查看原文
其他

The Innovation | Virtual Collection—Advanced Materials 先进材料专辑2.0

Editorial TheInnovation创新 2023-04-01

Figure 1 Summary of Publishing (2020—2022)

图1 出版概览(2020—2022年)



Introduction: The Innovation has published 300 articles from 2020 to 2022 (Figure 1).  The authors come from 49 countries and articles belong to 9 categories (Figure 2), which have been cited by researchers from 113 countries (Source: Web of Science). The Innovation is a multidisciplinary journal covering all natural science fields. To facilitate readers to refer to articles in a specific field, Editorial Team integrates the contents from different Issues to make this Virtual Collection. 


引言:从2020到2022年,The Innovation出版三卷十三期共300篇文章(图1),作者来自49个国家。这些文章分布在9个栏目(图2),已被113个国家作者引用(数据源: Web of Science)。The Innovation是综合性英文期刊,发文内容涵盖所有自然科学领域。为方便读者查看出版的某领域文章,编辑部整合这两年不同刊次的相关内容,陆续推送Virtual Collection(虚拟专辑)……在本刊发表的文章,同时在微信公众号上进行“科普化解读”——尽可能让更多人懂得文章的主旨和亮点:传播科学知识,传承科学素养;和您一起理解科技创新的最新进展与突破!2020-2021年,出版周期为季刊;2022-2023年,出版周期为双月刊(出版月份:1/3/5/7/9/11)

Figure 2 Categories of Publishing (2020—2022)图2 文章全貌(2020—2022年)




About Advanced Materials (v2)

先进材料2.0

Advanced Materials: Good materials make a better life. The development of advanced new materials to better serve the needs of mankind and society is the tireless pursuit of materials scientists. Understanding and establishing the "structure-property-application" relationship is the core theme of materials science research. From atomic-scale to macro-scale, from unitary to multi-components, from single-phase to multi-phases, the evolution of the structure of materials brings unexpectedly magical and colorful properties, enabling various functional applications.

先进材料:材料是人类文明的基石。人类社会的发展史也是一部使用、发现和创造新材料的历史。开发先进新材料从而更好地服务人类和社会需求是材料科学家们孜孜不倦的追求。理解并构建“结构-性质-应用”关系是材料科学研究的核心主题。本次虚拟专辑收录与先进材料的结构、性质和应用相关的Editorial 5篇,Article 4篇,Report 23篇,Commentary 7篇,Review 15篇, Perspective 4篇;共计58篇。



 Section 1

Editorials


2D materials: Rising star for future applications


二维材料:未来应用之星


► 点击阅读


Carbon neutrality: Toward a sustainable future


碳中和:通往绿色可持续发展的未来


► 点击阅读


Beyond natural tooth enamel


源于牙釉质且超越天然牙釉质


► 点击阅读


Thermal Hall effect in insulating quantum materials


绝缘量子材料中的热霍尔效应


► 点击阅读


Anti-icing strategies are on the way


风力发电的防冰除冰技术任重而道远


► 点击阅读



Section 2

Perspectives


Topological phononic materials: Computation and data


拓扑声子材料


► 点击阅读


AI-enabled wearable and flexible electronics for assessing full personal exposures

原文链接:https://www.cell.com/the-innovation/fulltext/S2666-6758(20)30031-X

DOI: https://doi.org/10.1016/j.xinn.2020.100031



Biomass: Renewable carbon resource for chemical and energy industry


古老能源焕发新“碳”活力


► 点击阅读


Demetallation of organometallic and metal-mediated reactions


可持续化学合成:有机金属反应的去金属化

► 点击阅读



 Section 3

Articles


Fast evaporation enabled ultrathin polymeric coatings on nanoporous substrates for highly permeable membranes


5/10000发丝厚度的纳米多孔滤膜


► 点击阅读


Subtle side chain triggers unexpected two-channel charge transport property enabling 80% fill factors and efficient thick-film organic photovoltaics


双通道电荷传输:光伏转换新途径


► 点击阅读


Engineering vacancy and hydrophobicity of two-dimensional TaTe2 for efficient and stable electrocatalytic N2 reduction


