Abstract:
A biodegradable polyester is provided. The biodegradable polyester is a transesterification or esterification reaction product of a reactant (a) and a reactant (b). The reactant (a) is a modified linear saccharide oligomer. The reactant (b) is a polyester, or the reactant (b) includes a dicarboxylic acid and a diol. The modified saccharide oligomer is a reaction product of a saccharide oligomer and a modifier.
Abstract:
The disclosed is a transparent conductive film and method for manufacturing the same. First, a substrate is provided. Subsequently, an inorganic layer composed of nano-inorganic compound is formed overlying the substrate. A carbon nanotube dispersion is then coated on the inorganic layer and dried to form a carbon nanotube conductive layer.
Abstract:
A composition and a material prepared from the composition are provided. The composition includes 50-99 parts by weight of a polyether polyol and 1-50 parts by weight of a compound having a structure represented by Formula (I) wherein R1 is C1-6 independent alkylene group; R2 is R3 is independently C1-6 alkylene group; i≥1; j≥0; k=0, 1, or 2; R4 is C1-24 alkyl group when k=1, or 2, or R4 is C6-24 alkyl group when k is 0; and B is independently
Abstract:
A modified metal nanoplate and a conductive paste including the same are provided. The modified metal nanoplate includes a metal nanoplate, a first protecting agent, and a second protecting agent. The metal nanoplate has an average width of 0.3-20 μm and an average thickness of 10-35 nm. The first protecting agent is disposed on a surface of the metal nanoplate and includes an oxygen-containing polymer. The second protecting agent is disposed on the surface of the metal nanoplate and includes a C6-C12 alkylamine.
Abstract:
Disclosed is a method of transferring a carbon conductive film, including: providing a first substrate, and forming an inorganic oxide layer on a surface of the first substrate, wherein the inorganic oxide layer has a total surface energy of 30 mJ/m2 to 75 mJ/m2, and a dispersive surface energy to the total surface energy ratio of 0.4 to 0.8. A carbon dispersion is coated on the inorganic oxide layer, and then dried to form a carbon conductive film on the inorganic oxide layer. The carbon conductive film is dipped into a solvent to separate the carbon conductive film and the inorganic oxide layer. The separated carbon conductive film is attached to a second substrate, thereby transferring the carbon conductive film onto the second substrate.
Abstract translation:公开了一种转移碳导电膜的方法,包括:提供第一衬底,并在第一衬底的表面上形成无机氧化物层,其中无机氧化物层的总表面能为30mJ / m 2至75mJ / m2,分散表面能相对于总表面能的比为0.4〜0.8。 将碳分散体涂覆在无机氧化物层上,然后干燥以在无机氧化物层上形成碳导电膜。 将碳导电膜浸入溶剂中以分离碳导电膜和无机氧化物层。 将分离的碳导电膜附接到第二基板,从而将碳导电膜转印到第二基板上。
Abstract:
A radiation absorbing material includes a carrier, and a heterogeneous element doped in the carrier. A content of the heterogeneous element in the carrier is higher than 15 atomic percent (at %).