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1.
氧化还原介体催化强化污染物厌氧降解研究进展   总被引:1,自引:0,他引:1  
 由于厌氧生物处理技术具有产生剩余污泥少、可回收能源等优点而被广泛用于处理各种有机污染物,尤其在有毒、有害、难降解污染物的去除方面取得了良好的效果。然而,厌氧生物法的处理速率通常比较低,而氧化还原介体可通过自身不断的氧化和还原来传递电子,提高电子在氧化还原反应过程中的传递速率,从而促进污染物高效厌氧降解。醌类物质和腐殖酸是应用较多的氧化还原介体,在催化难降解污染物降解方面取得了一定效果。讨论了氧化还原介体的特点、作用机制,并总结了其对偶氮染料厌氧脱色、反硝化和多氯联苯厌氧降解的强化作用,提出了氧化还原介体未来的研究方向。  相似文献   
2.
This mini-review highlights key structural features that should be taken into account when creating ambipolar redox-active closed-shell metal-free molecules. This type of compound is strongly required for the fabrication of all-organic ‘poleless’ batteries and semiconductors. The suggested strategies aimed at stabilization of both oxidized (cationic) and reduced (anionic) redox-states are based on the comprehensive analysis of the most successful structures taken from the recent publications.  相似文献   
3.
The metallacarborane [3,3′‐Co(1,2‐closo‐C2B9H11)2]? has been synthesized. This species allows the formation of redox couples in which both partners are negatively charged. The E1/2 potential can be tuned by adjusting the nature and number of substituents on B and C. The octaiodinated species [3,3′‐Co(1,2‐closo‐C2B9H7I4)2]? is the most favorable, as it is isolatable and stable in air. A DFT study on stability and redox potentials of complexes has been performed.  相似文献   
4.
Quinones are electroactive species that have shown great promise for redox flow batteries due to the ability to tune their properties and to act as both negative and positive electrolytes. The following review outlines highlights of work in the last couple of years working to provide materials with higher stability, solubility, and performance. Developments toward stable negolytes have provided opportunities for potential commercial opportunities when paired with alternate chemistries. However, the stability of quinones in high potential electrolytes is still not sufficient and the number of potential quinones limited.  相似文献   
5.
Following a thermal reduction method, platinum nanoparticles were synthesized and stabilized by polyvinylpyrrolidone. The colloidal platinum nanoparticles were stable for more than 3 months. The micrograph analysis unveiled that the colloidal platinum nanoparticles were well dispersed with an average size of 2.53 nm. The sol–gel‐based inverse micelle strategy was applied to synthesize mesoporous iron oxide material. The colloidal platinum nanoparticles were deposited on mesoporous iron oxide through the capillary inclusion method. The small‐angle X‐ray scattering analysis indicated that the dimension of platinum nanoparticles deposited on mesoporous iron oxide (Pt‐Fe2O3) was 2.64 nm. X‐ray photoelectron spectroscopy (XPS) data showed that the binding energy on Pt‐Fe2O3 surface decreased owing to mesoporous support–nanoparticle interaction. Both colloidal and deposited platinum nanocatalysts improved the degradation of methyl orange under reduction conditions. The activation energy on the deposited platinum nanocatalyst interface (2.66 kJ mol?1) was significantly lowered compared with the one on the colloidal platinum nanocatalyst interface (40.63 ± 0.53 kJ mol?1).  相似文献   
6.
We study the energy-critical nonlinear wave equation in the presence of an inverse-square potential in dimensions three and four. In the defocussing case, we prove that arbitrary initial data in the energy space lead to global solutions that scatter. In the focusing case, we prove scattering below the ground state threshold.  相似文献   
7.
Two novel 2′-hydroxychalcone derivatives (i.e., M1 and M2) are explored in this work. We mainly focus on investigating the effects of photoexcitation on hydrogen bonds and on the excited-state intramolecular proton transfer (ESIPT) process. On the basis of calculations of electrostatic potential surface and intramolecular interactions, we verify the formation of hydrogen bond O1 H2···O3 in both S0 and S1 states. Exploring the ultraviolet–visible spectra in the liquid phase, our simulated results reappear in the experimental phenomenon. Analyzing molecular geometry and infrared stretching vibrational spectra, we confirm O1 H2···O3 is strengthened for both M1 and M2 in the S1 state. We further confirm that charge redistribution facilitates ESIPT tendency. Constructing potential energy curves, we find the ultrafast ESIPT behavior for M1, which is because of the deficiency of side hydroxyl moiety comparing with M2. This work makes a reasonable affiliation of the ESIPT mechanism for M1 and M2. We wish this paper could facilitate understanding these two novel systems and promote their applications.  相似文献   
8.
La2分子结构与基态分子势能函数   总被引:4,自引:4,他引:0  
用相对论有效原子实势,在密度泛函理论(DFT)和组态相关理论(QCISD)水平上优化计算了La2分子的结构.根据原子分子反应静力学原理,导出La2分子可能的电子状态和离解极限,用DFT中的B3LYP方法计算了基态X1∑g^ 势能曲线,拟合得到Murrell-Sorbie解析势能函数,并首次计算得到基态X1∑g^ 的谐振频率、热力学性质、力学与光谱数据。  相似文献   
9.
从用电负性来衡量元素在化合物分子中吸引电子的能力的必要性出发,阐述电负性的概念以及阿莱-罗周(Allred-Rochow)计算电负性标的方法,重点论述了电负性在无机化学上的某些应用.  相似文献   
10.
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