Contact Electrification and Adhesion Between Dissimilar Materials

Simultaneous measurements of surface force and surface charge demonstrate strong attraction due to the spontaneous transfer of electrical charge from one smooth insulator (mica) to another (silica) as a result of simple, nonsliding contact in dry nitrogen. The measured surface charge densities are 5...

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Published inScience (American Association for the Advancement of Science) Vol. 256; no. 5055; pp. 362 - 364
Main Authors Horn, Roger G., Smith, Douglas T.
Format Journal Article
LanguageEnglish
Published Washington, DC American Society for the Advancement of Science 17.04.1992
American Association for the Advancement of Science
The American Association for the Advancement of Science
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Abstract Simultaneous measurements of surface force and surface charge demonstrate strong attraction due to the spontaneous transfer of electrical charge from one smooth insulator (mica) to another (silica) as a result of simple, nonsliding contact in dry nitrogen. The measured surface charge densities are 5 to 20 millicoulombs per square meter after contact. The work required to separate the charged surfaces is typically 6 to 9 joules per square meter, comparable to the fracture energies of ionic-covalent materials. Observation of partial gas discharges when the surfaces are approximately 1 micrometer apart gives valuable insight into the charge separation processes underlying static electrical phenomena in general.
AbstractList Simultaneous measurements of surface force and surface charge demonstrate strong attraction due to the spontaneous transfer of electrical charge from one smoothe insulator (mica) to another (silica) as a result of simple, nonsliding contact in dry nitrogen.
Simultaneous measurements of surface force and surface charge demonstrate strong attraction due to the spontaneous transfer of electrical charge from one smooth insulator (mica) to another (silica) as a result of simple, nonsliding contact in dry nitrogen. The measured surface charge densities are 5 to 20 millicoulombs per square meter after contact. The work required to separate the charged surfaces is typically 6 to 9 joules per square meter, comparable to the fracture energies of ionic-covalent materials. Observation of partial gas discharges when the surfaces are approximately 1 micrometer apart gives valuable insight into the charge separation processes underlying static electrical phenomena in general.
Simultaneous measurements of surface force and surface charge demonstrate strong attraction due to the spontaneous transfer of electrical charge from one smooth insulator (mica) to another (silica) as a result of simple, nonsliding contact in dry nitrogen. The measured surface charge densities are 5 to 20 millicoulombs per square meter after contact. The work required to separate the charged surfaces is typically 6 to 9 joules per square meter, comparable to the fracture energies of ionic-covalent materials. Observation of partial gas discharges when the surfaces are approximately 1 micrometer apart gives valuable insight into the charge separation processes underlying static electrical phenomena in general. (Author)
Audience Academic
Author Smith, Douglas T.
Horn, Roger G.
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  fullname: Horn, Roger G.
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  givenname: Douglas T.
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  fullname: Smith, Douglas T.
BackLink http://pascal-francis.inist.fr/vibad/index.php?action=getRecordDetail&idt=5289771$$DView record in Pascal Francis
https://www.ncbi.nlm.nih.gov/pubmed/17743112$$D View this record in MEDLINE/PubMed
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Issue 5055
Keywords Attraction interaction
Mean free path
Dielectric materials
Solid solid interface
Spontaneous
Elastic deformation
Experimental study
Adhesion
Inorganic compound
Charge density
Energy gap
Silicon Oxides
Electrostatic electrification
Charge transfer
Mica
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References (e_1_2_1_9_1) 1987; 36
(e_1_2_1_7_1) 1987; 115
(e_1_2_1_18_1) 1990; 5
(e_1_2_1_13_1) 1971; 325
(e_1_2_1_16_1) 1990; 170
(e_1_2_1_10_1) 1989; 23
(e_1_2_1_5_1) 1991; 30
(e_1_2_1_3_1) 1976; 9
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(e_1_2_1_17_1) 1988; 53
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Snippet Simultaneous measurements of surface force and surface charge demonstrate strong attraction due to the spontaneous transfer of electrical charge from one...
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SubjectTerms Adhesion
Adhesion (Surface chemistry)
Charge density
Chemistry
Condensed matter: electronic structure, electrical, magnetic, and optical properties
Electricity
Electrification
Electrodes
Electrometers
Electronic structure and electrical properties of surfaces, interfaces, thin films and low-dimensional structures
Electronic transport in interface structures
Electrostatics
Exact sciences and technology
Mica
Micrometers
Nitrogen
Physics
Reprography
Silver
Title Contact Electrification and Adhesion Between Dissimilar Materials
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