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The majority of terrestrial biomass accumulates as plant cell walls, the main structural component of leaves, stems, roots, fruits, and seeds. The main constituents of plant cell walls are lignin and polysaccharides, which can be transformed into liquid fuel molecules through chemical transformation or microbial fermentation. Because of the large scale of demand for fuel, it is essential that biomass-to-fuel conversion processes maximize conservation of energy in the products. Here, we summarize some of the challenges posed to these processes by the chemical complexity of plant cell walls.
It is a pleasure to be here for Rating Agency Malaysia’s conference on “Free Capital Flows: What’s In Store for Asia. ” When I first received the invitation, this session was framed as a debate between a prominent critic of capital account liberalization, who shall remain nameless, and a prominent proponent, namely me. It is
Abstract are studied under high‐pressure (20 atm) reaction conditions.
The goal of this letter is to report a novel class of dynamical behaviors observed from a generalized cellular automata CNN [Chua, 1998] with piecewise-linear (PWL) cells. Starting from an almost homogeneous initial condition, self-making (autopoietic in the sense of [Varela et al., 1974]) patterns, reminiscent of simple living systems, emerge as a result of the nonlinear coupling among cells. Similar to patterns of organization characterizing living systems, our patterns display features such as growth, maturity and death. The discovery of such patterns was made possible via mutations in several piecewise-linear CNN cell realizations of the "Game of Life" [Conway, 1982].
The syntheses of sila- and disilabenzene complexes of "Cp*Ru" (Cp* = C5Me5) are described. Li[C5H5SiH(tBu)] reacted with [Cp*RuCl]4 to give the neutral silacyclohexadienyl complex Cp*Ru[η5-C5H5SiH(tBu)] (2), characterized by NMR spectroscopy. Reaction of 2 with the Lewis acid B(C6F5)3 gave the product of Si−H abstraction, [Cp*Ru(η6-C5H5SitBu)][BH(C6F5)3] (3). Complex 3 represents the first example of an isolated silabenzene complex. The characterization of 3 follows from 1H, 13C, 29Si, 19F, and 11B NMR and IR spectroscopies. Finally, trans-1,4-dihydrohexamethyl-1,4-disilacyclohexa-2,5-diene reacted with Cp'(PMe3)2RuCH2SiMe3 (Cp' = C5Me4Et) to give Cp'(PMe3)RuH(η2-hexamethyl-1,4-disilabenzene) (4), whose structure (by X-ray crystallography) may be described as a metallodisilanorbornadiene.
An entry from the Cambridge Structural Database, the world’s repository for small molecule crystal structures. The entry contains experimental data from a crystal diffraction study. The deposited dataset for this entry is freely available from the CCDC and typically includes 3D coordinates, cell parameters, space group, experimental conditions and quality measures.
An entry from the Cambridge Structural Database, the world’s repository for small molecule crystal structures. The entry contains experimental data from a crystal diffraction study. The deposited dataset for this entry is freely available from the CCDC and typically includes 3D coordinates, cell parameters, space group, experimental conditions and quality measures.
The high-impedance surface was used as the antenna ground plane between two radiator elements to reduce the inter-element coupling between them. Measurement reveals the optimum performance occurred at the bandgap due to the suppression of surface currents in the ground plane.