[{"data":1,"prerenderedAt":129},["ShallowReactive",2],{"home-news-index":3,"home-express-news":39},[4,20,29],{"id":5,"category_id":6,"user_id":7,"article_status":8,"top_status":9,"recommended_status":9,"article_hits":10,"article_favorites":10,"article_like":10,"comment_count":10,"create_time":11,"update_time":11,"published_time":12,"delete_time":10,"article_title":13,"article_keywords":14,"article_excerpt":14,"aiticle_source":14,"image":15,"article_content":16,"author":14,"article_website":17,"yaunuo_sort":18,"space_sort":7,"mp_url":19,"achi_uid":14},858,27,1,"发布","0",0,1784801081,1784801008,"高校专利产业化率不足10%，五维拆解转化难的深层成因","","\u002Fuploads\u002F20251114\u002Fa6b60745ecbdb3e8926d94b7a3032403.png","\u003Cp>\u003Cspan style=\"color: #3E3E3E; font-family: &quot;PingFang SC NEW&quot;, system-ui, -apple-system, BlinkMacSystemFont, &quot;Helvetica Neue&quot;, &quot;Hiragino Sans GB&quot;, &quot;Microsoft YaHei UI&quot;, &quot;Microsoft YaHei&quot;, Arial, sans-serif; letter-spacing: 0.5px; text-align: justify; background-color: #FFFFFF;\">截至2025年底，\u003C\u002Fspan>\u003Cspan style=\"-webkit-tap-highlight-color: ; margin: 0px; padding: 0px; outline: 0px; max-width: 100%; font-family: &quot;PingFang SC NEW&quot;, system-ui, -apple-system, BlinkMacSystemFont, &quot;Helvetica Neue&quot;, &quot;Hiragino Sans GB&quot;, &quot;Microsoft YaHei UI&quot;, &quot;Microsoft YaHei&quot;, Arial, sans-serif; letter-spacing: 0.5px; text-align: justify; background-color: #FFFFFF; font-weight: 700; color: #0B3E9C; line-height: 2em; box-sizing: border-box !important; overflow-wrap: break-word !important;\">我国高校发明专利产业化率约为10%，科研机构约为17%，整体产业化比例仍处于较低水平\u003C\u002Fspan>\u003Cspan style=\"color: #3E3E3E; font-family: &quot;PingFang SC NEW&quot;, system-ui, -apple-system, BlinkMacSystemFont, &quot;Helvetica Neue&quot;, &quot;Hiragino Sans GB&quot;, &quot;Microsoft YaHei UI&quot;, &quot;Microsoft YaHei&quot;, Arial, sans-serif; letter-spacing: 0.5px; text-align: justify; background-color: #FFFFFF;\">。不少机构将失败简单归因于企业不愿投入、科研人员配合不够、专利质量欠佳等表层问题，这种个案归因遮蔽了更深层的结构性矛盾。技术转移是一条横跨科研、知识产权、产业市场、人才服务、组织制度和金融支撑的长链条，各环节相互关联、彼此放大，单一短板足以拖垮整条链路。\u003C\u002Fspan>\u003Cspan style=\"-webkit-tap-highlight-color: ; margin: 0px; padding: 0px; outline: 0px; max-width: 100%; font-family: &quot;PingFang SC NEW&quot;, system-ui, -apple-system, BlinkMacSystemFont, &quot;Helvetica Neue&quot;, &quot;Hiragino Sans GB&quot;, &quot;Microsoft YaHei UI&quot;, &quot;Microsoft YaHei&quot;, Arial, sans-serif; letter-spacing: 0.5px; text-align: justify; background-color: #FFFFFF; font-weight: 700; color: #0B3E9C; line-height: 2em; box-sizing: border-box !important; overflow-wrap: break-word !important;\">本文从供需错配、技术基础、服务体系断层等维度拆解转化困局的深层成因。