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The history of the liquid-liquid interface on the earth might be as
old as that of the liquid. It is plausible that the generation of
the primitive cell membrane is responsible for an accidental advent
of the oldest liquid interfaces, since various compounds can be
concentrated by an adsorption at the interface. The presence of
liquid-liquid interface means that real liquids are far from ideal
liquids that must be miscible with any kinds of liquids and have no
interface. Thus it can be said that the non-ideality of liquids
might generate the liquid-liquid interface indeed and that
biological systems might be generated from the non-ideal interface.
The liquid-liquid interface has been, therefore, studied as a model
of biological membrane. From pairing two-phases of gas, liquid and
solid, nine different pairs can be obtained, which include three
homo-pairs of gas-gas, liquid-liquid and solid-solid pairs. The
gas-gas interface, however, is practically no use under the
ordinary conditions. Among the interfaces produced by the pairing,
the liquid-liquid interface is most slippery and difficult to be
studied experimentally in comparison with the gas-liquid and
solid-liquid interfaces, as the liquid-liquid interface is
flexible, thin and buried between bulk liquid phases. Therefore, in
order to study the liquid-liquid interface, the invention of
innovative measurement methods has a primary importance.
The history of the liquid-liquid interface on the earth might be as
old as that of the liquid. It is plausible that the generation of
the primitive cell membrane is responsible for an accidental advent
of the oldest liquid interfaces, since various compounds can be
concentrated by an adsorption at the interface. The presence of
liquid-liquid interface means that real liquids are far from ideal
liquids that must be miscible with any kinds of liquids and have no
interface. Thus it can be said that the non-ideality of liquids
might generate the liquid-liquid interface indeed and that
biological systems might be generated from the non-ideal interface.
The liquid-liquid interface has been, therefore, studied as a model
of biological membrane. From pairing two-phases of gas, liquid and
solid, nine different pairs can be obtained, which include three
homo-pairs of gas-gas, liquid-liquid and solid-solid pairs. The
gas-gas interface, however, is practically no use under the
ordinary conditions. Among the interfaces produced by the pairing,
the liquid-liquid interface is most slippery and difficult to be
studied experimentally in comparison with the gas-liquid and
solid-liquid interfaces, as the liquid-liquid interface is
flexible, thin and buried between bulk liquid phases. Therefore, in
order to study the liquid-liquid interface, the invention of
innovative measurement methods has a primary importance.
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