{"id":4975,"date":"2019-11-27T00:57:00","date_gmt":"2019-11-26T23:57:00","guid":{"rendered":"https:\/\/www.sonnenseite.com\/science\/small-fast-and-highly-energy-efficient-memory-device-inspired-by-lithium-ion-batteries.html"},"modified":"2019-11-27T00:57:00","modified_gmt":"2019-11-26T23:57:00","slug":"small-fast-and-highly-energy-efficient-memory-device-inspired-by-lithium-ion-batteries","status":"publish","type":"post","link":"https:\/\/www.sonnenseite.com\/en\/science\/small-fast-and-highly-energy-efficient-memory-device-inspired-by-lithium-ion-batteries\/","title":{"rendered":"Small, fast, and highly energy-efficient memory device inspired by lithium-ion batteries"},"content":{"rendered":"<p>Scientists at the Tokyo Institute of Technology (Tokyo Tech) and the University of Tokyo (UTokyo) developed a new three-valued memory device inspired by solid lithium-ion batteries. The proposed device, which has an extremely low energy consumption, may be key for the development of more energy-efficient and faster random-access memories (RAMs), which are ubiquitous in modern computers.<\/p>\n<p> <!--more--> <\/p>\n<p class=\"mb20\">Virtually all digital devices that perform any sort of  processing of information require not only a processing unit, but also a  quick memory that can temporarily hold the inputs, partial results, and  outputs of the operations performed. In computers, this memory is  referred to as dynamic random-access memory, or DRAM. The speed of DRAM  is very important and can have a significant impact in the overall speed  of the system. In addition, lowering the energy consumption of memory  devices has recently become a hot topic to achieve highly  energy-efficient computing. Therefore, many studies have focused on  testing out new memory technologies to surpass the performance of  conventional DRAM.<\/p>\n<p class=\"mb20\">The most basic unit in a memory chip are its memory  cells. Each cell typically stores a single bit by adopting and holding  one of two possible voltage values, which correspond to a stored value  of either &#8220;0&#8221; or &#8220;1&#8221;. The characteristics of the individual cell largely  determine the performance of the overall memory chip. Simpler and  smaller cells with high speed and low energy consumption would be ideal  to take highly efficient computing to the next level.<\/p>\n<p class=\"mb20\">A research team from Tokyo Tech led by Prof. Taro  Hitosugi and student Yuki Watanabe recently reached a new milestone in  this area. These researchers had previously developed a novel memory  device inspired by the design of solid lithium-ion batteries. It  consisted of a stack of three solid layers made of lithium, lithium  phosphate, and gold. This stack is essentially a miniature low-capacity  battery that functions as a memory cell; it can be quickly switched  between charged and discharged states that represent the two possible  values of a bit. However, gold combines with lithium to form a thick  alloy layer, which increases the amount of energy required to switch  from one state to the other.<\/p>\n<p class=\"mb20\">In their latest study, the researchers created a similar  three-layer memory cell using nickel instead of gold. They expected  better results using nickel because it does not easily form alloys with  lithium, which would lead to lower energy consumption when switching.  The memory device they produced was much better than the previous one;  it could actually hold three different voltage states instead of two,  meaning that it is a three-valued memory device. &#8220;This system can be  viewed as an extremely low-capacity thin-film lithium battery with three  charged states,&#8221; explains Prof. Hitosugi. This is a very interesting  feature that has potential advantages for three-valued memory  implementations, which may be more area efficient.<\/p>\n<p class=\"mb20\">The researchers also found that nickel forms a very thin  nickel oxide layer between the Ni and the lithium phosphate layers (see  Fig. 1), and this oxide layer is essential for the low-energy switching  of the device. The oxide layer is much thinner than that of the  gold&ndash;lithium alloys that formed in their previous device, which means  that this new &#8220;mini-battery&#8221; cell has a very low capacity and is  therefore quickly and easily switched between states by applying  minuscule currents. &#8220;The potential for extremely low energy consumption  is the most noteworthy advantage of this device,&#8221; remarks Prof.  Hitosugi.<\/p>\n<p class=\"mb20\">Increased speed, lower energy consumption, and smaller  size are all highly demanded features in future memory devices. The  memory cell developed by this research team is a very promising stepping  stone toward much more energy-efficient and faster computing.<\/p>\n<div class=\"sectionLv4 mb30\">\n<p class=\"fwB\"><strong>Reference<\/strong><\/p>\n<table cellspacing=\"0\" cellpadding=\"0\" class=\"table_type02 mb10\">\n<tr>\n<td>Authors :<\/td>\n<td>Yuki Watanabe<sup>1*<\/sup>, Shigeru Kobayashi<sup>1<\/sup>, Issei Sugiyama<sup>1<\/sup>, Kazunori Nishio<sup>1<\/sup>, Wei Liu<sup>2<\/sup>, Satoshi Watanabe<sup>2<\/sup>, Ryota Shimizu<sup>1,3<\/sup>, and Taro Hitosugi<sup>1*<\/sup><\/td>\n<\/tr>\n<tr>\n<td>Title of original paper :<\/td>\n<td>Low Energy Consumption Three-Valued Memory Device Inspired by Solid-State Batteries<\/td>\n<\/tr>\n<tr>\n<td>Journal :<\/td>\n<td><em>ACS Applied Materials and Interfaces <\/em><\/td>\n<\/tr>\n<tr>\n<td>DOI :<\/td>\n<td><a href=\"https:\/\/dx.doi.org\/10.1021\/acsami.9b15366\" target=\"_blank\" rel=\"noopener noreferrer\">10.1021\/acsami.9b15366<\/a> <span class=\"ico_signage01\"><img loading=\"lazy\" decoding=\"async\" src=\"https:\/\/www.titech.ac.jp\/common\/img\/ico_window01.png\" alt=\"outer\" width=\"12\" height=\"9\" \/><\/span><\/td>\n<\/tr>\n<tr>\n<td>Affiliations :<\/td>\n<td>\n<div>\n<p><sup>1<\/sup>School of Materials and Chemical Technology, Tokyo Institute of Technology<\/p>\n<p><sup>2<\/sup>Department of Materials Engineering, The University of Tokyo<\/p>\n<p><sup>2<\/sup>PRESTO, Japan Science and Technology Agency<\/p>\n<\/p><\/div>\n<\/td>\n<\/tr>\n<\/table><\/div>\n<h5 class=\"green\">Source<\/h5>\n<p><a href=\"https:\/\/www.titech.ac.jp\/english\/news\/2019\/045714.html\" target=\"_blank\" rel=\"noopener noreferrer\">Tokoy Institute of Technology 2019<\/a><\/p>\n<div class=\"shariff shariff-align-flex-start shariff-widget-align-flex-start\"><div class=\"ShariffHeadline\">Diese Meldung teilen<\/div><ul class=\"shariff-buttons theme-round orientation-horizontal buttonsize-medium\"><li class=\"shariff-button facebook 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