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纳米铋掺杂二氧化锡/水性聚氨酯复合材料 被引量:15
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作者 何秋星 胡剑青 涂伟萍 《化工学报》 EI CAS CSCD 北大核心 2007年第11期2920-2925,共6页
以自制纳米铋掺杂二氧化锡(nano-BTO)分散浆料和水性聚氨酯(PU)为原料,采用共混法制备nano-BTO/水性聚氨酯杂合材料。运用zeta电位仪、激光粒度仪和TEM等研究了nano-BTO的zeta电位分布及其分散。结果表明,nano-BTO浆料的等电点在pH=6附... 以自制纳米铋掺杂二氧化锡(nano-BTO)分散浆料和水性聚氨酯(PU)为原料,采用共混法制备nano-BTO/水性聚氨酯杂合材料。运用zeta电位仪、激光粒度仪和TEM等研究了nano-BTO的zeta电位分布及其分散。结果表明,nano-BTO浆料的等电点在pH=6附近;采用硅烷偶联剂KH-550和高分子分散剂DP-518对nano-BTO粉体进行分散处理可获得良好分散性的水性浆料。采用紫外-可见-近红外分光光度计和自制的隔热测试装置等研究了nano-BTO/氨酯杂合材料的力学性能、光学性能和热学性能。结果表明,当nano-BTO含量为1.0%时,涂膜的拉伸强度和断裂伸长率分别达到了9.23MPa、223%,可见光透射率约为70%,其隔热效果同比纯PU膜可降温达8℃以上。 展开更多
关键词 纳米铋掺杂二氧化锡 水性聚氨酯 共混法 ZETA电位
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Elimination of hard aggregation of bismuth-doped tin dioxide nanometer powders prepared by wet chemical method 被引量:7
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作者 何秋星 涂伟萍 胡剑青 《化工学报》 EI CAS CSCD 北大核心 2006年第6期1490-1495,共6页
Bismuth-doped tin dioxide (BTO) nanometer powders were prepared by the wet chemical method using tin tetrachloride (SnCl4), bismuth nitrate [Bi(NO3) 3 ] and ammonia as raw materials. Non-bridge hydroxides and ca... Bismuth-doped tin dioxide (BTO) nanometer powders were prepared by the wet chemical method using tin tetrachloride (SnCl4), bismuth nitrate [Bi(NO3) 3 ] and ammonia as raw materials. Non-bridge hydroxides and capillary force between particles were found to be key factors causing hard aggregation of BTO through analyzing the formation mechanism of hard aggregation. The hard aggregation of BTO was eliminated effectively when the Bi-Sn precursor (BSP) was treated with post processing including dispersing with ultrasonic wave, refluxing and distilling with addition of n-butanol and benzene (DRD) and drying by microwave. Characterized with X-ray diffraction (XRD) and transmission electron microscopy (TEM), BTO spherical particles with tetragonal phase structure are well crystallized, dispersed easily and the average size was less than 10 nm. 展开更多
关键词 湿化学法 制备 铋掺杂二氧化锡 纳米粉体 硬团聚控制
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PTFE/Bi-SnO_2-CNT电催化膜的结构及性能表征 被引量:6
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作者 张新奇 朱孟府 +3 位作者 邓橙 赵蕾 刘红斌 马军 《膜科学与技术》 CAS CSCD 北大核心 2019年第1期34-40,共7页
为了提高电催化膜的电催化性能,通过电化学-水热法制备了以聚四氟乙烯(PTFE)微孔膜为支撑,Bi掺杂SnO_2修饰的碳纳米管(CNT)电催化膜(PTFE/Bi-SnO_2-CNT),分别进行了膜的电化学性能分析、形态结构表征及水中双酚A (BPA)降解性能实验。结... 为了提高电催化膜的电催化性能,通过电化学-水热法制备了以聚四氟乙烯(PTFE)微孔膜为支撑,Bi掺杂SnO_2修饰的碳纳米管(CNT)电催化膜(PTFE/Bi-SnO_2-CNT),分别进行了膜的电化学性能分析、形态结构表征及水中双酚A (BPA)降解性能实验。结果表明,PTFE/Bi-SnO_2-CNT为多孔导电网络结构,Bi-SnO_2颗粒均匀负载在碳纳米管表面,粒径为3.8 nm,当铋锡摩尔比为1∶15、电沉积电压为2.5 V时,制备的PTFE/Bi-SnO_2-CNT析氧电势为1.75 V,在3 V直流电压下,连续运行12 h, PTFE/Bi-SnO_2-CNT对浓度为30 mg/L的BPA降解率可达76.3%.这一结果说明PTFE/Bi-SnO_2-CNT具有良好的电化学性能、BPA吸附和降解性能,可成为电催化降解水中有机物的新型膜材料. 展开更多
