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Wenhua Chen

Publications and source records attributed to Wenhua Chen.

5 recordsLinked to original sources

Structure sensitivity in the oxidation of CO on Ir surfaces.

We report results on the catalytic oxidation of carbon monoxide (CO) over clean Ir surfaces that are prepared reversibly from the same crystal in situ with different surface morphologies, from planar to nanometer-scale facets of specific crystal orientations and various sizes. Our temperature-programmed desorption (TPD) data show that both planar Ir(210) and faceted Ir(210) are very active for CO oxidation to form CO2. Preadsorbed oxygen promotes the oxidation of CO, whereas high coverages of preadsorbed CO poison the reaction by blocking the surface sites for oxygen adsorption. At low coverages of preadsorbed oxygen (< or = 0.3 ML of O), the temperature Ti for the onset of CO2 desorption decreases with increasing CO coverage. At high coverages of preadsorbed oxygen (> 0.5 ML of O), T(i) is < 330 K and is independent of CO coverage. Moreover, we find clear evidence for structure sensitivity in CO oxidation over clean planar Ir(210) versus that over clean faceted Ir(210): the CO2 desorption rate is sensitive to the surface morphological differences. However, no evidence has been found for size effects in CO oxidation over faceted Ir(210) for average facet size ranging from 5 to 14 nm. Energetically favorable binding sites for O/Ir(210) are characterized using density functional theory (DFT) calculations.

Journal Article↗

Decomposition of ammonia and hydrogen on Ir surfaces: structure sensitivity and nanometer-scale size effects.

The adsorption and decomposition of ammonia and hydrogen have been studied on surfaces of clean planar Ir(210) and clean nanoscale-faceted Ir(210), which are prepared from the same crystal in situ. We find evidence for structure sensitivity in recombination and desorption of H2 and in thermal decomposition of NH3 on clean planar Ir(210) versus clean faceted Ir(210). Moreover, the decomposition kinetics of NH3 on faceted Ir(210) exhibit size effects on the nanometer scale, which is the first observation of size effects in surface chemistry on an unsupported monometallic catalyst with controlled and well-defined structure and size.

Journal Article↗

[Study of the effects of isoflavone on serum lipid and bone biochemical markers in ovariectomized rats].

The effects of isoflavone on serum lipid and bone biochemical markers in ovariectomized rats were studied. Four-month old Wistar rats were divided into 6 groups according to their weights. Rats were either sham-operated or ovariectomized (ovx). Some ovx rats were given different dosage of isoflavone or estrostilben. Sixteen weeks later, the rats were killed and the serum were separated to determine the analytical indexes. The experiment results show that in the group of isoflavone the content of serum HDL and bone formation index bone gamma-carkoxyglutamate protein (BGP) increase, but total cholesterol (TC), triglycerides (TG) and bone absorption index tartrate-resistant acid phosphatase (TRAP) decrease obviously. The results from this study indicate that isoflavone can modulate serum lipid and inhibit bone absorption.

Acid Phosphatase↗

[Effect of lycopene on the function of antioxidative enzyme system in rats].

In order to observe the effect of Lycopene(LP) on antioxidation in rats, the rats were given LP by oral. After 4 weeks the activity of SOD, MDA and GSH-Px, T-AOC, GSH, CAT in serum and liver were measured respectively. The result showed that the activities of SOD, T-AOC and GSH-Px in LP group were increased and the concentrations of MDA were decreased significantly(P < 0.05) compared with control group. LP could increase antioxidative effect and reduce lipid peroxidation in Wistar rats.

Animals↗

Nanoscale surface chemistry.

We report evidence in several experiments for nanometer-size effects in surface chemistry. The evidence concerns bimetallic systems, monolayer films of Pt or Pd on W(111) surfaces. Pyramidal facets with [211] faces are formed on annealing on physical monolayer of Pt, Pd on a W(111) substrate, and facet sizes increase with annealing temperature. We used synchrotron radiation-based soft x-ray photoemission to show that monolayer films of Pt, Pd, on W "float" on the outer surface, whereas multilayer films form alloys on annealing. Acetylene reactions over bimetallic planar and faceted Pd/W surfaces exhibit size effects on the nanometer scale, that is, thermal desorption spectra of reactively formed benzene and ethylene (after acetylene adsorption) change systematically with facet size. In the second case, the decomposition of C(2)H(2) over planar and faceted Ir(210) surfaces also exhibits structure sensitivity; temperature programmed desorption of H(2) from C(2)H(2) dissociation depends on the nanoscale surface structure. Finally, we have characterized interactions of Cu with the highly ordered S(4 x 4)/W(111) surface. The substrate is a sulfur-induced nanoscale reconstruction of W(111) with (4 x 4) periodicity, having broad planar terraces (approximately 30 nm in width). Fractional monolayers of vapor-deposited Cu grow as three dimensional clusters on the S(4 x 4) surface over a wide coverage range. At low Cu coverage (< or = 0.1 ML), Cu nanoclusters nucleate preferentially at characteristic 3-fold hollow sites; we find a clear energetic preference for one type of site over others, and evidence for self-limiting growth of nanoclusters.

Journal Article↗