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81.
Bandgap Engineering of Organic Semiconductors for Highly Efficient Photocatalytic Water Splitting 下载免费PDF全文
Yiou Wang Fabrizio Silveri Mustafa K. Bayazit Qiushi Ruan Yaomin Li Jijia Xie C. Richard A. Catlow Junwang Tang 《Liver Transplantation》2018,8(24)
The bandgap engineering of semiconductors, in particular low‐cost organic/polymeric photocatalysts could directly influence their behavior in visible photon harvesting. However, an effective and rational pathway to stepwise change of the bandgap of an organic/polymeric photocatalyst is still very challenging. An efficient strategy is demonstrated to tailor the bandgap from 2.7 eV to 1.9 eV of organic photocatalysts by carefully manipulating the linker/terminal atoms in the chains via innovatively designed polymerization. These polymers work in a stable and efficient manner for both H2 and O2 evolution at ambient conditions (420 nm < λ < 710 nm), exhibiting up to 18 times higher hydrogen evolution rate (HER) than a reference photocatalyst g‐C3N4 and leading to high apparent quantum yields (AQYs) of 8.6%/2.5% at 420/500 nm, respectively. For the oxygen evolution rate (OER), the optimal polymer shows 19 times higher activity compared to g‐C3N4 with excellent AQYs of 4.3%/1.0% at 420/500 nm. Both theoretical modeling and spectroscopic results indicate that such remarkable enhancement is due to the increased light harvesting and improved charge separation. This strategy thus paves a novel avenue to fabricate highly efficient organic/polymeric photocatalysts with precisely tunable operation windows and enhanced charge separation. 相似文献
82.
Kirsten Berding Carina Carbia John F Cryan 《Experimental biology and medicine (Maywood, N.J.)》2021,246(7):796
Healthy dietary intake has been acknowledged for decades as one of the main contributors to health. More recently, the field of nutritional psychiatry has progressed our understanding regarding the importance of nutrition in supporting mental health and cognitive function. Thereby, individual nutrients, including omega-3 fatty acids and polyphenols, have been recognized to be key drivers in this relationship. With the progress in appreciating the influence of dietary fiber on health, increasingly research is focusing on deciphering its role in brain processes. However, while the importance of dietary fiber in gastrointestinal and metabolic health is well established, leading to the development of associated health claims, the evidence is not conclusive enough to support similar claims regarding cognitive function. Albeit the increasing knowledge of the impact of dietary fiber on mental health, only a few human studies have begun to shed light onto the underexplored connection between dietary fiber and cognition. Moreover, the microbiota-gut-brain axis has emerged as a key conduit for the effects of nutrition on the brain, especially fibers, that are acted on by specific bacteria to produce a variety of health-promoting metabolites. These metabolites (including short chain fatty acids) as well as the vagus nerve, the immune system, gut hormones, or the kynurenine pathway have been proposed as underlying mechanisms of the microbiota-brain crosstalk. In this minireview, we summarize the evidence available from human studies on the association between dietary fiber intake and cognitive function. We provide an overview of potential underlying mechanisms and discuss remaining questions that need to be answered in future studies. While this field is moving at a fast pace and holds promise for future important discoveries, especially data from human cohorts are required to further our understanding and drive the development of public health recommendations regarding dietary fiber in brain health. 相似文献
83.
Banerjee S Mirsamadi N Anantharaman L Sivaram MV Gupta RB Choudhury D Roy RP 《The protein journal》2007,26(7):445-455
The identity of intermolecular contact residues in sickle hemoglobin (HbS) fiber is largely known. However, our knowledge
about combinatorial effects of two or more contact sites or the mechanistic basis of such effects is rather limited. Lys16,
His20, and Glu23 of the α-chain occur in intra-double strand axial contacts in the sickle hemoglobin (HbS) fiber. Here we
have constructed two novel double mutants, HbS (K16Q/E23Q) and (H20Q/E23Q), with a view to delineate cumulative impact of
interactions emanating from the above contact sites. Far-UV and visible region CD spectra of the double mutants were similar
to the native HbS indicating the presence of native-like secondary and tertiary structure in the mutants. The quaternary structures
in both the mutants were also preserved as judged by the derivative UV spectra of liganded (oxy) and unliganded (deoxy) forms
of the double mutants. However, the double mutants displayed interesting polymerization behavior. The polymerization behaviour
of the double mutants was found to be non-additive of the individual single mutants. While HbS (H20Q/E23Q) showed inhibitory
effect similar to that of HbS (E23Q), the intrinsic inhibitory propensity of the associated single mutants was totally quelled
in HbS (K16Q/E23Q) double mutant. Molecular dynamics (MD) simulations studies of the isolated α-chains as well as a module
of the fiber containing the double and associated single mutants suggested that these contact sites at the axial interface
of the fiber impact HbS polymerization through a coupled interaction network. The overall results demonstrate a subtle role
of dynamics and electrostatics in the polymer formation and provide insights about interaction-linkage in HbS fiber assembly. 相似文献
84.
