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1.
采用室温离子热法合成了一种氟取代的具有五重贯穿金刚石拓扑结构的三维共价有机骨架材料(COFs), 记为JUC-515. 与高温溶剂热法不同的是, 室温离子液体法具有反应温度和压力低、 反应时间短、 操作简单、 无需催化剂和不产生有机蒸汽污染等优势. 制备的材料具有高度结晶性、 较大的孔隙率和良好的CO2选择性吸附性能.  相似文献   

2.
采用四(4-碘苯基)硼化锂作为四面体基块, 以1,4-苯二硼酸和4,4'-联苯二硼酸作为桥联基团, 通过Suzuki偶联反应成功制备了两种带电荷多孔芳香骨架材料PAF-21和PAF-22. 实验结果证明PAFs具有优异的热稳定性和化学稳定性, 同时材料特有的带电荷芳香骨架导致它们对碘单质具有非常高的亲和力以及吸附能力. 1 g的PAF-21和PAF-22可以分别吸附大约1.52和1.96 g的碘单质. 此外, PAF-21和PAF-22在富集碘单质的过程中可以循环使用. 这类材料非常适合作为新型固体吸附剂用于捕获放射性碘单质.  相似文献   

3.
基于PAF-301分子模型通过Li掺杂或B取代等模式设计了几种新型多孔芳香骨架(PAFs)材料,采用量子力学和分子力学方法对新材料的储氢性能进行研究.由量子力学计算得到了不同分子片段与H2之间的结合能,并结合DDEC方法计算了各分子片段的原子电荷分布.利用巨正则蒙特卡洛(GCMC)模拟方法计算了77和298 K下H2在不同PAFs材料中的吸附平衡性质.结果表明,H2直接与苯环的结合能较低,但掺杂Li原子能够提高H2与六元环的结合能,同时Li原子体现出较高的正电性质,B原子取代苯环中的两个C原子后,使得原有C原子电负性增强;77 K下PAF-301Li具有最高的储氢性能,而PAF-C4B2H4-Li2-Si和PAF-C4B2H4-Li2-Ge体现出较好的常温储氢性能,各种材料的常温储氢性能远低于其低温储氢性能.通过77 K下H2在PAFs材料中的等位能面分布和吸附平衡质心密度分布对H2在PAFs材料中的优先吸附位置进行分析,发现在PAF-301和PAF-301Li骨架中,由于中心能量较低的等位能区域范围较宽,H2在其中存在四个明显的吸附高密度分布区域,而其它三种PAFs晶胞中心能量较低的等位能区域范围较窄,使得H2在其中只存在两个明显的吸附高密度分布区域.  相似文献   

4.
采用付玫瑰苯胺与对苯二甲醛通过希夫碱偶联反应制备了新型的多孔芳香骨架材料.经过FTIR,TGA,PXRD,SEM,TEM和Ar吸附等分析方法对多孔芳香骨架材料的成键方式和骨架结构进行了表征.分析结果显示,该多孔芳香骨架材料具有优异的热稳定性(350℃仅失重5%)和溶剂稳定性,其Langmuir比表面积约为472m~2/g.紫外光谱和荧光光谱测试分析表明,该材料在苯、甲苯和氯苯等芳香化合物环境中无明显的荧光强度变化.然而在硝基爆炸物环境中会发生灵敏的、专一的荧光淬灭现象.该多孔材料可应用于硝基爆炸物的检测.  相似文献   

5.
元野  任浩  孙福兴 《无机化学学报》2013,29(8):1645-1648
本报导中,以γ-环糊精作为建筑基块,采用最常见的醇羟基脱水反应,合成了一种环糊精类多孔材料CD-PAF-1,通过FTIR,TGA,PXRD,SEM及气体吸附对该化合物的结构及性质进行表征,CD-PAF-1具有优良的热稳定性。另外,由于成功地在该材料骨架中引入了大量对CO2具有选择性吸附的羟基基团,基于这一特点,该材料可广泛的应用于气体CO2的捕获与分离应用。  相似文献   

6.
以四(4-溴苯基)硅烷为基元, 利用超声辅助的Yamamoto 偶联反应, 合成了硅中心的多孔芳香材料(Si-PAF). 通过调节超声参数, 优化了反应条件. 采用红外光谱、 元素分析、 扫描电子显微镜和透射电子显微镜等手段表征了Si-PAF的结构及形貌, 利用氮气吸附实验考察了其孔道结构.  相似文献   

