国产三级在线看完整版-内射白嫩大屁股在线播放91-欧美精品国产精品综合-国产精品视频网站一区-一二三四在线观看视频韩国-国产不卡国产不卡国产精品不卡-日本岛国一区二区三区四区-成年人免费在线看片网站-熟女少妇一区二区三区四区

儀器網(wǎng)(yiqi.com)歡迎您!

| 注冊2 登錄
網(wǎng)站首頁-資訊-話題-產(chǎn)品-評測-品牌庫-供應商-展會-招標-采購-知識-技術(shù)-社區(qū)-資料-方案-產(chǎn)品庫-視頻

應用方案

儀器網(wǎng)/ 應用方案/ High H2 Adsorption by Coordination-Framework Materia

立即掃碼咨詢

聯(lián)系方式:010-52722415

聯(lián)系我們時請說明在儀器網(wǎng)(www.sdczts.cn)上看到的!

掃    碼    分   享
The storage of H2 in a safe and compact form represents a significant current challenge,[1] and there is wide-ranging interest in materials that can store and release H2 with fast kinetics and high reversibility over multiple cycles.[2] Porous coordination frameworks have become competitors to other porous materials, such as zeolites[3] and carbon materials (for example, activated carbon or nanotubes),[4] with recent studies confirming that these frameworks can store considerable quantities of H2 at 78 K.[511] Most studies of H2 adsorption in coordination frameworks focus on the lowpressure region (01 bar) and, therefore, do not fully address the relationship between porosity and storage capacity. Although recent high-pressure volumetric measurements on some coordination frameworks revealed a correlation between maximum uptake and surface area,[9] the study involved several coordination frameworks with different structure types, and the influence of pore size and shape on guest adsorption was not investigated systematically. Herein, we report the structures of three close structural analogues, along with studies of high-pressure H2 adsorption by these materials, to establish a route to higher H2 storage capacity. 智能重量法吸附分析儀

參與評論

全部評論(0條)

推薦方案

在線留言

上傳文檔或圖片,大小不超過10M
換一張?
取消