关键词 电催化膜 碳纳米管 铋掺杂二氧化锡 双酚A 电化学水热法
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Bi-SnO2/GO电催化膜的制备及其性能研究 被引量:2
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作者 李雪燕 邓宇 +4 位作者 赵蕾 邓橙 郝丽梅 刘红斌 朱孟府 《膜科学与技术》 CAS CSCD 北大核心 2020年第2期53-59,66,共8页
采用电化学水热法,以聚四氟乙烯(PTFE)微孔膜为支撑,制备Bi掺杂SnO2修饰氧化石墨烯(GO)的电催化膜(Bi-SnO2/GO),通过SEM、TEM、EDS、XRD、LSV、EIS、CV等手段对其结构及性能进行表征,并考察了其对水中大肠杆菌的去除效果.结果表明,当Bi... 采用电化学水热法,以聚四氟乙烯(PTFE)微孔膜为支撑,制备Bi掺杂SnO2修饰氧化石墨烯(GO)的电催化膜(Bi-SnO2/GO),通过SEM、TEM、EDS、XRD、LSV、EIS、CV等手段对其结构及性能进行表征,并考察了其对水中大肠杆菌的去除效果.结果表明,当Bi/Sn摩尔比为1∶15、电沉积电压为2.0 V时,制备的Bi-SnO2/GO催化膜的析氧电势为1.75 V,Bi-SnO2/GO膜表面均匀分布着纳米Bi-SnO2粒子,粒子尺寸约为10.4 nm,Sn和Bi元素的质量分数分别为11.28%和3.59%;当外加直流电压为2.5 V且连续运行5 h时,Bi-SnO2/GO催化膜对水中大肠杆菌的去除率达到96.82%,表明Bi掺杂SnO2显著提高了GO基电催化膜的电性能及对大肠杆菌的去除性能(~62.0%). 展开更多
关键词 电催化膜 铋掺杂二氧化锡 氧化石墨烯 大肠杆菌
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Synthesis and characterization of bismuth-doped tin dioxide nanometer powders 被引量:6
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作者 何秋星 涂伟萍 胡剑青 《Journal of Central South University of Technology》 EI 2006年第5期519-524,共6页
Bismuth-doped tin dioxide nanometer powders were prepared by co-precipitation method using SnCl4 and Bi(NO3)3 as raw materials. The effects of calcining temperature and doping ratio on the particle size, composition... Bismuth-doped tin dioxide nanometer powders were prepared by co-precipitation method using SnCl4 and Bi(NO3)3 as raw materials. The effects of calcining temperature and doping ratio on the particle size, composition, spectrum selectivity of bismuth-doped tin dioxide and the phase transition of Bi-Sn precursor at different temperatures were studied by means of X-ray diffraction, transmission electron microscopy, ultraviolet-visual-near infrared diffuse reflection spectrum and the thermogravimetric-differential scanning calorimetry. The results show that prepared bismuth-doped tin dioxide powders have excellent characteristics with a single-phase tetragonal structure, good dispersibility, good absorbency for ultraviolet ray and average particle size less than 10 nm. The optimum conditions for preparing bismuth-doped tin dioxide nanometer powders are as follows: calcining temperature of 600℃, ratio of bismuth-doped in a range of 0.10-0.30, and Bi-Sn precursor being dispersed by ultrasonic wave and refluxed azeotropic and distillated with mixture of n-butanol and benzene. The mechanism of phase transition of Bi-Sn precursor is that Bi 3+ enters Sn-vacancy and then forms Sn—O—Bi bond. 展开更多
关键词 bismuth-doped tin dioxide tin dioxide nanometer powders co-precipitation method ultrasonic wave
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