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Photocatalytic CO2 reduction to C1 fuels is considered to be an important way for alleviating increasingly serious energy crisis and environmental pollution. Due to the environment-friendly, simple preparation, easy formation of highly-stable metal-nitrogen(M-Nx) coordination bonds, and suitable band structure, polymeric carbon nitride-based single-atom catalysts(C3N4-based SACs) are expected to become a potential for CO2 reduction under visible-light irradiation. In this review, we summarize the recent advancement on C3N4-based SACs for photocatalytic CO2 reduction to C1 products, including the reaction mechanism for photocatalytic CO2 reduction to C1 products, the structure and synthesis methods of C3N4-based SACs and their applications toward photocatalytic CO2 reduction reaction(CO2RR) for C1 production. The current challenges and future opportunities of C3N4-based SACs for photoreduction of CO2 are also discussed. 相似文献
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Summary A volume-preserving symplectic map is proposed to describe the magnetic field lines when the Taylor equilibriumis perturbed
in a generic way. The standard scenario is observed by varying the perturbation strength, but the statistical properties in
the chaotic regions are not simple due to the presence of boundaries and remnants of invariant structures. Simpler models
of volume-preserving maps are proposed. The slowly modulated standard map captures the basic topological and statistical features.
The diffusion is analytically described for large perturbations (above the break-up of the last KAM torus) in terms of correlation
functions and for small perturbations using the adiabatic theory, provided that the modulation is sufficiently slow. 相似文献
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Bronstein LM Kostylev M Shtykova E Vlahu T Huang X Stein BD Bykov A Remmes NB Baxter DV Svergun DI 《Langmuir : the ACS journal of surfaces and colloids》2008,24(21):12618-12626
Small iron oxide and Co-doped iron oxide nanoparticles (NPs) were synthesized in a commercial amphiphilic block copolymer, poly(ethylene oxide)-b-poly(methacrylic acid) (PEO 68-b-PMAA8), in aqueous solutions. The structure and composition of the micelles containing guest molecules (metal salts) or NPs (metal oxides) were studied using transmission electron microscopy, dynamic light scattering, X-ray photoelectron spectroscopy, and X-ray powder diffraction. The enlarged micelle cores after incorporation of metal salts are believed to be formed by both PMAA blocks containing metal species and penetrating PEO chains. The nanoparticle size distributions in PEO 68-b-PMAA8 were determined using small-angle X-ray scattering (SAXS) in bulk. Two independent methods for SAXS data interpretation for comprehensive analysis of volume distributions of metal oxide NPs showed presence of both small particles and larger entities containing metal species which are ascribed to organization of block copolymer micelles in bulk. The magnetometry measurements revealed that the NPs are superparamagnetic and their characteristics depend on the method of the NP synthesis. The important advantage of the PEO 68-b-PMAA8 stabilized magnetic nanoparticles described in this paper is their remarkable solubility and stability in water and buffers. 相似文献
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本文报道了在竹红菌甲素的光敏氧化反应中, 原初反应产生了^1O2、O2和H2O2,在一些还原性底物(5-羟基色氨酸、色氨酸、组氨酸、蛋氨酸和赖氨酸等)的存在下, 体系中形成的O2量大大增加。证明了体系中的^1O2是通过三重态的竹红菌甲素和基态氧进行能量传递形成的, O2是体系中的竹红菌甲素负离子自由基和基态氧进行单电子转移的结果, H2O2是体系中存在的竹红菌甲素二价负离子还原基态氧的产物。在一些底物存在下, 次级反应产生了.OH。我们也发现竹红菌甲素具有弱的抽氢能力而生成一些有机自由基, 这些有机自由基的形成促进了各种活泼态氧的相互转化, 因此我们认为竹红甲素的光敏氧化是各种活泼态氧和一些有机自由基综合反应的结果。 相似文献