缺陷协同疏水改性显著提升二维碲化钽电化学合成氨效率

► 点击阅读


Multifunctional succinate additive for flexible perovskite solar cells with more than 23% power conversion efficiency


23.6%!柔性钙钛矿电池效率新纪录


► 点击阅读



 Section 4

Reports


Distance effect of Ni-Pt dual sites for active hydrogen transfer in tandem reaction


双金属串联催化剂亚纳米间距效应


► 点击阅读


Chirality-induced giant unidirectional magnetoresistance in twisted bilayer graphene


魔角石墨烯中的单向电子运动


► 点击阅读


Co3Mo3N - An efficient multifunctional electrocatalyst


三元金属氮化物材料Co3Mo3N—— 究竟有多神奇

► 点击阅读


Liposoluble quinone promotes the reduction of hydrophobic mineral and extracellular electron transfer of Shewanella oneidensis MR-1


疏水界面上的电子搬运工


► 点击阅读


Generic seebeck effect from spin entropy


当热电效应遇到磁性


► 点击阅读


Unusually thick shear-softening surface of micrometer-size metallic glasses


金属玻璃表面超厚软化层的发现


► 点击阅读


Highly efficient conversion of surplus electricity to hydrogen energy via polysulfides redox


削峰填谷,多硫化物解耦电解水制氢


► 点击阅读


Adsorption and desorption mechanisms on graphene oxide nanosheets: Kinetics and tuning


TIRFM实现氧化石墨烯表面吸脱附过程的原位监测

► 点击阅读


Direct conversion of CO2 to a jet fuel over CoFe alloy catalysts


钴铁合金新型催化材料助力碳中性航空燃料合成

► 点击阅读


Enhanced catalytic performance of Pt by coupling with carbon defects


基底材料的缺陷工程-拓扑碳缺陷优化铂ORR活性

► 点击阅读


Crystal-phase-engineering of PdCu nanoalloys facilitates selective hydrodeoxygenation at room temperature


生物质高效温和转化新发现


► 点击阅读


Experimental mapping of short-wavelength phonons in protein


用中子聆听蛋白质内部的“声音”


► 点击阅读


Chemically recyclable polyesters from CO2, H2, and 1,3-butadiene


未来的塑料会是这样的吗?二氧化碳基、廉价、性能优良且单体可回收!

► 点击阅读


Discovery of amantadine formate: Toward achieving ultrahigh pyroelectric performances in organics


热释电或进入全有机时代


► 点击阅读


A compact elastocaloric refrigerator


弹热制冷冰箱:零碳排放制冷新技术


► 点击阅读


Shear-flow-induced graphene coating microfibers from microfluidic spinning


石墨烯纤维助力柔性智能传感


► 点击阅读


Energy saving thermal adaptive liquid gating system


以热为匙:节能热自适应液体门控系统

► 点击阅读


Azetidine synthesis enabled by photo-induced copper catalysis via [3+1] radical cascade cyclization


氮杂环丁烷的简洁构建


► 点击阅读


Spin engineering of single-site metal catalysts


“悬空”催化位点


► 点击阅读


Achieving ultra-stable and superior electricity generation by integrating transistor-like design with lubricant armor


高效稳定的水能收集器


► 点击阅读


Achieving metal-like malleability and ductility in Ag2Te1-xSx inorganic thermoelectric semiconductors with high mobility


在无机热电半导体中实现类金属的延展性

► 点击阅读


Chiral Dirac-like fermion in spin-orbit-free antiferromagnetic semimetals


反铁磁半金属中的新奇手性费米子


► 点击阅读


Coordination-driven structure reconstruction in polymer of intrinsic microporosity membranes for efficient propylene/propane separation


结构重构助力理想丙烯/丙烷分离膜制备

► 点击阅读



 Section 5

Reviews


Endogenous fluorescence carbon dots derived from food items


食品源碳点:食品中会发光的小精灵


► 点击阅读


Electroreduction of CO2 in ionic liquid-based electrolytes


离子液体体系中电催化还原二氧化碳的研究进展与展望

► 点击阅读


Surface enhanced Raman scattering revealed by interfacial charge-transfer transitions


界面电荷传输 | 半导体表面增强拉曼散射的驱动力

► 点击阅读


Orderly porous covalent organic frameworks-based materials: Superior adsorbents for pollutants removal from aqueous solutions


