Special to S&T Review

Top advances of science, technology and engineering from China in 2022

  • WANG Kangyou ,
  • LIU Zhiyuan ,
  • ZHU Yehua ,
  • XU Lijiao
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  • Editorial Department of Science & Technology Review, Beijing 100081, China

Received date: 2023-01-30

  Revised date: 2023-02-06

  Online published: 2023-04-27

Abstract

For the event sponsored by Science & Technology Review to select Chinese annual top advances in science, technology and engineering, altogether top 10 scientific, top 10 technological and top 10 engineering achievements during January 1 to December 31 of 2022 have been selected from respective published influential academic journals and scientific newspapers. The selection procedure involved screening and recommending candidates internally, followed by appraisal of experts including editorial board members and external reviewers. This article introduces these achievements in a time sequence of publishing.

Cite this article

WANG Kangyou , LIU Zhiyuan , ZHU Yehua , XU Lijiao . Top advances of science, technology and engineering from China in 2022[J]. Science & Technology Review, 2023 , 41(3) : 6 -28 . DOI: 10.3981/j.issn.1000-7857.2023.03.001

References

[1] 本刊编辑部 . 2003 年中国重大科学、技术与工程进展[J]. 科技导报, 2004, 22(3): 59-61.
[2] 本刊编辑部 . 2004 年中国重大科学、技术与工程进展[J]. 科技导报, 2005, 23(2): 58-62.
[3] 苏青 . 2005 年中国重大科学、技术与工程进展[J]. 科技导报, 2006, 24(1): 5-10.
[4] 苏青. 2006年中国重大科学进展[J]. 科技导报, 2007, 25(1): 5-14.
[5] 苏青 . 2006 年中国重大技术与工程进展[J]. 科技导报,2007, 25(2): 5-13.
[6] 苏青 . 2007 年中国重大科学、技术与工程进展[J]. 科技导报, 2008, 26(1): 19-27.
[7] 苏青, 代丽, 岳臣. 2008年中国重大科学、技术与工程进展[J]. 科技导报, 2009, 27(1): 19-29.
[8] 苏青, 朱宇, 代丽, 等 . 2009年中国重大科学、技术与工程进展[J]. 科技导报, 2010, 28(1): 19-29.
[9] 苏青, 朱宇, 陈广仁, 等 . 2010年度中国重大科学、技术和工程进展[J]. 科技导报, 2011, 29(3): 15-25.
[10] 朱宇, 苏青, 陈广仁, 等. 2011年度中国重大科学、技术和工程进展[J]. 科技导报, 2012, 30(3): 15-25.
[11] 朱宇, 陈广仁, 苏青, 等. 2012年度中国重大科学、技术和工程进展[J]. 科技导报, 2013, 31(3): 15-27.
[12] 朱宇, 陈广仁, 史永超, 等. 2013年度中国重大科学、技术和工程进展[J]. 科技导报, 2014, 32(3): 15-24.
[13] 陈广仁, 吴晓丽, 刘志远, 等. 2014年中国重大科学、技术和工程进展[J]. 科技导报, 2015, 33(2): 14-27.
[14] 陈广仁, 吴晓丽, 刘志远, 等. 2015年中国重大科学、技术和工程进展[J]. 科技导报, 2016, 34(3): 13-29.
[15] 陈广仁, 刘志远, 田恬, 等. 2016年中国重大科学、技术和工程进展[J]. 科技导报, 2017, 35(3): 13-28.
[16] 陈广仁, 刘志远, 田恬, 等. 2017年中国重大科学、技术和工程进展[J]. 科技导报, 2018, 36(3): 8-26.
[17] 陈广仁, 刘志远, 田恬, 等. 2018年中国重大科学、技术和工程进展[J]. 科技导报, 2019, 37(3): 6-26.
[18] 陈广仁, 刘志远, 祝叶华, 等. 2019年中国重大科学、技术和工程进展[J]. 科技导报, 2020, 38(3): 7-33.
[19] 刘志远, 祝叶华, 徐丽娇, 等. 2020年中国重大科学、技术和工程进展[J]. 科技导报, 2021, 39(3): 12-30.
[20] 王康友, 徐丽娇, 刘志远, 等. 2021年中国重大科学、技术和工程进展[J]. 科技导报, 2022, 40(3): 6-24.
[21] Ching T C, Li D, Heiles C, et al. An early transition to magnetic supercriticality in star formation[J]. Nature, 2022, 601(7891): 49-52.