\u003C\u002Fspan>\u003C\u002Fp>","yuannuo,space",99,"https:\u002F\u002Fmp.weixin.qq.com\u002Fs\u002F_geOn_qtFRwEThzetikb9w",{"id":21,"category_id":6,"user_id":7,"article_status":8,"top_status":9,"recommended_status":9,"article_hits":10,"article_favorites":10,"article_like":10,"comment_count":10,"create_time":22,"update_time":22,"published_time":23,"delete_time":10,"article_title":24,"article_keywords":14,"article_excerpt":14,"aiticle_source":14,"image":25,"article_content":26,"author":14,"article_website":17,"yaunuo_sort":18,"space_sort":27,"mp_url":28,"achi_uid":14},874,1786703992,1786703943,"陕西知识产权五年成绩单：46万件专利、250亿质押融资、全国第二有效发明占比","\u002Fuploads\u002F20260311\u002Ff54b116fa8b99c2dbca4fe01be243be2.png","\u003Cp>\u003Cspan style=\"color: #3E3E3E; 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font-family: &quot;PingFang SC NEW&quot;, system-ui, -apple-system, BlinkMacSystemFont, &quot;Helvetica Neue&quot;, &quot;Hiragino Sans GB&quot;, &quot;Microsoft YaHei UI&quot;, &quot;Microsoft YaHei&quot;, Arial, sans-serif; letter-spacing: 0.544px; text-align: justify; text-indent: 32px; background-color: #FFFFFF;\">在成人教育领域，学员多为在职人员，工学矛盾突出、管理效能不足、服务体验薄弱等问题长期制约教育质量发展——学员到校难、信息传递效率低、人工审核易出错、进度跟踪滞后、传统流程繁琐。西安铁路职业技术学院团队研发的“云端成人教育精准管理系统”，以轻量化、高性价比的数字化方案为核心，构建起覆盖招生、学籍、教学、毕业全流程的一站式数智化管理体系，真正实现“让数据多跑路，让学员少跑腿”。\u003C\u002Fspan>\u003C\u002Fp>","https:\u002F\u002Fmp.weixin.qq.com\u002Fs\u002FfMHCW4GVfXin3wEdJ_3UIQ","2e5ec0c7eff96f6bd9da4cb3cf212a09","https:\u002F\u002Fwww.yuanuo.com\u002Fapi\u002Fpublic\u002Fuploads\u002Fachieve_imgs\u002Fachievement_7692.png",{"id":80,"category_id":42,"user_id":7,"article_status":8,"top_status":9,"recommended_status":9,"article_hits":10,"article_favorites":10,"article_like":10,"comment_count":10,"create_time":81,"update_time":82,"published_time":83,"delete_time":10,"article_title":84,"article_keywords":14,"article_excerpt":14,"aiticle_source":14,"image":46,"article_content":85,"author":14,"article_website":17,"yaunuo_sort":18,"space_sort":18,"mp_url":86,"achi_uid":87,"result_photo":88},807,1780386278,1780639665,1779954101,"成果直通车丨高温电解水制氢系统：破解绿电消纳难题，领跑零碳制氢新赛道","\u003Cp>\u003Cspan style=\"color: #3E3E3E; font-family: &quot;PingFang SC&quot;, system-ui, -apple-system, BlinkMacSystemFont, &quot;Helvetica Neue&quot;, &quot;Hiragino Sans GB&quot;, &quot;Microsoft YaHei UI&quot;, &quot;Microsoft YaHei&quot;, Arial, sans-serif; letter-spacing: 0.544px; text-align: justify; background-color: #FFFFFF;\">在 “双碳” 目标全面推进的当下，可再生能源消纳已成为能源转型的核心痛点。