。作为新型纳米载体,有机-无机杂化纳米载体由有机和无机材料或载体复合而形成,结合了两者的优势,能够更好地发挥其在药物递送中的作用,提高药物稳定性、载药量和生物相容性,并可以实现多功能化。笔者对近年来国内外中药有效成分有机-无机杂化纳米载体的研究和应用情况进行了总结与分析,并展望其发展前景,可为高效安全递送中药有效成分的新型递药系统的研究提供参考。 展开更多
关键词 中药有效成分 有机-无机纳米载体 多功能 增效减毒 安全性
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CO oxidation over Au/ZrLa-doped CeO_2 catalysts: Synergistic effect of zirconium and lanthanum 被引量:3
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作者 杨琦 杜林颖 +2 位作者 王旭 贾春江 司锐 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2016年第8期1331-1339,共9页
The physicochemical properties of nanosized Au catalysts supported on doped CeO2 and their cata‐lytic performance for the CO oxidation reaction were investigated. The Au/Zr‐doped CeO2 catalyst is much more active th... The physicochemical properties of nanosized Au catalysts supported on doped CeO2 and their cata‐lytic performance for the CO oxidation reaction were investigated. The Au/Zr‐doped CeO2 catalyst is much more active than undoped Au/CeO2, while Au/ZrLa‐doped CeO2 shows the highest activity. Characterization of the catalysts by X‐ray diffraction, transmission electron microscopy (TEM), high‐resolution TEM, and the X‐ray absorption fine structure technique shows high homogeneity of the oxide supports and well‐dispersed nanosized Au nanoparticles. Raman spectroscopy, X‐ray photoelectron spectroscopy, and H2‐tempeature‐programmed reduction show that the surface oxygen species are the main factor for the catalytic activity in the CO oxidation reaction, while the supported Au species can improve the redox properties and create oxygen vacancy sites on the support. The oxidation state of Au is not the main factor governing the activity of Au/doped‐CeO2 catalysts. Additionally, the synergistic effect of Zr and La is discussed. 展开更多
关键词 Gold catalyst Doped ceria Oxygen vacancy Carbon monoxide oxidation Metal-support interaction
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Layered double hydroxide-like Mg_3Al_(1–x)Fe_x materials as supports for Ir catalysts: Promotional effects of Fe doping in selective hydrogenation of cinnamaldehyde 被引量:4
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作者 Weiwei Lin Haiyang Cheng +3 位作者 Xiaoru Li Chao Zhang Fengyu Zhao Masahiko Arai 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2018年第5期988-996,共9页
Supported Ir catalysts were prepared using layered double hydrotalcite‐like materials,such as Mg3Al1-xFex,containing Fe and Al species in varying amounts as supports.These Ir catalysts were applied for the selective ... Supported Ir catalysts were prepared using layered double hydrotalcite‐like materials,such as Mg3Al1-xFex,containing Fe and Al species in varying amounts as supports.These Ir catalysts were applied for the selective hydrogenation of cinnamaldehyde(CAL).When x was changed from 0(Ir/Mg3Al)to 1(Ir/Mg3Fe),the rate of CAL hydrogenation reached a maximum at approximately x=0.25,while the selectivity to unsaturated alcohol,i.e.,cinnamyl alcohol,monotonously increased from 44.9%to 80.3%.Meanwhile,the size of the supported Ir particles did not change significantly with x,remaining at 1.7-0.2 nm,as determined by transmission electron microscopy.The chemical state of Ir and Fe species in the Ir/Mg3Al1-xFex catalysts was examined by temperature programmed reduction by H2 and X‐ray photoelectron spectroscopy.The surface of the supported Ir particles was also examined through the in‐situ diffuse reflectance infrared Fourier‐transform of a probe molecule of CO.On the basis of these characterization results,the effects of Fe doping to Mg3Al on the structural and catalytic properties of Ir particles in selective CAL hydrogenation were discussed.The significant factors are the electron transfer from Fe2+in the Mg3Al1–xFex support to the dispersed Ir particles and the surface geometry. 展开更多
关键词 Ir catalyst Layered double hydroxide Fe doping Support effect Selective hydrogenation CINNAMALDEHYDE
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手性salen(Mn)催化烯烃不对称环氧化反应的研究进展 被引量:7
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作者 罗云飞 邹晓川 +2 位作者 傅相锴 贾紫永 黄雪梅 《中国科学:化学》 CAS CSCD 北大核心 2011年第3期433-450,共18页
烯烃的不对称环氧化物通过选择性开环或者官能团的转化,可以生成一系列有价值的手性化合物,被广泛用作医药、农药、香料等精细化学品的合成中间体.手性Mn(salen)金属配合物被证明是烯烃不对称环氧化最有效的催化剂之一.本文综述了近年... 烯烃的不对称环氧化物通过选择性开环或者官能团的转化,可以生成一系列有价值的手性化合物,被广泛用作医药、农药、香料等精细化学品的合成中间体.手性Mn(salen)金属配合物被证明是烯烃不对称环氧化最有效的催化剂之一.本文综述了近年来均相手性Mn(salen)催化剂、有机聚合物固载的手性Mn(salen)、无机载体固载手性Mn(salen)以及有机聚合物-无机杂化载体固载手性Mn(salen)催化剂催化烯烃的不对称环氧化反应研究进展. 展开更多
关键词 手性Mn(salen)催 有机聚合物载体 无机载体 有机聚苯乙烯-无机磷酸 杂化载体
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The performance of nano multicomponent cocatalyst in the improvement of catalytic sensor of methane 被引量:1
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作者 WANG Ying TONG Min-ming LIU Yong-chun 《Journal of Coal Science & Engineering(China)》 2010年第3期323-327,共5页
