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Search for "π–π-stacking" in Full Text gives 138 result(s) in Beilstein Journal of Organic Chemistry.

Multiswitchable photoacid–hydroxyflavylium–polyelectrolyte nano-assemblies

  • Alexander Zika and
  • Franziska Gröhn

Beilstein J. Org. Chem. 2021, 17, 166–185, doi:10.3762/bjoc.17.17

Graphical Abstract
  • interactions and secondary interactions such as ππ stacking [34][35][36][37][38][39][40]. The size and shape could be tuned through the free energy and the enthalpy/entropy interplay in the assembly process, which again are encoded in the molecular building block structure [31][37]. Supramolecular structures
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Published 19 Jan 2021

Insight into functionalized-macrocycles-guided supramolecular photocatalysis

  • Minzan Zuo,
  • Krishnasamy Velmurugan,
  • Kaiya Wang,
  • Xueqi Tian and
  • Xiao-Yu Hu

Beilstein J. Org. Chem. 2021, 17, 139–155, doi:10.3762/bjoc.17.15

Graphical Abstract
  • supramolecular hosts to recognize guests through hydrophobicity, ππ stacking, cation–π interactions, ion–dipole interactions, etc. [31][32]. Due to the cavity-shape limitation of calixarenes, most calixarene-based photocatalytic systems are mainly based on the fabrication of hybrid materials for energy transfer
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Published 18 Jan 2021

Naphthalonitriles featuring efficient emission in solution and in the solid state

  • Sidharth Thulaseedharan Nair Sailaja,
  • Iván Maisuls,
  • Jutta Kösters,
  • Alexander Hepp,
  • Andreas Faust,
  • Jens Voskuhl and
  • Cristian A. Strassert

Beilstein J. Org. Chem. 2020, 16, 2960–2970, doi:10.3762/bjoc.16.246

Graphical Abstract
  • to the fact that preventing ππ stacking in the solid state with bulky substituents and simultaneously restricting the degree of rotovibrational freedom in solution appears contradictory. Firstly, bright molecules in solution require substantial structural rigidity to limit submolecular vibrational
  • increasing water fractions from 0% to 30%, but only a weak ACQ effect upon further increase of water fraction, as compared to H. This is probably due to the steric effects suppressing intermolecular stacking in the aggregates: in the case of H, ππ stacking is favored upon increasing the water fraction
  • ) Intermolecular CH…π interactions for compound Me. B) Weak intermolecular ππ stacking interactions. C) Packing of compound Me along the a-axis. Color code: black = carbon, grey = hydrogen and blue = nitrogen. The unit cell is shown in Supporting Information File 1, Figure S32. Normalized absorption spectra of
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Published 02 Dec 2020

Heterogeneous photocatalysis in flow chemical reactors

  • Christopher G. Thomson,
  • Ai-Lan Lee and
  • Filipe Vilela

Beilstein J. Org. Chem. 2020, 16, 1495–1549, doi:10.3762/bjoc.16.125

Graphical Abstract
  • (PDI) aggregates have become a popular choice of heterogeneous photocatalyst. As PDI is a large, planar, polyaromatic hydrocarbon molecule, it spontaneously forms ordered 1D supramolecular assemblies through efficient ππ stacking and side chain interactions [192]. Despite the PDI units having only non
  • -bonding interactions, the narrow ππ stacking provides a sufficient π orbital overlap to produce semiconductor-type electronic band structures and an efficient interplanar charge transport similar to g-C3N4 [192]. Duan and co-workers reported the synthesis of a zinc PDI assembly as a heterogeneous
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Published 26 Jun 2020

Towards triptycene functionalization and triptycene-linked porphyrin arrays

  • Gemma M. Locke,
  • Keith J. Flanagan and
  • Mathias O. Senge

Beilstein J. Org. Chem. 2020, 16, 763–777, doi:10.3762/bjoc.16.70

Graphical Abstract
  • ° with respect to one another. Various ππ stacking interactions were also observed between the zinc porphyrins, the nickel porphyrins and a triptycene face with a porphyrin phenyl ring. UV–vis and fluorescence studies of five of the synthesized compounds were conducted and showcased the isolating
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Published 17 Apr 2020

