Friction-Lead Confined Interface Catalysis for 2D Material Growth for Superlubricity of a-C (Paperback)

Qian Jia

ISBN 10: 9999325742 ISBN 13: 9789999325745
Published by Eliva Press, 2025
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Paperback. Superlubricity specifically refers to the phenomenon where friction vanishes, and experimentally, the state where the coefficient of friction approaches zero is termed superlubricity. This revolutionary technology implies near-zero friction and near-zero wear. Addressing the challenge of achieving superlubricity over sub-millimeter scales with two-dimensional materials, the authors propose a novel approach of in situ growth of two-dimensional materials at the friction interface to achieve superlubricity. Based on this, they introduce for the first time the concept of friction-induced interface-confined catalytic generation of two-dimensional materials to realize superlubricity. This book briefly introduces noble metals/hydrogenated amorphous carbon, molybdenum disulfide/hydrogenated amorphous carbon, ammonium thiomolybdate/hydrogenated amorphous carbon, and other multilayer structures based on this concept, achieving in situ growth of two-dimensional materials at the friction interface and superlubricity on steel surfaces from various perspectives. This item is printed on demand. Shipping may be from our Sydney, NSW warehouse or from our UK or US warehouse, depending on stock availability. Seller Inventory # 9789999325745

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Superlubricity specifically refers to the phenomenon where friction vanishes, and experimentally, the state where the coefficient of friction approaches zero is termed superlubricity. This revolutionary technology implies near-zero friction and near-zero wear. Addressing the challenge of achieving superlubricity over sub-millimeter scales with two-dimensional materials, the authors propose a novel approach of in situ growth of two-dimensional materials at the friction interface to achieve superlubricity. Based on this, they introduce for the first time the concept of friction-induced interface-confined catalytic generation of two-dimensional materials to realize superlubricity. This book briefly introduces noble metals/hydrogenated amorphous carbon, molybdenum disulfide/hydrogenated amorphous carbon, ammonium thiomolybdate/hydrogenated amorphous carbon, and other multilayer structures based on this concept, achieving in situ growth of two-dimensional materials at the friction interface and superlubricity on steel surfaces from various perspectives.

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Title: Friction-Lead Confined Interface Catalysis ...
Publisher: Eliva Press
Publication Date: 2025
Binding: Paperback
Condition: new

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Jia, Qian (Author)/ Zhang, Bin (Author)
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Paperback. Condition: new. Paperback. Superlubricity specifically refers to the phenomenon where friction vanishes, and experimentally, the state where the coefficient of friction approaches zero is termed superlubricity. This revolutionary technology implies near-zero friction and near-zero wear. Addressing the challenge of achieving superlubricity over sub-millimeter scales with two-dimensional materials, the authors propose a novel approach of in situ growth of two-dimensional materials at the friction interface to achieve superlubricity. Based on this, they introduce for the first time the concept of friction-induced interface-confined catalytic generation of two-dimensional materials to realize superlubricity. This book briefly introduces noble metals/hydrogenated amorphous carbon, molybdenum disulfide/hydrogenated amorphous carbon, ammonium thiomolybdate/hydrogenated amorphous carbon, and other multilayer structures based on this concept, achieving in situ growth of two-dimensional materials at the friction interface and superlubricity on steel surfaces from various perspectives. This item is printed on demand. Shipping may be from multiple locations in the US or from the UK, depending on stock availability. Seller Inventory # 9789999325745

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Paperback. Condition: new. Paperback. Superlubricity specifically refers to the phenomenon where friction vanishes, and experimentally, the state where the coefficient of friction approaches zero is termed superlubricity. This revolutionary technology implies near-zero friction and near-zero wear. Addressing the challenge of achieving superlubricity over sub-millimeter scales with two-dimensional materials, the authors propose a novel approach of in situ growth of two-dimensional materials at the friction interface to achieve superlubricity. Based on this, they introduce for the first time the concept of friction-induced interface-confined catalytic generation of two-dimensional materials to realize superlubricity. This book briefly introduces noble metals/hydrogenated amorphous carbon, molybdenum disulfide/hydrogenated amorphous carbon, ammonium thiomolybdate/hydrogenated amorphous carbon, and other multilayer structures based on this concept, achieving in situ growth of two-dimensional materials at the friction interface and superlubricity on steel surfaces from various perspectives. This item is printed on demand. Shipping may be from our UK warehouse or from our Australian or US warehouses, depending on stock availability. Seller Inventory # 9789999325745

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Taschenbuch. Condition: Neu. Friction-Lead Confined Interface Catalysis for 2D Material Growth for Superlubricity of a-C | H films | Qian Jia | Taschenbuch | Englisch | 2025 | Eliva Press | EAN 9789999325745 | Verantwortliche Person für die EU: Libri GmbH, Europaallee 1, 36244 Bad Hersfeld, gpsr[at]libri[dot]de | Anbieter: preigu Print on Demand. Seller Inventory # 134143514

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Taschenbuch. Condition: Neu. This item is printed on demand - Print on Demand Titel. Neuware -Superlubricity specifically refers to the phenomenon where friction vanishes, and experimentally, the state where the coefficient of friction approaches zero is termed superlubricity. This revolutionary technology implies near-zero friction and near-zero wear. Addressing the challenge of achieving superlubricity over sub-millimeter scales with two-dimensional materials, the authors propose a novel approach of in situ growth of two-dimensional materials at the friction interface to achieve superlubricity. Based on this, they introduce for the first time the concept of friction-induced interface-confined catalytic generation of two-dimensional materials to realize superlubricity. This book briefly introduces noble metals/hydrogenated amorphous carbon, molybdenum disulfide/hydrogenated amorphous carbon, ammonium thiomolybdate/hydrogenated amorphous carbon, and other multilayer structures based on this concept, achieving in situ growth of two-dimensional materials at the friction interface and superlubricity on steel surfaces from various perspectives.Libri GmbH, Europaallee 1, 36244 Bad Hersfeld 124 pp. Englisch. Seller Inventory # 9789999325745

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