[22] 中国天眼 FAST 取得系列重要进展[EB/OL]. (2023-01-11) [2023-01-12]. https://www. antpedia. com/news/20/n-2893920.html.
[23] Feng Y, Li D, Yang Y P, et al. Frequency-dependent polarization of repeating fast radio bursts—implications for their origin[J]. Science, 2022, 375(6586): 1266-1270.
[24] 5篇Nature/Science|国家天文台李菂等团队找到快速射电重复暴的“身份证”[EB/OL]. (2022-03-19) [2022-12-11]. https://mp.weixin.qq.com/s/tWgcIrKR1aB0ND8h XITwHw.
[25] Niu C H, Aggarwal K, Li D, et al. A repeating fast radio burst associated with a persistent radio source[J]. Na⁃ture, 2022, 606(7916): 873-877.
[26] Xu H, Niu J R, Chen P, et al. A fast radio burst source at a complex magnetized site in a barred galaxy[J]. Na⁃ture, 2022, 609(7928): 685-688.
[27] 中国天眼首次探测到距离快速射电暴中心仅 1个天文单位的周边环境的磁场变化[EB/OL]. (2022-09-22)
[2022-10-23]. https://baijiahao.baidu.com/s?id=174466-9025609070958&wfr=spider&for=pc.
[28] 中国半导体十大研究进展候选推荐(2022-008)——超越单结器件的世界纪录效率全钙钛矿叠层太阳能电池[EB/OL]. (2022-05-12)[2022-07-12]. https://blog.scien⁃
cenet.cn/blog-3406013-1338226.html.
[29] Lin R, Xu J, Wei M Y, et al. All-perovskite tandem solar cells with improved grain surface passivation[J]. Na⁃ture, 2022, 603(7899): 73-78.
[30] 南京大学今年首篇《Nature》!全钙钛矿叠层太阳能电池重要进展 [EB/OL]. (2022-01-18) [2022-03-10]. https://mp.weixin.qq.com/s?__biz=MzA4NDk3ODEwNQ==&mid=2698854380&idx=3&sn=7534010e61385f393f1-bfaa54199a2ce&chksm=baf76f3a8d80e62cab6ad81ce8da15ad81cee26f0f6029acd4af7aa8edc6c294b683b19bc75-5&scene=27.
[31] Xiao K, Lin Y H, Zhang M, et al. Scalable processing for realizing 21.7%-efficient all-perovskite tandem solar modules[J]. Science, 2022, 376(6594): 762-767.
[32] 南京大学谭海仁课题组《Science》发文报道实现可量产化的全钙钛矿叠层光伏组件[EB/OL]. (2022-05-20)[2022-07-12]. https://www.nsfc.gov.cn/csc/20340/20343/61197/index.html.
[33] 北大谢晓亮/曹云龙/肖俊宇等联合团队揭示新冠奥密克戎株新亚型的免疫逃逸特征[EB/OL]. (2022-06-20)[2022-08-21]. https://mp.weixin.qq.com/s/TR-S8es4Wb-4QTi26gTod5g.
[34] Wang K, Jia Z, Bao L, et al. Memory B cell repertoire from triple vaccinees against diverse SARS-CoV-2 vari⁃ants[J]. Nature, 2022, 603(7903): 919-925.
[35] Cui Z, Liu P, Wang N, et al. Structural and functional characterizations of infectivity and immune evasion of SARS-CoV-2 Omicron[J]. Cell, 2022, 185(5): 860-871.
[36] 王祥喜团队等报道新冠灭活疫苗加强针可实现对奥密克戎突变株感染的重症保护[EB/OL]. (2022-01-29)[2022-03-26].  https://mp.weixin.qq.com/s?__biz=MzA3-MzQyNjY1MQ==&mid=2652571243&idx=1&sn=f89afea-79654762280823e3db6fcb63a&chksm=84e095dfb3971cc99d457c931e34a7d6c7161bad6b7ed81384ab57373566-38080bad2a6900dd&scene=21&rd2werd=1#wechat_redirect.
[37] Cao Y, Yisimayi A, Jian F, et al. BA. 2.12. 1, BA. 4 and BA. 5 escape antibodies elicited by Omicron infection[J]. Nature, 2022, 608(7923): 593-602.
[38] 预测新冠病毒变异趋势,北大曹云龙入选《自然》年度十大人物[EB/OL]. (2022-12-15)[2023-01-14]. https://baijiahao.baidu.com/s?id=1752246667827198911&wfr=spider&for=pc.