Synthesis of triphenylene-fused phosphole oxides via C–H functionalizations

  • Md. Shafiqur Rahman and
  • Naohiko Yoshikai

Beilstein J. Org. Chem. 2020, 16, 524–529, doi:10.3762/bjoc.16.48

Graphical Abstract
  • packing of 8a did not involve columnar ππ stacking of the PAH moiety (Figure S1, Supporting Information File 1). This is likely due to the fact that such π-stacking is inhibited by the steric bulk of the phosphole substituents (i.e., the butyl groups, the phenyl group, and the oxygen atom). Upon the
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Published 27 Mar 2020

Synthesis and circularly polarized luminescence properties of BINOL-derived bisbenzofuro[2,3-b:3’,2’-e]pyridines (BBZFPys)

  • Ryo Takishima,
  • Yuji Nishii,
  • Tomoaki Hinoue,
  • Yoshitane Imai and
  • Masahiro Miura

Beilstein J. Org. Chem. 2020, 16, 325–336, doi:10.3762/bjoc.16.32

Graphical Abstract
  • . The crystal of 4b is classified into a space group P4322 (tetragonal) with a biaryl torsion angle of 74.4° (Figure 4b). A considerable intermolecular ππ stacking interaction was observed in between its polyaromatic fragments whose distance is approximately 3.44 Å. The polycyclic subunits overlap each
  • other, being line-symmetrically aligned (Figure 5a). Meanwhile, the isomer 4c has two independent molecules in the unit cell, and the torsion angles are 67.1° and 106.8°, respectively (Figure 4d and 4f). As displayed in Figure 4b, the aromatic fragments are point-symmetrically overlapped with the ππ
  • stacking distance of around 3.45 Å. It is noteworthy that both 4b and 4c pile up while minimizing the steric repulsion between the tert-butyl groups which occupy “staggered” orientations in their crystal structures (Figure 5c and 5d). Unfortunately, the crystal structure of 4a was not determined after
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Published 06 Mar 2020

Synthesis and herbicidal activities of aryloxyacetic acid derivatives as HPPD inhibitors

  • Man-Man Wang,
  • Hao Huang,
  • Lei Shu,
  • Jian-Min Liu,
  • Jian-Qiu Zhang,
  • Yi-Le Yan and
  • Da-Yong Zhang

Beilstein J. Org. Chem. 2020, 16, 233–247, doi:10.3762/bjoc.16.25

Graphical Abstract
  • -dicarbonyl bidentate chelation with the active center metal, and 2) through favorable sandwich ππ stacking interactions between aromatic rings and the Phe360, Phe403 residues of the active site. Thus, 1,3-dicarbonyl and aromatic moieties are indispensable pharmacophores for potent HPPD-inhibiting compounds
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Published 19 Feb 2020

Influence of the cis/trans configuration on the supramolecular aggregation of aryltriazoles

  • Sara Tejera,
  • Giada Caniglia,
  • Rosa L. Dorta,
  • Andrea Favero,
  • Javier González-Platas and
  • Jesús T. Vázquez

Beilstein J. Org. Chem. 2019, 15, 2881–2888, doi:10.3762/bjoc.15.282

Graphical Abstract
  • as between the triazole rings, and therefore the presence of multiple intermolecular ππ stacking and π–bromine [19] interactions. This compound precipitated in the presence of any amount of water and gelled only in DMSO at a low temperature. Compound 10 produced pseudo-crystals in DMSO/H2O (1:1, v/v
  • ) and its X-ray analysis was not accurate enough to resolve its structure. However, its crystal packing (Figure 5) deserves discussion. As with compound 12, this packing revealed a number of π–bromine interactions [19], together with a high degree of ππ stacking interactions between the aromatic rings
  • configuration through X-ray diffraction studies can be considered good approximations to the supramolecular structure of aryltriazoles in gels. Thus, these compounds showed a high degree of parallelism between the phenyltriazolyl rings, therefore revealing the presence of ππ stacking and π–bromine interactions
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Published 28 Nov 2019