我国风电、光伏装机量持续突破，但 “弃风弃光” 问题依旧突出，大量绿电无法高效利用。西安工程大学李青山副教授团队，深耕氢能领域十余年，研发面向绿电消纳的高温固体氧化物电解水制氢系统，以硬核技术打通 “绿电→氢能” 转化链路，为新能源高效利用提供全新解决方案！\u003C\u002Fspan>\u003C\u002Fp>","https:\u002F\u002Fmp.weixin.qq.com\u002Fs\u002FJ8EFwwyHWtiRJ7687Z-rzQ","96af3a137375130cb1e787bb05e27c16","https:\u002F\u002Fwww.yuanuo.com\u002Fapi\u002Fpublic\u002Fuploads\u002Fachieve_imgs\u002Fachievement_3107.jpg",{"id":90,"category_id":42,"user_id":7,"article_status":8,"top_status":9,"recommended_status":9,"article_hits":10,"article_favorites":10,"article_like":10,"comment_count":10,"create_time":91,"update_time":92,"published_time":93,"delete_time":10,"article_title":94,"article_keywords":14,"article_excerpt":14,"aiticle_source":14,"image":46,"article_content":95,"author":14,"article_website":17,"yaunuo_sort":18,"space_sort":18,"mp_url":96,"achi_uid":97,"result_photo":98},793,1779849265,1780388120,1779849239,"太赫兹超表面传感技术：让痕量物质检测进入“快车道”","\u003Cp>在食品安全、医疗健康、环境监测等领域，如何快速、精准、低成本地检测出极微量的有害物质，一直是技术突破的难点。传统检测方法如液相色谱、气相色谱法，虽然精度较高，但存在检测时间长、成本高、操作复杂等痛点，难以满足日益增长的多场景检测需求。针对这一挑战，西安理工大学王教授团队在太赫兹超表面传感领域取得重要突破，成功研制出高灵敏度、低成本、可定制化的传感器件，为\u003Cspan class=\"\">痕量物质检测\u003C\u002Fspan>提供了全新的国产化解决方案。\u003C\u002Fp>","https:\u002F\u002Fmp.weixin.qq.com\u002Fs\u002FksXvo5krOY_euhyO8Oimtg","d7ac3d7a9f6e78519f4b29d653daac60","https:\u002F\u002Fwww.yuanuo.com\u002Fapi\u002Fpublic\u002Fuploads\u002Fachieve_imgs\u002Fachievement_3444.jpg",{"id":100,"category_id":42,"user_id":7,"article_status":8,"top_status":9,"recommended_status":9,"article_hits":10,"article_favorites":10,"article_like":10,"comment_count":10,"create_time":101,"update_time":102,"published_time":103,"delete_time":10,"article_title":104,"article_keywords":14,"article_excerpt":14,"aiticle_source":14,"image":46,"article_content":105,"author":14,"article_website":17,"yaunuo_sort":18,"space_sort":18,"mp_url":106,"achi_uid":107,"result_photo":108},787,1779849050,1780388321,1779849018,"首饰新选择！安神解郁的合香珠手串正流行","\u003Cp>\u003Cspan style=\"color: #3E3E3E; letter-spacing: 0.544px; text-indent: 32px; background-color: #FFFFFF; visibility: visible;\">&nbsp;\u003C\u002Fspan>提到手串，很多人第一反应是金银玉石——好看，但终究只是冰冷的装饰。可如果有一种手串，不仅能点缀腕间，还能安神解郁、助眠祛湿，你会不会心动？本草饰香·合香珠手串，正是这样一款“首饰新选择”。它摒弃传统材质，以天然中草药手工压制而成，将非遗合香工艺与日常佩戴完美融合。不戴金银只戴“香”，既满足了爱美之心，又兼顾了亚健康人群的养生刚需。难怪越来越多人说：金银玉石OUT了，这串会养生的合香珠才是手腕上真正的“宝藏”。