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The effects of interaction between the materials and substrate on mechanical properties were investigated.
The effects of interaction between the materials and substrate on reinforcement properties were investigated.
Therefore, it is important to study the interaction between the materials and substrate with templates for investigating the mechanism of synthesis process and improvement of mechanical properties [8].
Because of the good connection between the active materials and substrate, the obtained CC/NiO/MnO2 hybrid structure can be directly used as a binder-free electrode for SC to estimate its electrochemical properties.
The nanosheet array could not only provide large surface area and a close contact between the active materials and substrate, but also effectively weaken the agglomeration and restacking problems during the electrochemical reaction, ensuring the high rate and long-life.
This unique structured nickel current collector is electrodeposited in a simple process to create a complex high surface area conductive substrate, as well as to enhance the interfacial strength between active materials and substrate during cyclic lithiation/delithiation.
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This chapter also examines emerging approaches that include nanocomposite polymers, devices that integrate process-incompatible materials, and substrates made from dissolvable polymers.
The self-assembly of n-alkyl chains at the bulk or at the interface of different types of materials and substrates has been extensively studied in the past.
The energy density per total mass of all the active materials and substrates is fantastically high, 40 Wh kg−1, which is of great practical importance in applications.
Moreover polymer electro-optic devices have been extensively studied and explored due to its intrinsic advantages over conventional materials such as high speed operation, compatibility with other materials and substrates.
This is because while the phenomenological coupling between materials and substrates has been well investigated and has yielded methodologies for biomaterial synthesis, the underlying mechanisms of self-assembly and growth are not fully understood.
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