Reversible switching of arylazopyrazole within a metal–organic cage

  • Anton I. Hanopolskyi,
  • Soumen De,
  • Michał J. Białek,
  • Yael Diskin-Posner,
  • Liat Avram,
  • Moran Feller and
  • Rafal Klajn

Beilstein J. Org. Chem. 2019, 15, 2398–2407, doi:10.3762/bjoc.15.232

Graphical Abstract
  • encapsulated two molecules of E-1 (in agreement with the NMR spectra), arranged in an antiparallel fashion (Figure 3). The binding of E-1 within 2 is driven by a combination of ππ stacking, van der Waals forces, and C–H···π interactions (vide infra); in addition, the encapsulation is likely facilitated by the
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Published 10 Oct 2019

1,2,3-Triazolium macrocycles in supramolecular chemistry

  • Mastaneh Safarnejad Shad,
  • Pulikkal Veettil Santhini and
  • Wim Dehaen

Beilstein J. Org. Chem. 2019, 15, 2142–2155, doi:10.3762/bjoc.15.211

Graphical Abstract
  • interactions such as hydrogen bonding, ππ stacking, electrostatic interactions, van der Waals forces, hydrophobic/solvatophobic effects and coordination bonds [2][3]. Advances in supramolecules from molecular to macroscopic size with pre-structured or functionalized receptors and multivalent binding positions
  • macrocycle has been reported by Nakamura and his co-workers containing three 1,2,3-triazolium and carbazole moieties 12 (Figure 10). ππ stacking interactions and the self-association ability of the synthesized macrocycle are increased in comparison with its neutral analogue due to the decreased electron
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Published 12 Sep 2019

Complexation of 2,6-helic[6]arene and its derivatives with 1,1′-dimethyl-4,4′-bipyridinium salts and protonated 4,4'-bipyridinium salts: an acid–base controllable complexation

  • Jing Li,
  • Qiang Shi,
  • Ying Han and
  • Chuan-Feng Chen

Beilstein J. Org. Chem. 2019, 15, 1795–1804, doi:10.3762/bjoc.15.173

Graphical Abstract
  • broadened peaks, which indicated that ππ stacking interactions between the bipyridinium unit of G4 and the benzene ring of the hosts might exist. The signals for protons 2 and 13 of H4 showed a downfield shift with broadened signals due to deshielding effect, while the signals for protons 11 and 12 showed
  • protons of G1 and the aromatic rings of H1 with distances of 2.683 for A, 2.845 for B, 2.788 for C, 2.802 for D, and 2.868 Å for E, respectively. There also exist ππ stacking interactions between the pyridinium of G1 and the aromatic ring of H1 with the distance of 3.854 Å for F, a CH···O hydrogen bond
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Published 26 Jul 2019

Host–guest interactions in nor-seco-cucurbit[10]uril: novel guest-dependent molecular recognition and stereoisomerism

  • Xiaodong Zhang,
  • Wei Wu,
  • Zhu Tao and
  • Xin-Long Ni

Beilstein J. Org. Chem. 2019, 15, 1705–1711, doi:10.3762/bjoc.15.166

Graphical Abstract
  • encapsulation of this moiety. Pyrene group, that are too large for the individual CB[6]–CB[7] sized cavities of ns-CB[10] [23], it is thus believed that the upfield shift of the pyrene protons is attributed the intermolecular ππ stacking between the two pyrenyl moieties as proposed in the plausible inclusion
  • , the fluorescence intensity of the G2 monomer emissions gradually decreased, while the maximum emission intensity at around 485 nm (typical excimer emissions of pyrene) increased. The excimer emission band of G2 can be attributed to the interaction of two pyrene units resulting in intermolecular ππ
  • stacking, which was due to the two identical cavities of host-1. Consequently, the top–center isomerism of the G2·host-1 ternary complexes was conveniently confirmed from the optical signal after the changes in monomer/excimer fluorescence emissions of the pyrene groups on G2. Surprisingly, the
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Published 19 Jul 2019