[39] Cao Y L, Jian F C, Wang J, et al. Imprinted SARSCoV-2 humoral immunity induces convergent OmicronRBD evolution[J/OL]. Nature, 2022, doi: 10.1038/s41586-022-05644-7.
[40] 谢晓亮/曹云龙团队新冠病毒突变株免疫逃逸机制研究入选 2022 年度“中国生命科学十大进展”[EB/OL].(2023-01-20).https://news.pku.edu.cn/xwzh/c213266845e74b4e973dac173344212e.htm.
[41] 北大/昌平实验室联合团队最新成果, 将为抗新冠病毒添新药![EB/OL]. (2022-12-20)[2022-12-26]. https://mp.weixin.qq.com/s?__biz=Mzg5MzE5ODg4MA==&mid=2247488345&idx=1&sn=2eed4fbd728868f9dd6e327a04-f78013&chksm=c0332416f744ad00571d77d15da2540c2-66dc21a2599e5474622a6914df04b164c6541ee746e&scene=21#wechat_redirect.
[42] Nature最新发文, 揭示孤儿 GPCR 自激活机制, 为癌症治疗药物研发带来新契机 [EB/OL]. (2022-04-14)[2022-06-12]. https://sghexport.shobserver.com/html/bai⁃jiahao/2022/04/14/713799.html.
[43] 张行勇, 严涛. 粘附类G蛋白偶联受体激活通用机制研究获突破[EB/OL]. (2022-04-14)[2022-06-10]. https://news.sciencenet.cn/htmlnews/2022/4/477213.shtm.
[44] Ping Y Q, Xiao P, Yang F, et al. Structural basis for the tethered peptide activation of adhesion GPCRs[J]. Na⁃ture, 2022, 604(7907): 763-770.
[45] 孙金鹏和于晓教授团队在Nature背靠背发表文章阐明粘附类 GPCR 自激活及对力的感知机制, 并创新性构思出通用多肽配体拮抗剂的开发方案[EB/OL]. (2022-04-14) [2022-05-15]. https://baijiahao.baidu.com/s?id=1730049500846428766&wfr=spider&for=pc.
[46] Xiao P, Guo S H, Wen X, et al. Tethered peptide activation mechanism of the adhesion GPCRs ADGRG2 and ADGRG4[J]. Nature, 2022, 604(7907): 771-778.
[47] 清华大学结构生物学高精尖创新中心 . 一周“结构”要览 VOL. 6[EB/OL]. (2022-04-18) [2022-06-22]. http://www.icsb.tsinghua.edu.cn/index.php?c=show&id=1131.
[48] Qu X L, Qiu N, Wang M, et al. Structural basis of tethered agonism of the adhesion GPCRs ADGRD1 and ADGRF1[J]. Nature, 2022, 604(7907): 779-785.
[49] Yue S A, Tian F, Sui X Y, et al. High ambipolar mobility in cubic boron arsenide revealed by transient reflectivity microscopy[J]. Science, 2022, 377(6604): 433-436.
[50] 刘新风研究团队首次测定超高热导率半导体-砷化硼的载流子迁移率[EB/OL]. (2022-07-22)[2022-12-02]. http://www.nanoctr.cn/zytp2017/202207/t20220721_648-7881.html.
[51] Wang J Q, Li L L, Hu A, et al. Inhibition of ASGR1 decreases lipid levels by promoting cholesterol excretion[J]. Nature, 2022, 608(7922): 413-420.
[52] 宋保亮院士团队发现促使胆固醇外排而降脂的新策略[EB/OL]. (2022-08-06) [2022-12-30]. https://m. thepa⁃per.cn/baijiahao_19315727.
[53] Li C, Zheng Y K, Wang X, et al. Layered subsurface in Utopia Basin of Mars revealed by Zhurong rover radar[J]. Nature, 2022, 610(7931): 308-312.
[54]“祝融号”巡视雷达揭秘火星乌托邦平原浅表结构[EB/OL]. (2022-09-29)[2022-10-26]. https://baijiahao.baidu.com/s?id=1745048559444501837&wfr=spider&for=pc.
[55] Andreev P S, Sansom I J, Li Q, et al. The oldest gnathostome teeth[J]. Nature, 2022, 609(7929): 964-968.
[56] Gai Z K, Li Q, Ferrón H G, et al. Galeaspid anatomy and the origin of vertebrate paired appendages[J]. Na⁃ture, 2022, 609(7929): 959-963.
[57] Zhu Y A, Li Q, Lu J, et al. The oldest complete jawed vertebrates from the early Silurian of China[J]. Nature,2022, 609(7929): 954-958.
