Research Faculty and Graduate School of Agriculture, Hokkaido University, Sapporo, Japan.
Research Center for Global Agromedicine, Obihiro University of Agriculture and Veterinary Medicine, Obihiro, Japan.
Adv Exp Med Biol. 2018;1081:289-320. doi: 10.1007/978-981-13-1244-1_16.
Studies on supercooling-promoting substances (SCPSs) are reviewed introducing name of chemicals, experimental conditions and the supercooling capability (SCC) in all, so far recognized, reported SCPSs and results of our original study are presented in order to totally show the functional properties of SCPSs which are known in the present state. Many kinds of substances have been identified as SCPSs that promote supercooling of aqueous solutions in a non-colligative manner by reducing the ice nucleation capability (INC) of ice nucleators (INs). The SCC as revealed by reduction of freezing temperature (°C) by SCPSs differs greatly depending on the INs. While no single SCPS that affects homogeneous ice nucleation to reduce ice nucleation point has been found, many SCPSs have been found to reduce freezing temperatures by heterogeneous ice nucleation with a large fluctuation of SCC depending on the kind of heterogeneous IN. Not only SCPSs increase the degree of SCC (°C), but also some SCPSs have additional SCC to stabilize a supercooling state for a long term to stabilize supercooling against strong mechanical disturbance and to reduce sublimation of ice crystals. The mechanisms underlying the diverse functions of SCPSs remain to be determined in future studies.
研究过的过冷促进物质 (SCPSs) 被综述,介绍了迄今为止所有被识别和报道的 SCPSs 的化学物质名称、实验条件和过冷能力 (SCC),并呈现了我们原创研究的结果,以全面展示目前已知的 SCPSs 的功能特性。许多物质已被鉴定为非共混方式促进水溶液过冷的 SCPSs,通过降低冰核(INs)的成冰能力(INC)。由 SCPSs 降低冰点所揭示的 SCC 因 INs 而异。虽然尚未发现任何单一的 SCPS 可以影响均相成核以降低冰核点,但已经发现许多 SCPSs 可以通过异质成核降低冰点,SCC 波动很大,取决于异质 IN 的种类。不仅 SCPSs 增加了 SCC(°C)的程度,而且一些 SCPSs 还有额外的 SCC 来稳定过冷状态,以抵抗强烈的机械干扰,减少冰晶的升华。未来的研究仍需确定 SCPSs 多样化功能的潜在机制。