Synthesis, enantioseparation and photophysical properties of planar-chiral pillar[5]arene derivatives bearing fluorophore fragments

  • Guojuan Li,
  • Chunying Fan,
  • Guo Cheng,
  • Wanhua Wu and
  • Cheng Yang

Beilstein J. Org. Chem. 2019, 15, 1601–1611, doi:10.3762/bjoc.15.164

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  • quantum yield was significantly decreased to 46.4% compared with 78.2% for Py-6. We ascribed the decreased fluorescence of P5A-Py to the ππ stacking of the Py units caused by the high local concentration of perylene. For P5A-DPA, which also bears two DPA units in one macrocyclic host, the fluorescent
  • quantum yield was only slightly decreased. This should be mainly due to the steric hindrance of the 9- and 10-phenyl groups, which inhibited the ππ stacking of the anthracene core in DPA. The fluorescent lifetimes of P5A-Py and P5A-DPA were compared with Py-6 and DPA-6. As shown in Figure 2, the lifetime
  • of P5A-Py is 3.4 ns which is shorter than that of Py-6 (4.4 ns), demonstrating that grafting two Py units in close proximity in one host, opened a new route for nonradiative decay. This phenomenon further verified the occurrence of ππ stacking of the Py fragments in P5A-Py. The lifetime of P5A-DPA
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Published 18 Jul 2019

A heteroditopic macrocycle as organocatalytic nanoreactor for pyrroloacridinone synthesis in water

  • Piyali Sarkar,
  • Sayan Sarkar and
  • Pradyut Ghosh

Beilstein J. Org. Chem. 2019, 15, 1505–1514, doi:10.3762/bjoc.15.152

Graphical Abstract
  • of macrocycles with multiple functional groups has been employed as alternative templates to induce the organic environment for catalysis via multiple weak interactions viz. ππ stacking, hydrogen bonding, etc. [25][26][27][28][29]. At the same time, several efforts have been made to develop
  • aggregation tendency. Herein we have extensively explored a multifunctional macrocycle (BATA-MC), comprising bis-amide and tris-amine functionalities as H-bond donor/acceptor moieties, and parallel benzene moieties for aromatic ππ stacking interactions as an organocatalytic nanoreactor for organic
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Published 08 Jul 2019

Selective detection of DABCO using a supramolecular interconversion as fluorescence reporter

  • Indrajit Paul,
  • Debabrata Samanta,
  • Sudhakar Gaikwad and
  • Michael Schmittel

Beilstein J. Org. Chem. 2019, 15, 1371–1378, doi:10.3762/bjoc.15.137

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  • repulsion. For instance, pyrazine creates notable repulsive interactions of the α-H towards the zinc porphyrin ring in a sandwich complex. Apparently, stability gains through ππ stacking in the sandwich with pyrene, coronene, etc. are not strong enough to compensate for the strain in [Cu2(1)(2)(guest)]2
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Published 21 Jun 2019

Self-assembly behaviors of perylene- and naphthalene-crown macrocycle conjugates in aqueous medium

  • Xin Shen,
  • Bo Li,
  • Tiezheng Pan,
  • Jianfeng Wu,
  • Yangxin Wang,
  • Jie Shang,
  • Yan Ge,
  • Lin Jin and
  • Zhenhui Qi