7.
李艳强  贲腾  裘式纶 《化学学报》2015,73(6):605-610
通过简单的一步碳化方法, 以含氮的多孔有机骨架JUC-Z2为碳前驱物制备出氮掺杂多孔碳材料. 与原始JUC-Z2材料相比, 制备的多孔碳材料显示出明显提高的气体吸附量和增强的吸附焓. 其中JUC-Z2-900的CO2吸附量高达113 cm3·g-1, H2吸附量也达到246 cm3·g-1, 超过了大部分报道的多孔材料. 尤其是JUC-Z2-900的CH4吸附量在273 K, 1 bar下高达60 cm3·g-1, 据我们所知, 这一值为目前报道材料的最高值. 除此之外, 样品还显示出选择性吸附CO2的能力, 273 K下, JUC-Z2-900的CO2/N2的选择性高达10, CO2/H2的选择性也高达66. 另外, 样品具有很高的热稳定性, 有望应用在碳捕获和清洁能源储存等领域.  相似文献   

8.
新型锗中心多孔芳香材料的设计合成和表征   总被引:1,自引:0,他引:1  
元野  闫卓君  任浩  刘青英  朱广山  孙福兴 《化学学报》2012,70(13):1446-1450
采用四(4-溴苯基)锗烷作为基块, 以1,4-苯二硼酸和4,4'-联苯基二硼酸作为桥联, 合成了两种锗中心的多孔芳香材料(Ge-PAFs). 通过FTIR, MAS NMR, TGA, PXRD, SEM, TEM及N2吸附对该化合物的结构及性质进行表征. Ge-PAF-1和Ge-PAF-2具有优良的热稳定性(420 ℃失重5%)及化学稳定性. 另外, 该材料成功地在聚合物中引入锗元素为其在半导体等方面的应用提供了可能[1].  相似文献   

9.
采用联苯为建筑基元,合成了价格低廉、操作简便、易于工业化的多孔芳香骨架材料PAF-45.通过后修饰方法,制备了带有磷酸基团的多孔芳香材料(PAF-45-PG).通过FTIR(傅里叶变换红外光谱),TGA(热重分析),PXRD(多晶粉末X射线衍射),SEM(扫描电子显微镜),TEM(透射电子显微镜)以及N2吸附实验,对PAF-45-PG的结构及孔道性质进行了系统的表征.由于骨架中引入了磷酸基团,PAF-45-PG具有优良的铀离子吸附性能,在pH=6的条件下可以达到100 mg·g-1.另外,该材料成本低廉,具有可观的工业化前景,为多孔材料在能源方面的应用提供了广阔前景.  相似文献   

10.
在超临界CO2中以颗粒状活性炭为模板,正硅酸乙酯和钛酸四正丁酯为前驱体制备了TiO2/S iO2复合多孔材料。研究了超临界状态下不同涂层温度和涂层压力对涂层率的影响,当温度为40℃时,压力在22 MPa为该温度的最佳涂层压力;固定压力为22 MPa,涂层温度为70℃为最佳涂层条件。X射线衍射(XRD)的研究结果表明,产物由锐钛矿型TiO2、金红石型TiO2以及结晶的S iO2这3种物质构成。根据产物的N2气吸附-脱附等温线计算,产物的比表面积达到144.44 m2/g,平均孔径为7 nm左右。扫描电子显微镜的分析结果证明,产物在一定程度上实现了对模板的复制,同时透射电子显微镜显示,复合材料的纳米颗粒尺寸具有良好的分散性。  相似文献   

11.
A novel porous aromatic framework, PAF-52, was obtained via the polymerization of tetrahedral mono- mer tetrakis(4-cyanodiphenyl) methane(TCDPM) with the aid of a facile ionothermal method. PAF-52 has a surface area of 1159 m2/g(BET), and shows a considerable high separation ability of CO2 in N2 or CH4 respectively at room temperature, using gas-chromatography experiments as evidence,  相似文献   

12.
The strong radioactivity of iodine compounds derived from nuclear power plant wastes has motivated the development of highly efficient adsorbents. Porous aromatic frameworks (PAFs) have attracted much attention due to their low density and diverse structure. In this work, an azo group containing PAF solid, denoted as LNU-58, was prepared through Suzuki polymerization of tris-(4-(4,4,5,5-tetramethyl-1,3,2-dioxaborolan-2-yl)-phenyl)-amine and 3,5-dibromoazobenzene building monomers. Based on the specific polarity properities of the azo groups, the electron-rich aromatic fragments in the hierarchical architecture efficiently capture iodine molecules with an adsorption capacity of 3533.11 mg g−1 (353 wt%) for gaseous iodine and 903.6 mg g−1 (90 wt%) for dissolved iodine. The iodine uptake per specific surface area up to 8.55 wt% m−2 g−1 achieves the highest level among all porous adsorbents. This work illustrates the successful preparation of a new type of porous adsorbent that is expected to be applied in the field of practical iodine adsorption.  相似文献   