Based on the deficiency of catalytic elements in methane sensors such as sintering,activity decrease and surface area reduction at high temperature, three differentnano vectors Ce-Zr-Al_2O_3, Ce-Al_2O_3, and Zr-Al_2O_... Based on the deficiency of catalytic elements in methane sensors such as sintering,activity decrease and surface area reduction at high temperature, three differentnano vectors Ce-Zr-Al_2O_3, Ce-Al_2O_3, and Zr-Al_2O_3 were prepared via sol-gel technique inthe experiment.BET surface area, catalytic activity and thermal stability were tested andcompared.It is found from the experiment that the Ce-doped Al_2O_3 vector possesseshigher catalytic activity than pure Al_2O_3 vector.Zr-doped Al_2O_3 vector can enhance thethermal stability of methane sensors.Ce-Zr-Al solid solution can be obtained by the presenceof Ce and Zr doped with Al_2O_3.The reaction activity and thermal stability of catalyticsensors were improved because of the unique synergy effect from Ce-Zr-O.Among themixed cocatalysts, Ce-Zr-O was reported to be an excellent cocatalyst material.The performanceof methane sensors can be improved significantly via the modification ofCe-Zr-Al_2O_3 vector. 展开更多
关键词 Ce-Zr multicomponent cocatalyst methane sensor catalytic elements
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Layered Double Hydroxide Modified by PEGylated Hyaluronic Acid as a Hybrid Nanocarrier for Targeted Drug Delivery 被引量:3
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作者 董岸杰 李雪 +6 位作者 王伟伟 韩尚聪 刘鉴锋 刘金剑 赵军强 许舒欣 邓联东 《Transactions of Tianjin University》 EI CAS 2016年第3期237-246,共10页
In recent years, organic-inorganic hybrid nanocarriers are explored for effective drug delivery and preferable disease treatments. In this study, using 5-fluorouracil(5-FU)as electronegative model drug, a new type of ... In recent years, organic-inorganic hybrid nanocarriers are explored for effective drug delivery and preferable disease treatments. In this study, using 5-fluorouracil(5-FU)as electronegative model drug, a new type of organic-inorganic hybrid drug delivery system(LDH/HA-PEG/5-FU)was conceived and manufactured by the adsorption of PEGylated hyaluronic acid(HA-PEG)on the surface of layered double hydroxide(LDH, prepared via hydrothermal method)and the intercalation of 5-FU in the interlamination of LDH via ion exchange strategy. The drug loading amount of LDH/HA-PEG/5-FU achieved as high as 34.2%. LDH, LDH/5-FU and LDH/HA-PEG/5-FU were characterized by FT-IR, XRD, TGA, laser particle size analyzer and SEM. With the benefit of p Hdegradable feature of LDH and enzyme-degradable feature of HA, LDH/HA-PEG/5-FU showed p H-degradable and enzyme-degradable capacity in in vitro drug release. Moreover, the drug carrier LDH/HA-PEG contained biocompatible PEG and tumor-targeted HA, resulting in lower cytotoxicity and better endocytosis compared with LDH in vitro. It was suggested that the organic-inorganic hybrid drug delivery system, which was endowed with the properties of controlled release, low toxicity and tumor-targeting delivery for ameliorative cancer therapy, was advisable and might be applied further to fulfill other treatments. 展开更多
关键词 layered double hydroxide HA-PEG intercalation/adsorption controlled release targeted drug delivery
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Oxygen-doped carbon host with enhanced bonding and electron attraction abilities for efficient and stable SnO_2/carbon composite battery anode 被引量:5
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作者 Zhen Geng Bing Li +4 位作者 Hezhi Liu Hong Lv Qiangfeng Xiao Yongjun Ji Cunman Zhang 《Science China Materials》 SCIE EI CSCD 2018年第8期1067-1077,共11页
The coupling between electrochemically active material and conductive matrix is vitally important for high efficiency lithium ion batteries (LIBs). By introducing oxygen groups into the nanoporous carbon framework, ... The coupling between electrochemically active material and conductive matrix is vitally important for high efficiency lithium ion batteries (LIBs). By introducing oxygen groups into the nanoporous carbon framework, we accom- plish sustainably enhanced electrochemical performance for a SnO2/carbon LIB. 2-5 nm SnO2 nanoparticles are hydro- thermally grown in different nanoporous carbon frameworks, which are pristine, nitrogen- or oxygen-doped carbons. Compared with pristine and nitrogen-doped carbon hosts, the SnO2/oxygen-doped activated carbon (OAC) composite ex- hibits a higher discharge capacity of 1,122mAhg^-1 at 500 mA g^-1 after 320 cycles operation and a larger lithium storage capacity up to 680 mAhg-I at a high rate of 2,000 mA g^-1. The exceptional electrochemical performance originated from the oxygen groups, which could act as Lewis acid sites to attract electrons effectively from Sn during the charge process, thus accelerating reversible conversion of Sn to SnO2. Meanwhile, SnO2 nanoparticles are effectively bonded with carbon through such oxygen groups, thus preventing the electrochemical sintering and maintaining the cycling stability of the SnO2/OAC composite anode. The high electrochemical performance, low biomass cost, and facile preparation renders the SnO2/OAC composites a promising candidate for anode materials. 展开更多
关键词 tin oxide nanoporous carbon functional groups anode materials lithium-ion batteries
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