有序多孔COFs:去除水中污染物的优良吸附剂

► 点击阅读


Artificial structural colors and applications


人工微纳米结构色的多彩世界


► 点击阅读


Intrinsic magnetic topological insulators


本征磁性拓扑材料 — MnBi2Te4体系


► 点击阅读


Nanotechnology-enhanced immunotherapy for metastatic cancer


纳米技术增强免疫治疗有望阻止肿瘤转移和复发

► 点击阅读


Electro-responsive actuators based on graphene


“翩翩起舞”的石墨烯


► 点击阅读


Artificial intelligence: A powerful paradigm for scientific research


人工智能:科学研究新范式


► 点击阅读


Technologies and perspectives for achieving carbon neutrality


碳中和技术与前景


► 点击阅读


Chemically modified DNA nanostructures for drug delivery


修饰核酸,递送药物


► 点击阅读


Combining printing and nanoparticle assembly: Methodology and application of nanoparticle patterning


先华而后实:纳米粒子图案化新策略


► 点击阅读


Metal-organic framework nanocrystals derived hollow porous materials: Synthetic strategies and emerging applications


MOFs衍生中空多孔纳米材料的合成与应用

► 点击阅读


Wavefront shaping: A versatile tool to conquer multiple scattering in multidisciplinary fields


波前整形技术助力光学领域克服散射困扰

► 点击阅读


The marriage of Xenes and hydrogels: Fundamentals, applications, and outlook


二维单元素纳米片与水凝胶将擦出怎样的火花?

► 点击阅读



 Section 6

Commentaries


3D printing challenges in enabling rapid response to public health emergencies


3D打印技术在快速应对突发公共卫生事件中的机遇与挑战

► 点击阅读


Old inspires new: Activation and stabilization of iodine in diene-based rubbers


老树开新花:橡胶材料的新应用


► 点击阅读


Learning from nature for healthcare, energy, and environment


学习自然,点亮未来


► 点击阅读


Reactive resonance and the role of electron angular momentum

原文链接:https://www.cell.com/the-innovation/fulltext/S2666-6758(21)00061-8

DOI: https://doi.org/10.1016/j.xinn.2021.100136



Catalysing n-doping


催化技术再立奇功:N型电学掺杂


► 点击阅读


A paradigm shift in liquid cooling by multitextured surface design


“小”液滴,“大”冷却:超高温固体表面液体冷却的新突破

► 点击阅读


Using agrophotovoltaics to reduce carbon emissions and global rural poverty


一业两纾困:光伏农业助力全球脱贫与减碳

► 点击阅读




期刊简介



扫二维码 | 关注期刊官微


The Innovation是一本由青年科学家与Cell Press于2020年共同创办的综合性英文学术期刊:向科学界展示鼓舞人心的跨学科发现,鼓励研究人员专注于科学的本质和自由探索的初心。作者来自全球50个国家;已被116个国家作者引用;每期1/4-1/3通讯作者来自海外。目前有195位编委会成员,来自21个国家;50%编委来自海外;包含1位诺贝尔奖获得者,33位各国院士;领域覆盖全部自然科学。The Innovation已被DOAJ,ADS,Scopus,PubMed,ESCI,INSPEC,EI等数据库收录。秉承“好文章,多宣传”理念,The Innovation在海内外各平台推广作者文章。


期刊官网1(Owner):

www.the-innovation.org

期刊官网2(Publisher):

www.cell.com/the-innovation/home

期刊投稿(Submission):

www.editorialmanager.com/the-innovation

商务合作(Marketing):

marketing@the-innovation.org



Logo|期刊标识

See the unseen & change the unchanged

创新是一扇门,我们探索未知;  

创新是一道光,我们脑洞大开;  

创新是一本书,我们期待惊喜;  

创新是一个“1”,我们一路同行。



第4卷第1期

第3卷第6期

第3卷第5期

第3卷第4期

第3卷第3期

第3卷第2期

第3卷第1期

第2卷第4期

第2卷第3期

第2卷第2期

第2卷第1期

第1卷第3期

第1卷第2期

第1卷第1期




您可能也对以下帖子感兴趣

文章有问题?点此查看未经处理的缓存