[58] Andreev P S, Sansom I J, Li Q, et al. Spiny chondrich⁃thyan from the lower Silurian of South China[J]. Nature,2022, 609(7929): 969-974.
[59]【NATURE 封面】齿与颌: 志留纪鱼类化石揭示有颌脊椎动物崛起与最初辐射分化[EB/OL]. (2022-11-05)[2022-12-23]. https://mp.weixin.qq.com/s/8N4NA41KtU-IgngyGlpqGw.
[60] 4篇Nature, 5条鱼, 中国科学院朱敏团队在“从鱼到人”探源研究取得重大突破[EB/OL]. (2022-09-29)[2022-12-11]. https://mp.weixin.qq.com/s/HOvEjNyMKld0SCFKqhnybw.
[61] Chen R T, Ren Z F, Liang Y, et al. Spatiotemporal imag⁃ing of charge transfer in photocatalyst particles[J]. Na⁃ture, 2022, 610(7931): 296-301.
[62] 伊晓东, 高飞雪 . 我国学者在光催化剂粒子全时空尺度电荷分离传输过程成像研究方面取得进展[EB/OL].(2022-10-31) [2022-12-09]. https://www.nsfc.gov.cn/publish/portal0/tab448/info87624.htm.
[63] Xie H P, Zhao Z Y, Liu T, et al. A membrane-based seawater electrolyser for hydrogen generation[J]. Nature,2022, 612: 673-678.
[64] Nature 重磅: 谢和平院士团队开创海水原位直接电解制氢全新路径,破解该领域半世纪难题![EB/OL].(2022-12-07)[2022-12-13]. http://www.nanoer.net/showinfo-32-47399.html.
[65] 袁于飞 . 2022 年中国十大科技进展新闻揭晓[N]. 光明日报, 2023-01-13(8).
[66] Yang C, Liu H W, Liu Y, et al. Signatures of a strangemetal in a bosonic system[J]. Nature, 2022, 601(7892):205-210.
[67] 之江实验室研究成果登上《科学》[EB/OL]. (2022-01-25) [2022-12-01]. http://www.yuhang.gov.cn/art/2022/1/25/art_1532128_59005949.html.
[68] Sun K, Tan D Z, Fang X Y, et al. Three-dimensional di⁃rect lithography of stable perovskite nanocrystals in glass[J]. Science, 2022, 375(6578): 307-310.
[69] 我国科学家首次在超冷原子分子混合气中实现三原子分子的量子相干合成[EB/OL]. (2022-02-10) [2022-10-12]. https://news.ustc.edu.cn/info/1048/78385.htm.
[70] 王敏. 中国科大成果入选2022年国际物理学十大突破[N]. 中国科学报, 2022-12-26(1).
[71] Yang H, Wang X Y, Su Z, et al. Evidence for the associ⁃ation of triatomic molecules in ultracold 23Na40K+40K mix⁃tures[J]. Nature, 2022, 602(7896): 229-233.
[72] Yang H, Cao J, Su Z, et al. Creation of an ultracold gas of triatomic molecules from an atom-diatomic molecule mixture[J]. Science, 2022, 378(6623): 1009-1013.
[73] 李依环 . 中国科大科研团队建立蛋白质从头设计新方法[EB/OL]. (2022-02-14)[2022-06-15]. http://edu.peo-ple.com.cn/n1/2022/0214/c1006-32351439.html.
[74] Huang B, Xu Y, Hu X H, et al. A backbone-centred energy function of neural networks for protein design[J].Nature, 602(7857): 523-528.
[75] 清华大学任天令团队《Nature》发文报道首次实现亚 1纳米栅长晶体管[EB/OL]. (2022-03-18)[2022-08-04]. https://www.nsfc.gov.cn/csc/20340/20343/59687/index.html.
[76] Wu F, Tian H, Shen Y, et al. Vertical MoS2 transistors with sub-1-nm gate lengths[J]. Nature, 2022, 603(7900): 259-264.
[77] 我国科学家发现可同时提高水稻玉米产量的关键基因[EB/OL]. (2022-03-25) [2022-05-15]. https://baijiahao.baidu.com/s?id=1728238033238696156&wfr=spider&for=pc.
[78] Chen W K, Chen L, Zhang X, et al. Convergent selection of a WD40 protein that enhances grain yield in maize and rice[J]. Science, 2022, 375(6587): eabg7985.
[79] 晋浩天 . 我科学家在新一代干细胞制备技术上取得重要突破[N]. 光明日报, 2022-04-15(08).
