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131.
Solvothermal reaction of H4L (L=biphenyl‐3,3′,5,5′‐tetracarboxylate) and Bi(NO3)3 ? (H2O)5 in a mixture of DMF/MeCN/H2O in the presence of piperazine and nitric acid at 100 °C for 10 h affords the solvated metal–organic polymer [Bi2(L)1.5(H2O)2] ? (DMF)3.5 ? (H2O)3 (NOTT‐220‐solv). A single crystal X‐ray structure determination confirms that it crystallises in space group P2/c and has a neutral and non‐interpenetrated structure comprising binuclear {Bi2} centres bridged by tetracarboxylate ligands. NOTT‐220‐solv shows a 3,6‐connected network having a framework topology with a {4 ? 62}2{42 ? 65 ? 88}{62 ? 8} point symbol. The desolvated material NOTT‐220a shows exceptionally high adsorption uptakes for CH4 and CO2 on a volumetric basis at moderate pressures and temperatures with a CO2 uptake of 553 g L?1 (20 bar, 293 K) with a saturation uptake of 688 g L?1 (1 bar, 195 K). The corresponding CH4 uptake was measured as 165 V(STP)/V (20 bar, 293 K) and 189 V(STP/V) (35 bar, 293 K) with a maximum CH4 uptake for NOTT‐220a recorded at 20 bar and 195 K to be 287 V(STP)/V, while H2 uptake of NOTT‐220a at 20 bar, 77 K is 42 g L?1. These gas uptakes have been modelled by grand canonical Monte Carlo (GCMC) and density functional theory (DFT) calculations, which confirm the experimental data and give insights into the nature of the binding sites of CH4 and CO2 in this porous hybrid material.  相似文献   
132.
ZIF‐7, built as an assembly of ZnII centers and benzimidazolate ligands, shows prominent S‐shaped isotherms upon CO2 adsorption that can be attributed to sorbate‐induced gate‐opening phenomena involving a narrow‐to‐large pore phase transition. This peculiar sorption pattern can be captured via the formulation of thermodynamic isotherms, providing a direct enthalpic and entropic view of the gate‐opening process. Relying on such an approach, an energy barrier with preferential enthalpic nature for CO2 adsorption/desorption in the gate‐opening region could be unveiled. Moreover, the elastic energy involved during the gate‐opening process was revisited to 1.4–2.8 kJ mol?1 of solid in the temperature range 273–323 K, matching the value measured by isostatic compression of a ZIF‐7_lp sample filled with DMF and showing a dominant entropic contribution.  相似文献   
133.
2,3,5-吡啶三酸在水热条件下分别与Mn(CH3COO)2·4H2O和Co(CH3COO)2·4H2O反应,得到了2种金属有机骨架(MOFs)配合物[Mn1.5(2,3,5-pta)(H2O)4]n(1)和[Co1.5(2,3,5-pta)(H2O)4]n(2),其中2,3,5-H3pta=2,3,5-吡啶三酸。利用元素分析、红外、热重和X-射线单晶衍射分析进行了表征。分析结果表明2个配合物属于同构晶体:晶系为单斜,空间群为P21/c,其中,吡啶三酸配体完全脱去3个质子,并分别与4个六配位的金属离子相连,在空间形成一种三维网络状结构。热重分析表明,配合物1的稳定性要高于配合物2。  相似文献   
134.
目的对气相色谱-质谱联用仪法测定橡胶制品中多环芳烃(蒽)含量不确定度进行评定,确定影响不确定度的关键因素。方法依据《ZEK01.4-2008 GS认证过程中PAHs的测试和验证》,使用气相色谱-质谱联用仪法测定橡胶制品中多环芳烃(蒽)含量,并对结果的不确定度进行评定,分析影响测量不确定度的各个因素,对各个分量进行计算和合成。结果扩展不确定度U=5.7 mg/kg,置信概率95%。结论该实验的不确定度主要影响因素是曲线校准。  相似文献   
135.
通过建立数学模型,分析了原子荧光法测定金矿中砷和铋的测量不确定度的影响因素,计算各影响因素的不确定度分量,并计算金矿中砷和铋的合成标准不确定度和扩展不确定度.结果表明:测量不确定度主要由样品制备过程和标准曲线拟合构成.金矿中砷的含量为18.398μg/g,其扩展不确定度为0.555 3μg/g(k=2),结果符合测试规范要求.铋的含量为0.359 3μg/g,扩展不确定度为0.441 1μg/g(k=2),铋的不确定度偏大,不符合测试规范要求,应通过降低铋标准溶液的浓度和减少待测液的稀释倍数来降低标准曲线拟合产生的不确定度.  相似文献   
136.
