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Received January 6, 2005
Accepted October 10, 2005
articles This is an Open-Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/bync/3.0) which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
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A study on the application of UV curing ink with sulfonate type acid amplifier

Dept. of Image Printing, Incheon City College, Korea 1Division of Image & Information Engineering, Pukyong Nationl University, Busan 608-739, Korea 2Division of Applied Chemical Engineering, College of Engineering, Pukyong Nationl University, Busan 608-739, Korea
mocja@chol.com
Korean Journal of Chemical Engineering, March 2006, 23(2), 309-316(8), 10.1007/BF02705733
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Abstract

In this paper, both mono-type: 4-hydroxycyclohexyl-4-vinylbenzenesulfonate(CHDv-m), 4-(4-hydroxy-cyclohexyl) cyclohexyl-4-vinylbenzenesulfonate(BCDv-m), 4-(2-(4-hydroxycyclohexyl)propan-2-yl)-cyclohexyl-4-vinyl-benzenesulfonate(IPDHv-m), 4-hydroxycyclohexyl-4-methylbenzenesulfonate(CHDp-m), 4-(4-hydroxycyclohexyl)-cyclo-hexyl-4-methylbenzenesulfonate(BCDp-m) and 4-(2-(4-hydroxycyclohexyl)propan-2-yl)-cyclohexyl-4-methylbenzene-sulfonate(IPDHp-m) and di-type: 4,4'-di(vinylbenzenesulfonatyl)-cyclohexane(CHDv-d), 4,4'-di(vinylbenzenesulfonatyl)-1,1'-bicyclohexane(BCDv-d), 4,4'-di(vinlylbenzenesulfonatyl)-isopropylidene-dicyclohexane(IPDHv-d), 1,4-ditosyloxycyclohexane(CHDp-d), 4,4'-ditosyloxy-1,1'-bicyclohexane(BCDp-d) and 4,4'-ditosyloxy isopropylidene dicyclohexane(IPDHp-d) acid amplifiers were synthesized. Their properties were characterized by 1HNMR and DSC measurements.UV curing properties of samples prepared by using novel acid amplifiers were examined by measuring the change ofcurrent according to UV radiation time and intensity. Also, the application of acid amplifiers to UV inks was suggested.It was found that UV vehicles and inks with acid amplifier of 4-4'di(vinylbenzenesulfonatyl)-cyclohexane(CHDv-d) hada more rapid degree of curing than other samples.

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