Beilstein J. Org. Chem. 2019, 15, 1203–1209, doi:10.3762/bjoc.15.117

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  • through hydrogen bonding and metal ion coordination in nonpolar solvents [66][67][68]. Compared with NDI, PDI has more aromatic rings to generate stronger intermolecular ππ stacking, leading to molecular aggregates more easily, and these aggregates or supramolecular assemblies can give rise to desirable
  • in the above-tested five solvent systems were also recorded. Because of the relatively weaker ππ stacking effect of the NDI units comparing with PDI units, 2 has a better solubility in the organic solvents. Consequently, the UV–vis absorption bands of 2 in all the organic solvents can be clearly
  • were investigated. As shown in Figure 2a, micelle-like assemblies of 1 were observed, while, because of the higher polarity of MeCN, the aggregation of 1 through ππ stacking was considerably enhanced forming linear assemblies (Figure 2b). Interestingly, when imposed to an aqueous medium through adding
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Published 03 Jun 2019

Efficient synthesis of pyrazolopyridines containing a chromane backbone through domino reaction

  • Razieh Navari,
  • Saeed Balalaie,
  • Saber Mehrparvar,
  • Fatemeh Darvish,
  • Frank Rominger,
  • Fatima Hamdan and
  • Sattar Mirzaie

Beilstein J. Org. Chem. 2019, 15, 874–880, doi:10.3762/bjoc.15.85

Graphical Abstract
  • of the product (Figure 2). Meanwhile, via hydrogen bridges and the solvent molecules (water and ethanol) the molecules build pairs with ππ stacking of the aromatic systems. To examine the scope and generality of our reaction, other (arylhydrazono)methyl-4H-chromen-4-ones were synthesized and their
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Published 11 Apr 2019

Coordination chemistry and photoswitching of dinuclear macrocyclic cadmium-, nickel-, and zinc complexes containing azobenzene carboxylato co-ligands

  • Jennifer Klose,
  • Tobias Severin,
  • Peter Hahn,
  • Alexander Jeremies,
  • Jens Bergmann,
  • Daniel Fuhrmann,
  • Jan Griebel,
  • Bernd Abel and
  • Berthold Kersting

Beilstein J. Org. Chem. 2019, 15, 840–851, doi:10.3762/bjoc.15.81

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  • lengths reveal no anomalies and are similar to those in [Zn2L(μ-OAc)]+. There are no ππ stacking interactions between the azobenzene moieties. However, the [Zn2L(μ-azo-OH)]+ and [Zn2L(μ-azo-O)] complexes are connected by a OH···O hydrogen bond of length 2.46 Å (O3a···O3b, not shown in Figure 4). [Zn2L(μ
  • , respectively. These values compare well with those in 3' and other [Zn2L(μ-carboxylato)]+ complexes. The [Zn2L(μ-azo-NMe2)]+ complexes in 5 assemble in pairs (Figure 5) most likely via π···π stacking interactions, as manifested by the distance of 3.34 Å between the planes through the azobenzene moieties. [Cd2L
  • radius of Cd2+. The Cd···Cd distance is at 3.399 Å. Virtually the same values are observed in [Cd2L(μ-OAc)]+ [10]. As in 5 ππ stacking of the azo-carboxylato co-ligands occurs (Figure 7). The shortest distance between two carbon atoms of adjacent benzene rings is at 3.41 Å. [Ni2L(μ-Azo-NMe2)]ClO4·xEtOH
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Published 03 Apr 2019

Synthesis of functionalized diazocines for application as building blocks in photo- and mechanoresponsive materials

  • Widukind Moormann,
  • Daniel Langbehn and
  • Rainer Herges

Beilstein J. Org. Chem. 2019, 15, 727–732, doi:10.3762/bjoc.15.68

Graphical Abstract
  • functionalized compounds are rare [19][20][21][22][23]. In contrary to azobenzenes, diazocines 1 are stable in their cis configuration. The bent cis isomer is less prone to ππ stacking which is known to reduce the switching efficiency (Figure 1a) [19][24]. The reverse stability of the cis and trans isomers in
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Published 20 Mar 2019

Evaluation of dispersion type metal···π arene interaction in arylbismuth compounds – an experimental and theoretical study

  • Ana-Maria Preda,
  • Małgorzata Krasowska,
  • Lydia Wrobel,
  • Philipp Kitschke,
  • Phil C. Andrews,
  • Jonathan G. MacLellan,
  • Lutz Mertens,
  • Marcus Korb,
  • Tobias Rüffer,
  • Heinrich Lang,
  • Alexander A. Auer and
  • Michael Mehring

