By Ripudaman Malhotra (Eds.)
content material: Combinatorial chemistry of fabrics, polymers, and catalysts / Wilhelm F. Maier ... [et al.] --
Combinatorial polymer technological know-how : synthesis and characterization / J. Carson Meredith ... [et al.] --
The compositional unfold method of high-dielectric consistent fabrics and fabrics for built-in optics / L.F. Schneemeyer ... [et al.] --
Chemically delicate high-throughput parallel research of resin bead-supported combinatorial libraries / J. Lauterbach, C.M. Snively, G.H. Oskarsdottir --
Parallel strain reactor method / P. Wright ... [et al.] --
Conformational research of peptide libraries / Saul G. Jacchieri --
The position of informatics in combinatorial fabrics discovery / Laurel A. Harmon, Steven G. Schlosser, Alan J. Vayda --
constructing combinatorial help for high-throughput experimentation utilized to heterogeneous catalysis / D. Demuth ... [et al.].
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In these devices the polymers serve as hole transport layers but an energy barrier for hole injection exists between the polymeric material and the inorganic anode. B y varying the oxidation level of die polymer this energy barrier can be reduced to lower the device working voltage. The effect of oxidation was studied by electrochemically treating the polymer to create a continuous gradient in the oxidation level of the polymer. A gradient in thickness was created orthogonal to the gradient in oxidation to explore variations of both properties simultaneously.
Phys. Rev. Lett. 2000, in press. ; Douglas, J. ;Amis, E . J. Polym. Sci. B: Polym. Phys. 2000, in press. Hanak, J. J. J. Mat. Sci. 1970, 5, 964. Newkome, G . ; Weis, C. D . ;Baker, G . ; Childs, B . ; Epperson, J. Angew. Chem. Int. Ed. 1998, 37, 307-310. According to ISO 31-8, the term "molecular weight" has been replaced by "relative molecular mass", symbol M r . The conventional notation, rather than the ISO notation, has been employed for this publication. Leal, L . G . Laminar Flow and Convective Transport Processes; Butterworth-Heinemann: Boston, 1992.
Combinatorial methods (CM) use experimental design, library creation, high-throughput screening, and informatics to efficiently and rapidly develop new materials and measure properties over large numbers of variable combinations, Figure 1. This is accomplished by preparing samples not one at a time, but rather as sample libraries' containing hundreds to thousands of variable combinations each. High-throughput measurements of relevant chemical and physical properties, combined with informatic data analysis, allow efficient development of structure-processing-property relationships.
Combinatorial Materials Development by Ripudaman Malhotra (Eds.)