13.
Nitrogen-rich porous networks with additional polarity and basicity may serve as effective adsorbents for the Lewis electron pairing of iodine molecules. Herein a carbazole-functionalized porous aromatic framework (PAF) was synthesized through a Sonogashira–Hagihara cross-coupling polymerization of 1,3,5-triethynylbenzene and 2,7-dibromocarbazole building monomers. The resulting solid with a high nitrogen content incorporated the Lewis electron pairing effect into a π-conjugated nano-cavity, leading to an ultrahigh binding capability for iodine molecules. The iodine uptake per specific surface area was ~8 mg m−2 which achieved the highest level among all reported I2 adsorbents, surpassing that of the pure biphenyl-based PAF sample by ca. 30 times. Our study illustrated a new possibility for introducing electron-rich building units into the design and synthesis of porous adsorbents for effective capture and removal of volatile iodine from nuclear waste and leakage.  相似文献   

14.
Herein, we have designed and synthesized two heteroatom (N, O) rich covalent organic frameworks (COF), PD-COF and TF-COF , respectively, to demonstrate their relative effect on CO2 adsorption capacity and also CO2/N2 selectivity. Compared to the non-fluorinated PD-COF (BET surface area 805 m2 g−1, total pore volume 0.3647 ccg−1), a decrease in BET surface area and also pore volume have been observed for fluorinated TF-COF due to the incorporation of fluorine to the porous framework (BET surface area 451 m2 g−1, total pore volume 0.2978 ccg−1). This fact leads to an enormous decrease in the CO2 adsorption capacity and CO2/N2 selectivity of TF-COF , though it shows stronger affinity towards CO2 with a Qst of 37.76 KJ/mol. The more CO2 adsorption capacity by PD-COF can be attributed to the large specific surface area with considerable amount of micropore volume compared to the TF-COF . Further, PD-COF exhibited CO2/N2 selectivity of 16.8, higher than that of TF-COF (CO2/N2 selectivity 13.4).  相似文献   

15.
通过傅氏烷基化反应成功地合成了基于四苯锗烷构筑单元的多孔有机骨架材料PAF-9。用红外光谱,粉末X射线衍射,固体核磁共振,热重分析和低温氮气吸附-脱附表征了PAF-9材料的微结构与孔道性质。表征数据表明PAF-9具有非常高的热稳定性和化学稳定性,同时具有较高的比表面积。该PAF材料的BET比表面积为334 m2·g-1。此外,得到的PAF材料对二氧化碳具有较好的吸附能力。  相似文献   

16.
通过傅氏烷基化反应成功地合成了基于四苯锗烷构筑单元的多孔有机骨架材料PAF-9。用红外光谱,粉末射X线衍射,固体核磁共振,热重分析和低温氮气吸附-脱附表征了PAF-9材料的微结构与孔道性质。表征数据表明PAF-9具有非常高的热稳定性和化学稳定性,同时具有较高的比表面积。该PAF材料的BET比表面积为334m2·g-1。此外,得到的PAF材料对二氧化碳具有较好的吸附能力。  相似文献   

17.
Converting CO2 into chemicals with electricity generated by renewable energy is a promising way to achieve the goal of carbon neutrality. Carbon-based materials have the advantages of low cost, wide sources and environmental friendliness. In this work, we prepared a series of boron-doped covalent triazine frameworks and found that boron doping can significantly improve the CO selectivity up to 91.2% in the CO2 electroreduction reactions(CO2RR). The effect of different doping ratios on the activity by adjusting the proportion of doped atoms was systematically investigated. This work proves that the doping modification of non-metallic materials is a very effective way to improve their activity, and also lays a foundation for the study of other element doping in the coming future.  相似文献   

18.
A porous, nitrogen‐doped carbonaceous free‐standing membrane (TFMT‐550) is prepared by a facile template‐free method using letrozole as an intermediate to a triazole‐functionalized‐triazine framework, followed by carbonization. Such adsorption/diffusion membranes exhibit good separation performance of CO2 over N2 and surpassing the most recent Robeson upper bound. An exceptional ideal CO2/N2 permselectivity of 47.5 was achieved with a good CO2 permeability of 2.40 × 10−13 mol m m−2 s−1 Pa−1. The latter results arise from the presence of micropores, narrow distribution of small mesopores and from the strong dipole–quadrupole interactions between the large quadrupole moment of CO2 molecules and the polar sites associated with N groups (e.g., triazine units) within the framework.  相似文献   

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