DNA carrier, method of producing the same and collection system using the same
A carrier and porous matrix technology, applied in the field of DNA carriers, can solve the problems of insufficient DNA capacity and small DNA exposure area.
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Synthetic example 1
[0053] 40 g of N,N-dimethylaminopropyltrimethoxysilane (207.34→138.34) was added dropwise to 200 g of distilled water and hydrolyzed at room temperature for 3 days. The resulting oligomer solution was concentrated at 60°C with an evaporator. Thereafter, 80 g of distilled water was added thereto to obtain about 180 g of a basic functional group-bearing siloxane solution (N1) with a solid content of 14.8%.
Synthetic example 2
[0055] 40 g of N-methylaminopropyltrimethoxysilane (193.32→124.32) was added dropwise to 200 g of distilled water and hydrolyzed at room temperature for 3 days. The resulting oligomer solution was concentrated at 60°C with an evaporator. Thereafter, 70 g of distilled water was added thereto to obtain 170 g of a basic functional group-bearing siloxane solution (N2) having a solid concentration of about 15.1%.
Synthetic example 3
[0057] 40 grams of organosilica compounds (262.32 → 193.32) represented by the following formula:
[0058] Chemical formula (7)
[0059]
[0060] 200 g of distilled water was added dropwise and hydrolyzed at room temperature for 3 days.
[0061] The resulting oligomer solution was concentrated at 60°C with an evaporator. Thereafter, 70 g of distilled water was added thereto to obtain about 200 g of a siloxane solution (N3) having a basic functional group with a solid content concentration of 14.7%.
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