6,812 research outputs found

    Electro-Reflectance Spectra of Blue Bronze

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    We show that the infrared reflectance of the quasi-one dimensional charge-density-wave (CDW) conductor K0.3MoO3 (blue bronze) varies with position when a voltage greater than the CDW depinning threshold is applied. The spatial dependence and spectra associated with these changes are generally as expected from the electro-transmission [B.M. Emerling, et al, Eur. Phys. J. B 16, 295 (2000)], but there are some differences which might be associated with changes in the CDW properties on the surface. We have examined the electro-reflectance spectrum associated with CDW current investigation for light polarized parallel to the conducting chains for signs of expected current-induced intragap states, and conclude that the density of any such states is at least an order of magnitude lower than expected.Comment: 1)submitted to Eur. Phys. J B 2) revised (July 24) to a) better emphasize results and b) with new figure insets to make paper more self-containe

    Modified Bhatia'S Model for Lattice Dynamics of some B.C.C. Metals

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    Silicon materials task of the low cost solar array project. Phase 3: Effect of impurities and processing on silicon solar cells

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    The 13th quarterly report of a study entitled an Investigation of the Effects of Impurities and Processing on Silicon Solar Cells is given. The objective of the program is to define the effects of impurities, various thermochemical processes and any impurity-process interactions on the performance of terrestrial silicon solar cells. The Phase 3 program effort falls in five areas: (1) cell processing studies; (2) completion of the data base and impurity-performance modeling for n-base cells; (3) extension of p-base studies to include contaminants likely to be introduced during silicon production, refining or crystal growth; (4) anisotropy effects; and (5) a preliminary study of the permanence of impurity effects in silicon solar cells. The quarterly activities for this report focus on tasks (1), (3) and (4)

    Vibrational Enharmonicity and Debye-Waller Factors Of Fcc Metal

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    Isolation of a serine Kunitz trypsin inhibitor from leaves of Terminalia arjuna

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    A serine Kunitz protease inhibitor was isolated from the semi-mature leaves of Terminalia arjuna, a host plant for Antheraea mylitta, using ammonium sulphate fractionation, gel permeation chromatography and trypsin–sepharose affinity chromatography. A 29-fold purification of T. arjuna Trypsin Inhibitor (TaTI) with a yield recovery of 3.2% was achieved. The purified protease inhibitor (TaTI) was resolved into a single protein band corresponding to molecular weight of 19.0 kDa on 12% SDS–PAGE under non-reducing conditions, whereas an additional band of 21.5 kDa was observed when the same fraction was resolved on SDS–PAGE under reducing conditions in the presence of 2-mercaptoethanol. TaTI inhibited both trypsin and chymotrypsin, but showed higher affinity for trypsin compared to chymotrypsin. However, it is more effective on bovine trypsin than midgut trypsin of tasar silkworm. TaTI retains its activity over a wide range of temperatures (0–100°C) and pH (2.0–8.0), with pH optimum of 8.0. These observations indicate that TaTI is not only specific to tasar silkworm but also to bovine serine proteases. Hence it can be considered as a generalist protease inhibitor
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