[80] Guan J Y, Wang G, Wang J L, et al. Chemical repro⁃gramming of human somatic cells to pluripotent stem cells[J]. Nature, 2022, 605(7909): 325-331.
[81] 我国学者在碳家族单晶新材料创制方面取得突破[EB/OL]. (2022-06-27) [2022-12-02]. https://www.nsfc.gov.cn/publish/portal0/tab1238/info86532.htm.
[82] Hou L X, Cui X P, Guan B, et al. Synthesis of a mono⁃layer fullerene network[J]. Nature, 2022, 606(7914):507-510.
[83] 科 学 家 一 锅 法 制 备 出 高 导 电 n 型 聚 合 物 [EB/OL].(2022-09-15) [2022-12-06]. https://www.ncsti.gov.cn/kjdt/kjrd/202209/t20220915_97591.html.
[84] Tang H R, Liang Y Y, Liu C C, et al. A solution-pro⁃cessed n-type conducting polymer with ultrahigh con⁃ductivity[J]. Nature, 2022, 611(7935): 271-277.
[85] 清华《Nature》: 另辟蹊径!研制元成像芯片, 突破光学像差难题[EB/OL]. (2022-10-27)[2022-12-11]. https://www.sohu.com/a/600337236_344863.
[86] Wu J M, Guo Y D, Deng C, et al. An integrated imagingsensor for aberration-corrected 3D photography[J]. Na⁃ture, 2022, 612(7938): 62-71.
[87] 薄克国. 全球首艘10万吨级智慧渔业大型养殖工船在青岛出坞下水 [EB/OL]. (2022-01-27) [2022-12-12]. https://dzrb.dzng.com/articleContent/1176_959337.html.
[88] 全球首艘 10 万吨级智慧渔业大型养殖工船交付运营[EB/OL]. [2022-12-12]. https://news.bjd.com.cn/2022/05/20/10090561.shtml.
[89] 世界单台容量最大潮流能发电机组在浙江舟山启动[EB/OL]. (2022-02-24) [2022-12-12]. http://www.chi⁃nanews.com.cn/cj/2022/02-24/9685043.shtml.
[90] 张瑾, 柴宇皓 .“奋进号”并网运行稳定 岱山 LHD潮流能开发走向产业化[EB/OL]. (2022-05-05)[2022-12-14].  https://zj.zjol.com.cn/news.html?id=1855319.
[91] 邓媛雯, 戴海滨 . 中国自主研制的鲲龙 AG600 全状态新构型灭火机首飞成功[EB/OL]. (2022-05-31) [2022-12-14]. https://www.chinanews.com.cn/cj/2022/05-31/9768022.shtml.
[92] 矫阳 . 鲲龙 AG600 全状态新构型灭火机首飞成功[EB/OL]. (2022-05-31) [2022-12-14]. http://www.stdaily.com/index/kejixinwen/202205/bc82dec11bb4f4fa7a4131-9e3b77424.shtml.
[93] 乐水 .“福建舰”下水掀开中国海军航母发展新篇章[EB/OL]. (2022-06-21)[2022-12-14]. http://www.china.com.cn/opinion/2022-06/21/content_78281535.html.
[94] 我国建成世界首条环沙漠铁路线[N]. 西藏商报, 2022-06-17(19).
[95] 一箭六星!中国迄今运载能力最大固体运载火箭“力箭一号”首飞成功[EB/OL]. (2022-07-27)[2022-12-14]. http://www.ce.cn/xwzx/gnsz/gdxw/202207/27/t20220727_37910412.shtml.
[96] 吴雅楠, 余建斌.“力箭一号”创新突破亮点多[N]. 人民日报, 2022-09-05(19).
[97] 我国成功发射综合性太阳探测卫星“夸父一号”[EB/OL]. (2022-10-09)[2022-12-22]. https://www.cas.cn/yw/202210/t20221009_4850182.shtml.
[98] 孙自法 . 中国“夸父一号”首批太阳观测科学图像发布实现多项首次 [EB/OL]. (2022-12-13) [2022-12-22]. https://www.chinanews.com.cn/gn/2022/12-13/9914122.shtml.
[99] 刘欢 . 这一年,中国载人航天事业解锁了哪些成就?[EB/OL]. (2022-12-31) [2023-01-05]. https://www.chi⁃nanews.com.cn/gn/2022/12-31/9925359.shtml.
[100] 侯雪静, 林善传. 全球单机容量最大16兆瓦海上风电机组下线[EB/OL]. (2022-11-23)[2022-12-25]. http://www.news.cn/fortune/2022-11/23/c_1129153075.htm.
[101] 安源. 国内首台完全自主知识产权F级50MW重型燃气轮机完成设备制造发运交付[EB/OL]. (2022-11-25)[2022-12-08]. https://www.chinanews.com/cj/2022/11-25/9902495.shtml.
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