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无机钙材料在石灰岩文物表面防护中的应用
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作者 杨富巍 严景臣 +4 位作者 蒋伊洁 李婷 郭姝钰 张坤 刘妍 《无机化学学报》 SCIE CAS CSCD 北大核心 2023年第7期1209-1222,共14页
由于碳酸盐矿物的质地特点,石灰岩文物在露天环境中极易发生表面溶蚀,其上赋存文化信息的文字、纹饰和符号等雕刻痕迹也随之湮灭,对其文物价值造成了严重减损。从耐候性和兼容性角度考虑,无机保护材料显然更适合于石灰岩文物的表面防护... 由于碳酸盐矿物的质地特点,石灰岩文物在露天环境中极易发生表面溶蚀,其上赋存文化信息的文字、纹饰和符号等雕刻痕迹也随之湮灭,对其文物价值造成了严重减损。从耐候性和兼容性角度考虑,无机保护材料显然更适合于石灰岩文物的表面防护处理。近年来,基于草酸钙、磷灰石和碳酸钙等钙基材料的石灰岩文物表面防护研究逐渐兴起并开始走向应用。本文就上述钙基保护材料的特点、防护膜制备和应用实践等做了归纳和评述,以期为石灰岩文物保护研究提供参考和借鉴。 展开更多
关键词 无机钙材料 石灰岩 文物 表面防护
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新型钙镁硅复合无机材料对盐胁迫下小麦幼苗生长的影响
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作者 龙海婷 荆桂花 +2 位作者 鹿美航 杨志峰 董元杰 《河北科技师范学院学报》 CAS 2024年第1期29-36,共8页
为确定新型钙镁硅复合无机材料(IM)对盐(NaCl)胁迫下小麦幼苗生长的影响,采用液培法,通过在营养液中添加IM,制备了ρ(IM)=3.15,6.30,9.45,12.60,15.75 g·L^(-1)的5种培养液,进行了不同添加量的IM对盐胁迫下小麦幼苗生长与生理特性... 为确定新型钙镁硅复合无机材料(IM)对盐(NaCl)胁迫下小麦幼苗生长的影响,采用液培法,通过在营养液中添加IM,制备了ρ(IM)=3.15,6.30,9.45,12.60,15.75 g·L^(-1)的5种培养液,进行了不同添加量的IM对盐胁迫下小麦幼苗生长与生理特性影响的试验。结果表明:盐胁迫显著抑制了小麦幼苗的生长,添加IM能有效缓解小麦幼苗的盐胁迫效应,其中以ρ(IM)=12.60 g·L^(-1)的处理能显著促进盐胁迫下小麦幼苗的生长,降低盐胁迫下小麦幼苗根系与叶片的丙二醛质量摩尔浓度和超氧阴离子产生速率,增加叶片和根系的可溶性蛋白质量分数和抗氧化酶活性,并显著提高游离脯氨酸质量分数。 展开更多
关键词 镁硅复合无机材料 小麦幼苗 盐胁迫 生长与生理特性
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无机钙质材料与聚乳酸的复合 被引量:2
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作者 方园 戴红莲 李世普 《生物骨科材料与临床研究》 CAS 2005年第4期53-56,共4页
无机钙质材料包括羟基磷灰石、磷酸三钙、碳酸钙(珊瑚)等,其显示出良好的生物相容性,具有一定的成骨诱导性并可有效促进成骨细胞的粘附、迁移、增殖和基质分泌.聚乳酸(Polylactic acids,PLA)是一种优良的生物医用高分子聚酯材料,它具有... 无机钙质材料包括羟基磷灰石、磷酸三钙、碳酸钙(珊瑚)等,其显示出良好的生物相容性,具有一定的成骨诱导性并可有效促进成骨细胞的粘附、迁移、增殖和基质分泌.聚乳酸(Polylactic acids,PLA)是一种优良的生物医用高分子聚酯材料,它具有无毒、无刺激和生物相容性好等特性,在人体内可降解成乳酸,自然代谢,无残留[1]. 展开更多
关键词 无机材料 聚乳酸 复合 生物相容性 生物医用高分子聚酯材料
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Aromatic bromination with hydrogen production on organic‐inorganic hybrid perovskite‐based photocatalysts under visible light irradiation
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作者 Yanfei Zhang Hong Wang +1 位作者 Yan Liu Can Li 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 2022年第7期1805-1811,共7页
Aromatic bromides are important chemicals in nature and chemical industries.However,their tra‐ditional synthesis routes suffer from low atomic economy and pollutant formation.Herein,we show that organic-inorganic hyb... Aromatic bromides are important chemicals in nature and chemical industries.However,their tra‐ditional synthesis routes suffer from low atomic economy and pollutant formation.Herein,we show that organic-inorganic hybrid perovskite methylammonium lead bromide(MAPbBr_(3))nanocrystals stabilized in aqueous HBr solution can achieve simultaneous aromatic bromination and hydrogen evolution using HBr as the bromine source under visible light irradiation.By hybridizing MAPbBr_(3) with Pt/Ta_(2)O_(5) and poly(3,4‐ethylenedioxythiophene)polystyrene sulfonate as electron‐and hole‐transporting motifs,aromatic bromides were achieved from aromatic compounds with high yield(up to 99%)and selectivity(up to 99%)with the addition of N,N‐dimethylformamide or its analogs.The mechanistic studies revealed that the bromination proceeds via an electrophilic attack pathway and that HOBr may be the key intermediate in the bromination reaction. 展开更多
关键词 Photocatalysis BROMINATION Hydrogen Organic‐inorganic hybrid perovskite material Methylammonium lead bromide
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Inorganic material passivation of defects toward efficient perovskite solar cells 被引量:4
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作者 Wenjing Qi Xin Zhou +5 位作者 Jiale Li Jian Cheng Yuelong Li Min Jae Ko Ying Zhao Xiaodan Zhang 《Science Bulletin》 SCIE EI CSCD 2020年第23期2022-2032,M0004,共12页
Surface passivation with organic materials is one of the most effective and popular strategies to improve the stability and efficiency of perovskite solar cells(PSCs). However, the secondary bonding formed between org... Surface passivation with organic materials is one of the most effective and popular strategies to improve the stability and efficiency of perovskite solar cells(PSCs). However, the secondary bonding formed between organic molecules and perovskite layers is still not strong enough to protect the perovskite absorber from degradation initialized by oxygen and water attacking at defects. Recently, passivation with inorganic materials has gradually been favored by researchers due to the effectiveness of chemical and mechanical passivation. Lead-containing substances, alkali metal halides, transition elements, oxides,hydrophobic substances, etc. have already been applied to the surface and interfacial passivation of PSCs.These inorganic substances mainly manipulate the nucleation and crystallization process of perovskite absorbers by chemically passivating defects along grain boundaries and surface or forming a mechanically protective layer simultaneously to prevent the penetration of moisture and oxygen, thereby improving the stability and efficiency of the PSCs. Herein, we mainly summarize inorganic passivating materials and their individual passivation principles and methods. Finally, this review offers a personal perspective for future research trends in the development of passivation strategies through inorganic materials. 展开更多
关键词 Perovskite solar cells Inorganic materials passivation Defect healing Stability
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