\u003C\u002Fp>","https:\u002F\u002Fmp.weixin.qq.com\u002Fs\u002FN8S8FBxAS4evW_IqoMQXcw","5467ad3864f6575804b1a342acc1c2d5","https:\u002F\u002Fwww.yuanuo.com\u002Fapi\u002Fpublic\u002Fuploads\u002Fachieve_imgs\u002Fachievement_5056.jpg",{"id":110,"category_id":42,"user_id":7,"article_status":8,"top_status":9,"recommended_status":9,"article_hits":10,"article_favorites":10,"article_like":10,"comment_count":10,"create_time":111,"update_time":112,"published_time":113,"delete_time":10,"article_title":114,"article_keywords":14,"article_excerpt":14,"aiticle_source":14,"image":46,"article_content":115,"author":14,"article_website":17,"yaunuo_sort":18,"space_sort":18,"mp_url":116,"achi_uid":117,"result_photo":118},795,1779849329,1780639823,1779158098,"零污泥、强净化：一体化陶瓷膜污水处理设备","\u003Cp>侧流载体颗粒污泥强化AO-陶瓷膜农村污水低运维一体化处理设备立足农村污水特性与治理需求，以提升工艺适配性和处理效能为核心目标，在现有A2O-MBR工艺设备上进行升级改造，不需要新建重建污水处理设施，进一步形成标准化、模块化的工业级处理装备并推动产业化应用，是实现开发污水的高效脱氮除磷、污泥源头减量、缓解膜污染、减少碳足迹的低运维一体化处理技术，助力农村污水治理实现“减污降碳协同增效”，具有良好的推广便利性。\u003C\u002Fp>","https:\u002F\u002Fmp.weixin.qq.com\u002Fs\u002FSa4Ng-GEEiDPW1GZUUepiA","6f5ec9ecb42caa287ece19bbe8c78ae9","https:\u002F\u002Fwww.yuanuo.com\u002Fapi\u002Fpublic\u002Fuploads\u002Fachieve_imgs\u002Fachievement_5184.jpg",{"id":120,"category_id":42,"user_id":7,"article_status":8,"top_status":9,"recommended_status":9,"article_hits":10,"article_favorites":10,"article_like":10,"comment_count":10,"create_time":121,"update_time":122,"published_time":123,"delete_time":10,"article_title":124,"article_keywords":14,"article_excerpt":14,"aiticle_source":14,"image":46,"article_content":125,"author":14,"article_website":17,"yaunuo_sort":18,"space_sort":18,"mp_url":126,"achi_uid":127,"result_photo":128},809,1780386445,1780387335,1778917612,"成果直通车丨重拾指尖温度！这款智能外骨骼让康复不再孤单","\u003Cp>\u003Cspan style=\"color: #3E3E3E; font-family: &quot;PingFang SC&quot;, system-ui, -apple-system, BlinkMacSystemFont, &quot;Helvetica Neue&quot;, &quot;Hiragino Sans GB&quot;, &quot;Microsoft YaHei UI&quot;, &quot;Microsoft YaHei&quot;, Arial, sans-serif; letter-spacing: 0.544px; text-align: justify; text-indent: 32px; background-color: #FFFFFF;\">卒中后的手部康复，曾是无数家庭的漫长煎熬 —— 依赖专业医师、训练场景受限、设备贴合不佳，让重拾灵活指尖成为奢望。西安理工大学“医-工”交叉团队懂这份期待，研发了手部镜像康复外骨骼，仿生设计贴合手掌曲线，柔顺驱动避免二次伤害，便携属性让康复走进居家日常。它不仅是一款设备，更是传递温暖的康复伙伴，帮患者告别“孤军奋战”，在自主训练中逐步找回手部力量与灵动。\u003C\u002Fspan>\u003C\u002Fp>","https:\u002F\u002Fmp.weixin.qq.com\u002Fs\u002F0CAqUD9-E9Xn3BfK3XMJ3w","f6b08e4d86110d15df00ba68cc1d38c1","https:\u002F\u002Fwww.yuanuo.com\u002Fapi\u002Fpublic\u002Fuploads\u002Fachieve_imgs\u002Fachievement_3613.jpg",1787887349545]