137.
One novel organically templated zincophophate(C5N2H14)·[Zn3(OH2)(PO4)2(HPO4)] has been synthesized under hydrothermal conditions and characterized by single-crystal X-ray diffraction together with elemental analysis, infrared spectroscopy, thermogravimetric analysis, and powder X-ray diffraction. The title compound crystallizes in the monoclinic space group P21/n, with a = 9.7904(11), b = 14.0287(14), c = 11.8651(13) , β = 104.690(3), V = 1576.4(3) 3, Z = 4, T = 296(2) K, Mr = 601.31 and Dc = 2.533 g/cm3. The compound consists of a macroanionic [Zn3(OH2)(PO4)2(HPO4)]2- framework and(C5N2H14)2+ cations, and its structure is built up from ZnO3(OH2), ZnO4, HPO4 and PO4 tetrahedral units that result in 4, 8 and 10-ring channels.  相似文献   
138.
A new 2D barium-organic framework, [Ba2(Hbidc)2]n(1, Hbidc = 1H-benzimidazole-5,6-dicarboxylate), has been solvothermally synthesized and structurally characterized by elemental analysis, IR spectroscopy, TGA, powder X-ray diffraction, and single-crystal X-ray diffraction. The crystal belongs to the triclinic system, space group P1 with a = 6.8785(14), b = 9.4558(19), c = 14.641(3) , α = 86.22(3), β = 82.27(3), γ = 88.40(3)°, V = 941.4(3) 3, Z = 2, Mr = 682.96, Dc = 2.409 g/cm3, μ(MoKα) = 4.217 mm-1, F(000) = 640, the final R = 0.0587 and wR = 0.1619 for 3030 observed reflections with I 2σ(I). Structural determination reveals that 1 exhibits an interesting 2D layer structure constructed by carboxylate groups of Hbidc ligands and shows good thermal stability(up to 400 ℃). Solid-state 1 emits intense indigotin photoluminescence with fluorescence lifetime of 62.13(408 nm) at room temperature. The H3bidc ligand and its barium complex have been screened for antibacterial activity against several bacteria strains, and the results are compared with the activity of penicillin.  相似文献   
139.
A two-step hysteretic FeII spin crossover (SCO) effect was achieved in programmed layered Cs{[Fe(3-CNpy)2][Re(CN)8]}⋅H2O ( 1 ) (3-CNpy=3-cyanopyridine) assembly consisting of cyanido-bridged FeII-ReV square grid sheets bonded by Cs+ ions. The presence of two non-equivalent FeII sites and the conjunction of 2D bimetallic coordination network with non-covalent interlayer interactions involving Cs+, [ReV(CN)8]3− ions, and 3-CNpy ligands, leads to the occurrence of two steps of thermal SCO with strong cooperativity giving a double thermal hysteresis loop. The resulting spin-transition phenomenon could be tuned by an external pressure giving the room-temperature range of SCO, as well as by visible-light irradiation, inducing an efficient recovery of the high-spin FeII state at low temperatures. We prove that octacyanidorhenate(V) ion is an outstanding metalloligand for induction of a cooperative multistep, multiswitchable FeII SCO effect.  相似文献   
140.
综述了近几年金属有机骨架(MOF)薄膜在小分子和离子高效分离应用中的研究进展.MOF膜材料因具有结晶度良好、结构可设计、孔径可调和可功能化等特点,在分离领域展现出极大的潜在应用价值而受到广泛关注.鉴于近年来MOF膜材料在分离领域取得的巨大进展,对这一领域的前沿进展进行及时系统的总结,并对未来的发展趋势进行展望,具有重要的学术价值,也为科研工作者对MOF膜材料的研究提供了参考.本文首先总结了MOF膜的4种制备方法,包括LBL自组装法(液相外延和Langmuir-Blodgett沉积)、真空制备法(化学气相沉积和原子层沉积)、电化学沉积法和粉末沉积法;而后,详述了MOF膜在气体分离、液体分离及离子/质子传导等方面的应用;最后,总结了MOF膜材料领域当前存在的挑战及潜在解决途径,并对该领域的未来发展方向进行了展望.  相似文献   
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