Beilstein J. Org. Chem. 2018, 14, 2125–2145, doi:10.3762/bjoc.14.187

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  • Grimme [54] and Iverson et al. [55] on the unreflected use of terms such as C–H···π, or π···π stacking previously. In most cases, these interactions rely on London dispersion forces rather than special types of bonding due to the π system. Crystal structures In all of the presented compounds, the
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Published 15 Aug 2018

Functionalization of graphene: does the organic chemistry matter?

  • Artur Kasprzak,
  • Agnieszka Zuchowska and
  • Magdalena Poplawska

Beilstein J. Org. Chem. 2018, 14, 2018–2026, doi:10.3762/bjoc.14.177

Graphical Abstract
  • , was assigned to the stretching vibrations of the alkyl chain (commonly observed at up to 2980 cm−1); this absorption band corresponds to the N–H stretching vibrations of NH3+. The further reaction with amphotericin B, which is a compound containing unsaturated bonds, was most plausibly a result of ππ
  • stacking. As mentioned above in the discussion of reaction mechanisms, water molecules significantly lower the reaction rates for the desired nucleophiles. Importantly, water molecules also influence the hydrolysis of the activated carboxyl groups (Figure 2, step d and Figure 3, step f). Water should
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Published 02 Aug 2018

A self-assembled photoresponsive gel consisting of chiral nanofibers

  • Lei Zou,
  • Dan Han,
  • Zhiyi Yuan,
  • Dongdong Chang and
  • Xiang Ma

Beilstein J. Org. Chem. 2018, 14, 1994–2001, doi:10.3762/bjoc.14.174

Graphical Abstract
  • by three-dimensional networks through self-assembly have drawn significant attention in the past decades. They are normally fabricated by means of noncovalent intermolecular interactions [3], such as ππ stacking, hydrogen bonding, van der Waals forces, hydrophobic, electrostatic, host–guest and
  • construct optically controlled systems [17][30][32][33][34][35]. This moiety is also frequently employed as a building block because of its strong ππ stacking in nonpolar solvents. Herein, a novel compound 3 containing both chiral L-glutamic lipid and azobenzene was designed and synthesized (Scheme 1). It
  • and ππ stacking in DMSO. However, beautiful acicular fibers could be detected on the surface treated with a chloroform solution, and a dendritic network was observed on the sample made from benzene solution (Figure S9, Supporting Information File 1). The photoresponsiveness of compound 3 was also
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Published 01 Aug 2018

Steric “attraction”: not by dispersion alone

  • Ganna Gryn’ova and
  • Clémence Corminboeuf

Beilstein J. Org. Chem. 2018, 14, 1482–1490, doi:10.3762/bjoc.14.125

Graphical Abstract
  • cages [10]. Intermolecular interactions in hydrocarbons are also subject to significant dispersion contribution. In the unsaturated systems, from benzene dimer to higher acenes and, ultimately, graphenes, dispersion is increasingly the key force behind the ππ stacking interactions [11]. Large and flat
  • electrostatic contribution to it [25]. For example, “dispersion dominates and electrostatics commands” is the ‘punch line’ of the 2017 computational study on the σ–σ, σ–π and ππ stacking interactions between benzene, cyclohexane and some of their fluorinated derivatives [26]. The authors show that while
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Published 19 Jun 2018

Recent advances in phosphorescent platinum complexes for organic light-emitting diodes

  • Cristina Cebrián and
  • Matteo Mauro

Beilstein J. Org. Chem. 2018, 14, 1459–1481, doi:10.3762/bjoc.14.124

Graphical Abstract
  • including formation of metallophilic d8···d8 interactions and/or ππ stacking of the coordinating ligands [67][92] as well as excited-state interactions such as formation of excimers [93][94]. Although they may be usefully employed to shift both absorption and emission spectra
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Published 18 Jun 2018
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