The invention discloses a method for carrying out deceleration and monomolecular capture on a
nucleic acid molecule based on a
solid-state nano hole. The method comprises the following steps of: adding the
nucleic acid molecule to be measured into a nano hole sequencing device filled with an
electrolyte, wherein the nano hole sequencing device comprises an electrolytic bath provided with an
anode and a
cathode, and a
solid-state nano hole thin film for separating the
anode of the electrolytic bath from the
cathode of the electrolytic bath; placing the
nucleic acid molecule in a positive chamber of the electrolytic bath; during measurement, introducing a pressure
external field into the positive chamber as a driving
external field for the perforation of the
nucleic acid molecule; applying a
voltage between the
anode and the
cathode as an
electric field external field reverse to the pressure external field; and in a measurement process, enabling the acting force of the pressure external field, from which the
nucleic acid molecule is suffered in the nano hole to be more than or approximately equal to
electric field force according to a deceleration purpose or a capture purpose to be realized by the method. By using the method, on the premise that the
signal-to-
noise ratio of a measurement
signal is not decreased, the speed at which
a DNA (deoxyribonucleic acid) molecule penetrates through a nano hole device can be effectively decreased, and a perforation speed can be slowed down for above one
order of magnitude.