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29{sup left}Si NMR chemical shifts and energetics of silica-serine and silica-polyalcohol complexes as indicators of silica biomineralization mechanisms

机译:29 {Sup左}二氧化硅和二氧化硅 - 多元醇配合物的Si NMR化学位移和能量学作为二氧化硅生物矿化机制的指标

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Serine- and polysaccharide-enriched organic matrix is associated with biogenic silica such as diatom tests, sponge spicules, and phytoliths. We have used molecular orbital theory to determine the relative stability and 295i NMR shifts of direct Si-O-C ester-like bonds versus hydrogen bonds between the monomeric silicic acid and the alcohol group on aliphatic organics such as serine and threitol (a polyacohol as proxy for polysaccharides). Preliminary results suggest that at neutral pHs, H-bonds and ester-bonds of four-fold coordinated silicon are of comparable stability. Formation of ester-like bonds with five-fold coordinated silicon is endothermic at neutral pHs but is stabilized at higher pHs. 295i shifts of the H-bonded and ester-bonded complexes of four-fold coordinated silicon range from -55 to -73 ppm similar to monomeric inorganic silicic acid but far more positive than the -92, -102, and -110 ppm values observed experimentally in biogenic silicas. The five-coordinated silicon complexes yield shifts of-96 to -107 ppm. The latter range is within the range of inorganic, polymerized silica. If five-fold coordinated Si with direct Si-O-C bonds is present as a precursor or intermediate or stable species in biogenic silica, it could have escaped detection due to overlap with inorganic polymerized silica. Thus, 29{sup left}Si NMR shifts are not necessarily diagnostic of the presence or absence of Si-O-C bonds in biogenic silica.
机译:富含丝状和多糖的有机基质与生物原二氧化硅有关,例如硅藻试验,海绵穗和植物。我们使用的是分子轨道理论确定单体硅酸和醇基之间的直接Si-OC酯样键与氢键在脂肪族有机物(如丝氨酸和Threitol(作为代理)的脂族有机物之间的相对稳定性和295i NMR偏移多糖)。初步结果表明,在中性pHS,H键和四折协调硅的酯 - 键具有相当的稳定性。形成具有五倍配位硅的酯状粘合是在中性pH中的吸热,但在更高的pH中稳定稳定。 295i从-55至-73ppm的四倍协调硅的H键合和酯键合络合物的偏移类似于单体无机硅酸但观察到的-92,-102和-110ppm值远远超过-92,-110ppm值在实验中的生物硅脂。五配位的硅配合物收益率-96至-107ppm。后一种范围在无机聚合二氧化硅的范围内。如果具有直接Si-O-C键的五倍协调的Si作为生物原二氧化硅中的前体或中间体或稳定物质,则它可能由于与无机聚合二氧化硅重叠而逸出的检测。因此,29 {sup左} Si NMR偏移不一定诊断生物原二氧化硅中的Si-O-C键的存在或不存在。

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