Bonding type vertical semiconductor devices
A vertical semiconductor device includes; a pattern structure including a plurality of insulation patterns and a plurality of gate electrodes that are alternately and repeatedly stacked on a substrate, wherein the pattern structure includes a first gate electrode serving as a gate electrode of an erase transistor, wherein the first gate electrode is one of the plurality of gate electrodes; and a channel structure in a channel hole passing through the pattern structure, wherein the channel structure includes a data storage structure, a first channel, an undoped semiconductor liner, a doped semiconductor pattern, a filling insulation pattern and a capping pattern, wherein the data storage structure, the first channel, the undoped semiconductor liner, and the doped semiconductor pattern are sequentially disposed on a sidewall of the first gate electrode.
1 . A vertical semiconductor device, comprising:
a pattern structure including a plurality of insulation patterns and a plurality of gate electrodes that are alternately and repeatedly stacked on a substrate, wherein the pattern structure includes a first gate electrode serving as a gate electrode of an erase transistor, wherein the first gate electrode is one of the plurality of gate electrodes,
a channel structure in a channel hole passing through the pattern structure, wherein the channel structure includes a data storage structure, a first channel, an undoped semiconductor liner, a doped semiconductor pattern, a filling insulation pattern and a capping pattern; and
an upper base pattern including doped poly silicon disposed on the pattern structure, and wherein the upper base pattern contacts the first channel, the doped semiconductor pattern, the undoped semiconductor liner and an uppermost insulation pattern,
wherein the doped semiconductor pattern has a pillar shape, and the undoped semiconductor liner surrounds an outer sidewall and bottom of the doped semiconductor pattern,
wherein a vertical portion of the undoped semiconductor liner contacts the first channel and a horizontal portion of the undoped semiconductor liner contacts the filling insulation pattern, and
wherein the data storage structure, the first channel, the undoped semiconductor liner, and the doped semiconductor pattern are sequentially disposed on a sidewall of the first gate electrode.
2 . The vertical semiconductor device of claim 1 , wherein the first gate electrode is positioned at an uppermost position among the plurality of gate electrodes included in the pattern structure.
3 . The vertical semiconductor device of claim 1 , wherein the doped semiconductor pattern includes polysilicon doped with N-type impurities, and the undoped semiconductor liner includes polysilicon undoped with impurities.
4 . The vertical semiconductor device of claim 1 , wherein a lower surface of a second channel including the undoped semiconductor liner and the doped semiconductor pattern is positioned at a vertical level between the first gate electrode and a second gate electrode, of the plurality of gate electrodes, vertically adjacent to the first gate electrode.
5 . The vertical semiconductor device of claim 1 , wherein the first channel includes polysilicon undoped with impurities.
6 . The vertical semiconductor device of claim 1 , wherein sidewalls of the plurality of gate electrodes face the data storage structure and the first channel in the channel structure.
7 . A vertical semiconductor device, comprising:
lower circuit patterns disposed on a first substrate;
a lower insulating interlayer covering the lower circuit patterns;
a pattern structure disposed on the lower insulating interlayer, wherein the pattern structure includes a plurality of insulation patterns and a plurality of gate electrodes alternately and repeatedly stacked in a vertical direction that is substantially perpendicular to an upper surface of the first substrate, and wherein the pattern structure includes a first gate electrode serving as a gate electrode of an erase transistor, wherein the first gate electrode is one of the plurality of gate electrodes;
an insulating interlayer disposed on the lower insulating interlayer, and covering a lower portion of the pattern structure;
a channel structure in each of channel holes that are passing through the pattern structure; and
an upper base pattern including doped poly silicon disposed on the pattern structure, wherein the upper base pattern contacts a first channel, a doped semiconductor pattern, an undoped semiconductor liner and an uppermost insulation pattern,
wherein the channel structure includes:
a data storage structure and the first channel sequentially stacked on a sidewall of each of the channel holes;
the undoped semiconductor liner and the doped semiconductor pattern disposed on the first channel and facing a sidewall of the first gate electrode; and
a filling insulation pattern contacting the first channel, the undoped semiconductor liner and the doped semiconductor pattern, and wherein the filling insulation pattern is disposed in each of the channel holes,
wherein the doped semiconductor pattern has a pillar shape, and the undoped semiconductor liner surrounds an outer sidewall and bottom of the doped semiconductor pattern, and
wherein a vertical portion of the undoped semiconductor liner contacts the first channel and a horizontal portion of the undoped semiconductor liner contacts a filling insulation pattern.
8 . The vertical semiconductor device of claim 7 , wherein the first gate electrode is positioned at an uppermost position among the plurality of gate electrodes included in the pattern structure.
9 . The vertical semiconductor device of claim 7 , wherein the doped semiconductor pattern includes polysilicon doped with N-type impurities, and the undoped semiconductor liner includes polysilicon undoped with impurities.
10 . The vertical semiconductor device of claim 7 , wherein a lower surface of a second channel including the undoped semiconductor liner and the doped semiconductor pattern contacts an upper surface of the filling insulation pattern, and
wherein the lower surface of a second channel is positioned at a vertical level between the first gate electrode and a second gate electrode, of the plurality of gate electrodes, vertically adjacent to the first gate electrode.
11 . The vertical semiconductor device of claim 7 , wherein each of the data storage structure and the first channel have a cylindrical shape including openings at a top and a bottom thereof.
12 . The vertical semiconductor device of claim 7 , wherein the data storage structure, the first channel, the undoped semiconductor liner, and the doped semiconductor pattern are exposed on the upper surface of the channel structure.
13 . The vertical semiconductor device of claim 7 , wherein the undoped semiconductor liner has a thickness of about 3 nm to about 10 nm.
14 . The vertical semiconductor device of claim 7 , wherein a doping concentration of a region of the doped semiconductor pattern that is adjacent to a boundary between the undoped semiconductor liner and the doped semiconductor pattern is less than 2×1019/cm3.
15 . A vertical semiconductor device, comprising:
lower circuit patterns formed on a first substrate;
a bonding layer disposed on the lower circuit patterns;
wiring disposed on the bonding layer;
a pattern structure disposed on the wiring, wherein the pattern structure includes a plurality of insulation patterns and a plurality of gate electrodes alternately and repeatedly stacked in a vertical direction that is substantially perpendicular to an upper surface of the first substrate, and the pattern structure extends in a first direction parallel to the upper surface of the first substrate, wherein a sidewall of the pattern structure has a stepped shape;
an upper base pattern including poly silicon disposed on the pattern structure; and
a channel structure disposed in a channel hole that is passing through the pattern structure, and the channel structure contacts the upper base pattern,
wherein the plurality of gate electrodes, which are included in the pattern structure, includes a first gate electrode disposed at an uppermost position among the plurality of gate electrodes, and a plurality of second gate electrodes, of the plurality of gate electrodes, is disposed below the first gate electrode,
wherein the channel structure includes a data storage structure, a first channel, an undoped semiconductor liner, and a doped semiconductor pattern sequentially disposed to face a sidewall of the first gate electrode,
wherein the upper base pattern contacts the first channel, the doped semiconductor pattern, the undoped semiconductor liner and an uppermost insulation pattern,
wherein the doped semiconductor pattern has a pillar shape, and the undoped semiconductor liner surrounds an outer sidewall and bottom of the doped semiconductor pattern, and
wherein a vertical portion of the undoped semiconductor liner contacts the first channel and a horizontal portion of the undoped semiconductor liner contacts a filling insulation pattern.