A novel polycationic ionen was synthesized and fractionated on carboxymethyl-Sephadex using a salt gradient in 7M urea. A
series of oligomers of discrete length were characterised by ultraviolet spectra. The ultraviolet spectra of oligomers revealed
a new band centred at 232.5 nm which was probably due to exciton splitting. Thermal denaturation studies indicated both stabilization
of the helix conformation and a higher degree of cooperativity in the melting of DNA (oligomers)n complex as compared to native
calf thymus DNA. Ionen oligomers exhibited large extrinsic Cotton effect at 232.5 nm which could be attributed to exciton
interaction. 相似文献
85.
86.
Clonal splitting in desert shrubs 总被引:10,自引:0,他引:10
H. Jochen Schenk 《Plant Ecology》1999,141(1-2):41-52
Axis splitting is a widespread phenomenon in desert shrubs, and has been reported for shrubs from several plant families, both in old- and new-world deserts. It is so common in dwarf shrubs of arid environments as to be a defining characteristic of this growth form. Although anatomists described this phenomenon several decades ago, there has been only one ecological study of one species, Ambrosia dumosa. The anatomical nature of the various splitting mechanisms that have been found suggests axis splitting to be an extreme form of hydraulic segmentation. The adaptive advantage of clonal splitting in desert shrubs has yet to be determined, but it appears to be largely a risk-spreading mechanism that enables independent mortality of integrated hydraulic units (IHUs) or ramets. This should be especially advantageous in heterogeneous, water-limited environments, where soil water occurs in pockets too small to support a large shrub-genet. Clonal splitting may cause an increase in intraclonal competition among ramets, but there are also indications that at least some species possess mechanisms to reduce competition by minimizing root system overlap among ramets. Many desert shrub species that undergo clonal splitting maintain a dense clump growth form, possibly because such a growth form has positive effects on water and nutrient status of the soil and long-term effects on other soil properties. 相似文献
87.
Marie Garnier-Lhomme Axelle Grélard Cécile Loudet Banafshé Larijani 《生物化学与生物物理学报:生物膜》2007,1768(10):2516-2527
Membrane dynamics is an essential part of many cellular mechanisms such as intracellular trafficking, membrane fusion/fission and mitotic organelle reconstitution. The dynamics of membranes is dependent primarily on their phospholipid and cholesterol composition and how these molecules are ordered in relation to one another. To determine the physical status of membranes in whole cells or purified membranes of subcellular compartments we have developed a novel application exploiting solid-state 2H-NMR spectroscopy. We utilise this method to probe the dynamics of intact sperm and nuclear envelope precursor membranes. We show, using mass spectrometry, that either multilamellar or small unilamellar vesicles of deuterium-labelled palmitoyl-oleoylphosphatidylcholine can be used to probe the dynamics of sperm cells or nuclear envelope precursor membrane vesicles, respectively. Using 2H-NMR we determine the order parameters of sperm cells and nuclear envelope precursor membrane vesicles. We demonstrate that whole sperm membranes are more dynamic than nuclear envelope precursor membranes due to the higher cholesterol levels of the latter. Our new application can be exploited as a generic method for monitoring membrane dynamics in whole cells, various subcellular membrane compartments and membrane domains in subcellular compartments. 相似文献
88.
A Stabilized,Intrinsically Safe, 10% Efficient,Solar‐Driven Water‐Splitting Cell Incorporating Earth‐Abundant Electrocatalysts with Steady‐State pH Gradients and Product Separation Enabled by a Bipolar Membrane 下载免费PDF全文
89.
90.
【目的】通过响应面试验对产纤溶酶菌株CNY16发酵条件进行优化,并对其酶学特性进行初步研究。【方法】采用Plackett-Burman设计得出酵母膏、氯化钠、转速3个最重要影响因素,通过最陡爬坡实验逼近酶活的最高区域,然后根据Box-Behnken中心组合设计实验对显著因素进行优化分析,最后对该酶学性质进行初步分析。【结果】最终得到3个因素的最优组合:酵母膏3.28%,氯化钠1.14%,转速166 r/min,在此培养条件下,纤溶酶活达到875.932 U/mL,比优化前提高了46%;该菌株产纤溶酶最适温度为30°C,最适pH为6.5。【结论】确定了高产纤溶酶菌株CNY16的最优发酵条件及其部分酶学性质,为该酶的进一步深入研究及中试实验奠定基础。 相似文献