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2006, ISBN 9783527313716, 378
The only comprehensive, systematic comparison of major mechanical surface treatments, their effects, and the resulting material properties. The result is an... 
Analysis | Surfaces (Technology) | Surface preparation
eBook
Journal of the American Ceramic Society, ISSN 0002-7820, 09/2018, Volume 101, Issue 9, pp. 4118 - 4127
Journal Article
Journal of Hydrology, ISSN 0022-1694, 11/2014, Volume 519, pp. 1584 - 1593
Journal Article
Chemical Communications, ISSN 1359-7345, 6/2016, Volume 52, Issue 55, pp. 851 - 8513
.... However, the stability of this class of materials is crucial for their practical applications, which might be improved by varying their chemical composition and/or structurally tuning... 
ZEOLITIC IMIDAZOLATE FRAMEWORKS | ENHANCED STABILITY | SURFACE-AREA | GAS-ADSORPTION | SELECTIVE ADSORPTION | FUNCTIONAL MATERIALS | ANHYDROUS PROTON CONDUCTIVITY | COORDINATION POLYMERS | HIGH THERMAL-STABILITY | HYDROGEN STORAGE | CHEMISTRY, MULTIDISCIPLINARY | Control | Stability | Porous materials | Clusters | Strategy | Ligands | Metal-organic frameworks | Tuning
Journal Article
Protein science, ISSN 0961-8368, 2009, Volume 11, Issue 3, pp. 500 - 515
...) provided complementary and independent methods for characterizing the stability and unfolding properties of the antibody fragments... 
CDR, complementary determining region | circular dichroism | IPTG, isopropyl β‐D‐thiogalactopyranoside | fluorescence | surface plasmon resonance | ANS, 8‐anilino‐1‐naphtalene‐sulfonic acid | protein folding | Fab, Fv, scFv, and dsFv, antigen‐binding fragment, variable fragment, single‐chain variable fragment, and disulphide stabilized variable fragment of conventional antibodies, respectively | GdmCl, guanidinium chloride | FTIR, Fourier transform infrared | BSA, bovine serum albumin | csm, center of the spectral mass | MOPS, 3‐N‐morpholinopropanosulfonic acid | protein stability | high pressure | VH, variable domain of immunoglobulin heavy chain | HEPES, N‐(2‐hydroxyethyl)piperazine‐N′‐2‐ethanesulfonic acid | VHH, variable domain of camelid heavy‐chain antibody | RU, resonance units | VL, variable domain of immunoglobulin light chain | Fourier transform infrared spectroscopy | Camel heavy‐chain antibodies | IR, infrared | SPR, surface plasmon resonance | CD, circular dichroism | Protein folding | Fluorescence | Protein stability | Surface plasmon resonance | Camel heavy-chain antibodies | Circular dichroism | High pressure | HIGH-PRESSURE | PROTEIN | MOLTEN GLOBULE STATE | BIOCHEMISTRY & MOLECULAR BIOLOGY | INFRARED-SPECTROSCOPY | LOOP STRUCTURES | DISSOCIATION | BETA-LACTAMASE | FV FRAGMENTS | SECONDARY STRUCTURE | SECRETION | camel heavy-chain antibodies | Protein Structure, Tertiary | Amino Acid Sequence | Immunoglobulin Fragments - chemistry | Camelus | beta-Lactamases - immunology | Humans | Molecular Sequence Data | Spectrometry, Fluorescence | Hot Temperature | Spectroscopy, Fourier Transform Infrared | Protein Folding | Bacterial Proteins | Muramidase - immunology | Camelids, New World | Animals | Immunoglobulin Fragments - immunology | Protein Denaturation | Protein Conformation
Journal Article
Journal of Physics Condensed Matter, ISSN 0953-8984, 11/2015, Volume 28, Issue 1, p. 015005
Changes in the reflection anisotropy (RAS) profile of the Au(1 1 0)-(1 x 3)/Na2SO4 interface over 25 h are attributed to the slow accumulation of impurities on... 
reconstructions | reflection anisotropy spectroscopy | GOLD | PHYSICS, CONDENSED MATTER | OPTICAL-RESPONSE | Reduction | Stability | Fermi level | Impurities | Band structure of solids | Fermi surfaces | Condensed matter | Reflection
Journal Article
Journal of polymer science. Part A, Polymer chemistry, ISSN 0887-624X, 2019, Volume 57, Issue 5, pp. 598 - 604
...). The relative abundance of the PAr4+ units in each PEN was demonstrated to influence thermal stability, alkaline stability, water uptake, surface area, and CO2 uptake in predictable ways... 
surface area | alkaline stability | phosphonium polymer | structure–property relationship | Network | thermal stability | covalent organic framework | POLYPHENYLENES | POLYMER SCIENCE | structure-property relationship | MICROPOROSITY | POROUS POLYMERS | GAS | IONIC LIQUIDS | Toluene | Carbon dioxide | Polyelectrolytes | Surface stability | Sulfonic acid | Thermal stability | Pens | Sodium hydroxide
Journal Article
Angewandte Chemie International Edition, ISSN 1433-7851, 02/2016, Volume 55, Issue 9, pp. 3054 - 3057
Journal Article